GE IS210BPPCH1A | VME Power Module | Fast Shipping

  • Model: IS210BPPCH1A
  • Brand: GE (General Electric)
  • Series: Mark VIe Speedtronic
  • Core Function: VME-based power supply board providing regulated DC power to Mark VIe control system backplanes for logic and I/O circuits with comprehensive diagnostics
  • Product Type: Power Supply Module (VME form factor)
  • Key Specs: 125 VDC input | 5 VDC @ 20 A output | ±12 VDC @ 2.5 A output | 24 VDC @ 3.5 A output | 90% efficiency | Comprehensive diagnostics
  • Condition: New Surplus, OEM packaging. Factory-sealed units available.
Manufacturer:

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Description

 

Product Introduction

The GE IS210BPPCH1A is a VMEbus power supply board from the Mark VIe Speedtronic series, purpose-built to provide regulated DC power to the Mark VIe control system backplanes. This board converts the plant’s nominal 125 VDC bus (typically from battery-backed DC supplies) into the clean, regulated voltages required by processor boards, I/O modules, communication interfaces, and field devices. The H1A revision features comprehensive diagnostics and balanced power capacity for standard configurations.

What sets the BPPCH1A revision apart is its robust input filtering, wide input voltage tolerance (100–150 VDC), efficient operation (90% typical), and comprehensive diagnostics including voltage monitoring, current monitoring, and temperature sensing. The board delivers 5 VDC at up to 20 A for logic circuits, ±12 VDC at 2.5 A for auxiliary circuits, and 24 VDC at 3.5 A for field I/O—all with low ripple for stable operation. Advanced features include input transient protection, output overvoltage and overcurrent protection, and status monitoring. For system integrators requiring a reliable, cost-effective power solution for standard Mark VIe configurations, this board is the direct OEM solution.

 

Key Technical Specifications

Parameter Value
Input Voltage 125 VDC nominal (range: 100–150 VDC)
Input Current 3.2 A typical at full load
Output 1 (Logic) 5 VDC @ 20 A continuous, 25 A peak
Output 2 (Auxiliary) +12 VDC @ 2.5 A continuous
Output 3 (Auxiliary) −12 VDC @ 2.5 A continuous
Output 4 (Field) 24 VDC @ 3.5 A continuous, 4.5 A peak
Output Ripple <50 mV peak-to-peak at full load (all outputs)
Efficiency 90% typical at 125 VDC input, full load
Isolation 2,500 VDC input-to-output
Overvoltage Protection 5.5 V clamp (5 V), 13.5 V clamp (±12 V), 28 V clamp (24 V)
Overcurrent Protection Foldback current limiting, auto-recovery
Input Transient Protection 1,500 V surge withstand, 100 µs
Status Monitoring Voltage, current, temperature, health
Operating Temperature 0 to +55°C (ambient), derated above 50°C
Storage Temperature −40 to +85°C
Form Factor 6U VME, single slot
Connectors P1/P2 VME backplane, front panel terminal block
Power Draw 125 VDC @ 3.2 A typical (400 W input)
Firmware Requires Mark VIe Toolkit v6.0 or higher

 

Key Selling Points & Differentiators

  • Balanced Power Capacity: 20 A on 5 V rail—ideal for standard configurations without excess capacity.
  • Multiple Output Rails: 5 V, ±12 V, and 24 V outputs—supplies all Mark VIe backplane power requirements from a single module.
  • Wide Input Range: Accepts 100–150 VDC, covering typical plant battery voltages and fluctuations.
  • Comprehensive Diagnostics: Voltage, current, temperature, and health monitoring for proactive maintenance.
  • Comprehensive Protection: Foldback current limiting, overvoltage clamping, and thermal shutdown.
  • Efficient Operation: 90% efficiency—balances cost and performance.
  • Low Ripple Output: <50 mV peak-to-peak ensures stable operation of sensitive electronics.
  • Live Test Verified: Every board undergoes a 48-hour burn-in at full rated load with cycling input voltage. We log output voltages, ripple, thermal performance, and diagnostic thresholds.
  • 90-Day Warranty: Covers functional defects. If it fails under normal operating conditions, we replace it. No restocking fee for verified returns.
  • OEM Traceability: All units come from audited surplus channels with original GE anti-static bags and serialized labels. No clones, no refurbished units with unknown repair history.
  • Pre-Shipment Capacitor Reform: For units stored more than 12 months, we perform a controlled capacitor reforming procedure to prevent inrush failures.

 

Frequently Asked Questions (FAQ)

Q: What is the difference between IS210BPPCH1A and IS210BPPBH2A?

A: The BPPCH1A provides lower capacity (5 V @ 20 A vs. 30 A) and lower efficiency (90% vs. 92%). The BPPCH1A is designed for standard configurations with moderate power requirements. The BPPBH2A is designed for heavily loaded configurations requiring higher current capacity. Choose BPPCH1A for standard systems, BPPBH2A for high-density systems.

Q: What is the difference between IS210BPPCH1A and IS210BPPCH1B?

A: The H1B revision typically includes enhanced diagnostics or minor performance improvements. The H1A is the base revision. Check your existing board—if you have H1B, verify compatibility. In most cases, H1A and H1B are interchangeable, but confirm with the board’s firmware requirements.

Q: What is the benefit of the 90% efficiency?

A: Higher efficiency means less heat generation inside the cabinet. For a 400 W power supply, 90% efficiency generates approximately 40 W of heat vs. 44 W for an 89% efficient supply. This difference can impact cabinet temperature and component life in tightly packed cabinets.

Q: What is the difference between IS210BPPCH1A and IS200WNPSH1A?

A: The BPPCH1A provides multiple output rails (5 V @ 20 A, ±12 V @ 2.5 A, 24 V @ 3.5 A) vs. the WNPS which provides only 5 V (20 A) and 24 V (3 A). The BPPCH1A also includes ±12 V outputs for auxiliary circuits. If your backplane requires ±12 V, choose BPPCH1A.

Q: Can I use this board with 24 VDC or 48 VDC input instead of 125 VDC?

A: No. The BPPCH1A is specifically designed for 125 VDC nominal input (100–150 VDC range). Using lower voltages will not produce the required outputs—the converter needs at least 90 VDC to regulate properly. Using higher voltages (above 150 VDC) will damage the input stage.

Q: Is this board hot-swappable?

A: No. The Mark VIe VME backplane does not support live insertion of power boards. You must de-energize the entire rack, wait for all LEDs to extinguish, and discharge the input bus capacitors (use a resistor, not a short). We’ve seen technicians try to pull a BPPC with the rack still powered—it arced across the backplane pins and took out neighboring boards. Don’t risk it.

Q: What is the typical lead time for this part?

A: We stock these on the shelf—usually ship within 24 hours of order placement and payment confirmation. For international orders, add 3–5 days for customs. If you need expedited (overnight air), we can do that, but you’ll need to coordinate with our logistics team for the cut-off time.

Q: Does this board work with both Mark VIe and Mark VIeS (SIL-rated) cabinets?

A: Yes—with a caveat. The BPPCH1A provides the same voltages for both standard and SIL-rated cabinets. However, SIL systems typically require redundant power supplies (two BPPC boards in parallel with diode isolation). The H1A can be used in those configurations, but you must ensure your backplane supports the OR-ing diodes. If your SIL system uses IS220BPPC variants, check the diode configuration first. We can help you verify compatibility if you send us your cabinet model.

Q: What’s your return policy if this doesn’t fix my power-related fault?

A: If the board is electrically functional (passes our QC test) but doesn’t clear your fault, we’ll accept a return within 30 days provided the board shows no physical damage, no blown fuses, and no signs of overvoltage stress. We do charge a 15% restocking fee if the fault was due to a downstream short circuit or incorrect input voltage. We’ll work with you over the phone to diagnose the issue before we ship—our goal is to get you running, not to ship boxes back and forth.

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