Collection:

Battery Test Solutions

Efficient measurements for reproducible battery results

Model:

SL1770A

N/A

Scienlab Power Allocation Management Solution for Battery Testing

The SL1770A test solution provides a groundbreaking, centralized power concept for larger battery-pack test laboratories that supply power >10 MW.

Maximum power >10 MW
Mains voltage 480 VAC
Form factor Cabinet
Measurement type N/A
Battery Types Pack

Leading Battery Test Solutions, From Cell to Pack

Keysight EV battery test solutions offer a precise platform for evaluating electric vehicle batteries across all levels, from individual cells to complete packs. These solutions are distinguished by their high-efficiency regenerative power capabilities, significantly reducing operational costs by feeding energy back into the grid during discharge. Coupled with powerful software for energy storage and lab operations, Keysight provides precise control over test sequences, data management, and advanced characterization techniques. These capabilities are crucial to automotive engineers for ensuring the safety, performance, efficiency, and longevity of EV batteries, directly impacting the accelerated development and reliable deployment of electric vehicles, stationary energy storage systems, and the broader e-mobility ecosystem. Request a quote for one of our popular configurations today. Need help selecting? Check out the resources below.

Cell to pack

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.

Regenerative power

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.

Comprehensive software

Define, control, and monitor complex test sequences, including performance, functional, aging, and environmental tests with built-in compliance for global industry standards.

EIS across all channels

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

The SL1770A test solution provides a groundbreaking, centralized power concept for larger battery-pack test laboratories that supply power >10 MW.

Centralized Management, Distributed Power, Allocated Excellence

Electric vehicle technology is evolving, with battery capacities, power, and currents needed to test them continuing to grow. A new approach is needed as EV battery test labs increasingly experience:

Higher current demand driven by large-capacity batteries Limited grid availability that cannot easily scale
Highly dynamic test profiles, where only short phases require maximum power Inefficient, static power provisioning across distributed test systems
The Scienlab Power Allocation Management Solution addresses these challenges with a centralized, reliable, and highly scalable power allocation architecture built for modern high-current test environments. A smarter architecture for high-power test labs
At the core of the solution is a combined, regenerative power array that forms a shared pool. Regenerative Power Units allow power to be allocated and released in 100 kW increments, ensuring each test bench receives precisely the power it needs. The allocated power is handled at each test bench by a control unit that provides electrical connections and measurement, test-bench automation, and safety control, as well as seamless integration with the central power pool.
After a test or test step has been finalized, the power is freed again and can be reallocated. This allows for reducing the total installed power and ensures a manageable grid load. Key capabilities
Dynamic power allocation Allocating power to channels in 100 kW increments
Load free reallocation between test steps Centralized management ensures consistent, reliable, and precise allocation
Modular and scalable system design Scale maximum power and channel count to the facility’s needs
Add capacity incrementally as projects and products grow Flexible test bench configurations. Per test bench, 1 to 16 channels can be configured with:
Voltage options: 1000 V, 1200 V, 1500 V Current options: 1000 A, 1500 A, 2000 A
Single output or switchable secondary output Up to 4 auxiliary low-power channels
Fine-control ranges: Current: 0–50 A or 0–200 A
Voltage: 20–300 V

Service and Support

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Calibration

Ensure your test system performs to specification and meets local and global standards.

Education

Make measurements quickly with in-house, instructor-led training, and eLearning.

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