Μέγεθος: px
Εμφάνιση ξεκινά από τη σελίδα:

Download ""

Transcript

1 Page of schematic page Rev. ate Index lock iagram hange ist IR PROOR /(MI&HOT&PI) PROOR /(R) PROOR /(POWR) PROOR /() PH / (MI&VIO) PH / (T/P/zalia) PH / (PI/PI/K/U) PH / (PIO) PH / (POWR) R IMM RT/V WWN/ight ensor WP & FH ocking/00/tp/ H/O/ K/U/FN/Reset HMI POWR PU OR (I) POWR VPU&VPU(PM) POWR.VU/VTT_MM POWR V.0(OZN)- POWR V_FXOR(MX0) POWR(PTR IN / ONN) POWR V. NVII NM- PI&PW / NVII NM- TM& / NVII NM- VRM / NVII NM- VRM / RU QUNT OMPUTR Page ist ize ocument Number Rev ustom Main oard ate: aturday, ugust, 00 heet of

2 VRM gr P,P Mx P lock iagram.mhz NVII/M NM- xmm P-P0 PI anes PU rrandale R 00/0.V R 00/0.V UNUFFR R OIMM P UNUFFR R OIMM P OK N IR0 P TM V R// TM PIN (micro F-P) HMI RT ocking VI P P P P P-P Puma Peak x N(Intel WiFi ink 00) Kilmer Peak x N(Imtel WiMX/WiFi ink 0) WN Module Intel : Puma peak/kilmer Peak theros : H or P # TM V R// FI interface MI(X) M_H RJ M/ RU P N iga theros RM P # # PI PH Ibex Peak-M - tep zalia ink ocking N theros RM P # INT. HM PI rom M INT. HM PI rom M HM PI rom M(Hynix) HM PI rom M(amsung) mm x mm P-P for back up Plan P xpressard/ P # # M IO M P U./.0 T Port 0 T Port.V P,MHZ MI. Jack P udio Jack P INT.PKR. P igital MI Knowles PM00HH P # # U lot * P Finger Print T P xpressard * P T H * P T O * P0 PU WP P lue Tooth TH. P amera Felica P P TOUH P T/P WITH INT.K/ P0 PI IO M P0 P/NUM/R Wireless/WWN/T Power/peep ight ensor TO TFN P M U ensor I xpressard WiMX P WWN obi000 ocking U HU H M/ harge utton POWR U ON* PI- * Wireless W ///O.evel nvironment-related ubstances hould NVR be Used..Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners.

3 VT change list 00: -P elete R 0 ohm. -P elete R -P Y change pin assignment. -P dd R -P R change PU to P and mount 0K. -P dd Q N00.(For FX PROHOT) -P U.N add FX_PROHOT Net.(For FX_PROHOT) -P R no mount(river from ) -P0 R change from to K00T-Y-N.(For MI) -P0 mount PF.(For MI) -P0 R change from.k to ohm -P0 wap U pin & pin. -P0 dd R.K/F. -P0 R change from.k to.k/f -P dd R 0K(For PI_RQ_WN) -P RP mount for xt. only -P dd Q N00(For PI_RQ_WN) -P dd Y MHz for Int. only. -P dd R M (For Int. only). -P dd,.pf (For Int. only) -P R mount 0 ohm(for N only) -P change to W00PT.(For VPU leakage) -P dd R 0k for N KU only. -P R mount 0k.(For Int. only) -P elete R,R0 0 ohm.(save cost) -P elete R 0_.(save cost) -P Mount, uf. -P wap MR_VRF_Q0 & MR_VRF_Q -P R,R mount 0 ohm. -P,, change to K0H0. -P ON pin assignment reverse.(m request) -P dd R0.K -P R value change from K to 00K. -P elete -P dd Q PTU. -P mount -P dd R 00K.(For idle mode save power) -P,0,,,,,,,, change from W00PT to R0V-0. -P dd R0V-0.(For I# leakage current) -P R0 change Pull-up from RV to V. -P ON change to " ". -P ON pin assignment reverse. -P R change from.k/f to K/F.(For O current limit) -P ON0 change footprint.(add ock pin) -P0 Q change footprint to "OT_-_-" -P0 Q change from PTU to N00. -P0 R change from.k to.0k. -P ON change pin assignment. -P P,P no mount. -P dd PR ohm.(for Prochot# in IMVP.) -P P & P modify net -P elete P,P -P PR change net from"v_fxor-" to "V_OR" -P P 000P delete (For V timing) -P P 000P delete (For V timing) -P PR0 change to 0K(For V. timing) -P P change to 00P(For V. timing) -P PR change to 0 ohm -P P no mount -P dd P0 R0V-0.(for N powerr off time) -P elete P. -P elete P,P -P PR no mount -P elete P,P -P PR change from.k/f to.0k/f.(v OP) -P dd PR 0K ohm.(for FX PROHOT) -P dd PR 0 ohm.(for FX PROHOT) -P dd P R0V-0. -P elete P,P0 -P P change (xt. only)(v_or timing) -P PR0 change to K(For V_OR timing) -P VI For xternal V_OR circuit modify -P elete P -P P change to 0.UF.(For V. timing) -P0 R0 change from to V -P0 R0 change from V to -P0 dd R0 Pull-high,(PU- sample,p Q sample) -P ON reverse pin assignment -P, change from PF to PF. 00 -P dd Q,R,R0,R,R for RMRT# -P R change power from.vu to V._PU -P 0,0 change height to lower. -P VQ power change to V._PU -P0 Y change footprint -P U. change to T_PR# -P U. change to RIT_TMP_RP# -P U.F change to RMRT_NTR_PH. -P R change from to RV -P change from U to 0uF.(For RT wave noise) -P elete.(save cost) -P R mount 0 ohm -P U.0 change to RIT_TMP_RP#. -P dd R 00K.(For RMRT# abnormal shutdown) -P change to W00PT -P dd R,R 0 ohm. -P dd, 000P.(For MI) -P U0. delete net. -P change to 0UF.(reduce ripple) -P ON. change to -P ON. change to H_K0 -P ON. change to -P dd Pq,PR,P,P,PR,PR,PQ -P 00 change to PY00T-Y-N(0,). -P ON change footprint. -P R change from to ohm 00 -P dd 0PF. -P R change value from.k/f to.k/f(for power) -P R change value from K/F to 0/F.(For ) -P dd U,,R. (For power) -P U.F change to RMRT_PU# -P mount 0UF(Reduce ripple) -P U.J U.H delete net "R_VRF_Q0""R_VRF_Q" -P0 elete R -P0 R change from 00 to 00 -P dd 0.0uF(Reduce ripple) -P, change to TK MK00NJ -P 0 change from 0.U to uf. -P elete U.(thermal don't use) -P elete R,R0,R,R -P ON. ON. change net to "MR_VRF_Q0" -P R,R change to ohm. -P R,R change to.k -P delete 0, -P dd R 00K. -P dd F. -P elete F0 -P R no mount -P dd V_RT net -P U. add RMRT_NTR net -P dd R 0K -P U. add net"v_rt#" -P P,, mount 0P. -P ON change to Foxconn,(MI solution) -P dd 0 -P0 U change input voltage from V to VPU. -P PR change to./f_ -P PQ0,PQ change to ON0.(Reduce ripple) -P dd PU,PR,PR,PR,P,P,P,P -P PU. add net "V._PU_V0_PWR" -P PR0 delete -P PR value change to.0k/f -P dd PU,PR0,P,PR,PR,P,PR,PR -P dd PR0,PQ0 -P dd PQ -P elete PR0,PR0 -P PR change to 00K/F -P P change to 00PF. -P dd PQ NTMF -P dd PQ N00 -P dd PR 0_ ohm -P PR mount.k/f -P PR mount 0K/NT/THINKIN_ -P elete R00 hange ist ustom Main oard ize ocument Number Rev ate: Wednesday, eptember 0, 00 heet of QUNT OMPUTR

4 U P_ P_ elete R K_XIN_ Y (.x.mm).mhz/0p/0ppm K_XOUT_ KN PU_TOP# X X KPWR/P#_. PU_TOP# PUT0_PR PU0_PR PUT_PR PU_PR OTT_PR OT_PR RT_PR R_PR 0 KIN_K_P () KIN_K_N () KIN_OT P () KIN_OT N () KIN_MI_P () KIN_MI_N () V elete R 0U/.V/XR_ 0.U_ 0.U_ 0.U_ 0.U_ 0.U_ VRF_. V_MHz VOTMHz_. VR_. VPU_. KIN_T_P () KIN_T_N () V R 0K/F_ KN Q N00 V V.0 R 0K/F_ VRM_KN# () (,,) PK_M (,,) PT_M VP_IO_K 0.U_ 0.U_ R_V_MHZ R_V_MHZ_ R_M_PH M_PH () V_MHZ (0) V_MHZ_ (0) TT_PR T_PR 0 MNI P-N *0U/.V/XR_ VR_IO VPU_IO K_. T_. OTMHz MHz T R PU RF MHz_non MHz_ss RF_/F_.** Thermal P 0 R /F_ IRKFT/P R_M_PH PU_TOP# R R R *0K/F_ 0K/F_ 0K_ V.0 V F PU Frequency elect Table PU R RF MHz MHz MHz U MHz OT MHz 0(default) evel nvironment-related ubstances hould NVR be Used..Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners. QUNT OMPUTR OK NRTOR ize ocument Number Rev Main oard ate: Tuesday, eptember 0, 00 heet of

5 () FI_TXN0 () FI_TXN () FI_TXN () FI_TXN () FI_TXN () FI_TXN () FI_TXN () FI_TXN () FI_TXP0 () FI_TXP () FI_TXP () FI_TXP () FI_TXP () FI_TXP () FI_TXP () FI_TXP R R R R R () MI_TXN0 () MI_TXN () MI_TXN () MI_TXN () MI_TXP0 () MI_TXP () MI_TXP () MI_TXP () MI_RXN0 () MI_RXN () MI_RXN () MI_RXN () MI_RXP0 () MI_RXP () MI_RXP () MI_RXP () FI_FYN0 () FI_FYN () FI_INT () FI_YN0 @K/F_ FI_TXN0 FI_TXN FI_TXN FI_TXN FI_TXN FI_TXN FI_TXN FI_TXN FI_TXP0 FI_TXP FI_TXP FI_TXP FI_TXP FI_TXP FI_TXP FI_TXP RRN PROOR (MI,P,FI) F H F 0 0 F0 F F U FI_INT FI_FYN0 FI_FYN FI_YN0 FI_YN MI_RX#[0] MI_RX#[] MI_RX#[] MI_RX#[] MI_RX[0] MI_RX[] MI_RX[] MI_RX[] MI_TX#[0] MI_TX#[] MI_TX#[] MI_TX#[] MI_TX[0] F MI_TX[] MI_TX[] MI_TX[] FI_TX#[0] FI_TX#[] FI_TX#[] FI_TX#[] FI_TX#[] FI_TX#[] FI_TX#[] FI_TX#[] FI_TX[0] FI_TX[] FI_TX[] FI_TX[] FI_TX[] FI_TX[] FI_TX[] FI_TX[] FI_FYN[0] FI_FYN[] FI_INT FI_YN[0] FI_YN[] rrandale MI Intel(R) FI PI XPR -- RPHI Processor Pullups H_TRR# H_PURT# P_IROMP_RR P_IOMPI P_IOMPO P_ROMPO XP_RIR0 P_RI P_RX#[0] P_RX#[] P_RX#[] P_RX#[] P_RX#[] P_RX#[] P_RX#[] P_RX#[] P_RX#[] P_RX#[] P_RX#[0] P_RX#[] P_RX#[] P_RX#[] P_RX#[] P_RX#[] P_RX[0] P_RX[] P_RX[] P_RX[] P_RX[] P_RX[] P_RX[] P_RX[] P_RX[] P_RX[] P_RX[0] P_RX[] P_RX[] P_RX[] P_RX[] P_RX[] P_TX#[0] P_TX#[] P_TX#[] P_TX#[] P_TX#[] P_TX#[] P_TX#[] P_TX#[] P_TX#[] P_TX#[] P_TX#[0] P_TX#[] P_TX#[] P_TX#[] P_TX#[] P_TX#[] P_TX[0] P_TX[] P_TX[] P_TX[] P_TX[] P_TX[] P_TX[] P_TX[] P_TX[] P_TX[] P_TX[0] P_TX[] P_TX[] P_TX[] P_TX[] P_TX[] R R K J J F F 0 J H H F F F 0 0 M M M0 K M J K H0 H F M M 0 M K M H K 0 F R_FX_TXN R_FX_TXN R_FX_TXN R_FX_TXN R_FX_TXN R_FX_TXN0 R_FX_TXN R_FX_TXN R_FX_TXN R_FX_TXN R_FX_TXN R_FX_TXN R_FX_TXN R_FX_TXN R_FX_TXN R_FX_TXN0 R_FX_TXP R_FX_TXP R_FX_TXP R_FX_TXP R_FX_TXP R_FX_TXP0 R_FX_TXP R_FX_TXP R_FX_TXP R_FX_TXP R_FX_TXP R_FX_TXP R_FX_TXP R_FX_TXP R_FX_TXP R_FX_TXP0./F_ */F_ FX_RXN () FX_RXN () FX_RXN () FX_RXN () FX_RXN () FX_RXN0 () FX_RXN () FX_RXN () FX_RXN () FX_RXN () FX_RXN () FX_RXN () FX_RXN () FX_RXN () FX_RXN () FX_RXN0 () FX_RXP () FX_RXP () FX_RXP () FX_RXP () FX_RXP () FX_RXP0 () FX_RXP () FX_RXP () FX_RXP () FX_RXP () FX_RXP () FX_RXP () FX_RXP () FX_RXP () FX_RXP () FX_RXP0 () FX_TXN () FX_TXN () FX_TXN () FX_TXN () FX_TXN () FX_TXN0 () FX_TXN () FX_TXN () FX_TXN () FX_TXN () (,) FX_TXN () FX_TXN () FX_TXN () FX_TXN () FX_TXN () FX_TXN0 () FX_TXP () FX_TXP () FX_TXP () FX_TXP () FX_TXP () FX_TXP0 () FX_TXP () FX_TXP () FX_TXP () FX_TXP () FX_TXP () FX_TXP () FX_TXP () FX_TXP () FX_TXP () FX_TXP0 () R () V._PU_V0_PWR RV MPWROK () H_THRMTRIP# () H_PUPWR RMPWR_PU (,,,) PTRT# () RMRT_NTR () RMRT_NTR_PH U 0K/F_ TH0FU R R () H_PMYN () PM_RM_PWR R R K/F_ R K/F_ 0.U_ R R RMPWR_PU 0/F_ H_TRR# () H_PI R R 0/F_./F_./F_ H_PROHOT# H_OMP H_OMP H_OMP H_OMP0 H_THRMTRIP# H_PURT# R 0_.K/F_ 0/F_ VTTPWROO M T RRN PROOR (K,MI,JT) R 0/F_ U T OMP T T H K T N K P N N K M 0.0uF_.VU JT MPPIN can hain (efault) RMRT_PU# M_ROMP_0 R M_ROMP_ R M_ROMP_ R FX_PROHOT R 0K/F_ R 0K/F_ R *0_ R0 *0_ T XP_PRQ# XP_TK XP_TM XP_TRT# K_PU_K () K_PU_K# () T T XP_TI_R XP_TO_R XP_TI_M XP_TO_M T T T T T T0 T T XP ignal XP_TM XP_TI_R XP_PRQ# XP_TK TUFF -> R, R0, R NO TUFF -> R, R KOUT_MI () KOUT_MI# () PH_RFK () PH_RFK# () V.0 PM_XTT#0 () PM_XTT# () V.0 R *0_ R K/F_ XP_TI_R R 0_ XP_TI XP_TO_M R *0_ XP_TO RMRT_PU# RMRT# () Q XP_TRT# N00 R0 R0 *0_ 0_ R _ R XP_TI_M XP_TO_R R R *0_ 0_ 00K/F_ OMP OMP OMP0 KTO# TRR# PI PROHOT# THRMTRIP# RT_O# PM_YN VPWROO_ VPWROO_0 M_RMPWROK VTTPWROO TPPWROO.K/F_ (.0V) RTIN# rrandale MI THRM PWR MNMNT OK R MI JT & PM K K# K_ITP K_ITP# P_K P_K# P_RF_K P_RF_K# M_RMRT# R0 T0 F M_ROMP[0] M_ROMP[] M M_ROMP[] N PM_XT_T#[0] PM_XT_T#[] PRY# PRQ# TK TM TRT# TI TO TI_M TO_M R# PM#[0] PM#[] PM#[] PM#[] PM#[] PM#[] PM#[] PM#[] N P T P N P T T R R P N J K K J J H K H T R R R R 00/F_./F_ 0/F_ *_ *_ *_ *_ () PROHOT V.0 R /F_ H_PROHOT# Q N00 H_PROHOT# () () FX_VRHOT FX_PROHOT Q *N00 H_THRMTRIP# R 0/F_ Q MMT0 V R 0K/F_ V U TH0FU R MH Only TUFF -> R, R NO TUFF -> R0, R, R TUFF -> R, R NO TUFF -> R, R, R0 (,,,) PTRT# ize ocument Number Rev ustom. evel nvironment-related ubstances hould NVR be Used. Main oard. Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners. ate: Tuesday, eptember 0, 00 heet of 00K/F_ 0.U_ HN# () Q N00 PU Only QUNT OMPUTR PROOR /(HOT&PI)

6 RRN PROOR (R). evel nvironment-related ubstances hould NVR be Used.. Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners. PROOR /(R) ustom Monday, ugust, 00 Main oard ize ocument Number Rev ate: heet of QUNT OMPUTR M Q0 M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M 0 M M M M M M M M M 0 M M M M M M M Q M Q M Q M Q0 M Q M Q M Q M Q M Q# M Q#0 M Q# M Q# M Q# M Q# M Q# M Q# M M M M0 M M M M M M M M M M M M M M M M0 M M M M M M M M M M M M M Q# M Q#0 M Q# M Q# M Q# M Q# M Q# M Q# M Q M Q0 M Q M Q M Q M Q M Q M Q M M M 0 M M M M M M M M M 0 M M M M M Q[:0] () M Q[:0] () M #0 () M # () M # () M # () M R# () M W# () M [:0] () M Q[:0] () M Q#[:0] () M M[:0] () M OT () M OT0 () M # () M #0 () M K () M K# () M K () M K0 () M K0# () M K0 () M [:0] () M Q[:0] () M Q#[:0] () M M[:0] () M OT () M OT0 () M # () M #0 () M K () M K# () M K () M K0 () M K0# () M K0 () M #0 () M # () M # () M # () M W# () M R# () R YTM MMORY U rrandale U Y Y P P F H M M N0 N F F H J M N H H K0 K N P R T Y W V V T Y U T U T V F0 F H0 K J 0 J J0 M M K N P H F K K F J J J0 J 0 K K K N M0 R M N T P M N M T T R P _[0] _[] _[] _# _R# _W# _K[0] _K[] _K#[0] _K#[] _K[0] _K[] _#[0] _#[] _OT[0] _OT[] _M[0] _M[] _M[] _M[] _M[] _M[] _M[] _M[] _Q[0] _Q#[0] _Q[] _Q#[] _Q[] _Q#[] _Q[] _Q#[] _Q[] _Q#[] _Q[] _Q#[] _Q[] _Q#[] _Q[] _Q#[] _M[0] _M[] _M[] _M[] _M[] _M[] _M[] _M[] _M[] _M[] _M[0] _M[] _M[] _M[] _M[] _M[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[] R YTM MMORY - U rrandale W R Y W V W V M M H K H R T H P R R R F H J M U V T V R T R R R R P R F P N F F F F H J J J J J K M K K M N F J K J H K K M N K K M M P N T N N N T T N P P T T P R0 T0 _[0] _[] _[] _# _R# _W# _K[0] _K[] _K#[0] _K#[] _K[0] _K[] _#[0] _#[] _OT[0] _OT[] _M[0] _M[] _M[] _M[] _M[] _M[] _M[] _M[] _Q[] _Q#[] _Q[] _Q#[] _Q[] _Q#[] _Q[] _Q#[] _Q[0] _Q#[0] _Q[] _Q#[] _Q[] _Q#[] _Q[] _Q#[] _M[0] _M[] _M[] _M[] _M[] _M[] _M[] _M[] _M[] _M[] _M[0] _M[] _M[] _M[] _M[] _M[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[] _Q[0] _Q[] _Q[] _Q[]

7 V_OR 0 F F F F F F0 F F F F Y Y Y Y Y Y0 Y Y Y Y V V V V V V0 V V V V U U U U U U0 U U U U R R R R R R0 R R R R P P P P P P0 P P P P UF V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V00 PU OR UPPY.V RI POWR POWR N IN PU VI rrandale VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_0 VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_0 VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_0 VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_ VTT0_0 VTT0_ VTT0_ VTT0_ VTT0_ PI# VI[0] VI[] VI[] VI[] VI[] VI[] VI[] PRO_PRPVR VTT_T IN H H H H0 J J H H F F F F F Y0 W0 U0 T0 J J J J N K K K M M M N V_N J V_N J VTT_N V_N_VTT PU: RRN.0V () 0 0 VTT_ VTT_ PI# V.0 PU_VI0 PU_VI PU_VI PU_VI PU_VI PU_VI PU_VI PM_PRPVR 0U/.V//R=/H. 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ *0U/.V/XR_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ R 0_ R 0_ PI# () V.0 PU_VI0 () PU_VI () PU_VI () PU_VI () PU_VI () PU_VI () PU_VI () PM_PRPVR () change height to lower. larksfiled VTT=. VTT_elect=ow rrandale VTT=.0 VTT_elect=High PU_IMON () V_OR V_OR R 00_ R 00_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/V//R=. 0U/V//R=. VN () VN () V.0 Please note that V_FX_OR should be.0v in uburndale R0 R0 R0 R R V_FXOR 0 I@U/.V_ I@U/.V_ 0 I@0U/.V/XR_ PU_VI0 PU_VI PU_VI PU_VI PU_VI PU_VI PU_VI For Turbo Mode R default VI[:0]=00000 PI# default=0 PRPVR default=. evel nvironment-related ubstances hould NVR be Used.. Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen *K/F_ *K/F_ *K/F_ *K/F_ K/F_ RRN PROOR (RPHI POWR) () 0U/.V//R=/H. *0U/.V//R=/H. 0 V.0 V.0 PM_PRPVR PI# U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ U/.V_ T T T T R R R R P P P P N N N N M M M M K K K K J J J J H H H H R R R R R R R J J H K J J J H F R R U VX VX VX VX VX VX VX VX VX VX0 VX VX VX VX VX VX VX VX VX VX0 VX VX VX VX VX VX VX VX VX VX0 VX VX VX VX VX VX VTT_ VTT_ VTT_ VTT_ VTT_ VTT_0 VTT_ VTT_ VTT_ VTT_ VTT_ VTT_ VTT_ VTT_ rrandale RPHI K/F_ K/F_ K/F_ K/F_ K/F_ K/F_ K/F_ K/F_ *K/F_ FI P & MI N IN POWR RPHI VIs VX_N VX_N R -.V RI.V.V V.0 V.0 FX_VI[0] FX_VI[] FX_VI[] FX_VI[] FX_VI[] FX_VI[] FX_VI[] FX_VR_N FX_PRPVR FX_IMON VQ VQ VQ VQ VQ VQ VQ VQ VQ VQ0 VQ VQ VQ VQ VQ VQ VQ VQ VTT0_ VTT0_0 VTT0_ VTT0_ VTT_ VTT_ VTT_ VTT_ VTT_ VTT_ VP VP VP / dd R V.0 V.0 R T M P N P M P N R T M J F Y W W U T T P N N H P0 N0 0 K0 J J0 J H H0 H M FX_VI0 () FX_VI () FX_VI () FX_VI () FX_VI () FX_VI () FX_VI () R.K/F_ R I@0_ R0 I@0_ R I@0_ Max U/.V/XR_ U/.V/XR_ U/.V/XR_ V.0 0U/.V/XR_ 0U/.V/XR_ V.0 U/.V_ U/.V/XR_ U/.V/XR_ U/.V_ (0.) V. U/.V/XR_ U/.V/XR_.U/.V_.U/.V/XR_ U/.V_ V_X_N () V_X_N () 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ QUNT OMPUTR ate: Monday, ugust, 00 heet of FX_VR_N (,) FX_PRPVR () FXVR_IMON () V._PU 0U/.V//R=/H. PROOR /(POWR) ize ocument Number Rev ustom Main oard

8 T0 T R R R R R R0 R R R R R R P0 P P P0 P P P N N N N0 N M M M M0 M M M M M M 0 K K K K0 K J J J0 J J J J J J H H H H H H0 H H H H H0 H H H H H 0 F F F UH V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 rrandale V V V V V V V V V V V0 V V V V V V V V V V00 V0 V0 V0 V0 V0 V0 V0 V0 V0 V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V Y Y Y W W W W W W0 W W W W W V0 U U U T T T T T T0 T T T T T R0 P P P N N N N N N0 N N N N N M0 K K K0 RRN PROOR () UI K V K V K V K V J V J0 V J V J V H V H V0 H V H V H V H V H V H V H V H V H V H V0 H V V V 0 V V V V F0 V F V F V0 F V F V F V V V V V V V V00 V0 V0 V0 V0 V0 0 V0 V0 V0 V0 V0 V V V V V V 0 V V V V0 V V V V V V V V V V0 V V V NTF V V_NTF V_NTF V_NTF V_NTF V_NTF V_NTF V_NTF T T R RRN PROOR( RRV, F) F0 T T T F T F T T T T T0 T T T T T T T T P J M J H U T J J U RV RV RV RV RV RV RV RV _IMM_VRF _IMM_VRF RV RV RV RV M0 F[0] M F[] P F[] F[] 0 F[] M F[] N F[] M F[] K F[] K F[] K F[0] J F[] N0 F[] N F[] J F[] J F[] J0 F[] K0 F[] H RV_TP_ RV RV RV RV RV RV0 RV RV RRV RV_NTF_ RV_NTF_ RV RV RV_NTF_ RV_NTF_ RV_NTF_0 RV_NTF_ RV RV RV RV RV RV_NTF_ J J H K R RV J RV J RV_NTF_0 RV_NTF_ P T RV_NTF_ T RV_NTF_ R RV RV RV RV RV RV0 RV RV RV RV_NTF_ RV_NTF_ RV_NTF_ RV_NTF_ RV RV_TP_ RV_TP_0 KY RV RV RV RV RV_TP_ RV_TP_ RV_TP_ RV_TP_ RV_TP_0 RV_TP_ RV_TP_ RV_TP_ P0 P T T P R T T P R R F J H R R RV_TP_ RV_TP_ RV_TP_ RV_TP_ RV_TP_ RV_TP_ RV_TP_0 RV_TP_ RV_TP_ RV_TP_ V V N W W N RV_TP_ RV_TP_ V P rrandale rrandale F0 R *.0K_ F R.0K_ F - isplay Port Presence F Not applicable for larksfield Processor PI-press onfiguration elect F0 : ingle P 0 : ifurcation enabled PI-press tatic ane Reversal F : Normal Operation 0 : ane Number Reversed -> 0, ->,... F : isabled; No Physical isplay Port attached to mbedded iplay Port 0 : nabled; n external isplay port device is connected to the mbedded isplay port R *.0K_. evel nvironment-related ubstances hould NVR be Used.. Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners. QUNT OMPUTR PROOR /() ize ocument Number Rev ustom Main oard ate: aturday, ugust, 00 heet of

9 IX PK-M (MI,FI,PIO) IX PK-M (V,I) V.0_PH_IO (,) MPWROK V R R R R () PM_RM_PWR () MI_RXN () MI_RXN () MI_RXN () MI_RXN0 () MI_RXP () MI_RXP () MI_RXP () MI_RXP0 () MI_TXN () MI_TXN () MI_TXN () MI_TXN0 () MI_TXP () MI_TXP () MI_TXP () MI_TXP0./F_ 0K/F_ () HWP MIOMP Y_RT# *0_ N_RT#_R 0K_ J W0 J0 0 0 F 0 H 0 H F T M 0 U MI0RXN MIRXN MIRXN MIRXN MI0RXP MIRXP MIRXP MIRXP MI0TXN MITXN MITXN MITXN MI0TXP MITXP MITXP MITXP MI MI_ZOMP MI_IROMP FI FI_RXN0 FI_RXN FI_RXN FI_RXN FI_RXN FI_RXN FI_RXN FI_RXN FI_RXP0 FI_RXP FI_RXP FI_RXP FI_RXP FI_RXP FI_RXP FI_RXP ystem Power Management Y_RT# Y_PWROK PWROK MPWROK R 0_ PM_MPWROK_R K MPWROK N_RT# RMPWROK R_FI_TXN R HR_FI_TXN R R_FI_TXN R J R_FI_TXN R R_FI_TXN R R_FI_TXN R R_FI_TXN R R_FI_TXN0 R0 R_FI_TXP R F R_FI_TXP R R_FI_TXP R R_FI_TXP R WR_FI_TXP R R_FI_TXP R R_FI_TXP R R_FI_TXP0 R R_FI_INT FI_INT J R_FI_FYN0 FI_FYN0 F HR_FI_FYN FI_FYN J R_FI_YN0 FI_YN0 R_FI_YN FI_YN WK# KRUN# / PIO U_TT# / PIO UK / PIO P_# / PIO J Y P F PI_WK# PI_KRUN# RV_PP# R R0 R R R IH_UK () PM_P_# () I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ I@0_ PI_KRUN# () T FI_TXN () FI_TXN () () _KT_N FI_TXN ()(,0) V_VN FI_TXN () FI_TXN () () _KTT FI_TXN () FI_TXN () FI_TXN0 () FI_TXP () FI_TXP () FI_TXP () FI_TXP () FI_TXP () FI_TXP () FI_TXP () FI_TXP0 () FI_INT () FI_FYN0 () FI_FYN () FI_YN0 () FI_YN () (,0) RT_ (,0) RT_ (,0) RT_R V R R R R R R R () R_ROUT0- () R_ROUT- () R_ROUT- T () R_RK0- () R_RK0 V_K V_T I@0K/F_ I@0K/F_ I@.K/F T () R_ROUT0 () R_ROUT () R_ROUT T I@0_ I@0_ I@0_ N_ N_ N_R U T I@0 KTN T _V_N Y Y V P P T T V V Y V 0 Y V P P Y T U T _KTT K T _TR_K _TR_T V_I V_V V_VRFH V_VRF V_K# V_K V V_T#0 V_T# V_T# V_T# V_T0 V_T V_T V_T V_K# V_K V_T#0 V_T# V_T# V_T# Y V_T0 T V_T U0 V_T T V_T RT_U RT_RN RT_R HMI_TR_K HMI_TR_T HMI_T_# HMI_T_ HMI_T_# HMI_T_ HMI_T0_# HMI_T0_ HMI_K_# HMI_K_ R0 R 0 HMI_TR_K () HMI_TR_T () I@00K/F_ I@00K/F_ I@0.U_ I@0.U_ I@0.U_ I@0.U_ I@0.U_ I@0.U_ I@0.U_ I@0.U_ (HMI.bps) V.0 HMI_T# () HMI_T () HMI_T# () HMI_T () HMI_T0# () HMI_T0 () HMI_K# () HMI_K () HMI M/ () U_PWR_N_K () NWON# RV () PRNT R RMRT# U_PWR_N_K NWON# *0K_ PM_TOW# PM_P_# () PM_P_# () T T0 H_PMYN () (,,0) (,,0) (,,0) HYN (,0) VYN R R0 R R R I@0_ I@0_ I@0_ I@0_ N_HYN N_VYN K/F IRF_R _IRF RT_IRTN PM_RI# T VU R 0K/F_ igital isplay Interface VO_TVKINN VO_TVKINP VO_TN VO_TP VO_INTN VO_INTP VO_TRK VO_TRT J J F H T T P_UXN P_UXP J U HMI_HP_Q P_HP P_0N P_0P P_N J P_P P_N 0 P_P 0 P_N W P_P P_TRK P_TRT Y P_UXN P_UXP P_HP V0 P_0N 0 P_0P 0 P_N F P_P H P_N P_P P_N P_P P_TRK P_TRT U0 U M P P RMRT# U_PWR_K / PIO0 PWRTN# PRNT / PIO TOW# / PIO P_# P_# P_M# TP PMYNH H P K N J0 RT K V RT K RT T V RT T Y RT_HYN Y RT_VYN RT IbexPeak-M( v0.) P_UXN P_UXP P_HP P_0N P_0P P_N P_P P_N P_P P_N P_P T J0 0 J F H F RI# P_N#/PIO F IbexPeak-M( v0.) PI_KRUN# R.K_ V (,) WK# Q N00K PI_WK# HMI_HP_Q R I@0_ HMI_HP (,0) N V I PM_RI# R0 PM_TOW# R0 PI_WK# R0 U_PWR_N_K R NWON# R0 0K/F_.K_ K/F_ 0K/F_ *0K/F_ RV () RMRT# RMRT# Min. 0ms R K/F_ RV_ON RMRT# RMRT# buffer.v 0.V Min. 0ms. evel nvironment-related ubstances hould NVR be Used.. Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners. R0 R0 R0 I@0 I@0 I@0 N_ N_ N_R V_K R00 V_T R0 QUNT OMPUTR PH /(MI&VIO) I@.K/F_ I@.K/F_ V V ize ocument Number Rev ustom Main oard ate: Monday, ugust, 00 heet of

10 H Topology RT Flash escriptor ecurity Overide ow : nable H_OK_N#: High: isable(efault) V VPU VPU R R R R0 No Reboot PPK () H_K0 () H_YN0 () H_RT#0 () H_OUT0 VPU can not use R0V-0 R R VRT_.K/F.K/F Q0 MMT0 R R R VRT_ R0 K/F_ JT_TK R _ *0K_ *0K_ *0K_ *0K_ JT_TM JT_TI JT_TO JT_RT# R R R R *0_ W00PT.K/F_ *0K/F_ H_OK_N# PPK High = nable ow = isable (efault) R R R R P_ /F_ /F_ /F_ /F_ VRT VRT_ *0K/F_ *0K/F_ *0K/F_ *0K/F_ H_K_R H_YN_R H_RT#_R H_O_R R0V-0 R K/F_ T M0 V VRT / no mount H_YN H_O H_O PI_I R R R M_ U/.V/XR_ 0K/F_ 0K/F_ Weak internal pull-down. o not pull high. ampled at rising edge of RMRT#. Weak internal pull-down. o not pull high. ampled at rising edge of RMRT#. Weak internal pull-down. o not pull high. ampled at rising edge of RMRT#. INVRMN High = nable High () = Integrated VRM is enabled ow (0) = Integrated VRM is disabled J HORT_ P U/.V/XR_ J HORT_ P U/.V/XR_ Intel nti-theft Technology H_YN:Internal pull low High: P VR.V ow : P VR.V PI_# PI_0.K_ () PPK elete R () H_IN0 /0 R change from 0K to.k () H_OK_N# R K/F_ RV VU V R VRT P_ P_ R R Y.K/0PPM () KMI# IRQ_RIRQ RT_RT# RT_RT# High = nable ow = isable (efault). evel nvironment-related ubstances hould NVR be Used.. Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners. IX PK-M (H,JT,T) RNPK RT_X RT_X H_K_R H_YN_R H_O_R H_OK_N# JT_TK JT_TM JT_TI JT_TO JT_RT# PI_K PI_# T PI_I PI_0 T T VU R PI_K PI_I 0 0 F0 F H J0 M K K J J V Y Y V.K_ U RTX RTX RTRT# RTRT# M_INTRUR# INTRUR# 0K_ INVRMN INTVRMN High=Integrated U.V VRM is enable 0K/F_ U / V O /HO /WP K I WXVI R 0M_ H_K H_YN R 0_ PPK P PKR H_RT#_R 0 H_RT# 0.U_ H_IN0 H_IN H_IN H_IN H_O IbexPeak-M( v0.) VU RT IH H_OK_N# / PIO H_OK_RT# / PIO JT_TK JT_TM JT_TI JT_TO JT_RT# PI_K PI_0# PI_# PI_MOI PI_MIO PI JT P T FWH0 / 0 FWH / FWH / FWH / FWH / FRM# T# RQ0# RQ# / PIO F T0RXN T0RXP T0TXN T0TXP TRXN TRXP TTXN TTXP TRXN TRXP TTXN TTXP TRXN TRXP TTXN TTXP TRXN TRXP TTXN TTXP TRXN TRXP TTXN TTXP TIOMPI T0P / PIO TP / PIO K K K K H H H H F F F F H H F F F F T Y V (P/H T/ N) TOMP R R0 T T0 IRQ_RIRQ RIRQ TIOMPO R P_0 (,) P_ (,) P_ (,) P_ (,) P_FRM# (,) IRQ_RIRQ () T# () 0K/F_ 0K/F_ QUNT OMPUTR PH /(T)./F_ V T H 0 T_RXN0 () T_RXP0 () T_TXN0 () T_TXP0 () T O T_RXN () T_RXP () T_TXN () T_TXP () V.0 ize ocument Number Rev ustom Main oard ate: Monday, ugust, 00 heet 0 of

11 RV () () UO0# UO# UO# UO# PRR# V# FRM# RR# V TOP# PIRQ# PIRQ# PIRQ# V V R R R R (0) PK_MP PK_ RP RP 0PR-.K 0PR-.K RP 0PR-.K.K_.K_.K_.K_ K_PRNT# PK_F PIRQ# RQ# RQ0# PIRQF# UO# UO# UO# UO# POK# TRY# K_PRNT# RQ# RQ# PIRQ# IRY# PIRQ# V V T R _ R _ R _ RV PIRQ# PIRQ# PIRQ# PIRQ# RQ0# RQ# RQ# RQ# NT0# NT# NT# PIRQ# PIRQF# PIRQ# K_PRNT# T PI_RT# RR# PRR# IRY# V# FRM# POK# TOP# TRY# T PI_PTRT# PK_MP_R PK R PK_F_R T IX PK-M (PI,U,NVRM) H0 N J 0 H 0 0 M M F M0 M J K F0 K M J K F J0 F M H J0 H H F M F K F H K K 0 H F M N P P P P U /0# /# /# /# PIRQ# PIRQ# PIRQ# PIRQ# PIRT# RR# PRR# PI RQ0# RQ# / PIO0 RQ# / PIO RQ# / PIO NT0# NT# / PIO NT# / PIO NT# / PIO PIRQ# / PIO PIRQF# / PIO PIRQ# / PIO PIRQH# / PIO IRY# PR V# FRM# POK# TOP# TRY# PM# PTRT# KOUT_PI0 KOUT_PI KOUT_PI KOUT_PI KOUT_PI IbexPeak-M( v0.) NVRM U NV_#0 NV_# NV_# NV_# NV_Q0 NV_Q NV_Q0 / NV_IO0 NV_Q / NV_IO NV_Q / NV_IO NV_Q / NV_IO NV_Q / NV_IO NV_Q / NV_IO NV_Q / NV_IO NV_Q / NV_IO NV_Q / NV_IO NV_Q / NV_IO NV_Q0 / NV_IO0 NV_Q / NV_IO NV_Q / NV_IO NV_Q / NV_IO NV_Q / NV_IO NV_Q / NV_IO NV_ NV_ NV_ROMP NV_R# NV_WR#0_R# NV_WR#_R# NV_W#_K0 NV_W#_K UP0N UP0P UPN UPP UPN UPP UPN UPP UPN UPP UPN UPP UPN UPP UPN UPP UPN UPP UPN UPP UP0N UP0P UPN UPP UPN UPP UPN UPP URI# URI O0# / PIO O# / PIO0 O# / PIO O# / PIO O# / PIO O# / PIO O# / PIO0 O# / PIO Y P V P P T T V J J Y U V Y Y V F H J N0 P0 J0 0 F M N H J F H M N J F F T NV_ NV_:MI termination voltage. Weak internal pull-up. o not pull low (P/H UN, N) U_I UO0# UO# UO# UO# UO# UO# UO# UO# T R UP0- () UP0 () UP- () UP () UP- () UP () UP- () UP () UP- (0) UP (0) T U Port0 U Port ocking U xpress ard U Port UP- () UP () Finger Printer UP- () UP () amera UP0- () UP0 () WWN UP- () UP () Felica UP- () UP () WIMX UP- () UP () T./F_ UO0# () UO# () UO# (0) WN () PI_RXN ard () PI_RXP Reader () PI_TXN () PI_TXP N ocking an xpress ard () () () PI_RQ_WN# WN K_PI_WN# K_PI_WN ocking N () K_PI_KN# () K_PI_KN ard Reader /0 move KN to KOUT_PI RP () K_PI_R# 0X K_PI_R#_R () K_PI_R K_PI_R_R xpress ard () K_PI_XPR_R# () K_PI_XPR_R () N () K_PI_N# () K_PI_N () PI_RXN () PI_RXP () PI_TXN () PI_TXP () PI_RXN () PI_RXP () PI_TXN () PI_TXP () PI_RXN () PI_RXP () PI_TXN () PI_TXP () PI_RXN () PI_RXP () PI_TXN () PI_TXP () () PI_RQ_K_N# PI_RQ_RU# PI_RQ_XPRR# () R 0K/F_ RP RP RP RP RV_UX PI_RQ_N# 0 V Q N00 0X 0X 0.U_ 0.U_ 0.U_ 0.U_ 0.U_ 0.U_ 0.U_ 0.U_ 0.U_ 0.U_ R 0K/F_ PI_TXN_ PI_TXP_ PI_TXN_ PI_TXP_ PI_TXN_ PI_TXP_ PI_TXN_ PI_TXP_ PI_TXN_ PI_TXP_ PI_RQ_WN_PH# K_PI_WN#_R K_PI_WN_R PI_RQ_WN_PH# K_PI_KN#_R K_PI_KN_R PI_RQ_K_N# PI_RQ_RU# 0X K_PI_XPR_R#_R H K_PI_XPR_R_RH PI_RQ_XPRR# 0X K_PI_N#_R K_PI_N_R PI_RQ_N# PI_RQ P KRQ# IX PK-M (PI-,MU,K) 0 J0 F H W U0 T0 U V F H J W T U U V J J K K P M M U M M N M M M J0 J H K K P U PRN PRP PTN PTP PRN PRP PTN PTP PRN PRP PTN PTP PRN PRP PTN PTP PRN PRP PTN PTP PRN PRP PTN PTP PRN PRP PTN PTP PRN PRP PTN PTP KOUT_PI0N KOUT_PI0P IbexPeak-M( v0.) PI-* PIKRQ0# / PIO KOUT_PIN KOUT_PIP PIKRQ# / PIO KOUT_PIN KOUT_PIP PIKRQ# / PIO0 KOUT_PIN KOUT_PIP PIKRQ# / PIO KOUT_PIN KOUT_PIP PIKRQ# / PIO KOUT_PIN KOUT_PIP PIKRQ# / PIO KOUT_P N KOUT_P P P KRQ# / PIO Mus From K UFFR lock Flex P ontroller ink MRT# / PIO MK MT M0RT# / PIO0 M0K M0T MRT# / PIO MK / PIO MT / PIO _K _T _RT# P KRQ# / PIO KOUT_P N KOUT_P P KOUT_MI_N KOUT_MI_P KOUT_P_N / KOUT_K_N KOUT_P_P / KOUT_K_P KIN_MI_N KIN_MI_P KIN_K_N KIN_K_P KIN_OT_N KIN_OT_P KIN_T_N / K_N KIN_T_P / K_P RFKIN KIN_PIOOPK XT_IN XT_OUT XK_ROMP KOUTFX0 / PIO KOUTFX / PIO KOUTFX / PIO KOUTFX / PIO H J M 0 T T T H N N T T W P P F H H P J H H F T P T N0 PH_PIO M0_K M0_T PIO0 M_K_M0 M_T_M0 PIO M_K_M M_T_M P KRQ# K_PI_V#_R K_PI_V_R KOUT_MI#_R KOUT_MI_R PH_RFK_R# PH_RFK_R RP0 PK_F XT_IN XT_OUT XK_ROMP T0 T T T RP RP (TO ) KIN_MI_N () KIN_MI_P () KIN_K_N () KIN_K_P () KIN_OT N () KIN_OT P () KIN_T_N () KIN_T_P () M_PH () 0X 0X 0./F_ K_PI_V# () K_PI_V () KOUT_MI# () KOUT_MI () PH_RFK# () PH_RFK () V V.0 NT#/PIO : High : Internal pull-up ow : onfigures MI for I compatible operation (for servers only. Not for mobile/desktops) M U for 0 (OK/RM) PK_M/PT_M O-IMM0 ddress X 0h O-IMM 00 00X h IR h xpress ard V M0_K V M0_T Q N00W R R 0K/F_ PK_M (,,) 0K/F_ PT_M (,,) V V (,) (,) MT MK RV RV NT# R0 Q N00W *K/F_ R R swap override trap/top-lock wap Override jumper ow = swap override/top-lock NT# wap Override enabled High = efault M_T_M M_K_M.K/F_.K/F_ RV RV R *.K_ NV_ V. nti-theft Technology High = nable NV_ ow = isable NT0# R K/F_ NT# R K/F_ oot IO trap NT0# NT# oot IO ocation 0 0 * P 0 Reserved (NN) 0 PI PI V V R R0 R R R0 RV 0 0.U_ PI_PTRT# R 0K/F_ PI_RQ_XPRR# 0K/F_ PI_RQ_N# PH_PIO PIO0 M0_K M0_T M_K_M0 M_T_M0 PIO 0K/F_ PI_RQ_RU# 0K/F_ PI_RQ_K_N# 0K/F_ PI_RQ P KRQ# P KRQ# U TH0FU *0_ R R R R R0 R R R R R0 0K/F_ 0K/F_.K/F_.K/F_.K/F_.K/F_ 0K/F_ PTRT# (,,,) RV 0K/F_ V RV PIO If not used,.-k? to 0-k? pull-up to V. R I@M XT_OUT R QUNT OMPUTR PH /(PI) I@.P Y I@MHz/pF/0ppm I@.P ize ocument Number Rev ustom Main oard Monday, ugust, 00 ate: heet of. evel nvironment-related ubstances hould NVR be Used.. Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners.

12 () IHTNOR_INT# V_T_UP /0 delete I I0 I I PIO can not pull down T T_PR# () T_PR# High = trong (efault) I () I# IX PK-M (PIO,V_NTF,RV) PH_PIO0 PH_PIO I# IHTNOR_INT# () RMRT_NTR_PH T R 0K/F_ RV R0 0K/F_ V () FP_PR# () RIT_TMP_RP# V V V RV R R R R R R 0K/F_ RP W T I0 I I T *0K/F_ T 0K_ MI0 MI MI 0K/F_ 0K/F_ 0K/F_ 0KX RP IP(FH-0F-T-V-T/R()) V Y J F0 K T F Y H0 V M V V P H F F 0 F F H H H H J J J J J J0 J J UF MUY# / PIO0 TH / PIO TH / PIO TH / PIO PIO PIO INT. HM PI rom M INT. HM PI rom M HM PI rom M(Hynix) HM PI rom M(amsung) V MI N_PHY_PWR_TR / PIO PIO TP / PIO TH0 / PIO OK / PIO PIO PIO PIO TP_PI# / PIO TKRQ# / PIO TP / PIO TP / PIO O / PIO TOUT0 / PIO PIKRQ# / PIO PIKRQ# / PIO TOUT / PIO TP / PIO PIO V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_0 V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_0 V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_ V_NTF_0 V_NTF_ IbexPeak-M( v0.) KX NTF PU R0 R0 RV KOUT_PIN KOUT_PIP KOUT_PIN KOUT_PIP 0T KOUT_K0_N / KOUT_PIN KOUT_K0_P / KOUT_PIP PI RIN# PROPWR THRMTRIP# TP TP TP TP TP TP TP TP TP TP0 TP TP TP TP TP TP TP TP TP N_ N_ N_ N_ N_ INIT_V# TP MI0 MI MI M I U R0 *0K/F_ MI R0 H H F F M M W Y Y V V F M N J K K M N M0 N0 H T P 0 T0 R_K_PU_K# R_K_PU_K RIN# PH_THRMTRIP#_R T0 T PIO 0, PIO Weak internal pull-up. o not pull low. ampled at rising edge of RMRT# PIO Intel M rypto Transport ayer ecurity (T) cipher suite weak internal pull-down of 0 K which is enabled when PWROK is low. ow : with no confidentiality High : with confidentiality PIO PIO has internal pull up and control VRM. High : nable VRM(ee H_YN) ow : isable VRM(P VR=.0) PIO If not used,.-k to 0-k pull-up to V. PIO If not used,.-k to 0-k pull-up to V. QI P/N M000 M0000 M000 M000 I@0K/F_ *0K/F_ T0 () RP H_PI () RIN# () H_PUPWR () R _ IHTNOR_INT# I# T0 RIN# T_PR# K_PU_K# () K_PU_K () H_THRMTRIP# () R *0K/F_ MI R 0K/F_ PH_PIO R0 0K/F_ PH_PIO0 R0 0K/F_. evel nvironment-related ubstances hould NVR be Used.. Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners. 0X R0 R0 R R R00 V.0 R _ 0K/F_ 0K/F_ 0K/F_ 0K/F_ 0K/F_ V V V RV UI Y V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] 0 V[] V[] 0 V[] V[] V[] V[] V[] V[0] 0 V[] V[] V[] V[] V[] V[] V[] 0 V[] V[] V[0] H V[] V[] V[] V[] V[] V[] 0 V[] V[] 0 V[] V[00] V[0] V[0] V[0] V[0] 0 V[0] V[0] V[0] F V[0] F V[0] F V[0] V[] V[] V[] 0 V[] H V[] H V[] H V[] H V[] H V[] H V[0] H V[] H V[] H V[] H V[] V[] 0 V[] V[] V[] V[] 0 V[0] V[] 0 V[] V[] V[] V[] V[] V[] F F 0 0 F H H0 H0 H H H V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[00] V[0] V[0] V[0] V[0] V[0] V[0] V[0] V[0] V[0] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] IbexPeak-M( v0.) H H J K K K K 0 M M M0 N M M M M M M M N P P P0 P P P P P R R T T T T T T U0 U U U P V P V V0 V V0 V V V V V V V V V V V V V W W Y Y Y Y Y Y Y0 Y Y Y Y Y P Y Y Y P T T Y T M T M K K V UH V[0] 0 M U F Y H U F P N F F F F F H H H H H V H H H J J J0 J J J J J J T J K N K K K K M V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[00] V[0] V[0] V[0] V[0] V[0] V[0] V[0] V[0] V[0] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] V[] V[0] V[] V[] V[] V[] V[] V[] V[] V[] IbexPeak-M( v0.) K0 K K K K K K K K K K M M0 M M M M M0 M M M M M M M U0 M V M M 0 0 N N0 N P P P P P P R R T H T T T T T V V V0 V V0 V V V V V V V W W W F W W W0 W Y Y Y QUNT OMPUTR PH /(PIO) ize ocument Number Rev ustom Main oard ate: Tuesday, eptember 0, 00 heet of

13 Place near,v VK[..], VTP[..], VPXP, VFIP can remove /. (m) (m) (m) (m) traping V. or V. High : V. ow : V. (Internal pull ow) H_YN nable/isable internal VRM VVRM[..]. PIO High : nable ow : isable (Internal pull High) (<m) (<m) (<m) (0.m) (0m) (.) (m) (m) (m) (m) (m) (m) (m) (0m) (m) (.0) (m) (.) (m) IX PK-M (POWR) (m) (m) (<m) (m) (m) (.V) (.V) (.0V) (0.V) elete R elete R elete R0 PH /(POWR) Tuesday, eptember 0, 00 Main oard ize ocument Number Rev ate: heet of QUNT OMPUTR V_PH_PT V_PH_PU RV V_VRF PH_VK PH_VTP V._VTX_V V_V PH_VPXP V_VV PH_VFIP V.0_PH_VP V_PH_PRT V.0_PH_VP RV_VRFU RV_ON (,) V.0 RV V.0 V.0 V V.0 V.0 V.0 V.0 V RV VRT V. RV RV V V.0 V V V. V.0 V.0 VPU VPU VPU V.0_PH_IO V V. V. V. V.0 V V V.0 V V V.0 V. V.0 V.0 M00NJ(0uH/00m/0.) U/.V/XR_ 0 U/.V/XR_ 0U/.V//R=/H. U/.V/XR_ 0U/.V//R=/H. 0.U_ R0 0_ 0 0.U_ POWR T U lock and Miscellaneous H PU PI/PIO/P RT PI/PIO/P UJ IbexPeak-M( v0.) Y0 F F 0 U V F0 F V V V Y Y Y K J M N P U F F H H J J M M N N P P U U U V 0 H J F H0 0 F H T0 Y F H F F U P P V F F H H V K K Y Y V V Y P U U0 U V V Y Y T U PUYP VM[] VM[] VM[] VM[] VM[] VUH VU_[] VIO[] VIO[] VIO[] VIO[] VM[] VM[] VM[] VM[0] VM[] VM[] VRF V_[] V_[] V_[0] V_[] V_[] V_[] VRT VU_[] VU_[] VU_[] VU_[] VU_[] VU_[] VU_[] VU_[0] VU_[] VU_[] VU_[] VU_[] VU_[] VU_[] VU_[] VU_[] VU_[] VU_[0] VU_[] VU_[] VU_[] VU_[] VU_[] VU_[] VU_[] VU_[] VU_[] VIO[] VIO[0] VIO[0] VP[] VP[] VIO[] VRF_U VIO[] VIO[] VIO[] VIO[] VIO[] V_[] VIO[] VVRM[] PU VIO[] VIO[] VN[] VN[] VP[] VP[] VVRM[] VK[] VK[] PRT VIO[] VM[] VIO[] VIO[] PT VTP[] VTP[] VM[] VM[] VM[] VM[] V_[] V_[] V_[] VU_[] VU_[0] VU_[] VU_[] VIO[] VIO[] VIO[] VIO[] V_PU_IO[] V_PU_IO[] 0 0.U_ 0.U_ 0.U_ 0.U_ 0.U_ R0 00/F_ 0.U_ Q N00 M00NJ(0uH/00m/0.) 0U/.V/XR_ 0 U/.V/XR_ 0.0u_ U/.V/XR_ 0.U_ U/.V/XR_ 0.U_ 0 0U/.V/XR_ R0V-0 0.U_ 0U/.V/XR_ R0V-0 *U/.V/XR_ 0 *U/.V/XR_ Q N00 R M_ R 0K/F_ Q TU 0.U_ 0U/.V/XR_ I@0.uH_ I@0.U_/@0_ R 0_ U/.V/XR_ U/.V/XR_ U/.V/XR_ Q N00K-T- 0.U_ R *0_ MPN U/.V/XR_ U/.V/XR_ 0 U/.V/XR_ I@0.0u_/@0_ 0 U/.V/XR_ 0.U_ 0.U_ I@0.0u_ R 0_ U/.V/XR_ 0.U_ 0.U_ 0 0U/.V/XR_ 0.U_ U/.V/XR_ R I@0_ U/.V/XR_ 0.U_ U/.V_ 0.U_ 0 U/.V/XR_ I@0U/.V/XR_ 0 0.U_ 00 U/.V/XR_ 0 0.U_ U/.V/XR_ 0.U_ 0 U/.V/XR_ 0.U_ POWR V OR MI PI * RT V FI NN / PI HVMO U IbexPeak-M( v0.) F F F0 F H H H0 H J0 J K K0 N N N N N0 N T T U U V V W W H J J 0 P P H T T J J K K M M K T T F H F M N M M P P K M M T U N0 N VOR[] VOR[] VOR[] VOR[] VOR[] VOR[] VOR[] VOR[] VOR[] VOR[0] VOR[] VOR[] VOR[] VOR[] VOR[] VPNN[] VPNN[] VIO[] VIO[] VIO[] VIO[0] VIO[] VIO[] VIO[] VIO[] VIO[] VIO[] VIO[] VIO[] VIO[] VIO[0] VIO[] VIO[] VIO[] VIO[] VIO[] VIO[] VIO[] VIO[] VIO[] VIO[0] VIO[] VIO[] VIO[] VIO[] VIO[] V[] V[] VTX_V[] VTX_V[] VV VVRM[] VVRM[] VPXP VFIP VPNN[] VPNN[] VPNN[] VPNN[] VIO[] VTX_V[] VTX_V[] V_[] V_V V_[] VIO[] V_[] V_[] V_[] V_[] VM_[] VM_[] VM_[] VM_[] VPNN[] VPNN[] VPNN[] VMI[] VMI[] VIO[] VIO[] 0.U_ 0U/.V/XR_ 0.U_ 0 0.U_

14 Place these aps near o-imm0.. evel nvironment-related ubstances hould NVR be Used.. Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners. Place these aps near o-imm. MMORY THRM NOR Themal I ddress PH MU Max.. Max.. (Max. 0.) (Max. 0.) (H=mm) (H=mm) 00 0 Nvidia raphics Thermal TP0 Write TP0 Read X TO TFN(WH/RH) TO TFN(lert) xt.raphics Thermal (M-) MT/MK: RM Thermal () H -ensor WWN Thermal () X Philips P 00 0 elete R,R0,R,R R IMM-0 ustom Monday, ugust, 00 Main oard ize ocument Number Rev ate: heet of QUNT OMPUTR PT_M PK_M MVRF_MH MVRF_MH MVRF_MH MVRF_MH PK_M PT_M MVRF_MH M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q0 M Q0 M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q M Q0 M Q0 M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q0 M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q M Q0 M Q0 M Q M Q M Q M Q M Q M Q M M M M M M 0 M M 0 M M M M M M M M M 0 M M M M M M M M M 0 M M M M M M M Q# M M M M M M M Q# M Q0 M Q M M M Q M Q M Q M Q# M Q# M M M Q# M Q M Q# M M M M M Q# M Q M Q M M0 M Q#0 M M M Q# M Q# M Q# M M M Q# M Q# M Q M Q# M Q M Q#0 M Q M Q# M M M Q M M0 M M M Q0 M M M Q M Q M Q M M M M PM_XTT#0 () RMRT# () PM_XTT# () RMRT# () PK_M (,,) PT_M (,,) MVRF_MH () MT (,) MK (,) KMT (,,0) KMK (,,0) KMK (,,0) KMT (,,0) M Q[:0] () M Q[:0] () M # () M #0 () M # () M # () M K0 () M K0# () M K () M K# () M K0 () M K () M # () M R# () M W# () M [:0] () M #0 () M K () M K0 () M K0# () M # () M #0 () M R# () M K () M K0 () M [:0] () M # () M # () M #0 () M W# () M # () M K# () M OT0 () M OT () M M[:0] () M Q[:0] () M Q#[:0] () M OT0 () M M[:0] () M OT () M Q[:0] () M Q#[:0] ().VU V VTT_MM VTT_MM V VTT_MM.VU VTT_MM.VU.VU.VU V V V V V V 0 0P_ 0.U_ 0U/.V/XR_ 0U/.V/XR_ 0.U_ 0.U_ 0.U_ 0U/.V/XR_ 0U/.V/XR_ 0.U_ 0U/.V/XR_ 0U/.V/XR_ 0.U_ 0U/.V/XR_ 0.U_ U/.V/XR_ 0U/.V/XR_ 0.U_ R 0K/F_ 0 0U/.V/XR_ 0.U_ 0U/.V/XR_ R 0K/F_ U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ *0U/.V//R=/H. 0 0.U_ 0U/.V/XR_ 0U/.V/XR_ R 0K/F_ U/.V/XR_ 0U/.V/XR_ 0U/.V/XR_ R 0K/F_ U/.V/XR_ 0U/.V/XR_ U *-P-F MT Vs 0 MK O.. Q N00 P-XXXX R RM O-IMM (0P) ON R-IMM /P /# 0 0# # K0 K0# K K# K0 K # R# W# 0 OT0 OT M0 M M M M M M M Q0 Q Q Q Q Q Q Q Q#0 Q# Q# Q# Q# Q# V V V V V V V V V V0 V V V V V V V V VP N N NTT VNT# RT# VRF_Q VRF_ V V V V V V V V V V0 V V V V V Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V VTT VTT Q# Q# U/.V/XR_ P-XXXX R RM O-IMM (0P) ON R-IMM /P /# 0 0# # K0 K0# K K# K0 K # R# W# 0 OT0 OT M0 M M M M M M M Q0 Q Q Q Q Q Q Q Q#0 Q# Q# Q# Q# Q# V V V V V V V V V V0 V V V V V V V V VP N N NTT VNT# RT# VRF_Q VRF_ V V V V V V V V V V0 V V V V V Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q Q Q Q Q Q Q Q0 Q Q Q V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V V V V V V V V V0 V V VTT VTT Q# Q# Q N00 0 U/.V/XR_ U/.V/XR_ U/.V/XR_.U/.V/XR_ 0.U/.V/XR_.U/.V/XR_.U/.V/XR_.U/.V_.U/.V_ 0.U_ 0.U_ 0.U_ 0.U_ 0.U_ R 0/F_ R 0K/F_ 0U/.V/XR_ R 0/F_ R 0K/F_ *0U/.V//R=/H. 0.U_

15 RT ON 0.U_ 0.U_ R R RT-R.K/F_.K/F_ R R0 U.K/F_.K/F_ RT- RT- POY WITH 0. F RT- RT-H V HPT RT-V elete 0, FI 00YR 0 RT-K PY M0P0TF RT-K (,,0) 0 IN OUT RT- (,,0) IN OUT R *0_ For MI V (,,0) HYN VYN R /F_ RT-H 0.U_ YN_IN YN_OUT R /F_ RT-V YN_IN YN_OUT V RT_R RT_ RT_ 0 V 0.U/.V_ R 0/F_ *0P_ YP V_ R 0/F_ V V_VIO M00-0/IPZ *0P_ V_YN VIO_ VIO_ VIO_ R 0/F_ V *0P_ K00 K00 K00 HPT 0P_ 0P_ 0P_ V P_ P_ RT-R RT- RT- V *0.U/0V/XR N# Foxconn () RT_N N_N# (,) K_V_N# () Q MVHTFT U PTU R 00K/F_ R 0K_ N_N# K_V_N# _N# ocking_insert# RT_N V U0 Without ocking 0 M RT no Plug H H V O_R () 0.U_ [ ehavior] M RT Plug in H => H => H O_ () RT_N: H=> or =>H detect which one is inserting M RT plug out => H H H => O_ () ocking_insert#: H=> detect which one is inserting (,0) RT_R O_VYN () [RT W] With ocking When ocking_insert# is low switching R to ocking RT (,0) RT_ [N_N#] ll no Plug H RT_R (,0) RT_ Input for RT pin0, assert to high when RT M RT Plug in H => => H RT_ insert[no Request] (,0) VYN M RT plug out => H H => RT_ 0 (,) OK_INRT# OK VI Plug in H => H H => IN VYN OK VI Plug out => H H => H IN: N 0--> OK RT Plug H => H H => --> PIV0 OK RT/VI Plug => H H => H U amera Power RP RK0 () R_RK0 I@0X U/.V/XR_ RK0- () R_RK0- U (m) RP0 ROUT () R_ROUT I@0X ROUT- VU IN OUT _PWR () R_ROUT- isplay On U/.V/XR_ RP ROUT () R_ROUT I@0X 0.U_ ROUT- () R_ROUT- 0.U_ (0) V_KN V RP ROUT0 () R_ROUT0 I@0X V ROUT0- (,,,) UON N F () R_ROUT0- R 00K/F_ U V: MX ON R I@0_ I rush = /0.ms () _KT_N U RK0 IPON I = 0. V 0 RP 0 () RK0- () N_RK0- () IP_ON TH0FU RP ROUT () ROUT- () N_ROUT- RP ROUT () R ROUT- () N_ROUT- ROUT0-00K/F_ RP ROUT0 () N_ROUT0 ROUT0- () N_ROUT0- N V enable V U V ROUT- ROUT 0 0.U_ 0 IN OUT ROUT- ROUT IN MI_K *0P_ (,0) V_VN 0.U_ 0.0U_ RK0- MI_T *0P_ ON/OFF 0.U_.U/.V/XR_ RK0 (0) VRY_ R0 0K/F_ T0IU--T R I@0_ () _KTT R IPON R.K_ 00K/F_ 0P_ 0 F 0 F POY WITH(000.NRHF) 0.U/V_ V:.W QUNT P *MF-0-000I- elete () UP- OMPUTR amera () UP _PWR MI_K () MI_K RT/V MI MI_T () MI_T ize ocument Number Rev V ustom U/.V/XR_.evel nvironment-related ubstances hould NVR be Used. Main oard V-I(00-R0N-0R)0pin.Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners. ate: Thursday, eptember 0, 00 heet of

16 VU WN PI N PI xpress ard () PI_TXP () PI_TXN () PI_RXP () PI_RXN () K_PI_WN () K_PI_WN# () PI_TXP () PI_TXN () PI_RXP () PI_RXN () K_PI_N () K_PI_N# () PI_RXN () PI_RXP () PI_TXN () PI_TXP () WN_RF_ON# VU F (.) POY WITH(00WR). () PI_RQ_WN# () T_H_K_INT () H_T_INT (,) WK# (,,) PT_M (,,) PK_M V () 0U/.V/XR_ 0 0U/.V/XR_ (0,) P_FRM# F POY WITH. () 0 0 0U/.V/XR_ 0U/.V/XR_ N oard T ON WWN(XK000Y) RF_# WWN_N UP0 UP0- UP UP- UO0# P# PWR# VPU NWON# VPU RO P NUM UP0 () UP0- () UP () UP- () UP0 () UP0- () UP () UP- () UP- () UP () UO# () PK_MP () RF_# () WWN_N () WWN_U () PTRT# (,,,) UO0# () PI_RQ_N# () P_0 (0,) P_ (0,) P_ (0,) P_ (0,) P# () PWR# () NWON# () WWN U WIMX U KMT (,,0) KMK (,,0) PR#0 () PR# () PR# () U PORT0 U PORT xpress ard K_PI_XPR_R () K_PI_XPR_R# () ebug Port RO () P () NUM () PI_RQ_XPRR# () V () # () # () # V VPU V V KMT KMK F R R R R R R R FI 00YR PY M0P0TF POY WITH 0. K/F_ K/F_ K/F_ 0K_ 0K_ *0K_ 0K_ *0P_ *0P_ M/ to Function oard (FF Type) (0.m) (,,0) KMT (,,0) KMK () IHTNOR_INT# 0U/.V/XR_ V_IHTNOR ON Function RF_# elete F0 (.) V. 0 0U/.V/XR_ Q0 PTU Q PTU (.) VWN WWN_N 0 0U/.V/XR_ T_ () () RV_UX 0U/.V/XR_ 0U/.V/XR_ ON 0 0 WWN(--) / : dd Q0 for WWN WWN Power VPU R0 0K/F_ VPU R0 0K_ RV Q NTMF (. Peak,. normal) VWN WN Power VPU R 0K/F_ VPU R0 0K_ RV Q NTMF ( Peak, 0. normal) RV_UX () WWN_U Q PTU Q N00 WWNV *0.0U_ Q N00 () WN_PWN Q PTU Q0 N00 WNV *0.0U_ Q N00 R 00/F_ R0 00/F_ QUNT OMPUTR N oard/ Function oard ize ocument Number Rev Main oard ate: Thursday, eptember 0, 00 heet of

17 ... I/O ddress R-0 Index ata * 0 F F 0 0 (HFH, HF) (HFH, HF) 0 XOR-TR TT HM: HM(If = 0 nable share host IO memory) OK_RT# : R0 T?: R () T0 (0) KMI# () I# () RIN# V () RMRT# OK_INRT# OK_PWRON OK_PWROK OK_RT# 0ms VPU () I# () IH_UK R P_ R0 RMRT# _KX R (0,) P_0 (0,) P_ (0,) P_ (0,) P_ () PK_ (0,) P_FRM# R0V-0 (0) IRQ_RIRQ R0V-0 R0V-0 VPU 0K/F_ R0V-0 Y.K/0PPM R 0K/F_ () TT () TK () OK_JT () OK_PWRON () # P_ () IN R R R.K_ R0 V F_I F_0 F_K F_0# (0) MX0 (0) MX (0) MX (0) MX (0) MX (0) MX (0) MX (0) MX (0) MY0 (0) MY (0) MY (0) MY (0) MY (0) MY (0) MY (0) MY (0) MY (0) MY (0) MY0 (0) MY (0) MY (0) MY (0) MY (0) MY () PROHOT () # () # (,) RV_ON K_.K/F_ TT TK *00K_ *0_ HO# IN _KX 0M KX # 0U/.V/XR_ 0.U_ 0.U_ 0.U_ 0.U_ 0.U_ U_ U V 0 RT# K FRM# 0 RIRQ MI#/PIO I#/PIO KRT# VPU PIO/PWURQ# F_I F_0 F_K F_0# KIN0 KIN KIN KIN KIN KIN KIN KIN WP MN P-NQ VPU_IT_V PI P KOUT0/JNK# KOUT/TK KOUT/TM KOUT/TI KOUT/JN0# KOUT/TO KOUT/RY# KOUT KOUT KOUT KOUT0 KOUT KOUT/PIO KOUT/PIO KOUT/PIO KOUT/PIO/XOR_OUT KOUT/PIO0 PT/PIO PK/PIO PT/PIO PK/PIO PT/PIO PK/PIO T/PIO0 KOUT/PIO T/PIO T/PIO0 /PIO0 KX/KKIN KX V V V V V K/ P/ 0 V / / PWM PIO WP 0 0/PI0 /PI /PI /PI /PIO0 /PIO0 0/PI /PI /PI /PI _PWM0/PIO _PWM/PIO _PWM/PIO _PWM/PIO H_PWM/PIO _PWM/PIO _PWM/PIO F_PWM/PIO0 PIO0 PIO0 0 PIO /PIO /PIO 0 /PIO0 PP#/PIO0 KRUN#/PIO /PIO /PIO PIO/HPIO0 PIO PIO T/PIO TK/PIO TM/PIO TI/PIO TRT#/PIO /PIO T/PIO TO/PIO0 RY#/PIO /PIO KOUT/PIO PIO0 PIO PIO PIO/TRI# OUT_R/PIO/R PIO/R0 IN_R/PIO 0 0U/.V/XR_ PIO PI_I/PIO PI_O/PIO/HM PI_K/PIO PIO PIO/ PIO/ VRF V_POR# VORF MTV IN_IN PM_P_# MPWROK O_JT MK MT R 0_ O_M# () Z_PIO0 Z_PIO0 () FN-I (0) OK_PWROK () NWON# () PM_P_# PM_P_# VRON HWP INT/XT# MTV () IN_IN () T_PR# () VFN (0) H_INTRRUPT () RIT_TMP_RP# () I_T () PM_P_# () TT_RT# () UON (,,,) U_PWR_N_K () PM_P_# () PM_P_# () VRON () WIR_W# () WWN_N () VO_MUT () HN# () INT/XT# () WN_RF_ON# () T_PN# () /- () R 0_ 00_ () 00_K () 0.U_ U/.V/XR_ (,) MPWROK WN_PWN () K_KIHT (0) OK_INRT# (,) PRNT () IP_ON () P# () T () PWR# () MINON (,,,,) O_JT () O_PWN () MK (,) MT (,) H_OK_N# (0) RT_N () WWN_U () INT/XT# PM_P_# VRON PM_P_# Z_PIO0 PM_P_# O_JT PM_Y_PWR H_UNO () / change IO to M MYT WXVI. evel nvironment-related ubstances hould NVR be Used. KZP0N0. Purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners. 0.0U_ OK_RT# () OK_INU# () PI_KRUN# () 0 MK_T MK_T () MT_T MT_T () If O support M,Need Mount R R.K_ V POWR ON RT 0.U_ 0.0U_ VPU VPU VPU R 00K/F_ R0 0_ *0.0u_ / Winbond WQVI M F_0# F_I R0V-0 R0 MPWROK R 0_ R R RV NWON# () TK TT (~ support : Q,R mount,r no mount) (0 suppoert : Q,R no mount,r mount) VPU MK MT 0K/F_ 0K/F_ 0K/F_ /0 ddr0 RV IN_OK () R 00K/F_ R00 R R R R R R0 U / V O /HO /WP K I WQVI () HWP K/F_ K/F_ K/F_ K/F_.K_ K/F_ 00K_ Y U NZ V N VPU VPU F_K F_0 () V_RT# 0.U_ VPU (,) _POO (,) _PWR () PM_Y_PWR () R_PWR () XT_INT_V_PWR. *R0V-0 HWP *R0V-0 MPWROK R0V-0 RMRT# U V 0 O_I/O0 I/O I/O I/O I/O I/O I/O I/O RT PPW 0 RV R00 R0 R0 R0 R R R0. U0 NZ0PX 0.U_ HWP R 0_ R 0K/F_ R R VPU 0K/F_ ate: Wednesday, eptember 0, 00 heet of.k_ V.K_.K_ MK.K_ MT.K_ MK_T.K_ MT_T can not use W00PT IN / add R QUNT OMPUTR NWON# MPWROK HO# R0V-0 PM_P_# R0V-0 # 0K/F_ RV RMRT_NTR () PR#0 () PR# () PR# () NUM () P () RO () N_N# (,) 0K/F_ VPU VPU R *0K/F_ 0.U/0V/XR_ 0 V RV U TH0FU Q PTU U/.V/XR_ U V VR_PWROO () VPU (00m) VPU WP & FH ize ocument Number Rev Main oard R0V-0 R0V-0 W00PT R0V-0 R0V-0 0.U/0V/XR_ Q PTU VOUT HN -0 T R 00K/F_ R0 K/F_ R0 M_ 0 0U/.V/XR_

18 () O_R () O_ () O_ OK_PWROK OK_INU# OK_PWRON OK_RT# OK_JT HMI_OK_HP_XT R 0_ R 0_ R 0_ R R R R R R *00K/F_ 0P_ 00K/F_ 00K/F_ 00K/F_ 00K/F_ 00K/F_ VU 0P_ O_R O_ O_ 0P_ () UP- () UP (,,,) UON (,,0) HYN () O_VYN (,,0) (,,0) (0) P_XT_TR_T (0) P_XT_TR_K () OK_INU# () K_V_N# (0) HMI_OK_HP_XT (,) N_N# () OK_PWRON () OK_RT# () OK_PWROK () OK_JT V 0 P00-/H. 0P_ O_R O_ O_ OK_INU# HMI_OK_HP_XT OK_PWRON OK_RT# OK_PWROK OK_JT OK_INRT VIN () 0P_ V ocking R0 ON 0K_ OK_INRT Q OK_INRT# (,) PTU _OVP_ () P_XT_K# (0) P_XT_K (0) 0 0 P_XT_T# (0) P_XT_T (0) P_XT_T0 (0) 0 0 P_XT_T0# (0) P_XT_T (0) P_XT_T# (0) OK_INRT#: No ocking station insert 0 0 PI_RXN () 0: ocking station insert PI_RXP () /, delete PI_TXN () PI_TXP () 0 0 K_PI_KN# () K_PI_KN () OK_INRT IN_OK () 0 OK_WK# 0 PI_RQ_K_N# () R 0 00K_ 0 OK_WK# WK# (,) 0 0 OKIN Q N00K T/P to M/ (FP) HO h-tcbcd0p HO H-0PT HO H-0PT HO H-0PT HO H-0PT HO h-tcbcd0p HO H-0PT HO H-T0P POY WITH(00YR) 0. F V (00m) VU_TP () FP_PR# TPK () TK TPT () TT UP- () UP- F.P UP () UP UP- () UP- Felica UP () UP (m) 0 ON 0 hell hell TP(-0) VU 0 0U/.V/XR_ U0 IN F IN OUT OUT ON T MT(HPU) / Protect for TP FP (urrent imit :.m ~.m) VU_TP R.K/F_ U/.V/XR_ HO HO0 H-P H-P HO HO H-TPh-tsbsdx0p HO HO HO0 H-TXP H-TXPH-0PT HO H-P HO H-TP HO HO HO HO H-UXP H-TP H-TP H-0P HO H-0P HO h-cdpt V 0U/.V/XR_ () TT_RT# VPU VPU R *00K_ U PM R K/F_ RT V V R0V-0 R *0K/F_ PIO K NV VPU R0 0K/F_ R.K/F_ *000P_ V V MI 000P_ 000P_ VU VU.VU 000P_ 0 0.U_ 000P_.VU V._PU 000P_ V VU 000P_ 000P_ 000P_ V VU 000P_ 000P_ 000P_ V V 000P_ 0 000P_ R 000P_ V V.0.K/F_ 000P_ 0 000P_ V 000P_ 000P_ V_OR V.0 TT_I () 000P_ 000P_ V_OR VU QUNT 00_ () 000P_ 000P_.VU V.0 V OMPUTR 00_K () 0 000P_ 0 000P_.VU V. *000P_ 000P_ ocking/tpm/00.vu ize ocument Number Rev.evel nvironment-related ubstances hould NVR be Used. Main oard.purchase ink, paint, wire rods, and Molding resins only from the business Partners that ony approves as reen Partners. ate: Thursday, eptember 0, 00 heet of 0.U_ 0.U_ 000P_ 000P_ V 000P_ HO h-cdn HO H-oxdxn

QUANTA COMPUTER. Page Title of schematic page Rev. Date

QUANTA COMPUTER. Page Title of schematic page Rev. Date Page of schematic page Rev. ate 0 0 0 0 0 0 0 0 0 0 0 Index lock iagram hange ist OK NRTOR PROSSOR /(MI&HOST&PI) PROSSOR /(R) PROSSOR /(POWR) PROSSOR /() PH / (MI&VIO) PH / (ST/P/zalia) PH / (PI/PI/K/US)

Διαβάστε περισσότερα

FOXCONN. Schematics Page Index (Title / Revision / Change Date) Title of Schematics Page. Project Code & Schematics Subject: PCB P/N:

FOXCONN. Schematics Page Index (Title / Revision / Change Date) Title of Schematics Page. Project Code & Schematics Subject: PCB P/N: Page 0 0 0 0 0 0 0 0 09 0 9 0 9 0 9 0 chematics Page Index ( / Revision / hange ate) of chematics Page Page chematics Page Index LOK IRM N (MI,PE,FI) N (LK,MI,JT) N (R) N (POWER) N (RPHI POWER) 9 N (N)

Διαβάστε περισσότερα

jqa=mêççìåíë=^âíáéåöéëéääëåü~ñí= =p~~êäêωåâéå= =déêã~åó

jqa=mêççìåíë=^âíáéåöéëéääëåü~ñí= =p~~êäêωåâéå= =déêã~åó L09 cloj=klk=tsvjmosopa jqa=mêççìåíë=^âíáéåöéëéääëåü~ñí= =p~~êäêωåâéå= =déêã~åó 4 16 27 38 49 60 71 82 93 P Éå Ñê ÇÉ áí dbq=ql=hklt=vlro=^mmif^k`b mo pbkq^qflk=ab=slqob=^mm^obfi ibokbk=pfb=feo=dboûq=hbkkbk

Διαβάστε περισσότερα

TUCANA Block Diagram SFF PCH KBC. Intel CPU INTEL LPC SYSTEM DC/DC RT8223 PROJECT CODE : 91.4KK PCB P/N : 48.4KK01.0SB REVISION : S0201-SB LCD

TUCANA Block Diagram SFF PCH KBC. Intel CPU INTEL LPC SYSTEM DC/DC RT8223 PROJECT CODE : 91.4KK PCB P/N : 48.4KK01.0SB REVISION : S0201-SB LCD TUN lock iagram lock enerator I9LV9KLFT Thermal ensor MT TOP V N OTTOM Int MI Line Out MI In PKR.W RIII 00 RIII 00 P TKUP H odec Realtek L9 Flash ROM M 9 L L L L L L 0 lot 0 lot ~ RIII hannel RIII hannel

Διαβάστε περισσότερα

Intel CPU. Penryn SV 3,4,5. FSB 800/1066MHz. Cantiga-PM. nvidia INTEGRATED GRAHPICS LVDS, CRT I/F. PCIE x 16 6,7,8,9,10,11 C-LINK INTEL ICH9-M

Intel CPU. Penryn SV 3,4,5. FSB 800/1066MHz. Cantiga-PM. nvidia INTEGRATED GRAHPICS LVDS, CRT I/F. PCIE x 16 6,7,8,9,10,11 C-LINK INTEL ICH9-M /MM M/M Pro/x RJ ONN RJ ONN LIN OUT MI IN INTRNL MI VIT lock iagram lock enerator ILPR RII /00 lot 0 RII /00 Realtek RT lot Realtek RTL0-R 0/00 MOM MOM X0-Z H UIO O X0-Z RII /00 hannel R II /00 hannel

Διαβάστε περισσότερα

2 HBU Intel UMA Block Diagram. Intel CPU. Penryn SV 3,4,5. FSB 800/1066MHz RGB CRT. Cantiga-GM/GL AGTL+ CPU I/F

2 HBU Intel UMA Block Diagram. Intel CPU. Penryn SV 3,4,5. FSB 800/1066MHz RGB CRT. Cantiga-GM/GL AGTL+ CPU I/F /MM M/M Pro/x RJ ONN RJ ONN LIN OUT MI IN INTRNL MI HU- Intel UM lock iagram lock enerator ILPR RII /00 lot 0 RII /00 Realtek RT lot Realtek RTL0T 0/00 MOM MOM X0-Z H UIO O X0-Z RII /00 hannel R II /00

Διαβάστε περισσότερα

STAR (Federer) 1.0 Page Modified: Thursday, March 18, :24:40

STAR (Federer) 1.0 Page Modified: Thursday, March 18, :24:40 0 -- OVER HEET 0 -- YTEM LOK RM 0 -- LOK MP 0 -- POWER MP 0 -- POWER EQUENY RM 0 -- POWER EQUENY TMN 0 -- MU MP 0 -- alpella (M,PE,F) 0 -- alpella (LK,M,JT) 0 -- alpella (R) -- alpella (POWER/N) -- alpella

Διαβάστε περισσότερα

Thermal Sensor LM26 5. Keyboard Light 12.1'' XGA LCD 19 LVDS CRT SELECTION RGB CRT USB 2.0 CH3 RICOH R5C847 IEEE1394 CONN. Cardbus + SD Card +

Thermal Sensor LM26 5. Keyboard Light 12.1'' XGA LCD 19 LVDS CRT SELECTION RGB CRT USB 2.0 CH3 RICOH R5C847 IEEE1394 CONN. Cardbus + SD Card + March ' Thermal ensor MX0 LM I us / M us us witch I HP OUT MI ONN for ali Int. MI for K- MI IN Mus UNUFFR R OIMM Normal ocket 00-PIN R OIMM UNUFFR R OIMM Reverse ocket T H OP MP MX99 9 H UIO O 9JP,, M

Διαβάστε περισσότερα

Spears Intel UMA Block Diagram

Spears Intel UMA Block Diagram pears Intel UM lock iagram 00/0/ PU / IL LK N ILPR Intel PU Merom M F:MHz/00MHz,, Project code :.W00.00 P P/N : 0 Revision : - INPUT OUTPUT TOUT _OR YTM / TP R RT RT INPUT OUTPUT Host U /MHz LV L TOUT

Διαβάστε περισσότερα

RSDW08 & RDDW08 series

RSDW08 & RDDW08 series /,, MODEL SELECTION TABLE INPUT ORDER NO. INPUT VOLTAGE (RANGE) NO LOAD INPUT CURRENT FULL LOAD VOLTAGE CURRENT EFFICIENCY (Typ.) CAPACITOR LOAD (MAX.) RSDW08F-03 344mA 3.3V 2000mA 80% 2000μF RSDW08F-05

Διαβάστε περισσότερα

Electrical Specifications at T AMB =25 C DC VOLTS (V) MAXIMUM POWER (dbm) DYNAMIC RANGE IP3 (dbm) (db) Output (1 db Comp.) at 2 f U. Typ.

Electrical Specifications at T AMB =25 C DC VOLTS (V) MAXIMUM POWER (dbm) DYNAMIC RANGE IP3 (dbm) (db) Output (1 db Comp.) at 2 f U. Typ. Surface Mount Monolithic Amplifiers High Directivity, 50Ω, 0.5 to 5.9 GHz Features 3V & 5V operation micro-miniature size.1"x.1" no external biasing circuit required internal DC blocking at RF input &

Διαβάστε περισσότερα

15W DIN Rail Type DC-DC Converter. DDR-15 series. File Name:DDR-15-SPEC

15W DIN Rail Type DC-DC Converter. DDR-15 series. File Name:DDR-15-SPEC DIN Rail Type DC-DC Converter ± : DIN Rail Type DC-DC Converter SPECIFICATION MODEL OUTPUT INPUT PROTECTION ENVIRONMENT SAFETY & EMC (Note 5) OTHERS DC VOLTAGE RATED CURRENT CURRENT RANGE RATED POWER RIPPLE

Διαβάστε περισσότερα

SERVICE MANUAL RE-2 PROJECTION TV CHASSIS. KP-41S5K RM-862 OIRT SCC-N62D-A KP-41S5R RM-862 Russian SCC-N62C-A KP-41S5U RM-862 UK SCC-N61B-A

SERVICE MANUAL RE-2 PROJECTION TV CHASSIS. KP-41S5K RM-862 OIRT SCC-N62D-A KP-41S5R RM-862 Russian SCC-N62C-A KP-41S5U RM-862 UK SCC-N61B-A SV MNU - SSS M MMN ST. SSS N. M MMN ST. SSS N......................... P-S M- P S-N- P-S M- rench S-N- P-S M- reek S-N- P-S M- T S-N- P-S M- ussian S-N- P-SU M- U S-N- MM Please file according to model

Διαβάστε περισσότερα

15W DIN Rail Type DC-DC Converter. DDR-15 s e r i e s. File Name:DDR-15-SPEC

15W DIN Rail Type DC-DC Converter. DDR-15 s e r i e s. File Name:DDR-15-SPEC DIN Rail Type DC-DC Converter ± : DIN Rail Type DC-DC Converter SPECIFICATION MODEL OUTPUT INPUT PROTECTION ENVIRONMENT SAFETY & EMC (Note 5) OTHERS NOTE DC VOLTAGE RATED CURRENT CURRENT RANGE RATED POWER

Διαβάστε περισσότερα

65W PWM Output LED Driver. IDLV-65 series. File Name:IDLV-65-SPEC

65W PWM Output LED Driver. IDLV-65 series. File Name:IDLV-65-SPEC ~ A File Name:IDLV65SPEC 07050 SPECIFICATION MODEL OUTPUT OTHERS NOTE DC VOLTAGE RATED CURRENT RATED POWER DIMMING RANGE VOLTAGE TOLERANCE PWM FREQUENCY (Typ.) SETUP TIME Note. AUXILIARY DC OUTPUT Note.

Διαβάστε περισσότερα

COMPONENTS LIST BASE COMPONENTS

COMPONENTS LIST BASE COMPONENTS ITLIN TEHNOLOGY grifo PPENIX : R SSEMLY The GP F can be ordered in two different mode: completely mounted, tested and ready to use or in assembly kit. In this final condition the user can directly use

Διαβάστε περισσότερα

DC-DC Constant Current Step-Down LED driver LDD-300L LDD-350L LDD-500L LDD-600L LDD-700L CURRENT RANGE

DC-DC Constant Current Step-Down LED driver LDD-300L LDD-350L LDD-500L LDD-600L LDD-700L CURRENT RANGE SPECIFICATION ORDER NO. LDD-00L LDD-0L LDD-00L LDD-00L LDD-700L CURRENT RANGE 00mA 0mA 00mA VOLTAGE RANGE Note. ~ VDC for LDD-00~700L/LW ; ~ 8VDC for LDD-00~700LS CURRENT ACCURACY (Typ.) ±% at VDC input

Διαβάστε περισσότερα

PROJECT : CHICAGO (For Intel Huron River Platform)

PROJECT : CHICAGO (For Intel Huron River Platform) PROJET : HO (For ntel Huron River Platform) 0 -- OVER HEET 0 -- YTEM LOK RM 0 -- LOK MP 0 -- POWER EQUENY RM 0 -- POWER MP 0 -- MU MP 0 -- lank 0 -- N/TT 0 -- PWR_HRE 0 -- PWR_V/.V -- PWR_VP -- PWR_.V/0.

Διαβάστε περισσότερα

LS01-15B09SS LS01-15B12SS LS01-15B15SS LS01-15B24SS LS03-15B03SR2S LS03-15B05SR2S LS03-15B09SR2S LS03-15B12SR2S LS03-15B15SR2S LS03-15B24SR2S

LS01-15B09SS LS01-15B12SS LS01-15B15SS LS01-15B24SS LS03-15B03SR2S LS03-15B05SR2S LS03-15B09SR2S LS03-15B12SR2S LS03-15B15SR2S LS03-15B24SR2S LS0 SS & LS0RS _ onverter. W SIP economic LS series.... W High performance & compact size series.... W ~0V wide input voltage LH series.... W 0 Low temperature & high reliability L0_LT series.... 00W LH

Διαβάστε περισσότερα

MOSFETs. MOSFETs. High Voltage MOSFET (THD Type) Max. Ratings R DS(ON) ( ) Q g (nc) Outline (Unit: mm) Type No.

MOSFETs. MOSFETs. High Voltage MOSFET (THD Type)   Max. Ratings R DS(ON) ( ) Q g (nc) Outline (Unit: mm) Type No. MOFETs High age MOFET (TH Type) Ratings R (ON) ( ) Q g (nc) BV I P (W) V I V KMB050N60P 60 50 1 0.018 0.022 10 25 32 10 KMB075N75P 75 75 190 0.013 0.017 10 37.5 85 10 KHB95NP 0 9.5 72 0.29 0.36 10 4.75

Διαβάστε περισσότερα

DC-DC Constant Current Step-Down LED driver LDD-300L LDD-350L LDD-500L LDD-600L LDD-700L CURRENT RANGE

DC-DC Constant Current Step-Down LED driver LDD-300L LDD-350L LDD-500L LDD-600L LDD-700L CURRENT RANGE SPECIFICATION ORDER NO. LDD-00L LDD-0L LDD-00L LDD-00L LDD-700L CURRENT RANGE 00mA 0mA 00mA 00mA VOLTAGE RANGE Note. ~ VDC for LDD-00~700L/LW ; ~ 8VDC for LDD-00~700LS CURRENT ACCURACY (Typ.) ±% at VDC

Διαβάστε περισσότερα

M p f(p, q) = (p + q) O(1)

M p f(p, q) = (p + q) O(1) l k M = E, I S = {S,..., S t } E S i = p i {,..., t} S S q S Y E q X S X Y = X Y I X S X Y = X Y I S q S q q p+q p q S q p i O q S pq p i O S 2 p q q p+q p q p+q p fp, q AM S O fp, q p + q p p+q p AM

Διαβάστε περισσότερα

ο ο 3 α. 3"* > ω > d καΐ 'Ενορία όλις ή Χώρί ^ 3 < KN < ^ < 13 > ο_ Μ ^~~ > > > > > Ο to X Η > ο_ ο Ο,2 Σχέδι Γλεγμα Ο Σ Ο Ζ < o w *< Χ χ Χ Χ < < < Ο

ο ο 3 α. 3* > ω > d καΐ 'Ενορία όλις ή Χώρί ^ 3 < KN < ^ < 13 > ο_ Μ ^~~ > > > > > Ο to X Η > ο_ ο Ο,2 Σχέδι Γλεγμα Ο Σ Ο Ζ < o w *< Χ χ Χ Χ < < < Ο 18 ρ * -sf. NO 1 D... 1: - ( ΰ ΐ - ι- *- 2 - UN _ ί=. r t ' \0 y «. _,2. "* co Ι». =; F S " 5 D 0 g H ', ( co* 5. «ΰ ' δ". o θ * * "ΰ 2 Ι o * "- 1 W co o -o1= to»g ι. *ΰ * Ε fc ΰ Ι.. L j to. Ι Q_ " 'T

Διαβάστε περισσότερα

65W PWM Output LED Driver. IDPV-65 series. File Name:IDPV-65-SPEC

65W PWM Output LED Driver. IDPV-65 series. File Name:IDPV-65-SPEC IDPV65 series ~ A File Name:IDPV65SPEC 07060 IDPV65 series SPECIFICATION MODEL OUTPUT OTHERS NOTE DC VOLTAGE RATED CURRENT RATED POWER DIMMING RANGE VOLTAGE TOLERANCE PWM FREQUENCY (Typ.) SETUP TIME Note.

Διαβάστε περισσότερα

SMD Transient Voltage Suppressors

SMD Transient Voltage Suppressors SMD Transient Suppressors Feature Full range from 0 to 22 series. form 4 to 60V RMS ; 5.5 to 85Vdc High surge current ability Bidirectional clamping, high energy Fast response time

Διαβάστε περισσότερα

INDEX HOESUNG COIL PARTS

INDEX HOESUNG COIL PARTS 1. Metal Molding High Current SMD Power Inductor PART NO DEMINSION(mm) Inductance Range Rated DC Current Page MMI 06518 SERIES 6.5 7.1 1.8 1.0uH ~ 4.7uH 9.8A ~ 5.0A 5 MMI 06524 SERIES 6.5 7.1 2.4 0.47uH

Διαβάστε περισσότερα

IDPV-45 series. 45W PWM Output LED Driver. File Name:IDPV-45-SPEC S&E

IDPV-45 series. 45W PWM Output LED Driver. File Name:IDPV-45-SPEC S&E IDPV5 series S&E ~ A File Name:IDPV5SPEC 0805 IDPV5 series SPECIFICATION MODEL OUTPUT INPUT OTHERS NOTE DC VOLTAGE RATED CURRENT RATED POWER DIMMING RANGE VOLTAGE TOLERANCE PWM FREQUENCY (Typ.) SETUP TIME

Διαβάστε περισσότερα

GAUGE BLOCKS. Grade 0 Tolerance for the variation in length. Limit deviation of length. ± 0.25μm. 0.14μm ±0.80μm. ± 1.90μm. ± 0.40μm. ± 1.

GAUGE BLOCKS. Grade 0 Tolerance for the variation in length. Limit deviation of length. ± 0.25μm. 0.14μm ±0.80μm. ± 1.90μm. ± 0.40μm. ± 1. GAUGE BLOCKS Accuracy according to ISO650 Nominal length (mm) Limit deviation of length Grade 0 Tolerance for the variation in length Grade Grade Grade Grade 2 Limit deviations of Tolerance for the Limit

Διαβάστε περισσότερα

NMBTC.COM /

NMBTC.COM / Common Common Vibration Test:... Conforms to JIS C 60068-2-6, Amplitude: 1.5mm, Frequency 10 to 55 Hz, 1 hour in each of the X, Y and Z directions. Shock Test:...Conforms to JIS C 60068-2-27, Acceleration

Διαβάστε περισσότερα

Electronic Analysis of CMOS Logic Gates

Electronic Analysis of CMOS Logic Gates Electronic Analysis of CMOS Logic Gates Dae Hyun Kim EECS Washington State University References John P. Uyemura, Introduction to VLSI Circuits and Systems, 2002. Chapter 7 Goal Understand how to perform

Διαβάστε περισσότερα

Ανταλλακτικά για Laptop Lenovo

Ανταλλακτικά για Laptop Lenovo Ανταλλακτικά για Laptop Lenovo Ημερομηνία έκδοσης καταλόγου: 6/11/2011 Κωδικός Προϊόντος Είδος Ανταλλακτικού Μάρκα Μοντέλο F000000884 Inverter Lenovo 3000 C200 F000000885 Inverter Lenovo 3000 N100 (0689-

Διαβάστε περισσότερα

Page. 49 VRAM(BYPASS) 50 SDVO TO LVDS 51 LVDS-Inverter

Page. 49 VRAM(BYPASS) 50 SDVO TO LVDS 51 LVDS-Inverter Page 0 0 0 0 0 0 0 0 09 0 9 0 9 0 9 of chematics Page Index Page lock iagram(ystem) LOK N PU HOT / PU THRML / PU POWR / aglelake HOT/PI- / aglelake V/MI / aglelake RII H / aglelake RII H / aglelake POWR

Διαβάστε περισσότερα

Current Sense Metal Strip Resistors (CSMS Series)

Current Sense Metal Strip Resistors (CSMS Series) Features: Range: 1mΩ to 100mΩ Low TCR as low as 75PPM High power rating Custom Values available RoHS Compliant and Halogen Free Operating Temperature: -55 C to +170 C Part Number Structure CSMS 0805 -

Διαβάστε περισσότερα

SPBW06 & DPBW06 series

SPBW06 & DPBW06 series /,, MODEL SELECTION TABLE INPUT ORDER NO. INPUT VOLTAGE (RANGE) NO LOAD INPUT CURRENT FULL LOAD VOLTAGE CURRENT EFFICIENCY (TYP.) CAPACITOR LOAD (MAX.) SPBW06F-03 310mA 3.3V 0 ~ 1500mA 81% 4700μF SPBW06F-05

Διαβάστε περισσότερα

First Sensor Quad APD Data Sheet Part Description QA TO Order #

First Sensor Quad APD Data Sheet Part Description QA TO Order # Responsivity (/W) First Sensor Quad PD Data Sheet Features Description pplication Pulsed 16 nm laser detection RoHS 211/65/EU Light source positioning Laser alignment ø mm total active area Segmented in

Διαβάστε περισσότερα

1951 {0, 1} N = N \ {0} n m M n, m N F x i = (x i 1,..., xi m) x j = (x 1 j,..., xn j ) i j M M i j x i j m n M M M M T f : F m F f(m) f M (f(x 1 1,..., x1 m),..., f(x n 1,..., xn m)) T R F M R M R x

Διαβάστε περισσότερα

5V/9V/12V Output QC2.0+USB Auto Detect+USB-PD Type-C Application Report ACT4529

5V/9V/12V Output QC2.0+USB Auto Detect+USB-PD Type-C Application Report ACT4529 FEATURES 5V/9V/12V Output QC2.0+USB Auto Detect+USB-PD Type-C Application Report ACT4529 Wide input voltage range from 6V to 32V Transparent input voltage surge up to 40V QC2.0 decoding, 5V/9V/12V output

Διαβάστε περισσότερα

ss rt çã r s t Pr r Pós r çã ê t çã st t t ê s 1 t s r s r s r s r q s t r r t çã r str ê t çã r t r r r t r s

ss rt çã r s t Pr r Pós r çã ê t çã st t t ê s 1 t s r s r s r s r q s t r r t çã r str ê t çã r t r r r t r s P P P P ss rt çã r s t Pr r Pós r çã ê t çã st t t ê s 1 t s r s r s r s r q s t r r t çã r str ê t çã r t r r r t r s r t r 3 2 r r r 3 t r ér t r s s r t s r s r s ér t r r t t q s t s sã s s s ér t

Διαβάστε περισσότερα

Rating to Unit ma ma mw W C C. Unit Forward voltage Zener voltage. Condition

Rating to Unit ma ma mw W C C. Unit Forward voltage Zener voltage. Condition MA MA Series Silicon planer e For stabilization of power supply ø.56. Unit : mm Features Color indication of VZ rank classification High reliability because of combination of a planer chip and glass seal

Διαβάστε περισσότερα

OWA-60E series IP67. 60W Single Output Moistureproof Adaptor. moistureproof. File Name:OWA-60E-SPEC

OWA-60E series IP67. 60W Single Output Moistureproof Adaptor. moistureproof. File Name:OWA-60E-SPEC Single Output Moistureproof Adaptor OWA-60E series IP67 Ⅱ Ⅱ moistureproof I File Name:OWA-60E-SPEC 0-04- Single Output Moistureproof Adaptor OWA-60E series SPECIFICATION MODEL OWA-60E- OWA-60E- OWA-60E-0

Διαβάστε περισσότερα

Smaller. 6.3 to 100 After 1 minute's application of rated voltage at 20 C, leakage current is. not more than 0.03CV or 4 (µa), whichever is greater.

Smaller. 6.3 to 100 After 1 minute's application of rated voltage at 20 C, leakage current is. not more than 0.03CV or 4 (µa), whichever is greater. Low Impedance, For Switching Power Supplies Low impedance and high reliability withstanding 5000 hours load life at +05 C (3000 / 2000 hours for smaller case sizes as specified below). Capacitance ranges

Διαβάστε περισσότερα

TRC ELECTRONICS, INC LED Driver Constant Voltage 45W MEAN WELL IDLV-45 Series

TRC ELECTRONICS, INC LED Driver Constant Voltage 45W MEAN WELL IDLV-45 Series LED Driver Constant Voltage 5W MEAN WELL IDLV5 Series ~ A File Name:IDLV5SPEC 0707 TRC ELECTRONICS, INC..888.6.95 LED Driver Constant Voltage 5W MEAN WELL IDLV5 Series TRC ELECTRONICS, INC. SPECIFICATION

Διαβάστε περισσότερα

Series AM2DZ 2 Watt DC-DC Converter

Series AM2DZ 2 Watt DC-DC Converter s Single output FEATURES: RoHS Compliant Operating temperature -40 o C to + 85 o C Low ripple and noise Pin compatible with multiple manufacturers High efficiency up to 82% Input / Output Isolation 1000,3000,

Διαβάστε περισσότερα

SPEEDO AQUABEAT. Specially Designed for Aquatic Athletes and Active People

SPEEDO AQUABEAT. Specially Designed for Aquatic Athletes and Active People SPEEDO AQUABEAT TM Specially Designed for Aquatic Athletes and Active People 1 2 Decrease Volume Increase Volume Reset EarphonesUSBJack Power Off / Rewind Power On / Fast Forward Goggle clip LED Status

Διαβάστε περισσότερα

Bulletin 1489 UL489 Circuit Breakers

Bulletin 1489 UL489 Circuit Breakers Bulletin 489 UL489 Circuit Breakers Tech Data 489-A Standard AC Circuit Breaker 489-D DC Circuit Breaker 489-A, AC Circuit Breakers 489-D, DC Circuit Breakers Bulletin 489-A Industrial Circuit Breaker

Διαβάστε περισσότερα

Output Power: W. Exclusively distributed by Powerstax

Output Power: W. Exclusively distributed by Powerstax R Series, 50-150W Input Ranges : 9-75 VDC : Single - Dual /, / /, / Triple / ±, /, / ±0, Quad ± / ±, ± / : 50-150 W FEATURES General: to 100 Watts Wide Input Range : 10-7dc 2:1 & 3:1 Input Range High Conversion

Διαβάστε περισσότερα

Buck Solution_20W LED Driver for T8 LD7835_T8_20W_R00_TEST. Key Features

Buck Solution_20W LED Driver for T8 LD7835_T8_20W_R00_TEST. Key Features Subject LD7835 T8 Demo Board Manual Model Name LD7835_20W_R00_TEST (60V/300mA) Key Features Buck Topology Current Ripple Reduction (CRR) Current Accuracy < 5% Single Stage PFC > 0.9 @ Normal Line Efficiency

Διαβάστε περισσότερα

CYTA Cloud Server Set Up Instructions

CYTA Cloud Server Set Up Instructions CYTA Cloud Server Set Up Instructions ΕΛΛΗΝΙΚΑ ENGLISH Initial Set-up Cloud Server To proceed with the initial setup of your Cloud Server first login to the Cyta CloudMarketPlace on https://cloudmarketplace.cyta.com.cy

Διαβάστε περισσότερα

EE101: Resonance in RLC circuits

EE101: Resonance in RLC circuits EE11: Resonance in RLC circuits M. B. Patil mbatil@ee.iitb.ac.in www.ee.iitb.ac.in/~sequel Deartment of Electrical Engineering Indian Institute of Technology Bombay I V R V L V C I = I m = R + jωl + 1/jωC

Διαβάστε περισσότερα

Modbus basic setup notes for IO-Link AL1xxx Master Block

Modbus basic setup notes for IO-Link AL1xxx Master Block n Modbus has four tables/registers where data is stored along with their associated addresses. We will be using the holding registers from address 40001 to 49999 that are R/W 16 bit/word. Two tables that

Διαβάστε περισσότερα

CSR series. Thick Film Chip Resistor Current Sensing Type FEATURE PART NUMBERING SYSTEM ELECTRICAL CHARACTERISTICS

CSR series. Thick Film Chip Resistor Current Sensing Type FEATURE PART NUMBERING SYSTEM ELECTRICAL CHARACTERISTICS FEATURE Operating Temperature: -55 ~ +155 C 3 Watts power rating in 1 Watt size, 1225 package High purity alumina substrate for high power dissipation Long side terminations with higher power rating PART

Διαβάστε περισσότερα

Quick Installation Guide

Quick Installation Guide A Installation 1 F H B E C D G 2 www.trust.com/17528/faq Quick Installation Guide C C D Freewave Wireless Audio Set 17528/ 17529 D Installation Configuration Windows XP 4 5 8 Windows 7/ Vista 6 7 9 10

Διαβάστε περισσότερα

Input Ranges : 9-75 VDC

Input Ranges : 9-75 VDC D Series, 10- Input Ranges : 9-75 VDC : Single 3.3V - 24V Bipolar ±5.0V, ±12V, ±15V Dual +5.0V / Triple +5.0V / ±12V +5.0V / ±15V Power: 6.6 to 15 W The D series DC-DC converters feature high power density,

Διαβάστε περισσότερα

Digital motor protection relays

Digital motor protection relays Digital motor protection relays Specification DMP -S & DMP -Sa DMP -T & DMP -Ta Model No. DMP06-S/Sa DMP60-S/Sa DMP06-T/Ta DMP60-T/Ta Wiring Screw type Tunnel type Panel mount Unit or Extension Note1)

Διαβάστε περισσότερα

0.635mm Pitch Board to Board Docking Connector. Lead-Free Compliance

0.635mm Pitch Board to Board Docking Connector. Lead-Free Compliance .635mm Pitch Board to Board Docking Connector Lead-Free Compliance MINIDOCK SERIES MINIDOCK SERIES Features Specifications Application.635mm Pitch Connector protected by Diecasted Zinc Alloy Metal Shell

Διαβάστε περισσότερα

MIL-DTL Micro-D Connector R04J Series Straight to PCB Type

MIL-DTL Micro-D Connector R04J Series Straight to PCB Type MIL-TL-353 Micro- onnector R4J Series Straight to P Type Specication MIL-TL-353 Micro- onnector nvironment temperature: ~ Vibration: Hz~Hz, 6m/s Random vibration: Power spectrum density.4g Hz root mean

Διαβάστε περισσότερα

Buck Solution_9W LED Driver for Bulb LD9852_9W_R00_TEST. Size 34.2mm(L)ⅹ26mm(W)ⅹ18mm(H) Key Features

Buck Solution_9W LED Driver for Bulb LD9852_9W_R00_TEST. Size 34.2mm(L)ⅹ26mm(W)ⅹ18mm(H) Key Features Subject LD9852 Demo Board Manual Model Name (45V/200mA) TOP VIEW BOTTOM VIEW Size 34.2mm(L)ⅹ26mm(W)ⅹ18mm(H) Key Features Buck Topology Current Accuracy < 5% Single Stage PFC > 0.9 @ Normal Line Efficiency

Διαβάστε περισσότερα

Instruction Execution Times

Instruction Execution Times 1 C Execution Times InThisAppendix... Introduction DL330 Execution Times DL330P Execution Times DL340 Execution Times C-2 Execution Times Introduction Data Registers This appendix contains several tables

Διαβάστε περισσότερα

DESKTOP - Intel processor reference chart

DESKTOP - Intel processor reference chart DESKTOP - Intel processor reference chart Family Intel Turbo Boost 7 - Max Turbo 4th Generation Intel Core i7 and i5 Family (22nm) Cores / Intel HD Graphics Intel vpro 1, i7-4960x 3.6 4.0 1866 15 MB L3

Διαβάστε περισσότερα

NEC Silicon RFIC Amplifiers Low Power, Wideband & SiGe/SiGeC

NEC Silicon RFIC Amplifiers Low Power, Wideband & SiGe/SiGeC NEC Silicon RFIC Amplifiers Low Power, Wideband & SiGe/SiGeC Low Power Amplifiers ELECTRICAL CHARACTERISTICS (TA = 25 C) Range VCC ICC NF Gain RLIN RLOUT PdB ISOL @ 3dB (V) (ma) (dbm) Part down Package

Διαβάστε περισσότερα

Siemens AG Rated current 1FK7 Compact synchronous motor Natural cooling. I rated 7.0 (15.4) 11.5 (25.4) (2.9) 3.3 (4.4)

Siemens AG Rated current 1FK7 Compact synchronous motor Natural cooling. I rated 7.0 (15.4) 11.5 (25.4) (2.9) 3.3 (4.4) Synchronous motors Siemens 2009 FK7 Compact motors Nural cooling Selection and ordering da Red speed Shaft height n red S P red ΔT=00 K rpm kw (P) Red power Stic torque M 0 ΔT=00 K Red torque ) M red ΔT=00

Διαβάστε περισσότερα

Monolithic Crystal Filters (M.C.F.)

Monolithic Crystal Filters (M.C.F.) Monolithic Crystal Filters (M.C.F.) MCF (MONOLITHIC CRYSTAL FILTER) features high quality quartz resonators such as sharp cutoff characteristics, low loss, good inter-modulation and high stability over

Διαβάστε περισσότερα

Garda-5 Block Diagram

Garda-5 Block Diagram arda- lock iagram LK N. I YTM / Yonah (RTMT-00/YR00) TPRR P TKUP INPUT OUTPUT, R x RJ MOM M ard /MHz Mobile PU TL+ PT /MHz TI R0M U,,,, 0 LV R RT N FIR Project code:.q0.00 P P/N :.Q0.XXX RVIION : 00- (Hannstar,

Διαβάστε περισσότερα

Buck Solution_10W LED Driver for Bulb LD7835_10W_R01_TEST. Size 55mm(L)ⅹ28mm(W)ⅹ18mm(H) Key Features

Buck Solution_10W LED Driver for Bulb LD7835_10W_R01_TEST. Size 55mm(L)ⅹ28mm(W)ⅹ18mm(H) Key Features Subject LD7835 Demo Board Manual Model Name (40V/250mA) TOP VIEW BOTTOM VIEW Key Features Size 55mm(L)ⅹ28mm(W)ⅹ18mm(H) Buck Topology Current Ripple Reduction (CRR) Current Accuracy < 5% Fast Start-up

Διαβάστε περισσότερα

/&25*+* 24.&6,2(2**02)' 24

/&25*+* 24.&6,2(2**02)' 24 !! "#$ % (33 &' ())**,"-.&/(,01.2(*(33*( ( &,.*(33*( ( 2&/((,*(33*( 24 /&25** 24.&6,2(2**02)' 24 " 0 " ( 78,' 4 (33 72"08 " 2/((,02..2(& (902)' 4 #% 7' 2"8(7 39$:80(& 2/((,* (33; (* 3: &

Διαβάστε περισσότερα

Schematics Page Index (Title / Revision / Change Date)

Schematics Page Index (Title / Revision / Change Date) Page 0 0 0 0 0 0 0 0 0 0 0 0 0 of chematics Page chematics Page Index lock iagram LOK N (K0) MROM(HOT U) / MROM(HOT U) / MROM(Power/nd) / restline (HOT) / restline (MI) / restline (RPHI) / restline (RII)

Διαβάστε περισσότερα

LTC RO R 2 RE 3 DE 1 RO 2 3 DE 4 DI 2000 FEET OF TWISTED-PAIR WIRE 7 RECEIVER INPUT DI. 4.7nF RO

LTC RO R 2 RE 3 DE 1 RO 2 3 DE 4 DI 2000 FEET OF TWISTED-PAIR WIRE 7 RECEIVER INPUT DI. 4.7nF RO µ µ µ LTC1487 µ µ TYPICL PPLICTI UO LTC1487 LTC1487 1 2 E 3 7 4 D 6 12Ω 2 FEET OF TWISTED-PI WIE 33Ω 7 12Ω 6 D 1 2 E 3 4 ECEIVE INPUT 4.7nF EQUIVLENT LOD OF 256 LTC1487 TNSCEIVES LTC1487 T1 LTC1487 T2

Διαβάστε περισσότερα

CSK series. Current Sensing Chip Resistor. Features. Applications. Construction FAITHFUL LINK

CSK series. Current Sensing Chip Resistor. Features. Applications. Construction FAITHFUL LINK CSK series Current Sensing Chip Resistor Features» 3 Watts power rating in 1 Watt size, 1225 Package» Low TCR of ±100 PPM/ C» Resistance values from 1m to 1 ohm» High purity alumina substrate for high

Διαβάστε περισσότερα

DISPLAY SUPPLY: FILTER STANDBY

DISPLAY SUPPLY: FILTER STANDBY ircuit iagrams and PW Layouts. ircuit iagrams and PW Layouts J.0 P. 0 isplay Supply P: ilter Standby MNS NPUT -Vac 00 P-V- V_OT 0 0 0 0 0 0 0 0 SPLY SUPPLY: LT STNY 0 M0 V 0 T,/0V MSU -VOLTS NOML... STNY

Διαβάστε περισσότερα

Page Title of schematic page Rev. Date Page Title of schematic page Rev. Date

Page Title of schematic page Rev. Date Page Title of schematic page Rev. Date Page Title of schematic page Rev. ate Page ist lock iagram hange ist SN /(HOST&PIE) SN /(R I/F) SN /(POWER) SN /(/Strap) PH /(MI/FI/VIEO) PH /(ST/RT/H/P) PH /(PIE/US/K/NV) PH /(GPIO/PU/STRP) PH /(POWER)

Διαβάστε περισσότερα

Buck Solution_10W LED Driver for Bulb LD7835_10W_R00_TEST (74V/125mA) Size 55mm(L)ⅹ28mm(W)ⅹ18mm(H) Key Features

Buck Solution_10W LED Driver for Bulb LD7835_10W_R00_TEST (74V/125mA) Size 55mm(L)ⅹ28mm(W)ⅹ18mm(H) Key Features Subject LD7835 Demo Board Manual Model Name (74V/125mA) TOP VIEW BOTTOM VIEW Key Features Size 55mm(L)ⅹ28mm(W)ⅹ18mm(H) Buck Topology Current Ripple Reduction (CRR) Current Accuracy < 5% Single Stage PFC

Διαβάστε περισσότερα

+3V3 Supply. +3V0 Flash + VCCPGMy +2V5 FPGA VCC + FPGA I/O +1V1 FPGA Core. Overview. abaxor engineering GmbH

+3V3 Supply. +3V0 Flash + VCCPGMy +2V5 FPGA VCC + FPGA I/O +1V1 FPGA Core. Overview. abaxor engineering GmbH 6 7 8 Supply +V0 Flash + PGMy +V FPG + FPG I/O +V FPG ore Overview 6 7 8 6 7 8 I0NK_ IO H IO P IO L IO J VRFN0 N IO/IFFIO_TX_L9N/IFFOUT_L9N IO/IFFIO_RX_L0N/IFFOUT_L0N/QL J IO/IFFIO_TX_L9P/IFFOUT_L9P/QL

Διαβάστε περισσότερα

ichip CO2128 with EBI Flash and Siemens HC25 GSM Modem

ichip CO2128 with EBI Flash and Siemens HC25 GSM Modem Reference Design ichip CO with EBI Flash and Siemens HC GSM Modem Revision History Version Date Description.0 May 00 Initial version.0 September 00 Changed from Mb Flash to Mb Flash Introduction This Reference

Διαβάστε περισσότερα

d dx x 2 = 2x d dx x 3 = 3x 2 d dx x n = nx n 1

d dx x 2 = 2x d dx x 3 = 3x 2 d dx x n = nx n 1 d dx x 2 = 2x d dx x 3 = 3x 2 d dx x n = nx n1 x dx = 1 2 b2 1 2 a2 a b b x 2 dx = 1 a 3 b3 1 3 a3 b x n dx = 1 a n +1 bn +1 1 n +1 an +1 d dx d dx f (x) = 0 f (ax) = a f (ax) lim d dx f (ax) = lim 0 =

Διαβάστε περισσότερα

ichip CO2128 with EBI Flash and Siemens MC39i GSM Modem

ichip CO2128 with EBI Flash and Siemens MC39i GSM Modem Reference Design 0 ichip CO with EBI Flash and Siemens MCi GSM Modem Revision History Version Date Description.0 May 00 Initial version.0 September 00 Changed from Mb Flash to Mb Flash Introduction This

Διαβάστε περισσότερα

+85 C Snap-Mount Aluminum Electrolytic Capacitors. High Voltage Lead free Leads Rugged Design. -40 C to +85 C

+85 C Snap-Mount Aluminum Electrolytic Capacitors. High Voltage Lead free Leads Rugged Design. -40 C to +85 C +85 C Snap-Mount Capacitors FEATURES High ripple Current Ratings Large Case Size Selection Extended Life High Voltage Lead free Leads Rugged Design SPECIFICATIONS Tolerance ±20% at 120Hz, 20 C Operating

Διαβάστε περισσότερα

Potential Dividers. 46 minutes. 46 marks. Page 1 of 11

Potential Dividers. 46 minutes. 46 marks. Page 1 of 11 Potential Dividers 46 minutes 46 marks Page 1 of 11 Q1. In the circuit shown in the figure below, the battery, of negligible internal resistance, has an emf of 30 V. The pd across the lamp is 6.0 V and

Διαβάστε περισσότερα

Surface Mount Aluminum Electrolytic Capacitors

Surface Mount Aluminum Electrolytic Capacitors FEATURES CYLINDRICAL V-CHIP CONSTRUCTION LOW COST, GENERAL PURPOSE, 2000 HOURS AT 85 O C NEW EXPANDED CV RANGE (up to 6800µF) ANTI-SOLVENT (2 MINUTES) DESIGNED FOR AUTOMATIC MOUNTING AND REFLOW SOLDERING

Διαβάστε περισσότερα

(#5 5::%%%$ " (#5 5::%%%$" %

(#5 5::%%%$  (#5 5::%%%$ % !" "#! " # $ "! "#" "" ""! % %! % " &"#!! "' (%)* (% (%! "' + "',! "' $% " %! "'% " %!"! #!" " $ #!" #$ #! #!#!" -%$!"#!".! "!"#!"! "!" " " "!!" "! %!"!#/ "%! %! #! )0+! *.." )0)!- % 67&* 6**&7*0.8 67&*67&*90&0.8

Διαβάστε περισσότερα

Sunlord. Wire Wound SMD Power Inductors SPH Series Operating Temp. : -40 ~+125 (Including self-heating) 2R2 SPH

Sunlord. Wire Wound SMD Power Inductors SPH Series Operating Temp. : -40 ~+125 (Including self-heating) 2R2 SPH Wire Wound SMD Power Inductors SPH Series Operating Temp. : -4 ~+25 (Including self-heating) FEATURES Magnetic-resin shielded construction reduces buzz noise to ultra-low levels Metallization on ferrite

Διαβάστε περισσότερα

MZ0.5GF SERIES ZENER DIODE TECHHICAL SPECIFICATION FEATURES. ABSOLUTE MAXIMUM RATINGE: (Ta=25 ) Parameter Symbols Limits Unit

MZ0.5GF SERIES ZENER DIODE TECHHICAL SPECIFICATION FEATURES. ABSOLUTE MAXIMUM RATINGE: (Ta=25 ) Parameter Symbols Limits Unit MZ.GEV- THRU MZ.GEV-. MZ.GF SERIES MZ.GEV THRU MZ.GEV TECHHICAL SPECIFICATION FEATURES Silicon Planar Power Diodes Standard Voltage Tolerance is ±% DO- Glass Case High Reliability Weight: Approx..g DO-

Διαβάστε περισσότερα

k k ΚΕΦΑΛΑΙΟ 1 G = (V, E) V E V V V G E G e = {v, u} E v u e v u G G V (G) E(G) n(g) = V (G) m(g) = E(G) G S V (G) S G N G (S) = {u V (G)\S v S : {v, u} E(G)} G v S v V (G) N G (v) = N G ({v}) x V (G)

Διαβάστε περισσότερα

Aluminum Electrolytic Capacitors (Large Can Type)

Aluminum Electrolytic Capacitors (Large Can Type) Aluminum Electrolytic Capacitors (Large Can Type) Snap-In, 85 C TS-U ECE-S (U) Series: TS-U Features General purpose Wide CV value range (33 ~ 47,000 µf/16 4V) Various case sizes Top vent construction

Διαβάστε περισσότερα

Strain gauge and rosettes

Strain gauge and rosettes Strain gauge and rosettes Introduction A strain gauge is a device which is used to measure strain (deformation) on an object subjected to forces. Strain can be measured using various types of devices classified

Διαβάστε περισσότερα

10. Circuit Diagrams and PWB Layouts

10. Circuit Diagrams and PWB Layouts ircuit iagrams and W ayouts Q... ircuit iagrams and W ayouts mbilight nterface: nterf. + Single / TR + S - V _SS RV_ SW_ T_ V T_ V_UT SW_T _S V STU VRSTS R / TR See the stuffing diversities table in the

Διαβάστε περισσότερα

A/m

A/m G anada Ltd. MTERI ROSS REFERENE Ferronics V G FTF T G FKF G F82F G G FF1G J G F52J K G F01H P G F21 Units Initial Permeability (µi) 15,000 15,000 10,000 10,000 5,000 5,000 1,500 1,500 850 850 125 125

Διαβάστε περισσότερα

Replacement Guide. Wilo Circulators for Heating and Secondary Hot Water Circulation. Pioneering for You

Replacement Guide. Wilo Circulators for Heating and Secondary Hot Water Circulation. Pioneering for You Replacement Guide Wilo Circulators for Heating and Secondary Hot Water Circulation 2013 Pioneering for You Grundfos Single pumps Wilo new High-efficiency pumps infinitely variable, 1~230V, 50Hz Stratos

Διαβάστε περισσότερα

RF series Ultra High Q & Low ESR capacitor series

RF series Ultra High Q & Low ESR capacitor series RF series Ultra High Q & Low ESR capacitor series FAITHFUL LINK Features Application» High Q and low ESR performance at high frequency» Telecommunication products & equipments:» Ultra low capacitance to

Διαβάστε περισσότερα

Surface Mount Multilayer Chip Capacitors for Commodity Solutions

Surface Mount Multilayer Chip Capacitors for Commodity Solutions Surface Mount Multilayer Chip Capacitors for Commodity Solutions Below tables are test procedures and requirements unless specified in detail datasheet. 1) Visual and mechanical 2) Capacitance 3) Q/DF

Διαβάστε περισσότερα

Long 3000 hour life at 105 C with high ripple current capability 2 and 3 pin versions available Can vent construction

Long 3000 hour life at 105 C with high ripple current capability 2 and 3 pin versions available Can vent construction TS-HA/HB Series 105 C, 3000 hours Long 3000 hour life at 105 C with high ripple current capability 2 and 3 pin versions available Can vent construction RoHS Compliant Rated Working Voltage: Operating Temperature:

Διαβάστε περισσότερα

SMD Shielded Power Inductor HPCRHF2D /3D /4D Series

SMD Shielded Power Inductor HPCRHF2D /3D /4D Series SMD Shielded Power Inductor HPCRHF2D /3D /4D Series Features: l SMD type power inductors by the electrode is attached to the ferrite core directly. l Magnetically shielded to prevent noise radiation. Applications:

Διαβάστε περισσότερα

IXBH42N170 IXBT42N170

IXBH42N170 IXBT42N170 High Voltage, High Gain BIMOSFET TM Monolithic Bipolar MOS Transistor IXBH42N17 IXBT42N17 S 9 = 1 = 42A (sat) 2.8V Symbol Test Conditions Maximum Ratings TO-247 (IXBH) S = 25 C to 15 C 17 V V CGR = 25

Διαβάστε περισσότερα

2R2. 2 (L W H) [mm] Wire Wound SMD Power Inductor. Nominal Inductance Packing Tape & Reel. Design Code M ±20%

2R2. 2 (L W H) [mm] Wire Wound SMD Power Inductor. Nominal Inductance Packing Tape & Reel. Design Code M ±20% Wire Wound SMD Power Inductors WPN Series Operating temperature range : -40 ~+125 (Including self-heating) FEATURES Fe base metal material core provides large saturation current Metallization on ferrite

Διαβάστε περισσότερα

Second Order RLC Filters

Second Order RLC Filters ECEN 60 Circuits/Electronics Spring 007-0-07 P. Mathys Second Order RLC Filters RLC Lowpass Filter A passive RLC lowpass filter (LPF) circuit is shown in the following schematic. R L C v O (t) Using phasor

Διαβάστε περισσότερα

[1] P Q. Fig. 3.1

[1] P Q. Fig. 3.1 1 (a) Define resistance....... [1] (b) The smallest conductor within a computer processing chip can be represented as a rectangular block that is one atom high, four atoms wide and twenty atoms long. One

Διαβάστε περισσότερα

Aluminum Electrolytic Capacitors

Aluminum Electrolytic Capacitors Aluminum Electrolytic Capacitors Snap-In, Mini., 105 C, High Ripple APS TS-NH ECE-S (G) Series: TS-NH Features Long life: 105 C 2,000 hours; high ripple current handling ability Wide CV value range (47

Διαβάστε περισσότερα

RJJ Miniature Aluminum Electrolytic Capacitors RJJ. Series RJJ High-Frequency, Low Impedance, Standard Type. Radial Type

RJJ Miniature Aluminum Electrolytic Capacitors RJJ. Series RJJ High-Frequency, Low Impedance, Standard Type. Radial Type 352 Elna Corrections 80-95 /6/98 :55 AM Page Miniature Aluminum Electrolytic Capacitors Series High-Frequency, Low Impedance, Standard Type For high reliability applications, Environmentally safe. High-frequency,

Διαβάστε περισσότερα

2-1. Power Transistors. Transistors for Audio Amplifier. Transistors for Humidifier. Darlington Transistors. Low VCE (sat) High hfe Transistors

2-1. Power Transistors. Transistors for Audio Amplifier. Transistors for Humidifier. Darlington Transistors. Low VCE (sat) High hfe Transistors Power Trnsistors -. Power Trnsistors Trnsistors for Audio Amplifier Trnsistors for Switch Mode Power Supply Trnsistors for Humidifier Trnsistor for Disply Horizontl Deflection Output Drlington Trnsistors

Διαβάστε περισσότερα

ASL BS ,00 ASL BS ,00 ASL BS ,80 ASL BS ,60 ASL TP SET 1 817,20 ASL TP SET 2 997,20 ASL TP SET ,20

ASL BS ,00 ASL BS ,00 ASL BS ,80 ASL BS ,60 ASL TP SET 1 817,20 ASL TP SET 2 997,20 ASL TP SET ,20 www.asl-inter.com BASIC SERIES ASL BS 217 Κεντρική μονάδα intercom 2 καναλιών. Κάθε κανάλι διαθέτει φωτιζόμενο κουμπί Talk και Call και volume για τον έλεγχο της έντασης. Στην πίσω πλευρά διαθέτει μια

Διαβάστε περισσότερα

Axial Film Capacitors Metallized Polyester and Polypropylene

Axial Film Capacitors Metallized Polyester and Polypropylene Axial Film Capacitors Metallized Polyester and Polypropylene... your source for the Ultimate in Reliability 1 Table of Contents Part Numbering System 2 Dielectric Characteristics 3 AREM 5 AFEO 6 AFPX 7

Διαβάστε περισσότερα