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Configured for high-reliability digital actuation in Honeywell Experion PKS and TPS networks, the HONEYWELL 8U-TDODB1 (8U-TDODB1 Digital Output Module) provides direct physical/electrical execution. The module drives 32 isolated high-side switch outputs operating across a 10-35 VDC field-supplied voltage range, delivering real-time diagnostics and hot-swappable automatic failover via the IOHIGHWAY backplane bus operating at speeds up to 12 Mbit/s.
| Parameter | Specification |
|---|---|
| Model | 8U-TDODB1 |
| Brand | Honeywell |
| Origin | USA |
| Weight | Standard IOTA Chassis Weight (Approx. 0.65 kg) |
| Dimensions | Standard Series 8 IOTA Assembly Form Factor |
| Operating Temp | -20 to +70 deg C |
| Power Consumption | Logic powered via IOPS unit; Outputs field-powered |
| Output Type | Redundant Digital Output (High-Side Switch) |
| Channel Count | 32 Channels |
| Output Voltage Range | 10 to 35 VDC (Field-Supplied) |
| Maximum Output Current | 100 mA per channel, 2 A total per module |
| On-State Resistance | <0.5 ohm typical |
| Switching Frequency | Up to 10 Hz |
| Isolation | 500 VDC between system logic and field circuits |
| Redundancy Switchover Time | <500 ms |
| Backplane Interface | IOHIGHWAY at 12 Mbit/s or 4 Mbit/s |
The 8U-TDODB1 module incorporates 500 VDC galvanic isolation barriers to decouple sensitive internal IOHIGHWAY processing logic from high-voltage field-side load spikes and ground potential shifts. Each of the 32 high-side solid-state switching channels is engineered with internal current-limiting and short-circuit protection circuits, preventing localized field wiring faults from propagating across adjacent channels. Integrated real-time diagnostics continuously verify the physical state of active outputs and supply voltages, ensuring seamless execution of redundant failover commands in less than 500 ms without disrupting continuous 24 VDC process control loops.
Q: What is the maximum redundancy switchover latency during a primary hardware fault?
A: The 8U-TDODB1 executes automatic failover to the secondary redundant path in less than 500 ms upon detecting a primary channel or logic error, preserving field output driver states without missing control cycles.
Q: How is logic power supplied to the module relative to the field output circuits?
A: Module system logic is powered directly via the internal IOPS (I/O Power Supply) backplane unit, while output load driving current is sourced independently through an external 10-35 VDC field power supply wired to the IOTA terminal assembly.

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