Procyon PTS 2100-20 Battery Test System
5 kW – 480 kW
Scalable bi-directional charge/discharge battery test system — regenerative power stage at better than 93% efficiency, configurable from a desktop unit up to a full test floor.

Output
| Output voltage | 40V to 1500V |
|---|---|
| Output current | up to 8,000A |
| Phase | dc |
Input
| phase | 2-phase or 3-phase |
|---|---|
| voltage | 340-528 VAC |
Capabilities
- Bi-directional charge/discharge power stage, highly efficient (>93%)
- Regenerative — sink mode recoups up to 95% of loaded energy
- Scalable from 5kW – 480kW so hardware is reused as programmes grow
- Voltages from 40V to 1500V; currents up to 8,000A covers all pack technologies
- Accuracy: DC voltage <0.1%, DC current <0.2%, DC power <1%
- Built-in arbitrary generator for complex charge and discharge curves
- Automated test sequencer or manual control
- Programmable protection: OT, OVP, OPP, PF, OCP
What it is bought for
Each of these sets out the bus, the clause and where programmes get caught out.
Where this sits in the range
1 of 2 by ceiling in ATE Test Systems.
Further reading
- Turnkey ATE or Integrate It Yourself: A Framework That Survives Contact With a Budget
- The Battery Tester Voltage Window: Bought for 1500 V, Caught Out at 36 V
- Configuring a High-Power Rack: The Vega Decision, Module by Module
- High-Current Battery Testing: The Joint Fails Before the 8,000A Supply
- Replacing a Test System: Match the Channel Architecture, Not the Kilowatts
- Open Architecture ATE: The Test Program Should Outlive the Instrument
- Sizing a Battery Test Rack: Bench Unit to 480 kW Test Floor
- Battery Test Systems Are Bought on Power and Constrained by Channels
- NH Research 9300 Replacement: What to Match Before You Match the Power
Every figure on this page is transcribed from intepro-procyonpst2100-20-series.pdf. A build gate re-checks each one against that document and fails the build if it is not there.
