The Glassman EX200P008 is a 1600 W high-voltage DC power supply delivering 0–200 Vdc at 0–8 Amps with exceptional output regulation and minimal ripple. It features dual-mode constant voltage and constant current operation, selectable 0–5 Vdc or 0–10 Vdc programming inputs, and proportional monitoring outputs. Electronic current limiting protects against overload and short circuit, while adjustable crowbar/foldback circuits and thermal shutdown safeguard the load and supply.
## Technical Specifications
**Output Performance**
• Voltage range: 0–200 Vdc
• Current range: 0–8 Amps
• Maximum power: 1600 W
• Voltage regulation (line): < 0.01% of full scale
• Voltage regulation (load): < 0.05% of full scale
• Current regulation (line): < 0.02% of full scale
• Current regulation (load): < 0.10% of full scale
• Voltage ripple (RMS): < 0.1% of full scale
• Voltage ripple (peak-to-peak): < 1% of full scale
• Voltage stability (8-hour warm-up): < 0.05% of full scale
• Current stability (8-hour warm-up): < 0.10% of full scale
• Voltage temperature coefficient: < 0.01% per °C
• Current temperature coefficient: < 0.02% per °C
**Input Power**
• Selectable 120 Vac 15 A, 50/60 Hz or 208–240 Vac 10 A, 50/60 Hz (single phase)
**Environment**
• Operating temperature: 0–50°C
• Storage temperature: −40–85°C
• Humidity: 20–85% RH, non-condensing
## Key Features
• Proportional programming via 0–5 Vdc or 0–10 Vdc inputs (configurable)
• Analog monitoring outputs mirror voltage and current (0–5 Vdc or 0–10 Vdc)
• Front panel controls with status indicators
• Electronic current limiting for load protection
• Adjustable overvoltage crowbar or foldback circuits
• Thermal shutdown prevents component damage
• Rack-mountable chassis
## Typical Applications
High-precision DC bias supplies, material processing, research instrumentation, industrial electrochemistry, and any system requiring stable, regulated high voltage with remote programmability.
## Compatibility & Integration
Rear panel connectors support standard analog programming and monitoring signals. Input voltage selection via internal jumper accommodates facility power distribution standards.












