• EA-PSB 11000-10 2U
  • EA-PSB 11000-10 2U

EA-PSB 11000-10 2U

3000W 2U bidirectional programmable DC power supply with 0–1000V, ±10A autoranging output and up to 95% energy recovery efficiency in sink mode. Combines a laboratory power supply and an electronic load in one unit with seamless source-sink switching. Built‑in discharge circuit (output <60V within ≤10s) ensures safe high‑voltage operation. Equipped with a 5″ TFT touch panel, built‑in function generator (sine, triangle, rectangle, trapezoid, DIN 40839, ramp, arbitrary, XY table), internal resistance simulation, battery test, PV and fuel cell simulation, and MPPT tracking. Supports master-slave parallel operation (up to 64 units). Includes galvanically isolated analog (0–5/10V), USB, and Ethernet interfaces. Optional plug‑in modules for Profibus, ProfiNet, CAN, CANopen, RS232, ModBus TCP, or EtherCAT. Ideal for high‑voltage battery testing, solar simulation, and automated test systems.

Output Current
±0-10A
Output Power
±3000W
Output Voltage
0-1000V
Type
2U
Characteristic Curve
U/I/P autoranging
External Control
Analogue 0-5V/0-10V, USB, LAN, Modbus TCP, Profibus, DeviceNet, RS232, CAN
Housing
19" rack
Human Interface
Touch panel & Menu
Special Feature
Function Generator, Resistance, Sink
  • EA-PSB 11000-10 2U

Description

30-Second Fit Check

  • Need a single unit that sources and sinks high‑voltage DC power? Output is 0–1000 V, current ±10 A (source +10 A, sink -10 A).
  • Rated power: 3000 W (1500 W at 110–127 VAC) with autoranging (U/I/P).
  • In sink mode, up to 95% of consumed energy is recovered and fed back into the local grid.
  • Built‑in discharge circuit reduces output to <60 V within ≤10 s after DC off – essential for 1000 V safety.
  • AC supply: 110–240 VAC, 45–65 Hz, single‑phase (derates to 1500 W at 110–127 VAC).
  • Protection: OVP, OCP, OPP, OT, PF, MSP, SF (separately configurable for source and sink).
  • Resistance range: 3–6000 Ω; ripple typical 100 mVrms (BW 300 kHz).
  • Weight approx. 12.7 kg; dimensions 19″ × 2U × 462 mm enclosure, total depth min. 559 mm.

What It Is + Why It Matters

  • Highest‑voltage bidirectional DC power supply in the 2U series – functions seamlessly as a power supply (source) and electronic load (sink) in one chassis, eliminating separate instruments for 1000 V testing.
  • Autoranging output stage delivers up to 10 A in either direction; voltage, current, and power limits are independently adjustable for source and sink modes.
  • In sink mode, the built‑in energy recovery feeds up to 95% of consumed DC energy back into the local grid, dramatically reducing cooling costs for high‑voltage test environments.
  • Built‑in discharge circuit rapidly reduces output voltage after shutdown – critical for operator safety at 1000 V working levels.
  • Integrated function generator (sine, triangle, rectangle, trapezoid, DIN 40839, ramp, arbitrary up to 99 points, XY table) plus dedicated PV, fuel cell, and battery simulation functions replace costly external test equipment.
  • Master-slave parallel operation supports up to 64 units (192 kW total) with true totaling of actual values; mixed power classes and PSBE series slaves are supported.
  • Optional industrial interface modules (Profibus, ProfiNet, CAN, CANopen, RS232, ModBus TCP, EtherCAT) plug into the rear slot for direct PLC integration.
Note: The device automatically derates to 1500 W when running on 110–127 VAC supplies. For sink mode energy recovery, a suitable grid connection and possibly an external NS protection device (per local regulations) are required. The discharge circuit provides essential safety at 1000 V – always verify voltage decay before handling connections.

Key Specs

  • DC Output: 0–1000 V, 0–±10 A (source/sink), 3000 W autoranging bidirectionally (1500 W derated at 110–127 VAC).
  • Resistance range: 3–6000 Ω (sink mode); internal resistance simulation available in source mode.
  • Efficiency sink/source: up to 95% – highest in the PSB 10000 2U series.
  • Voltage accuracy: <0.1% FS; load regulation CV <0.05%; stability CV <0.02% (8 h); display accuracy ≤0.05%.
  • Current accuracy: <0.2% FS; rise/fall time CC ≤10 ms (sink), rise time CV ≤20 ms (source).
  • Power accuracy: <1% FS.
  • Ripple (typ.): voltage 100 mVrms (BW 300 kHz), 2000 mVpp (BW 20 MHz).
  • DC output capacity: 60 µF.
  • Discharge circuit: output <60 V within ≤10 s after DC off (standard for models ≥200 V).
  • Insulation: DC± to PE ±1500 V DC / +2000 V DC; AC‑to‑DC 3750 Vrms.
  • Display: 5″ colour TFT touch panel (800×480 pt, capacitive, gorilla glass).
  • Analog interface: 15‑pole D‑Sub, 0‑5/10 V, galvanically isolated; U,I,P,R set & monitor; separate control for source and sink modes via voltage level.
  • Digital interfaces (built‑in): USB (CDC, rear), USB‑A (front, data/logging), Ethernet (100 MBit, SCPI/ModBus RTU).
  • Optional interfaces: Profibus, ProfiNet, CAN, CANopen, RS232, ModBus TCP, EtherCAT (plug‑in slot).
  • Master-slave: up to 64 units via RJ45 bus + BNC Share bus; mixed power classes supported, PSBE series slaves compatible.
  • Function generator: sine, triangle, rectangle, trapezoid, DIN 40839, ramp, arbitrary (99 points), XY table (4096 points).
  • Special functions: battery test (static/dynamic charge/discharge + dynamic test flow), PV simulation (simple + EN 50530 extended), FC table simulation, MPPT tracking (4 modes).
  • Protection: OVP, OCP, OPP (separately configurable for source and sink), OT, PF, MSP, SF.
  • Standards: EN 61010‑1, IEC 61010‑1, UL 61010‑1, EN 55011 Class B, FCC Part 15B Class B.

Integration & Installation

  • Standard 19″ rack‑mount, 2U height; DC terminal on rear panel (copper blades with protective covers).
  • AC supply: hard‑wired 3‑pole clamp terminal (L, N, PE); rigid connection required. For 10 A, use ≥0.75 mm² (AWG18) DC cables with appropriate high‑voltage insulation.
  • Front panel: 5″ touch display, two rotary knobs with pushbutton, USB‑A, On/Off button with LED status.
  • Rear panel: DC terminal, remote sense, Share bus (BNC ×2), master-slave bus (RJ45 ×2), analog interface (D‑Sub), USB‑B, Ethernet, interface module slot, grounding point (PE).
  • Cooling: temperature‑controlled fans; ensure ≥30 cm clearance behind the unit and adequate rack airflow.
  • Grid connection for sink mode: consult local regulations regarding energy feedback; external NS protection device may be required (VDE‑AR‑N 4105/4110, G99, etc.).

Best for / Not for

  • Best for: high‑voltage battery charge/discharge cycling, photovoltaic inverter testing up to 1000 V, fuel cell simulation, DC‑DC converter validation, and automated ATE where a single instrument must source and sink high‑voltage power with energy recovery and built‑in safety discharge.
  • Not for: applications needing output voltage above 1000 V, current beyond ±10 A, or sustained power above 3000 W (1500 W at low line). Not suitable for off‑grid or generator supplies in sink mode.

Selection Checklist + RFQ

  • Confirm required DC voltage ≤ 1000 V, current ≤ ±10 A, sustained power ≤ 3000 W (1500 W at 110–127 VAC).
  • Verify AC mains: 110–240 VAC single‑phase; for sink mode, check local grid‑feedback regulations.
  • Choose remote control method: built‑in analog/USB/Ethernet, or add an optional industrial bus module (Profibus, CAN, etc.).
  • For 1000 V wiring, ensure DC cables have adequate voltage rating; use appropriate ring lugs and terminal covers.
  • If master-slave operation is planned, ensure all units have matching 1000 V ratings and prepare BNC and CAT5 cables.
  • For 1000 V safety, always verify the discharge circuit is operational and wait ≥10 s before handling DC connections.
  • Plan rack depth (≥559 mm total) and cooling; the 95% energy‑recovery efficiency minimises HVAC requirements in high‑duty‑cycle testing.

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