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Electrical Engineer II

Job in Woonsocket, Providence County, Rhode Island, 02895, USA
Listing for: Honeywell
Full Time position
Listed on 2026-06-03
Job specializations:
  • Engineering
    Electrical Engineering, Systems Engineer, Electronics Engineer, Test Engineer
Job Description & How to Apply Below
Use your knowledge of electrical engineering discipline, processes and tools to help Honeywell deliver innovative solutions that meet the evolving needs of our customers. You will work under general supervision and alongside some of the world's most talented engineers. You will contribute to the development of Honeywell's next generation of products by designing, testing and/or validating products/ processes from prototype to market.

You will be part of a group of highly committed professionals who provide expertise and ensure the success of complex engineering projects and programs.

This function supports an annual revenue of $20M. Critical Honeywell customers impacted include Honeywell Aerospace, Boeing, Northrop Grumman, Raytheon and several key distribution partners. The site requires test engineering to meet production demands and drive productivity. This position will be heavily involved in the maintaining, redesign, and automation of this test equipment. Writing Lab View code for its testing. This electrical engineer also supports the Resolver product line as the design support team is not on site for trouble shooting and analysis.

Equipment trouble shooting and support for the production team is a crucial aspect for this role and directly impacts problem resolution in support of revenue generation.

When you join Honeywell, you become a member of our global team of thinkers, innovators, dreamers and doers who make the things that make the future. That means changing the way we fly, fueling jets in an eco-friendly way, keeping buildings smart and safe and even making it possible to breathe on Mars.

Honeywell Industrial Automation enables process industry operations, creates world-class sensor technologies, automates supply chains, makes warehouses smarter, and improves worker safety. This combination builds on our core strengths in controls and automation technologies which in turn allow us to deliver better commercial outcomes for our customers. We enable customers to enhance the safety, sustainability, resiliency, and productivity of their people, plants, and assets.

Responsibilities

* Test Design & Development:
Creating comprehensive test plans and procedures to evaluate products and equipment against design parameters. Develop SOW and RFQ for external automation/testing suppliers.

* Diagnostics & Troubleshooting:
Using tools like oscilloscopes and multimeters to isolate malfunctions down to the component level.

* Automation:
Developing test software and scripts to automate repetitive testing tasks.

* Root Cause Analysis:
Investigating product failures to determine if they stem from design flaws, firmware bugs, or manufacturing issues.

* Documentation:
Ensure proper documentation, backup, and approvals for supported equipment (AS9100 & Mil spec…)

Key Skills & Tools, Major Hardware ATE Platforms - Automated test equipment (ATE) platforms are classified into hardware-centric systems for manufacturing and software-driven frameworks for broader electronics validation.

* Technical Proficiencies:
Proficiency in reading PCB schematics, soldering, and familiarity with standards like ISO or MIL-STD.

* Programming:
Scripting languages for automation frameworks.

National Instruments PXI (PCI eXtensions for Instrumentation): A modular, software-defined platform favored for high-speed digital and RF functional testing.

* NI Test Stand:
The industry-standard test executive for sequencing and managing tests written in various languages (Python, C++, LabVIEW).

* LabVIEW: a graphical development environment by National Instruments (NI) used by engineers to design automated test, measurement, and control systems.

* Keysight Eggplant: A GUI-based automation tool that uses AI and image recognition to test interfaces across multiple platforms.

Instrument Control:
Communicating with hardware via protocols like GPIB, USB, Ethernet, RS232, and PXI from thousands of vendors.

* Data Acquisition (DAQ):
Measuring real-world physical phenomena such as voltage, temperature, and pressure in real-time.

* Design Validation:
Automating complex R&D tests that require sweeping across different environmental variables (e.g.,…
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