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Use the best possible support for secure and precise testing of battery management systems
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Highlights
Meet the SL101XA Scienlab BMS (Battery Management System) Environment Series
The Scienlab BMS Environment has important safety, control, and regulation functions, including the monitoring of various parameters such as voltage, current, temperature or state of charge (SOC). It also monitors thermal management, energy management, cell balancing and performance.
- Safety for personnel and product even in critical operating points – because no real components are used
- No risk of hazards from the cell chemistry and the electrical energy of the battery
- Real-time interfaces for fast data transfer (1 Gbps) between the test systems and the HiL system
High Performance for All Your Battery Management System Test Applications
The Scienlab Battery Management Systems (BMS) test solutions leave nothing to be desired:
- Parameterizable cell models for each cell type
- Maximum measuring precision
- Dynamic control
- Cell temperature through emulation of typical RTD sensors such as PT-100, PT-500, PT-1000, Ni and KTY
- Battery current sensors (up to ±1000 A at a 100 µOhm shunt)
- Individually defined errors such as insulation faults at the battery voltage, line breaks, short-circuits, or reverse polarity

Key Specifications
Voltage
0 – 8 V
Current (parallel operation)
±5 A (±10 A)
Power (parallel operation)
±40 W (±80 W)
Measuring Range
up to ±2 µA ±0.05% of measured value
Voltage Set and Measuring Accuracy
< ±0.2 mV (offset), ±0.01% of measured value
Find the Model that's Right for You
Ant.
SL1010A
Use the best possible support for secure and precise testing of battery management systems
The SL1010A Scienlab battery management system (BMS) Environment emulates conditions that enable you to test and improve BMS functions of enabling safety, control, and regulation functions.
SL1011A
Use the best possible support for secure and precise testing of battery management systems
As an established energy storage test system Manufacturer, Keysight has a sound knowledge of Battery Management Systems (BMS) and batteries.
The modular system architecture enables individual compilation including ready-to-use cell-models. It also enables flexible control of the system. The emulators are implemented by standardized interfaces into HiL environments such as Vector or dSpace.
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