JXH4KTL
JX
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Model | Tower T7 | Tower T10 | Tower T14 | Tower T17 | Tower T21 |
Usable Energy | 7.10KWh | 10.66KWh | 14.20KWh | 17.76KWh | 21.31KWh |
Nominal Capacity | 37Ah | 37Ah | 37Ah | 37Ah | 37Ah |
Nominal Voltage | 192V | 288V | 384V | 480V | 576V |
Maximum Continuous Discharge Power[2] | 4.26KW | 6.39KW | 8.52KW | 10.65KW | 12.78KW |
Maximum Continuous Charge Power[2] | 4.26KW | 6.39KW | 8.52KW | 10.65KW | 12.78KW |
Net Weight | 105Kg | 146Kg | 187Kg | 228Kg | 269Kg |
Dimension[W*D*H] | 700*504*380mm | 900*504*380mm | 1100*504*380mm | 1300*504*380mm | 1500*504*380mm |
Protection Level | IP54 | IP54 | IP54 | IP54 | IP54 |
Calendar Life[1] | 6000 Cycles | 6000 Cycles | 6000 Cycles | 6000 Cycles | 6000 Cycles |
Charging Temperature Range | 0~50°C | 0~50°C | 0~50°C | 0~50°C | 0~50°C |
Discharging Temperature Range | -10~50°C | -10~50°C | -10~50°C | -10~50°C | -10~50°C |
Internal Battery Module | HV9637 | HV9637 | HV9637 | HV9637 | HV9637 |
Module Connection | series | series | series | series | series |
Module Number | 2 | 3 | 4 | 5 | 6 |
Communication | CAN | CAN | CAN | CAN | CAN |
Warranty | 10 Years | 10 Years | 10 Years | 10 Years | 10 Years |
Compatible Inverter | Goodwe, Luxpower, more brands are under testing | ||||
Certification | TUV/CE/IEC62619/IEC62040/UN38.3/CEC Accredited/UL1973 |
[1] Test conditions: 0.2C Charging/Discharging, @25°C, 80% Dod
[2] Maximum Continuous Discharge/Charge Power when communicate with inverter is 0.6C
Model | Tower T7 | Tower T10 | Tower T14 | Tower T17 | Tower T21 |
Usable Energy | 7.10KWh | 10.66KWh | 14.20KWh | 17.76KWh | 21.31KWh |
Nominal Capacity | 37Ah | 37Ah | 37Ah | 37Ah | 37Ah |
Nominal Voltage | 192V | 288V | 384V | 480V | 576V |
Maximum Continuous Discharge Power[2] | 4.26KW | 6.39KW | 8.52KW | 10.65KW | 12.78KW |
Maximum Continuous Charge Power[2] | 4.26KW | 6.39KW | 8.52KW | 10.65KW | 12.78KW |
Net Weight | 105Kg | 146Kg | 187Kg | 228Kg | 269Kg |
Dimension[W*D*H] | 700*504*380mm | 900*504*380mm | 1100*504*380mm | 1300*504*380mm | 1500*504*380mm |
Protection Level | IP54 | IP54 | IP54 | IP54 | IP54 |
Calendar Life[1] | 6000 Cycles | 6000 Cycles | 6000 Cycles | 6000 Cycles | 6000 Cycles |
Charging Temperature Range | 0~50°C | 0~50°C | 0~50°C | 0~50°C | 0~50°C |
Discharging Temperature Range | -10~50°C | -10~50°C | -10~50°C | -10~50°C | -10~50°C |
Internal Battery Module | HV9637 | HV9637 | HV9637 | HV9637 | HV9637 |
Module Connection | series | series | series | series | series |
Module Number | 2 | 3 | 4 | 5 | 6 |
Communication | CAN | CAN | CAN | CAN | CAN |
Warranty | 10 Years | 10 Years | 10 Years | 10 Years | 10 Years |
Compatible Inverter | Goodwe, Luxpower, more brands are under testing | ||||
Certification | TUV/CE/IEC62619/IEC62040/UN38.3/CEC Accredited/UL1973 |
[1] Test conditions: 0.2C Charging/Discharging, @25°C, 80% Dod
[2] Maximum Continuous Discharge/Charge Power when communicate with inverter is 0.6C
Lithium TowerFeatures and advantages
Certificatesand ApprovalsCQC, VDE-AR-N4105, VDE0126-1-1, AS4777, IEC61727, IEC62116 |
Lithium TowerFeatures and advantages
Certificatesand ApprovalsCQC, VDE-AR-N4105, VDE0126-1-1, AS4777, IEC61727, IEC62116 |
3-Phase Hybrid Inverter | |
Hybrid inverters are the heart of a solar energy storage system and enable homes or businesses to increase the amount of self-consumption of solar energy by storing excess energy during the day. 3-phase hybrid inverters work much like a common 3-phase solar inverter but also contain a battery inverter charger and connection. In order to optimise the available energy, hybrid inverters require either an external energy meter or a CT meter, plus onboard software that can be programmed to determine the most efficient use of your available energy. |
3-Phase Hybrid Inverter | |
Hybrid inverters are the heart of a solar energy storage system and enable homes or businesses to increase the amount of self-consumption of solar energy by storing excess energy during the day. 3-phase hybrid inverters work much like a common 3-phase solar inverter but also contain a battery inverter charger and connection. In order to optimise the available energy, hybrid inverters require either an external energy meter or a CT meter, plus onboard software that can be programmed to determine the most efficient use of your available energy. |