Description
Key Technical Parameters
| Parameter | Specification |
|---|---|
| Function | Remote terminal board for field I/O with integrated fieldbus (enhanced capacity, 2A outputs, coated, advanced configuration) |
| Terminal Capacity | 80 terminals (5x 16-terminal blocks) – highest in RTBA family |
| Output Current Capacity | 2A per channel (highest in RTBA family) |
| I/O Types Supported | Analog inputs (4-20mA, 0-10V), digital inputs (24-125 VDC), digital outputs (relay/transistor), thermocouple, RTD, and smart fieldbus devices |
| Wire Gauge | 12-22 AWG (solid/stranded) for conventional I/O; fieldbus uses dedicated shielded cable |
| Terminal Type | Screw-clamp (rise-clamp) with dual-wire entry capability for conventional I/O; fieldbus connectors (e.g., SUB-D or M12) |
| Fuse Protection | 20 onboard fuses – one per output channel, user-replaceable, 2A rating, with LED indication and current sensing |
| Diagnostic Indicators | 32 LEDs – 20 channel status LEDs (green/red), 5 block-level “CHANNEL BLOCK” LEDs, 1 “PWR OK” LED, 1 “COAT OK” LED (coating integrity), 1 “WARN” LED (pre-failure), 1 “BUS ACT” LED (fieldbus active), 1 “FB-ERR” LED (fieldbus error), 1 “FB-LINK” LED (fieldbus link), 1 “S-COM” LED (serial communication), 1 “COM ACT” LED (communication active) |
| Fieldbus Interface | Integrated fieldbus port (Profibus DP, MODBUS RTU, or Foundation Fieldbus – configurable) |
| Fieldbus Diagnostics | Real-time fieldbus communication status, device health monitoring, network statistics |
| Enhanced Monitoring | Individual channel current sensing (up to 2A), fuse health monitoring, temperature sensing, channel impedance monitoring, fieldbus communication health, remote communication status |
| Isolation | 2,500 VAC isolation between field side and control side; fieldbus interface galvanically isolated |
| Conformal Coating | Acrylic (Humiseal 1B73), 0.002-0.003″ thickness, 1,000 hr salt-spray rated |
| Temperature Range | 0 to +60°C ambient (extended from +55°C) |
| Form Factor | 6U VME, 1-slot width (fits in remote junction box or dedicated slot) |
| Weight | 0.65 kg (approx. 1.43 lbs) |
Advantages & Core Features
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Highest terminal capacity with conformal coating and fieldbus – The DS200RTBAG2AGC provides 80 terminals, 2A per channel output capacity, conformal coating, and an integrated fieldbus interface – the ultimate combination of density, protection, and communication.
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Highest output current capacity (2A per channel) – Supports direct control of higher-power field devices without external interposing relays.
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Integrated fieldbus with reduced wiring – The fieldbus interface reduces individual field wiring runs by enabling a single digital bus to multiple smart devices.
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Comprehensive diagnostic LED array – 32 LEDs provide granular status: 20 channel status LEDs, 5 block-level LEDs, “PWR OK”, “COAT OK” (coating integrity), “WARN” (pre-failure), “BUS ACT” (fieldbus active), “FB-ERR” (fieldbus error), “FB-LINK” (fieldbus link), “S-COM” (serial communication), and “COM ACT” (communication active).
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Pre-failure amber WARN LED – Alerts operators to potential issues before a full fault occurs, enabling predictive maintenance.
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Conformal coating with integrity monitoring – The white “COAT OK” LED provides real-time validation of coating integrity.
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Enhanced monitoring – Individual channel current sensing (up to 2A), impedance monitoring, temperature monitoring, and remote communication monitoring.
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Extended temperature range – 0 to +60°C ambient allows use in warm environments.
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Fieldbus protocol flexibility – Supports Profibus DP, MODBUS RTU, or Foundation Fieldbus (field-configurable).
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Individual channel fusing – Each conventional output channel is protected by a user-replaceable fuse (20 total) with LED indication.
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Galvanic isolation – 2,500 VAC isolation protects the Mark V backplane; fieldbus interface is also galvanically isolated.
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Compact 1-slot form factor – Occupies a single slot, maximizing rack space.
Key Differences vs. DS200RTBAG2AFB (Uncoated “G2AFB” Model)
| Feature | DS200RTBAG2AFB (Uncoated) | DS200RTBAG2AGC (Coated, Advanced) |
|---|---|---|
| Conformal Coating | No | Yes (1,000 hr salt-spray rated) |
| Temp Range | 0 to +55°C | 0 to +60°C |
| Coating Integrity LED | None | White “COAT OK” |
| S-COM LED | No | Yes |
| COM ACT LED | No | Yes |
| Diagnostic LEDs | 28 | 32 |
| Impedance Monitoring | No | Yes |
| Remote Communication Monitoring | No | Yes |
| Availability | Exceedingly rare++ (22-28 wks) | Exceedingly rare+++ (26-32 wks) |
| Cost | Premium+++ | Premium++++ |
Application Cases
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Mega offshore platform with extreme I/O, harsh environment, and fieldbus – A North Sea mega-platform uses the DS200RTBAG2AGC to provide 80 terminals, 2A outputs, and Profibus DP communication to smart actuators, all protected by conformal coating. The COAT OK LED confirms coating integrity, and the S-COM LED provides visibility into serial communication health.
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Coastal 1,000 MW combined-cycle with advanced monitoring – A Florida mega-plant uses the DS200RTBAG2AGC for its conformal coating, 80-terminal capacity, and Foundation Fieldbus. The impedance monitoring detected a gradual increase in resistance on a thermocouple circuit, preventing a measurement error.
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Chemical plant with H₂S exposure and MODBUS RTU – A petrochemical facility uses the DS200RTBAG2AGC with MODBUS RTU to interface with gas detectors and temperature transmitters in H₂S-exposed areas, while providing 80 terminals for conventional I/O. The extended temperature range (0 to +60°C) supports the warm environment.
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Large gas turbine with distributed smart instrumentation – A 500 MW combined-cycle plant uses the DS200RTBAG2AGC to connect to multiple smart transmitters and actuators via fieldbus, while terminating 80 conventional I/O points, all with conformal coating protection.
Comparison with Related Variants
| Feature | DS200RTBAG2AGC (Ultimate) | DS200RTBAG2AFB (Uncoated) | DS200RTBAG1AFB (Coated, G1A) | DS200RTBAG1AEB (Coated, G1A, Ext Monitoring) |
|---|---|---|---|---|
| Terminal Capacity | 80 | 80 | 64 | 64 |
| Output Current Capacity | 2A | 2A | 1A | 1A |
| Conformal Coating | Yes | No | Yes | Yes |
| Fieldbus Interface | Yes | Yes | Yes | No |
| Diagnostic LEDs | 32 | 28 | 24 | 24 |
| COAT OK LED | Yes | No | Yes | Yes |
| S-COM / COM ACT LEDs | Yes | No | No | No |
| Impedance Monitoring | Yes | No | No | Yes |
| Remote Communication Monitoring | Yes | No | No | No |
| Temp Range | 0 to +60°C | 0 to +55°C | 0 to +60°C | 0 to +60°C |
| Availability | Exceedingly rare+++ (26-32 wks) | Exceedingly rare++ (22-28 wks) | Exceedingly rare++ (20-26 wks) | Exceedingly rare+ (18-22 wks) |
| Cost | Premium++++ | Premium+++ | Premium+++ | Premium++ |
Selection Suggestions
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Assess I/O density, current, and environmental requirements – Select the DS200RTBAG2AGC if you need more than 64 terminals, more than 1A per channel, fieldbus communication, AND conformal coating. This is the only board that combines all four.
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Confirm fieldbus protocol – Verify compatibility with Profibus DP, MODBUS RTU, or Foundation Fieldbus.
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Assess environmental conditions – The DS200RTBAG2AGC is essential if your installation is harsh (coastal, offshore, chemical, high-humidity, high-temperature) AND you need the highest density, current, and fieldbus.
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Evaluate diagnostic requirements – The enhanced LED array, impedance monitoring, and remote communication monitoring are valuable for predictive maintenance.
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Verify communication interface – Ensure the board’s interface is compatible with your Mark V rack.
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Check slot availability – Occupies a single slot.
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Procurement – The DS200RTBAG2AGC is among the rarest Mark V boards. Only purchase from suppliers providing:
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Coating thickness verification
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Fieldbus communication testing (Profibus DP, MODBUS RTU, Foundation Fieldbus)
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LED testing (all 32 LEDs)
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Channel verification (all 80 terminals, 2A per channel)
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Fuse verification (20 fuses, 2A)
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Current sensing and impedance monitoring validation
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S-COM/COM ACT LED functionality verification
Lead times: 26-32 weeks.
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Stock spares – Maintain at least two spares on-site.
Important Precautions
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Power down completely – De-energize the entire system before insertion or removal. Hot-swapping is not supported.
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ESD protection – Use wrist strap and anti-static mat. Coating provides some insulation but is not a substitute for proper ESD handling.
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Wiring termination – Ensure conventional field wires are properly stripped and securely clamped. Use appropriate wire gauge (12-22 AWG).
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Fieldbus cabling – Use only shielded fieldbus cables. Ensure proper termination and grounding.
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Protocol configuration – Set DIP switches correctly for the desired fieldbus protocol before installation.
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Coating integrity check – On power-up, verify white “COAT OK” LED illuminates. If off, remove and return for recoating.
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Pre-failure WARN LED – If amber WARN LED illuminates, investigate immediately.
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Fuse replacement – Replace fuses only with specified types and ratings (2A).
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Check total current draw – Ensure total current draw on each rail does not exceed capacity.
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Signal segregation – Route conventional analog/digital signals separately from fieldbus cables.
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Fieldbus network management – Ensure proper network termination and addressing. Monitor FB-ERR LED.
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Cleaning – Use only dry compressed air (max 50 PSI, 30 cm distance). No solvents, alcohol, or brushes.
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Storage – Store at 10-30°C, 20-50% RH. Rotate every 3 years.
Final Expert Recommendation
The DS200RTBAG2AGC represents the absolute pinnacle of Mark V remote terminal board technology, combining the highest terminal capacity (80 terminals), highest output current capacity (2A per channel), conformal coating, integrated fieldbus interface, comprehensive diagnostics (32 LEDs, impedance monitoring, remote communication monitoring), and extended temperature range in a compact 1-slot package. It is the ultimate solution for the most demanding distributed control installations requiring maximum density, current, protection, and communication.
Select the DS200RTBAG2AGC only when:
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You have more than 64 remote field connections to terminate (up to 80)
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Your output devices require more than 1A per channel (up to 2A)
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You need fieldbus integration (Profibus DP, MODBUS RTU, or Foundation Fieldbus)
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Your installation is harsh (coastal, offshore, chemical, high-humidity, high-temperature)
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You need comprehensive diagnostics (32 LEDs, impedance monitoring, remote communication monitoring)
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You require extended temperature range (up to +60°C)
However, this board is among the rarest Mark V boards (26-32 week lead times) and carries the highest cost. Consider these alternatives:
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DS200RTBAG2AFB (same density, current, fieldbus, no coating) – for clean indoor environments
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DS200RTBAG1AFB (coated, 64 terminals, 1A per channel, fieldbus) – if that capacity is sufficient
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DS200RTBAG1AEB (coated, 64 terminals, 1A per channel, extended monitoring, no fieldbus) – if fieldbus is not required
For most applications, the DS200RTBAG1AFB provides excellent protection and fieldbus at significantly lower cost and lead time. The DS200RTBAG2AGC should be reserved for the most demanding applications where the combination of maximum density, current, protection, and communication is absolutely essential.
When sourcing the DS200RTBAG2AGC, ensure comprehensive documentation – coating verification, fieldbus communication validation, LED testing, channel verification, current sensing validation, and S-COM/COM ACT functionality verification. Given its exceedingly rare availability, maintain at least two spares on-site. Properly deployed, this board provides years of reliable, high-density, high-current, protected remote I/O with fieldbus integration for Mark V turbine control systems in the most challenging operating environments.

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