Industrial Batteries Sonnenschein A600 Premium quality for uninterrupted communication.
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1 Industrial Batteries Sonnenschein A600 Premium quality for uninterrupted communication.
2 Highest capacity and reliability for limited space. Specifications Two options: A600 for vertical installation A600 WE for horizontal installation Extraordinary energysaving features in addition with robust reliability Maintenancefree during the whole service life due to the Sonnenschein dryfit technology Nominal capacity Ah C 10 Design life: 15 years for 6/12 V blocs and 18 years for 2 V cells at 20 C (80% remaining capacity) Container material (cells) = SAN, UL 94 HB; optional ABS, UL 94 V0 Container material (blocs) = ABS, UL 94 HB; optional ABS, UL 94 V0 Robust tubular plate technology Very low gassing due to internal gas recombination Very low self discharge rate Proof against deep discharge according to DIN T5 Troublefree transportation of operational blocs and cells, no restrictions for rail, road, sea and air transportation (IATA, DGR clause A 67) Completely recyclable
3 More power for network power. Applications In the first place, batteries of the Sonnenschein A600 series care for undisturbed connection in telecommunication fields such as telephone exchanges or mobile phone base stations. Further applications include emergency lighting, security, railways, utility and other power supplies for safety systems. Valve regulated lead acid batteries Tubular plate Nominal capacity Ah Bloc battery Single cell Design life: blocs 15 years cells 18 years Maintenancefree Proof against deep discharge acc. to DIN T5 Recyclable
4 Technical characteristics and data A600 bloc Type Part number Nominal Nominal Discharge Length Width Height Height Installed Pole Weight Internal Short Terminal designation voltage capacity current (l) (b) (h1) (h2) length pairs resistance circuit acc. to C 10 l 10 (B) acc. to current DIN V/C IEC 8962 acc. to 20 C max. max. max. max. approx. IEC 8962 V Ah A mm mm mm mm mm kg m Ω A 12V 2 OPzV 100 NGA HS0FA FM8 12V 3 OPzV 150 NGA HS0FA FM8 6V 4 OPzV 200 NGA HS0FA FM8 6V 6 OPzV 300 NGA HS0FA FM8 Container, approval, terminal and torque Data are also valid for UL 94 V0 version. Change H to V in the part number. E.g.: Standard NGA H S0FA UL 94 V0 NGA V S0FA Container: Standard = ABS UL 94 V0 = ABS Approval: DIN/Gost/TÜV, Russia FM8 12 Nm Drawings with terminal position 6 V bloc 12 V bloc (h2) (h1) (h2) (h1) (l) (l) (b) (b) (l) (B) (l) (B) Not to scale!
5 Technical characteristics and data A600 Type Part number Nominal Nominal Discharge Length Width Height Height Installed Pole Weight Internal Short Terminal designation voltage capacity current (l) (b) (h1) (h2) length pairs resistance circuit acc. to C 10 l 10 (B) acc. to current DIN V/C IEC 8962 acc. to 20 C max. max. max. max. approx. IEC 8962 V Ah A mm mm mm mm mm kg m Ω A 4 OPzV 200 NGA HS0FA FM8 5 OPzV 250 NGA HS0FA FM8 6 OPzV 300 NGA HS0FA FM8 5 OPzV 350 NGA HS0FA FM8 6 OPzV 420 NGA HS0FA FM8 7 OPzV 490 NGA HS0FA FM8 6 OPzV 600 NGA HS0FA FM8 8 OPzV 800 NGA HS0FA FM8 10 OPzV 1000 NGA HS0FA FM8 12 OPzV 1200 NGA HS0FA FM8 12 OPzV 1500 NGA HS0FA FM8 16 OPzV 2000 NGA HS0FA FM8 20 OPzV 2500 NGA VS0FA FM8 24 OPzV 3000 NGA VS0FA FM8 Container, approval, terminal and torque Data are also valid for UL 94 V0 version. Change H to V in the part number. E.g.: Standard NGA H S0FA UL 94 V0 NGA V S0FA Container: Standard = SAN UL 94 V0 = ABS Approval: Underwriters Laboratories (UL),USA Germanischer Lloyd (GL) DIN/Gost/TÜV, Russia by many Telecom organisations worldwide Drawings with terminal position FM8 20 Nm 4 OPzV OPzV OPzV OPzV OPzV OPzV OPzV 3000 (h2) (h1) (h2) (h2) (h1) (h2) (h1) (h1) (l) (B) (b) (l) (B) (b) (b) (b) Not to scale! (l) (B) (l) (B)
6 Technical characteristics and data A600 WE Type Part number Nominal Nominal Discharge Length Width Height Height Installed Pole Weight Internal Short Terminal designation voltage capacity current (l) (b) (h1) (h2) length pairs resistance circuit acc. to C 10 l 10 (B) acc. to current DIN V/C IEC 8962 acc. to 20 C max. max. max. max. approx. IEC 8962 V Ah A mm mm mm mm mm kg m Ω A 4 OPzV 200 WE NGA HS0FB FM8 5 OPzV 250 WE NGA HS0FB FM8 6 OPzV 300 WE NGA HS0FB FM8 5 OPzV 350 WE NGA HS0FB FM8 6 OPzV 420 WE NGA HS0FB FM8 7 OPzV 490 WE NGA HS0FB FM8 6 OPzV 600 WE NGA HS0FB FM8 8 OPzV 800 WE NGA HS0FB FM8 10 OPzV 1000 WE NGA HS0FB FM8 12 OPzV 1200 WE NGA HS0FB FM8 12 OPzV 1500 WE NGA HS0FB FM8 Container, approval, terminal and torque Data are also valid for UL 94 V0 version. Change H to V in the part number. E.g.: Standard NGA H S0FB UL 94 V0 NGA V S0FB Container: Standard UL 94 V0 = SAN = ABS Approval: Underwriters Laboratories (UL),USA Germanischer Lloyd (GL) DIN/Gost/TÜV, Russia by many Telecom organisations worldwide FM8 20 Nm Drawings with terminal position (b) (l) (B) (h ) 1 (b) (l) (h ) 2 (b) (B) Not to scale!
7 Technical data at a glance Charging voltage in V per cell Float voltage / 1% Equalizing charge voltage for max. 12 hours Temperature in C Charging time in h C C Depth of discharge in % of C For continuous charging we recommend a voltage of 2.25 V. The charging voltage must be compensated to the curve for a continuously different battery ambient temperature. Recharging time in relation to the initial charging current at 20 C. State of charge 100 % State of charge 90 % Charge voltage: 1: 2.25 V/C 2: 2.40 V/C C C Available capacity in % C1 C3 C Ambient temperature in C Capacity in % C 30 C 20 C Storage in months Available capacity in relation to the ambient temperature. Selfdischarge in relation to the storage temperature.
8 Constant current discharge A600 bloc 1.87 V/C Discharge in A Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 10h 24h 12OPzV100 NGA HS0FA OPzV150 NGA HS0FA OPzV200 NGA HS0FA OPzV300 NGA HS0FA V/C Discharge in A Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 10h 24h 12OPzV100 NGA HS0FA OPzV150 NGA HS0FA OPzV200 NGA HS0FA OPzV300 NGA HS0FA V/C Discharge in A Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 10h 24h 12OPzV100 NGA HS0FA OPzV150 NGA HS0FA OPzV200 NGA HS0FA OPzV300 NGA HS0FA V/C Discharge in A Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 12OPzV100 NGA HS0FA OPzV150 NGA HS0FA OPzV200 NGA HS0FA OPzV300 NGA HS0FA V/C Discharge in A Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 12OPzV100 NGA HS0FA OPzV150 NGA HS0FA OPzV200 NGA HS0FA OPzV300 NGA HS0FA V/C Discharge in A Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 12OPzV100 NGA HS0FA OPzV150 NGA HS0FA OPzV200 NGA HS0FA OPzV300 NGA HS0FA
9 Constant current discharge A V/C Discharge in A 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA V/C Discharge in A 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA V/C Discharge in A 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA
10 Constant current discharge A V/C Discharge in A 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA V/C Discharge in A 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA V/C Discharge in A 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA
11 Constant current discharge A V/C Discharge in A 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA V/C Discharge in A 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA
12 Constant current discharge A600 WE 1.90 V/C Discharge in A 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB V/C Discharge in A 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB V/C Discharge in A 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB
13 Constant current discharge A600 WE 1.80 V/C Discharge in A 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB V/C Discharge in A 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB V/C Discharge in A 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB
14 Constant current discharge A600 WE 1.65 V/C Discharge in A 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB V/C Discharge in A 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB
15 Constant power discharge A600 bloc 1.87 V/C Discharge in W/bloc Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 10h 24h 12V2OPzV100 NGA HS0FA V3OPzV150 NGA HS0FA V4OPzV200 NGA HS0FA V6OPzV300 NGA HS0FA V/C Discharge in W/bloc Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 10h 24h 12V2OPzV100 NGA HS0FA V3OPzV150 NGA HS0FA V4OPzV200 NGA HS0FA V6OPzV300 NGA HS0FA V/C Discharge in W/bloc Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 10h 24h 12V2OPzV100 NGA HS0FA V3OPzV150 NGA HS0FA V4OPzV200 NGA HS0FA V6OPzV300 NGA HS0FA V/C Discharge in W/bloc Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 10h 24h 12V2OPzV100 NGA HS0FA V3OPzV150 NGA HS0FA V4OPzV200 NGA HS0FA V6OPzV300 NGA HS0FA V/C Discharge in W/bloc Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 10h 24h 12V2OPzV100 NGA HS0FA V3OPzV150 NGA HS0FA V4OPzV200 NGA HS0FA V6OPzV300 NGA HS0FA V/C Discharge in W/bloc Type Part number 5min 10min 15min 30min 1h 2h 3h 4h 5h 6h 8h 10h 24h 12V2OPzV100 NGA HS0FA V3OPzV150 NGA HS0FA V4OPzV200 NGA HS0FA V6OPzV300 NGA HS0FA
16 Constant power discharge A V/C Discharge in W/cell 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA V/C Discharge in W/cell 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA V/C Discharge in W/cell 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA
17 Constant power discharge A V/C Discharge in W/cell 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA V/C Discharge in W/cell 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA V/C Discharge in W/cell 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA
18 Constant power discharge A V/C Discharge in W/cell 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA V/C Discharge in W/cell 4OPzV200 NGA HS0FA OPzV250 NGA HS0FA OPzV300 NGA HS0FA OPzV350 NGA HS0FA OPzV420 NGA HS0FA OPzV490 NGA HS0FA OPzV600 NGA HS0FA OPzV800 NGA HS0FA OPzV1000 NGA HS0FA OPzV1200 NGA HS0FA OPzV1500 NGA HS0FA OPzV2000 NGA HS0FA OPzV2500 NGA HS0FA OPzV3000 NGA HS0FA
19 Constant power discharge A600 WE 1.90 V/C Discharge in W/cell 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB V/C Discharge in W/cell 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB V/C Discharge in W/cell 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB
20 Constant power discharge A600 WE 1.80 V/C Discharge in W/cell 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB V/C Discharge in W/cell 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB V/C Discharge in W/cell 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB
21 Constant power discharge A600 WE 1.65 V/C Discharge in W/cell 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB V/C Discharge in W/cell 4OPzV200 WE NGA HS0FB OPzV250 WE NGA HS0FB OPzV300 WE NGA HS0FB OPzV350 WE NGA HS0FB OPzV420 WE NGA HS0FB OPzV490 WE NGA HS0FB OPzV600 WE NGA HS0FB OPzV800 WE NGA HS0FB OPzV1000 WE NGA HS0FB OPzV1200 WE NGA HS0FB OPzV1500 WE NGA HS0FB
22 Notes
23 Notes
24 Exide Technologies Network Power The Industry Leader. Exide Technologies Network Power Division is the global leader in stored electrical energy solutions for all major critical reserve power applications and needs. Network power applications include communication/data networks, UPS systems for computers and control systems, electrical power generation and distribution systems, as well as a wide range of other industrial standby power applications. With a strong manufacturing base in both North America and Europe and a truly global reach (operations in more than 80 countries) in sales and service, Exide Technologies Network Power Division is best positioned to satisfy your back up power needs locally as well as all over the world. EXIDE Technologies Network Power Im Thiergarten Büdingen Germany Tel.: 49 (0) / 8170 Fax: 49 (0) / Based on over 100 years of technological innovation the Network Power Division leads the industry with the most recognized global brands such as Absolyte, Sonnenschein, Marathon, Sprinter, and Flooded Classic. They are bywords for quality, reliability, performance and excellence in all the markets served. Exide Technologies takes pride in its commitment to a better environment and its Total Battery Management program, an integrated approach to manufacturing, distributing and recycling of lead acid batteries, has been developed to ensure a safe and responsible life cycle for all of its products. NXSA6TEXPDF0402 The company reserves the right to change the specification. Colours may differ from those shown.
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