Customization: | Available |
---|---|
After-sales Service: | Provided |
Warranty: | 1 Year |
Still deciding? Get samples of US$ 6920/Set
Request Sample
|
Suppliers with verified business licenses
Audited by an independent third-party inspection agency
1-32Series 500A Charge 800A Discharge Bms Testing Equipment Battery Management System Tester
ACEY-BP32-500A800A BMS tester is used to test multiple functions of the protection board, including overcharge protection, overcharge recovery, overdischarge protection, overdischarge recovery, overcurrent protection (overcharge current and overdischarge current), internal resistance, self-consumption, short circuit protection, overcharge protection time, overcurrent protection time, overdischarge protection Time, balance current, balance voltage etc.
Function introduce
1)1-32 series battery management system tester, high degree of automation, fast testing speed and high testing accuracy. With test function of overcharge protection, overcharge recovery, overdischarge protection, overdischarge recovery, overcurrent protection (overcharge current and overdischarge current), internal resistance, self-consumption, short circuit protection, overcharge protection time, overcurrent protection time, overdischarge protection Time, balance current, balance voltage etc.
2)It can test the BMS of MCN battery, LiFeO4 battery and cobalt acid battery.
3)This machine is required to be connected to a computer, th system generally requires an XP system, the interface of tester and computer is RS232.
Technical parameter
(1)Input power supply: 180~240V 50/60HZ,Power: 5000W
(2)Power standard supply: AC 220V/50HZ,Range:±10%
(3)The voltage of chare and discharge:5000mV ~160000mV
(4)It can test and set the voltage range when this machine is charging and dischagring..
(5)Current accuracy::±(0.1%FS+0.1%RD)
(6)Voltage accuracy±(0.1%FS+0.1%RD)
(7)Current resolution:1mA (smallest unit)
(8)Voltage resolution:1mV (smallest unit)
(9)Cycles:1~9999
(10)With log function, including operation records and exception records during the whole process of testing, which can be used for traceability of the testing process.
(11)Data processing, human-machine interface
(12)Export data formation:Excel
(13)Interface:RS232
(14)Accuracy calibration/software calibration
(15)With scan code start function
(16)MES system connection
Tester Function
No. | Function | Range | Accuracy | unit |
1 | Self-consumption of single cell | 0--500 | ±0.1 | uA |
2 | Self-consumption | 0--5000 | ±1 | uA |
3 | Overcharge voltage | 500--5000 | ±1 | mV |
4 | Overcharge recovery voltage | 500--5000 | ±1 | mV |
5 | Overcharge voltage protection delay | 0--10000 | ±1 | mS |
6 | Overdischarge voltage | 500--5000 | ±1 | mV |
7 | Overdischarge recovery voltage | 500--5000 | ±1 | mV |
8 | Overdischarge voltage protection delay | 0--10000 | ±1 | mS |
9 | Overcharge protection current protection value | 0.1--500 | ±0.01 | A |
10 | Overcharge protection current protection delay | 0--20000 | ±1 | mS |
11 | Overdischarge protection current protection value | 0.1--800 | ±0.01 | A |
12 | Overdischarge protection current protection delay | 0.1--20000 | ±1 | mS |
13 | Equalization function opening voltage |
500--5000 | ±1 | mV |
14 | Equalizing current | 1--500 | ±1 | mA |
15 | Charging current | 0.1--200 | ±0.01 | A |
16 | Discharging current | 0.1--200 | ±0.01 | A |
17 | Charging time | 0--30 | ±1 | S |
18 | Discharging time | 0--60 | ±1 | S |
19 | The difference of single cell self-consume | 0-500 | ±0.1 | uA |
20 | Resistance | 0-999 | ±1 | mΩ |
21 | Short circuit protection time | 0--5000 | ±1 | uS |
22 | The charging voltage of single cell | 500--5000 | ±1 | mV |
23 | The discharging voltage of single cell | 500--5000 | ±1 | mV |
24 | Open circuit voltage | 102000 | ±1 | mV |
25 | Number of voltage analogs | 32 | 0 | PCS |
Parameter of the main loop test:
Project | Parameter |
Voltage | 160000mV |
Voltage resolution | 1mV |
Vlotage accuracy | ±0.1% |
Discharging current | 0.1A ~800A |
Current resolution | 1mA |
Current accuracy | ±(0.1%) |
Other | The charging and discharging circuits are completely separated |