The 62024P-600-8 is a 2400 Watt DC Power Supply from Chroma. 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:
Volts: 0~600V
Current: 0~8A
Power: 2400W
Digital encoder knobs, keypad and function keys
Power Factor Correction (0.95)
High-speed Programming
Precision V&I Measurements
Current sharing for parallel operation with Master/Slave Control
Auto Sequencing Programming: 10 Programs / 100 Sequences / 8 bit TTL
Voltage & Current Slew Rate Control
OVP, Current Limit, Thermal protection
Remote sense, 5V line loss compensation
APG (Analog Programmable Interface) with Isolated Analog Interface Card
Optional GPIB control with SCPI
Standard RS-232 interface
LabView and Labwindows
CE Certified
Standard USB interface (available for Model 62024P-80-60, 62024P-100-50,62050P
-100-100)
Applications:
Soft Start Testing
Voltage Step Waveform
D/D Converter Sag Testing
D/D Converter Cycle Drop Testing
D/D Converter Surge Testing
Pulse Charge of Battery
Life Cycle Testing
Line Regulation Testing
Turn on Time of Setting 80V
Voltage Sequence Program
The Chroma 62024P-600-8 programmable DC power supply offers many unique advantages for ATE integration and testing.These advantage include a constant power operating envelope, precision readback of output current and voltage, output trigger signals as well as the ability to create complex DC transients waveforms to test device behavior to spikes, drops, and other voltage deviations. Designed for automated testing DC-DC converters and similar products, the 62024P-600-8 sets a new standard for high accuracy programmable DC supplies.
The 62000P Series includes 8 different models ranging from 600W to 5000W, up to 100A and up to 600V. Due to their constant power operating envelope a single instrument can provide both high voltage/low current AND low voltage/high current thereby reducing the number of supplies needed in typical ATE applications.
The 62024P-600-8 is a 2400 Watt DC Power Supply from Chroma. 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:
- Volts: 0~600V
- Current: 0~8A
- Power: 2400W
- Digital encoder knobs, keypad and function keys
- Power Factor Correction (0.95)
- High-speed Programming
- Precision V&I Measurements
- Current sharing for parallel operation with Master/Slave Control
- Auto Sequencing Programming: 10 Programs / 100 Sequences / 8 bit TTL
- Voltage & Current Slew Rate Control
- OVP, Current Limit, Thermal protection
- Remote sense, 5V line loss compensation
- APG (Analog Programmable Interface) with Isolated Analog Interface Card
- Optional GPIB control with SCPI
- Standard RS-232 interface
- LabView and Labwindows
- CE Certified
- Standard USB interface (available for Model 62024P-80-60, 62024P-100-50,62050P-100-100)
Applications:
- Soft Start Testing
- Voltage Step Waveform
- D/D Converter Sag Testing
- D/D Converter Cycle Drop Testing
- D/D Converter Surge Testing
- Pulse Charge of Battery
- Life Cycle Testing
- Line Regulation Testing
- Turn on Time of Setting 80V
- Voltage Sequence Program
The Chroma 62024P-600-8 programmable DC power supply offers many unique advantages for ATE integration and testing.These advantage include a constant power operating envelope, precision readback of output current and voltage, output trigger signals as well as the ability to create complex DC transients waveforms to test device behavior to spikes, drops, and other voltage deviations. Designed for automated testing DC-DC converters and similar products, the 62024P-600-8 sets a new standard for high accuracy programmable DC supplies.
The 62000P Series includes 8 different models ranging from 600W to 5000W, up to 100A and up to 600V. Due to their constant power operating envelope a single instrument can provide both high voltage/low current AND low voltage/high current thereby reducing the number of supplies needed in typical ATE applications.