The DCR150-2.5A is a 400 Watt DC Power Supply from Sorensen. Supplies DC Voltage and Current to test, design, and troubleshoot electric and electronic circuits. Applications include Burn In, QA, ATE, Research, Design, and Education to name a few.
Additional Features:
Voltage: 0-150V
Current: 0-2.5A
Power: 400W
50/60 Hz operation
Remote voltage or resistance programming in voltage and current modes
Adjustable current limiting-overload/sh
ort circuit protection-with automatic recovery
Excellent voltage and current regulation with automatic crossover
0.2% line and load regulation (typical)
40 ms transient response-50% changes (typical)
The Sorensen DCR150-2.5A utilizes SCR phase control techniques which provide high efficiency and minimum physical dimensions. The versitile and proven performance of this unit makes it ideal for industrial or scientific applications such as: controlled charging and discharging of batteries, precision electroplating, controlling magnetic devices, life testing of semiconductors and the forming of electrolytic capacitors.
The DCR150-2.5A is a 400 Watt DC Power Supply from Sorensen. Supplies DC Voltage and Current to test, design, and troubleshoot electric and electronic circuits. Applications include Burn In, QA, ATE, Research, Design, and Education to name a few.
Additional Features:
- Voltage: 0-150V
- Current: 0-2.5A
- Power: 400W
- 50/60 Hz operation
- Remote voltage or resistance programming in voltage and current modes
- Adjustable current limiting-overload/short circuit protection-with automatic recovery
- Excellent voltage and current regulation with automatic crossover
- 0.2% line and load regulation (typical)
- 40 ms transient response-50% changes (typical)
The Sorensen DCR150-2.5A utilizes SCR phase control techniques which provide high efficiency and minimum physical dimensions. The versitile and proven performance of this unit makes it ideal for industrial or scientific applications such as: controlled charging and discharging of batteries, precision electroplating, controlling magnetic devices, life testing of semiconductors and the forming of electrolytic capacitors.