Honeywell

Honeywell Experion PKS 8C-TDODB1 Digital Output Redundant IOTA

SKU 8C-TDODB1

Disponibile
  • 12-month warranty
  • Free returns within 30 days
  • Manufacturer: Honeywell
  • Product No.: 8C-TDODB1
  • Origin United States
  • Product Type: Digital Output Module
  • Barcode: 8537101190
  • Payment: T/T, Western Union
  • Weight: 0.75 kg
  • Dimensions: 12.00 x 30.00 x 12.00 cm
  • Shipping port: Xiamen
  • Warranty: 12 months

Tags

Quantità

Product Description

Product Overview

The Honeywell 8C-TDODB1 (8CTDODB1) is a high-availability Digital Output Termination Assembly (IOTA) designed for the Experion PKS Series 8 I/O platform. This "Redundant" IOTA is a critical infrastructure component that allows two 8C-PDODA1 Digital Output modules to operate in a 1-out-of-2 (1oo2) configuration. In this setup, the primary and secondary modules work in tandem; if the primary module fails, the secondary module takes over control of the field devices instantaneously without a "bump" in the process. The 8C-TDODB1 is primarily utilized in sectors requiring mission-critical safety and uptime, such as Emergency Shutdown (ESD) systems, turbine trip circuits, and critical solenoid header controls in chemical and power plants.

Technical Configuration

The 8C-TDODB1 is engineered to provide a robust physical and electrical foundation for redundant digital control.

  • Redundant Module Support: Features two dedicated slots for Digital Output modules, managing the synchronization and load-sharing logic between the two units.

  • 32-Channel Density: Supports up to 32 individual digital output channels, typically used for driving 24 VDC solenoids, relays, or indicator lamps.

  • G3 Conformal Coating: Factory-treated with a protective layer to ensure long-term reliability in environments with high humidity or corrosive gas concentrations (conforming to ISA G3 standards).

  • Vertical I/O Design: Utilizes the Series 8 vertical mounting format, which promotes natural airflow for cooling and reduces the overall footprint within the control cabinet.

  • Integrated Blown Fuse Detection: Provides circuit protection and diagnostic feedback to the C300 controller, allowing operators to identify field-side wiring faults or short circuits immediately.

Technical Specifications

Attribute Specification
Model 8C-TDODB1
Brand Honeywell
Series Experion PKS Series 8
I/O Type Digital Output (Redundant)
Channel Count 32 Channels
Voltage Rating 24 VDC Nominal
Coating G3 Conformal Coated
Mounting Vertical Series 8 Carrier
Terminal Type Compression Screw Terminals
Operating Temp -40 to 70 Celsius
Weight 0.75 kg
Dimensions 12.00 x 30.00 x 12.00 cm

Technical FAQs

Can I use only one module on the 8C-TDODB1 IOTA?Yes. While the 8C-TDODB1 is designed for redundancy, it can operate with a single module. However, the system will report a "Redundancy Lost" alarm until the second module is installed and synchronized.

What is the difference between 8C-TDODA1 and 8C-TDODB1?The 8C-TDODA1 is a "Single" IOTA, supporting only one module with no hardware redundancy. The 8C-TDODB1 is the "Redundant" version, featuring two module slots for high-availability applications.

Does this IOTA provide power to the field solenoids?The IOTA distributes 24 VDC power from the cabinet busbar to the outputs. However, the total current capacity is limited per channel. For high-current solenoids, interposing relays should be used to protect the IOTA circuitry.


Engineering & Installation Guide

  • Redundancy Cable Installation: Ensure the redundancy link between the two modules is securely seated. Without this link, the modules cannot synchronize their internal states, leading to independent operation and potential control conflicts.

  • Field Wiring Termination: When wiring the 32 channels, use ferrules to prevent stray wire strands from causing short circuits between adjacent terminals. Given the high density of the 8C-TDODB1, cable management and clear labeling are essential for future troubleshooting.

  • Grounding Requirements: The IOTA must be bonded to the instrument earth bar via the carrier's grounding system. Proper grounding is vital for the correct operation of the blown-fuse detection circuitry and to prevent electromagnetic noise from affecting the I/O Link communication.

Shipping & Returns

Global Express Shipping

  • Standard Delivery: 4–6 business days via DHL, FedEx, and UPS.
  • Express Dispatch: Same-day dispatch for in-stock orders placed before 2:00 PM (GMT+8).
  • Worldwide Coverage: Serving over 150 countries.

Returns & Warranty

  • 30-Day Guarantee: Returns accepted for in-stock products in original, factory-sealed packaging.
  • 12-Month Warranty: Every industrial component is backed by our technical warranty.
Reviews

8C-TDODB1

Stock & lead time on request

Call
1 su 3

Honeywell Experion PKS 8C-TDODB1 Digital Output Redundant IOTA

Only 3 item(s) left in stock
  • Manufacturer: Honeywell

  • Product No.: 8C-TDODB1

  • Country of origin:United States

  • Product Type: Digital Output Module

  • Barcode: 8537101190

  • Payment: T/T, Western Union

  • Weight: 750g

  • Dimensions: 12.00 x 30.00 x 12.00 cm

  • Shipping port: Xiamen

  • Warranty: 12 months

Quantità
Visualizza dettagli completi

Product Description

Product Overview

The Honeywell 8C-TDODB1 (8CTDODB1) is a high-availability Digital Output Termination Assembly (IOTA) designed for the Experion PKS Series 8 I/O platform. This "Redundant" IOTA is a critical infrastructure component that allows two 8C-PDODA1 Digital Output modules to operate in a 1-out-of-2 (1oo2) configuration. In this setup, the primary and secondary modules work in tandem; if the primary module fails, the secondary module takes over control of the field devices instantaneously without a "bump" in the process. The 8C-TDODB1 is primarily utilized in sectors requiring mission-critical safety and uptime, such as Emergency Shutdown (ESD) systems, turbine trip circuits, and critical solenoid header controls in chemical and power plants.

Technical Configuration

The 8C-TDODB1 is engineered to provide a robust physical and electrical foundation for redundant digital control.

  • Redundant Module Support: Features two dedicated slots for Digital Output modules, managing the synchronization and load-sharing logic between the two units.

  • 32-Channel Density: Supports up to 32 individual digital output channels, typically used for driving 24 VDC solenoids, relays, or indicator lamps.

  • G3 Conformal Coating: Factory-treated with a protective layer to ensure long-term reliability in environments with high humidity or corrosive gas concentrations (conforming to ISA G3 standards).

  • Vertical I/O Design: Utilizes the Series 8 vertical mounting format, which promotes natural airflow for cooling and reduces the overall footprint within the control cabinet.

  • Integrated Blown Fuse Detection: Provides circuit protection and diagnostic feedback to the C300 controller, allowing operators to identify field-side wiring faults or short circuits immediately.

Technical Specifications

Attribute Specification
Model 8C-TDODB1
Brand Honeywell
Series Experion PKS Series 8
I/O Type Digital Output (Redundant)
Channel Count 32 Channels
Voltage Rating 24 VDC Nominal
Coating G3 Conformal Coated
Mounting Vertical Series 8 Carrier
Terminal Type Compression Screw Terminals
Operating Temp -40 to 70 Celsius
Weight 0.75 kg
Dimensions 12.00 x 30.00 x 12.00 cm

Technical FAQs

Can I use only one module on the 8C-TDODB1 IOTA?Yes. While the 8C-TDODB1 is designed for redundancy, it can operate with a single module. However, the system will report a "Redundancy Lost" alarm until the second module is installed and synchronized.

What is the difference between 8C-TDODA1 and 8C-TDODB1?The 8C-TDODA1 is a "Single" IOTA, supporting only one module with no hardware redundancy. The 8C-TDODB1 is the "Redundant" version, featuring two module slots for high-availability applications.

Does this IOTA provide power to the field solenoids?The IOTA distributes 24 VDC power from the cabinet busbar to the outputs. However, the total current capacity is limited per channel. For high-current solenoids, interposing relays should be used to protect the IOTA circuitry.


Engineering & Installation Guide

  • Redundancy Cable Installation: Ensure the redundancy link between the two modules is securely seated. Without this link, the modules cannot synchronize their internal states, leading to independent operation and potential control conflicts.

  • Field Wiring Termination: When wiring the 32 channels, use ferrules to prevent stray wire strands from causing short circuits between adjacent terminals. Given the high density of the 8C-TDODB1, cable management and clear labeling are essential for future troubleshooting.

  • Grounding Requirements: The IOTA must be bonded to the instrument earth bar via the carrier's grounding system. Proper grounding is vital for the correct operation of the blown-fuse detection circuitry and to prevent electromagnetic noise from affecting the I/O Link communication.

Global Express Shipping

  • Standard Delivery: 4-6 Business Days via DHL, FedEx, and UPS.
  • Express Dispatch: Same-day dispatch for in-stock orders placed before 2:00 PM (GMT+8).
  • Worldwide Coverage: Serving over 150 countries, including rapid delivery to Saudi Arabia and UAE.

Returns & Warranty

  • 30-Day Guarantee: Returns accepted for in-stock products in original, factory-sealed packaging.
  • 12-Month Warranty: Every industrial component is backed by our professional technical warranty.

Orders are processed and delivered Monday-Friday (excluding public holidays).


For full eligibility, restocking fees, and international return details, please view our official Refund & Return Policy .

TECHNICAL SPECIFICATIONS

Color pattern
Black
Country of origin
United States
Power source
DC Power

Technical knowledge

Tutto sui PLC: la CPU

A practical engineering guide to PLC CPU operation, from deterministic scan cycles and I/O image tables to memory, communications, diagnostics, redundancy, processor sizing, and reliable system...

Guida all’aggiornamento del firmware 1756-L73: scelta tra v19 e v21/v31

Sostituire un 1756-L73 non significa automaticamente aggiornare il firmware. Questa guida confronta le versioni 19.013, 21.011 e 31.011, concentrandosi sulla compatibilità dei progetti, sulle...

Implementazione della logica a scala XOR con 3 interruttori e bit interno

Implementa un circuito luminoso XOR con 3 interruttori SPST in LogixPro o RSLogix 500 utilizzando un bit di relè interno. Include tabelle della verità, equazioni booleane e verifica.

Creazione di una rete Modbus RTU con CompactLogix e DeltaV

Integra Allen-Bradley CompactLogix, Caterpillar ATS e generatori nel DCS DeltaV tramite Modbus RTU. Include i gateway ProSoft MVI69-MCM e Miille DIN266.

Istruzione ONS che non attiva l’OTE nella logica ladder di Studio 5000

L’istruzione ONS si attiva, ma la bobina OTE non rimane mai eccitata in Studio 5000 perché il one-shot è vero solo per una scansione. Usa OTL/OTU oppure una logica di autoritenuta.

Requisiti e topologia dello switch di rete EtherNet/IP Kinetix 5500

Configura i servoazionamenti Allen-Bradley Kinetix 5500 su EtherNet/IP. Include CIP Sync, la temporizzazione IEEE 1588 V2, la selezione degli switch Stratix, la topologia DLR e l’HMI.