DS200PCCAG2A GE

¥999.00

The DS200PCCAG2A is a mid-capacity power supply converter board manufactured by General Electric (GE) for the Mark V Speedtronic Turbine Control System. The “G2A” suffix denotes the 7A continuous output version on the primary +5V logic rail, positioning it between the common 5A DS200PCCAG1A and the high-capacity 10A DS200PCCAG10A. This board transforms 115 VAC input into regulated +5V (7A), ±15V, and +24V outputs, providing a balanced solution for Mark V racks with moderate I/O expansion that exceed the 5A capacity but do not require the full 10A capability. As a legacy spare part, the DS200PCCAG2A is valued in power generation plants and industrial facilities operating GE Frame 5, 6, 7, and 9 turbines with medium-density instrumentation, offering a cost-effective upgrade path from the 5A base model without overspending on unnecessary capacity.

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Description

Key Technical Parameters

Parameter Specification
+5V Output 7A continuous, 8.5A peak
Other Outputs +15V @2A, -15V @1.5A, +24V @1.2A
Input 115 VAC ±10% (47-63 Hz) ONLY – no DC input option
Efficiency 80% typical at full load
Protection OVP (latch), OCP, OTP (latch – manual reset), 2.5kV surge
Diagnostics 4 LEDs – green “PWR OK”, green “AC OK”, red “FAULT”, yellow “CUR LIM”
Conformal Coating None – standard industrial grade
Temp Range 0 to +50°C ambient (85 CFM forced air recommended)
Form Factor 6U VME, 1-slot width (no adjacent slot clearance required)
Weight 1.35 kg (approx. 3.0 lbs)

Advantages & Core Features

  • 7A capacity – the “Goldilocks” power solution – The DS200PCCAG2A provides adequate power for Mark V configurations with 16-24 analog inputs, 16-24 digital I/O, 2-3 communication boards, and dual processor modules – scenarios where the 5A DS200PCCAG1A would be marginal but the 10A DS200PCCAG10A would be oversized and more expensive.

  • Improved efficiency over 5A model – At 80% efficiency (vs. 78% for the DS200PCCAG1A), the DS200PCCAG2A generates less heat per watt delivered, improving reliability in moderately populated racks.

  • Higher surge protection – 2.5kV surge rating (vs. 2kV on the DS200PCCAG1A) provides better resilience against lightning-induced transients and switching surges.

  • Compact 1-slot form factor – Unlike the 1.5-slot DS200PCCAG10A, the DS200PCCAG2A fits in any standard Mark V slot without requiring adjacent empty space – critical for upgrading existing racks without reconfiguring module placement.

  • Simple AC-only input – No DC infrastructure required; operates directly from standard 115 VAC plant power.

  • Cost-effective mid-range option – Significantly less expensive than the DS200PCCAG10A while offering 40% more capacity than the DS200PCCAG1A. The DS200PCCAG2A represents the best price-to-performance ratio for medium-density installations.

  • Basic LED diagnostics – Four LEDs provide immediate visual status: AC input present, +5V output healthy, current limit active, and general fault. Simple troubleshooting without specialized tools.

Application Cases

  • Mid-sized combined-cycle plant – A 300 MW facility upgraded their Mark V rack from 8 to 20 analog input channels for vibration monitoring. Total +5V load increased from 4.2A to 6.8A. The original DS200PCCAG1A (5A) was insufficient, but the DS200PCCAG2A (7A) provided adequate headroom without the expense of the 10A model. The board has operated reliably for 6+ years.

  • Industrial steam turbine with communication expansion – A chemical plant added two additional communication boards (MODBUS and OPC) to their Mark V rack for SCADA integration. The +5V load rose to 6.5A. The DS200PCCAG2A was selected over the DS200PCCAG10A due to the 1-slot form factor – the rack had no spare adjacent slots for the 1.5-slot 10A board.

  • Gas compressor station – A pipeline facility with three compressor trains used the DS200PCCAG2A in their control racks. The 7A capacity supported dual processor boards and 16 I/O modules with comfortable 0.5A margin. The board’s 80% efficiency reduced cooling requirements compared to the 5A model operating near its limit.

  • Hydroelectric upgrade – A dam facility replaced aging 5A boards with the DS200PCCAG2A as part of a control system refresh. The additional capacity allowed future I/O expansion without another power supply upgrade, providing a 5-year growth path.

Comparison with Related Variants

Feature DS200PCCAG2A (7A) DS200PCCAG1A (5A) DS200PCCAG10A (10A) DS200PCCAG10ACB (10A Coated/Bus)
+5V Capacity 7A (8.5A peak) 5A (6A peak) 10A (12A peak) 10A (12A peak)
DC Input Option No (AC only) No (AC only) Yes (dual AC/DC) Yes (dual AC/DC)
Efficiency 80% 78% >85% >85%
Surge Protection 2.5kV 2kV 6kV 6kV (with logging)
Current Sharing None None Active (±5%) Active (±2%)
Diagnostics 4 LEDs (basic) 4 LEDs (basic) 6 LEDs + 20-event log 8 LEDs + I²C + 50-event log
Conformal Coating No No No Yes (1,000 hr salt-spray)
Slot Width 1-slot 1-slot 1.5-slot 1.5-slot
Availability Uncommon (4-6 weeks) Common (2-4 weeks) Rare (8-14 weeks) Very rare (10-16 weeks)
Cost Moderate Low-moderate High Very high
Best For Medium I/O density, AC-only, 1-slot required Low I/O density, standard indoor High I/O density, DC backup Harsh environments + high I/O + diagnostics

Key Takeaway: The DS200PCCAG2A occupies the middle ground in the Mark V power converter family. It provides 40% more capacity than the DS200PCCAG1A at modest additional cost, while the 10A variants require significantly higher investment, longer lead times, and 1.5-slot clearance. For installations with +5V loads between 5A and 7A, the DS200PCCAG2A is the optimal choice. There is no conformally coated version of the 7A model – if environmental protection is required, you must either select the coated 5A DS200PCCAG1ABB/DS200PCCAG1ACB (if load allows) or the coated 10A DS200PCCAG10ACB.

Selection Suggestions

  1. Calculate your +5V load accurately – This is the critical decision factor. Sum the +5V current requirements of all boards in your Mark V rack. Select the DS200PCCAG2A if the total is:

    • Between 5A and 7A continuous – ideal range for the 7A capacity.

    • Between 7A and 8A – the 7A board may work if peak loads are short, but consider the 10A DS200PCCAG10A for safety margin.

    • Under 5A – choose the DS200PCCAG1A to save cost.

  2. Confirm AC power availability – The DS200PCCAG2A accepts 115 VAC only. If your facility provides 230 VAC or 125 VDC, you need an external step-down transformer or must select the dual-input DS200PCCAG10A variant.

  3. Assess environmental conditions – The DS200PCCAG2A has no conformal coating. For clean indoor control rooms (climate-controlled, low humidity, no chemical exposure), this is acceptable. For coastal, offshore, chemical, or high-humidity environments, consider the DS200PCCAG1ABB (if 5A is sufficient) or the DS200PCCAG10ACB (if 10A is needed) – there is no coated 7A option.

  4. Check slot availability – The DS200PCCAG2A fits in any 1-slot position. No adjacent empty slot is required, making it ideal for densely populated racks where the 1.5-slot 10A boards cannot be accommodated.

  5. Evaluate future expansion – If you anticipate adding more I/O modules within the next 2-3 years, consider whether the DS200PCCAG2A (7A) will still have sufficient margin. If expansion could push the load above 7A, invest now in the DS200PCCAG10A to avoid a second upgrade.

  6. Evaluate redundancy needs – The DS200PCCAG2A does not support parallel current sharing. If N+1 redundant power is required, you must use two DS200PCCAG10A or DS200PCCAG10ACB boards.

  7. Procurement – Purchase from reputable industrial surplus suppliers offering functional testing (full-load burn-in for 24 hours), ripple/noise measurements, and a 1-year warranty. Lead times are typically 4-6 weeks. The DS200PCCAG2A is less common than the DS200PCCAG1A but more available than the 10A variants.

  8. Stock spares – Maintain one on-site spare for critical applications. Lead times of 4-6 weeks make rapid emergency replacement challenging without local stock.

Important Precautions

  • Power down completely – De-energize the entire rack and wait 5 minutes for input capacitors (1,200 µF) to discharge. Hot-swapping is not supported – doing so will damage the board and backplane.

  • ESD protection – Use wrist strap and anti-static mat. The DS200PCCAG2A uses CMOS components sensitive to electrostatic discharge.

  • AC input only – Do not apply DC voltage to the input terminals. The DS200PCCAG2A lacks rectifier circuitry for DC operation and will be damaged.

  • Overtemperature reset – If the red FAULT LED illuminates and the board has overheated (OTP triggered), allow it to cool for at least 15 minutes. The OTP circuit is latching and requires a manual power cycle (disconnect AC input, wait 30 seconds, reconnect) to reset. Do not repeatedly reset without investigating cooling system health.

  • Cooling requirements – The DS200PCCAG2A dissipates approximately 45W at full load (vs. 35W for the 5A model). Ensure your rack provides at least 85 CFM airflow across the board. If upgrading from a 5A board, verify your rack’s cooling system can handle the additional thermal load.

  • Fan replacement – The onboard 40mm fan has a 40,000-hour lifespan (approx. 4.5 years). Replace preventatively every 4 years. Use only GE-specified fans with the correct connector and airflow rating (6 CFM minimum at 50°C).

  • Cleaning – Use compressed air (max 50 PSI, from 30 cm distance) to remove dust. Do not use liquid cleaners, alcohol, or brushes, as the board is not conformally coated and is susceptible to moisture ingress.

  • Storage – Store spares at 10-30°C, 20-50% RH. Rotate every 24 months – install and run at 50% load for 24 hours to reform electrolytic capacitors, then return to storage.

  • Fault diagnosis – If red FAULT illuminates:

    1. Verify AC input voltage (103-127 VAC).

    2. Check for output shorts using a multimeter.

    3. Allow 15-minute cool-down if OTP suspected.

    4. Cycle input power (disconnect 30 seconds, reconnect).

    5. If FAULT persists, the board requires repair or replacement – do not continuously reset.

Final Expert Recommendation

The DS200PCCAG2A is the optimal power converter for Mark V installations that require more than the 5A capacity of the base DS200PCCAG1A but do not justify the cost, lead time, or 1.5-slot footprint of the 10A DS200PCCAG10A. Its 7A capacity comfortably supports medium-density configurations with 16-24 I/O channels, multiple communication boards, and dual processors, providing a 0.5-1.0A safety margin that prevents voltage droop during peak demand.

The DS200PCCAG2A offers the best price-to-performance ratio in the Mark V power converter family. It is significantly more affordable than the 10A variants, has better availability (4-6 weeks vs. 8-14 weeks), and fits in any 1-slot position – eliminating the rack reconfiguration required for 1.5-slot boards. The improved efficiency (80% vs. 78%) and higher surge protection (2.5kV vs. 2kV) are valuable bonuses over the 5A model.

However, the DS200PCCAG2A has limitations: it is AC-only, lacks conformal coating, and does not support current sharing or advanced diagnostics. If your application requires DC input, harsh-environment protection, redundant operation, or predictive maintenance data, you must consider other variants – the coated 5A boards (if load allows), the 10A boards, or the diagnostically capable DS200PCCAG1ACB/DS200PCCAG1ADB (if 5A capacity is sufficient).

Select the DS200PCCAG2A when:

  • Your +5V load is between 5A and 7A continuous

  • You have standard AC power (115 VAC) only

  • Your environment is clean, indoor, and climate-controlled

  • You have no need for current-sharing redundancy

  • You want to preserve 1-slot rack space

Perform an accurate load calculation before purchase, verify cooling capacity, and source from certified suppliers who provide functional test documentation. With proper installation, regular fan replacement, and periodic cleaning, the DS200PCCAG2A will provide 8-12 years of dependable service as the “just right” power solution for your Mark V turbine control system.

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