Skip to content

What are you looking for?


You may also like

U2-1010-PF | Honeywell | IRIS COMBINATION DC SIGNAL PROCESSORU2-1010-PF | Honeywell | IRIS COMBINATION DC SIGNAL PROCESSORU2-1010-PF | Honeywell | IRIS COMBINATION DC SIGNAL PROCESSOR
U2-1010-PF | Honeywell | IRIS COMBINATION DC SIGNAL PROCESSOR
U2-1010-PF | Honeywell | IRIS COMBINATION DC SIGNAL PROCESSOR
U2-1010-PF | Honeywell | IRIS COMBINATION DC SIGNAL PROCESSOR

U2-1010-PF | Honeywell | IRIS COMBINATION DC SIGNAL PROCESSOR


Only 10 left - Selling fast

PRODUCT SKU : U2-1010-PF

PRODUCT TYPE : Flame Signal Processors

PRODUCT VENDOR : Honeywell


  • 100% Genuine Parts – Risk-Free 30-Day Returns
  • 1-Year Warranty & Expert Support for Every Order

Product Details

Configured for optical flame detection and signal processing in burner management architectures, the Honeywell U2-1010-PF (U2-1010 IRIS Combination DC Signal Processor) provides direct physical/electrical execution.

Hardware Specifications

Parameter Specification
Model U2-1010-PF
Brand Honeywell
Origin USA
Weight 1.5 kg
Dimensions 109 mm x 155 mm x 117 mm (4.3 in x 4.6 in x 6.1 in)
Operating Temp -40 deg C to +70 deg C (-40 deg F to +158 deg F)
Power Consumption 24 VDC (22-26 VDC) @ 120 mA
Sensor Configuration Combined UVtron and IR optical sensors
Relay Outputs 1 NO Flame relay contact, 1 NO Fault relay contact
Analog Output 0-20 mA or 4-20 mA scalable
Process Connection 1 inch NPT
Cable Assembly 10-conductor, 10 ft (3 m) factory-installed cable
Operator Interface Integrated touch screen with status LEDs
Digital Communication RS422 / Modbus RTU compatible
Hazardous Approvals NEMA 4X, IP66, Class I Div 1, IECEx d / ATEX Zone 1
Safety Rating Fail-safe self-checking design, suitable for SIL3 applications

4-20 mA HART Loop Protocol and Channel-to-Channel Isolation

The unit features internal electronic channel-to-channel isolation between the optical sensing circuits, primary power supply terminals, and the 4-20 mA scalable analog loop output. Galvanic isolation across the RS422 Modbus communication lines prevents ground loop currents from distorting the high-speed flame intensity measurements or impacting the fail-safe self-checking diagnostic routines. The isolated 4-20 mA analog output delivers uninterrupted flame signal strength telemetry to remote DCS or SIS controllers under continuous operating conditions.

Frequently Asked Questions

Q: How does the self-checking mechanism function without a mechanical shutter?

A: The solid-state self-checking architecture electronically exercises the internal optical sensor pathways and processing electronics continuously to ensure immediate detection of internal component faults without relying on physical moving shutter parts.

Q: What grounding and shielding precautions are required for the factory-installed cable?

A: The 10-conductor factory-installed cable shield must be grounded at the control cabinet earth ground terminal only. The shield must remain ungrounded at the field unit housing to prevent circulating ground currents from corrupting RS422 digital data transmissions.

Q: What is the primary functional difference between the PF suffix model and quick-disconnect variants?

A: The PF variant features an explosion-proof housing certified for Class I, Division 1 / IECEx d ATEX Zone 1 environments with a factory-sealed 10 ft cable, whereas quick-disconnect models are rated for Class I, Division 2 / IECEx nA installations.

Field Installation Guidelines

  • Mount the processor assembly to the sight pipe via the 1 inch NPT process connection, ensuring engagement of at least 5 full threads using suitable thread sealant.
  • Connect clean, dry purge air to the housing purge port using specified quick couplers (such as R-518-PT12 / R-518-CL12-PG) to keep optical lenses clear of soot and particulate accumulation.
  • Route the 10-conductor field wiring through dedicated grounded metal conduit, keeping low-voltage signal lines isolated from high-voltage ignition or power supply cables.
  • Terminate the 24 VDC power supply lines ensuring supply voltage remains strictly within the specified 22 to 26 VDC operational window at the unit terminals.

Additional Information

  • 100% Genuine Parts: All products are original and authentic, ensuring reliable industrial performance.
  • 30-Day Refund Guarantee: Return any in-stock item within 30 days in original, unopened packaging for a full refund (excluding shipping and fees).
  • 12-Month Warranty: Covers defects in materials or workmanship; excludes misuse, normal wear, or unauthorized modifications.
  • Worldwide Shipping: We ship via USPS, UPS, FedEx, and DHL. Delivery times vary by country and may be subject to customs or import fees.
  • Support & Contact: Technical and warranty assistance is available anytime. Contact us here: Contact.
  • Purchase Guidance: Check product specifications and compatibility carefully before ordering to ensure proper application.




Recently Viewed Products

Tech & Buying Guide

Technical Insights, Installation Guides, and Buying Tips
Comprehensive Guide to Instrumentation and Control (I&C) Design Basis

Comprehensive Guide to Instrumentation and Control (I&C) Design Basis

Instrumentation and Control (I&C) Design Basis serves as the foundational technical document for modern plant engineering. Project teams rely on this master specification to govern engineering deliverables across front-end engineering design (FEED) and detailed execution phases. A well-constructed I&C design basis ensures seamless integration among field instrumentation, safety systems, and main control systems. Furthermore, establishing clear technical standards early mitigates execution risks and prevents costly re-engineering during plant commissioning.

Read more
The Shift to Flexible IO Modules in Modern Industrial Automation

The Shift to Flexible IO Modules in Modern Industrial Automation

Traditional control systems rely on dedicated Input Output (IO) cards for industrial automation. Each conventional module processes a single signal type, such as Digital Input (DI), Digital Output (DO), Analog Input (AI), or Analog Output (AO). A standard 16-channel card accepts only one specific channel type across all ports. This inflexible hardware design often creates severe engineering bottlenecks during project execution. Engineers frequently must install entirely new cards to accommodate a single extra sensor. Consequently, late design changes increase control cabinet space requirements and drive up project costs.

Read more
DCS Commissioning Steps in Industrial Automation Projects

DCS Commissioning Steps in Industrial Automation Projects

Commissioning a Distributed Control System (DCS) represents a crucial milestone when deploying modern process automation infrastructure. Field engineers must execute systematic verification steps to transition complex control hardware from static installation to dynamic plant control. Proper commissioning ensures that controllers, I/O modules, network switches, and HMI software operate in strict compliance with engineering design specifications before introducing live process fluids.

Read more