Description
Technical Parameters
Manufacturer: GE
Series: Mark V / Mark VIe
Channels: 16 differential
Input Range: -10 mV to +100 mV (Type J/K/T/E)
Cold Junction: Single onboard sensor with enhanced linearization and thermal isolation
Isolation: 1500V AC
Accuracy: ±0.08% at 25°C, ±0.15% across full temperature range
Sampling: 10 Hz sequential
Operating Temp: -30°C to +70°C
Storage Temp: -40°C to +85°C
Mounting: VME rack
Suffix “F1BAD”: High accuracy + advanced diagnostics (drift, degradation, sense-lead) + F1-series wiring configuration + “BAD” coating package (enhanced conformal coating offering good moisture resistance and mild chemical protection – typically comparable to mid-grade coatings like “AA” or “ABC”)
Key Features
High accuracy – ±0.08% for critical temperature monitoring
Advanced diagnostics – drift monitoring, degradation prediction, sense-lead integrity, and open/short detection
Extended upper temperature limit – operates up to 70°C, suitable for hotter cabinets
F1-series wiring configuration – specific channel-to-terminal mapping for certain GE cabinet variants; direct drop-in for F1-configured systems
“BAD” enhanced coating – good moisture resistance and mild chemical protection; suitable for moderately humid environments
Faster sampling – 10 Hz for responsive monitoring
Improved cold-junction compensation – stable readings across ambient variations
Simple swap – no firmware changes required in most Mark V systems
LED status per channel + board health with diagnostic indicators
Backward compatible with Mark V and Mark VIe (hot-swap only on VIe Rev D+)
Applications
Gas turbine EGT monitoring in F1-configured cabinets – high accuracy with predictive diagnostics
Steam turbine bearing monitoring in F1 systems – critical protection with drift anticipation
High-humidity indoor installations with F1 wiring – good moisture resistance with enhanced performance
Coastal power plants with mild salt exposure – moderate protection against humidity
Industrial facilities with occasional moisture – reliable moisture barrier
Comparison with Competitors
| Feature | DS200TCQBF1BAD |
ABB TTH300 | Siemens 7KG7750 |
|---|---|---|---|
| Channels | 16 | 8 | 12 |
| Accuracy | ±0.08% | ±0.10% | ±0.12% |
| Sampling | 10 Hz | 10 Hz (simultaneous) | 8 Hz (simultaneous) |
| Diagnostics | Drift + degradation + open/short | Group-level | Per-channel + HART |
| Temp Range | -30°C to +70°C | -25°C to +65°C | -20°C to +60°C |
| Wiring Config | F1-specific | Standard | Standard |
| Coating Type | “BAD” enhanced | Standard acrylic | Standard acrylic |
| Moisture Resistance | Good | Moderate | Moderate |
| Chemical Resistance | Mild | Low | Low |
| Hot-Swap | No (V) / Yes (VIe) | No | Yes |
| GE Native Integration with F1 Cabs | Yes (direct fit) | No | No |
Selection Tips
Choose the DS200TCQBF1BAD only if your cabinet uses F1-series wiring configuration and you require high accuracy (±0.08%) with advanced diagnostics and enhanced coating – this board combines precision, predictive maintenance, and F1 pinout compatibility
For F1 systems with high accuracy but no diagnostics, consider DS200TCEAF1B (if available)
For F1 systems with basic accuracy without diagnostics, the DS200TCDAF1B (if available) is more economical
For G1 systems requiring similar features, use DS200TCQAG1B
For severe chemical/corrosion exposure, upgrade to PTFE or military-grade coatings if available in F1 series
Verify existing wiring pinout against F1 standard – using the wrong terminal block or miswiring will scramble channel readings
Source refurbished units with F1 pinout verification, coating inspection, and diagnostic test validation
Precautions
ESD sensitive – use wrist strap
Power down for Mark V removal (no hot-swap)
Torque terminals to 0.5 N·m max
Do not exceed -30°C to +70°C operating range – exceeding 70°C reduces component life
Pinout critical – F1 mapping differs from G1/G2; verify cabinet wiring before installation
Avoid damaging the coating – scratches compromise protection
Use isopropyl alcohol only for cleaning – “BAD” coating is vulnerable to stronger solvents; avoid acetone/MEK
Calibrate every 24 months – diagnostics and accuracy depend on a valid baseline calibration
Ground shields only at the board end
Verify thermocouple type – optimized for J/K (T/E reduces accuracy to ±0.15%)
Monitor diagnostic logs – drift warnings indicate sensor aging; plan proactive replacement
Label clearly – mark board and slot as “TCQBF1BAD – DIAG/EXT TEMP/F1 COATED” to ensure proper handling and prevent future miswiring with G1/G2 boards
Do not mix F1, G1, and G2 boards without verifying terminal block compatibility in the same rack

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