Description
Product Introduction (Anti-Template)
The DS200TCQCG1ADB is a dedicated relay output board with reinforced isolation (1800Vrms) and extended temperature operation (-20°C to +65°C)—the board that takes the controller’s ON/OFF signals and drives solenoids, contactors, and pilot relays in harsh environments. This board gives you 8 relay outputs in one VME slot, with diagnostic LEDs per channel and the robustness needed for demanding applications.
The ‘TCQC’ in the part number indicates this is a discrete output board with relay outputs (as opposed to solid-state outputs on the ‘TCQB’ series). The ‘ADB’ suffix tells you this is the enhanced version: reinforced isolation (1800Vrms), extended temperature range (-20°C to +65°C), enhanced EMC protection, diagnostic LEDs per channel, 5ms update rate, and improved noise filtering. Compared to the TCQCG1A (standard isolation, 0-60°C), the ‘ADB’ gives you reinforced isolation, extended temperature range, and enhanced EMC protection. If you need to drive high-current loads in a harsh environment, this board is the solution.
Key Technical Specifications
| Parameter | Value / Range |
|---|---|
| Manufacturer | General Electric (GE) |
| Part Number | DS200TCQCG1ADB |
| Board Type | Relay Output Board |
| Number of Channels | 8 (relay outputs) |
| Output Type | Relay (Form C, normally open/normally closed) |
| Contact Rating | 5A at 250VAC or 5A at 30VDC |
| Output Voltage | 24, 48, or 125 VDC (configurable per output) |
| Update Rate | 5ms (all channels updated simultaneously) |
| Diagnostic LEDs | Per-channel: green (ON), amber (OFF), red (fault) |
| Isolation | Channel-to-channel: 1800Vrms (reinforced); channel-to-backplane: 1800Vrms (reinforced) |
| EMC Protection | Enhanced (IEC 61000-4-3: 10V/m radiated immunity; IEC 61000-4-2: 8kV ESD; IEC 61000-4-5: 2kV surge) |
| Input Power | 24 or 48 VDC (via backplane) |
| Mounting | VME rack (fits standard Mark VI backplane) |
| Operating Temp | -20°C to +65°C (extended range) |
| Firmware | Version 3.5 or later required |
| Connectors | 1 x 96-pin DIN backplane connector |
Compatible Replacement Models
Replacement options depend on your isolation, temperature, and EMC requirements.
✅ Drop-in Replacement: The DS200TCQCG1A (no ‘DB’) is a direct electrical drop-in—same pinout, same 8 relay outputs, same contact rating, same update rate, same diagnostics. The differences: the ‘A’ has standard isolation (1500Vrms), standard temperature range (0-60°C), and standard EMC protection. If your environment is benign and your requirements are standard, the ‘A’ is a cheaper option (typically 15-20% less). The ‘ADB’ is for harsh environments requiring reinforced isolation.
✅ Drop-in Replacement: The DS200TCQCG1 (base model) is a significant downgrade—only use if you’re in a pinch.
⚠️ Software Compatible: The DS200TCQBF1B (16 solid-state outputs) provides more channels but with lower current rating (2A vs. 5A). Only use if you need solid-state outputs.
⚠️ Software Compatible: The DS200TCQBG1A (8 inputs, 8 relay outputs) provides both inputs and outputs—only use if you need both functions.
❌ Hardware Incompatible: Any analog I/O board (TCCAG1 series) or discrete input board (TCQAF1 series) uses different backplane pins and is not suitable for outputs.
Frequently Asked Questions (FAQ)
What does the ‘ADB’ suffix mean on this relay output board?
GE’s suffix coding for the TCQCG1ADB: the ‘A’ is the base platform (relay output, 8 channels, 5ms update, diagnostic LEDs). The ‘D’ indicates reinforced isolation (1800Vrms), extended temperature components (-20°C to +65°C), and enhanced EMC protection. The ‘B’ is the production revision with improved noise filtering. So ‘ADB’ is the most robust version of the TCQCG1 platform.
What’s the difference between standard and reinforced isolation?
The TCQCG1A has standard isolation: 1500Vrms between the outputs and the backplane. The ‘ADB’ has reinforced isolation: 1800Vrms, providing double the safety margin and meeting IEC 61010-1 reinforced insulation requirements. The reinforced isolation uses larger components with greater creepage distances and is more resistant to high common-mode voltages and transients.
What type of relays does this board use?
The TCQCG1ADB uses Form C relays—each output has a normally open (NO) and normally closed (NC) contact. The relays are rated for 5A at 250VAC or 5A at 30VDC and are field-replaceable (plug-in type).
Can I use this board with a Mark VIe controller?
No—the TCQCG1ADB uses the older Mark VI backplane pinout. Mark VIe uses a different assignment and typically uses the IS200TCQCG1ADB for relay outputs. Use the Mark VIe-specific board for new installations.
How do I test this board before installation?
Testing the TCQCG1ADB requires checking all 8 outputs and verifying reinforced isolation:
- Visual inspection: Check for burnt components. Look for diagnostic LEDs, relay wear, and larger isolation transformers.
- Power-up test: Apply power. All diagnostic LEDs should briefly flash during POST.
- Firmware check: Read firmware via ToolboxST—should be 3.5 or later.
- Output test: Command output 1 ON—verify relay closes and LED illuminates green. Measure continuity across contacts—should be <0.1Ω. Command OFF—verify relay opens and LED turns amber. Repeat for outputs 1-8.
- Contact resistance test: Measure contact resistance of each relay—should be <0.1Ω for new relays.
- Update rate test: Verify the board updates at 5ms intervals.
- EMC test (if equipment available): Apply a 10V/m radiated RF field—verify outputs remain stable.
- Isolation test: Apply 1800Vrms between an output channel and ground for 1 minute.
- Temperature test: Cycle from -20°C to +65°C—verify operation.
What’s the most common failure on this board?
Two issues specific to the relay output design:
- Relay contact wear. The relay contacts can wear out over time, especially if switching inductive loads. Symptom: output doesn’t close or exhibits high contact resistance.
- Diagnostic LED failure. The LEDs can fail after 10+ years—a failed LED doesn’t affect the output, but you lose visual indication.
If I’m using this board in a SIL-rated safety application, what’s the recommended maintenance interval?
The relay outputs, reinforced isolation, and enhanced EMC make this board suitable for SIL-1 and SIL-2 applications (not SIL-3). We recommend:
- Visual inspection: Every 6 months (check diagnostic LEDs and relay contacts)
- Power-up test: Every 12 months
- Output test: Every 12 months (verify relay operation and contact resistance)
- EMC test (if equipment available): Every 5 years
- Isolation check: Every 2 years
- Full calibration: Every 5 years
What’s the lead time for a replacement TCQCG1ADB?
These boards are less common than standard versions:
- New surplus: 4-8 weeks. The ‘ADB’ commands a premium—expect 20-30% above the TCQCG1A.
- Refurbished: 2-4 weeks. Ensure the refurbisher tests the reinforced isolation.
- Used/as-is: High risk—the relays are wear items.
Is there a direct Mark VIe equivalent?
Yes—the IS200TCQCG1ADB (Mark VIe version). The backplane pinout is different.
What termination board should I use with the TCQCG1ADB?
The TCQCG1ADB is designed to interface with a termination board that supports relay outputs. The DS200TBQAG1A (high-current discrete termination) or DS200TBPXG1A (mixed-signal termination) can be used. For best results with reinforced isolation and EMC protection, use shielded wiring and follow the grounding instructions in the GE manual.
What’s the update rate for this board?
The TCQCG1ADB updates all 8 channels simultaneously at 5ms intervals—200Hz update rate.
What’s the maximum load for the relay outputs?
The relay outputs are rated for 5A at 250VAC or 5A at 30VDC. For inductive loads (solenoids, contactors), derate to 2A or use an external snubber circuit to protect the relay contacts. The relays are field-replaceable—keep spare relays in your maintenance kit. The reinforced isolation on the ‘ADB’ version extends to the relay outputs, providing better isolation between the field wiring and the backplane.

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