SL1740A provides sink and source with 1000 to 1500 V, 300 to 900A, and 300 kW.
| Form factor | Cabinet |
| Maximum power | 350 kW |
| Measurement type | N/A |
| Battery Types | Pack |
| Mains voltage | 480 VAC |
Test individual battery cells, modules, and complete battery packs for in-depth characterization at each stage of development, ensuring quality and performance at every scale.
Designed with regenerative capabilities, often exceeding 90% energy recovery, so energy from the battery during discharge cycles is fed back into the grid rather than being dissipated as heat.
Define, control, and monitor complex test sequences, including performance, functional, aging, and environmental tests with built-in compliance for global industry standards.
Support electrochemical impedance spectroscopy (EIS) on multiple channels to characterize a cell’s impedance across a frequency range, helping identify potential issues or degradation mechanisms.
| Battery Types | Module, Pack, Cell, CellModulePack |
| Form factor | Cabinet, Dual cabinet, Benchtop, Rack mounted, Combined |
| Maximum power | N/A to >10 MW |
| Measurement type | Differential voltage, Temperature, Digital IO, Communications, Analog in, Power supply, Analog out |
| Mains voltage | 48 VDC to 480 VAC |
SL1740A provides sink and source with 1000 to 1500 V, 300 to 900A, and 300 kW.
Keysight’s SL1700A Scienlab Battery Test System – Pack Level Series allows to realistically emulate the environment of the future battery pack application in order to test the high-power battery pack comprehensively and improve its functions and safety. The growing demand of e-mobility increases the need of vast battery test labs for EV battery development. Keysight developed the SL1700A Series to accelerate the development and validation of batteries. It offers a voltage range of up to 1500 V and power options between 100 and 300 kW including a Performance Bundle to increase the power up to 300 kW. The new high-voltage SiC (silicon carbide) technology provides a high energy efficiency on a small footprint and helps to minimize your operating costs.
| SiC technology for higher dynamics, precision, and efficiency | Up to 1.5 MW power due to parallelization |
| Small footprint thanks to (modular and) compact design | Reduce costs for energy and cooling water due to efficient and cost-effective operation with a recovery capability of 96% |
| Extendibility of the systems to meet future needs of higher current, voltage or power |
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