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Remote Instrumentation Jobs in New York (NOW HIRING)

Field Service Engineer

New York, NY · On-site +1

$76K - $125K/yr

Job Purpose The Field Service Engineer provides remote and onsite technical support for pre-sales and post-sales activities related to advanced life sciences instrumentation. This role installs ...

Senior Product Manager, Growth (Remote US)

New York, NY · Remote

$138K - $182K/yr

REMOTE US THE ROLE: Splice INSTRUMENT launched in October 2025 to give music makers a new wave of ... Track performance across your surfaces using our analytics platform, own event instrumentation, and ...

Remote-friendly (we have a NYC office on Bond Street if you're local). 20% travel. Why You'll ... instrumentation, and reporting in HubSpot (we're building this from scratch; you won't inherit a ...

Hybrid - onsite and remote Responsibilities * Lead analytical method transfers and validation ... In-depth knowledge of analytical instrumentation (HPLC, GC, LC-MS), and physical characterization ...

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Remote Instrumentation information

What is a remote instrumentation?

A Remote Instrumentation job involves monitoring, controlling, and maintaining scientific or industrial instruments from a distance using networked systems. Professionals in this field work with sensors, data acquisition systems, and remote communication technologies to ensure accurate measurements and efficient operation. These roles are common in industries like research, healthcare, manufacturing, and environmental monitoring. Strong technical skills in instrumentation, networking, and troubleshooting are essential for success in this field.

What are the key skills and qualifications needed to thrive in the remote instrumentation position, and why are they important?

To thrive in Remote Instrumentation, you should have a strong background in instrumentation engineering, process control, and data acquisition, typically supported by a degree in engineering or a related field. Experience with SCADA systems, PLCs, remote sensing devices, and certifications such as ISA Certified Control Systems Technician are highly valued. Strong problem-solving skills, attention to detail, and effective remote communication abilities help professionals excel in this role. These skills ensure the accurate monitoring, troubleshooting, and optimization of automated systems across varied industries, even from a distance.

What are the main challenges of working in a remote instrumentation role?

One primary challenge in Remote Instrumentation is diagnosing and resolving equipment issues without physical access, which requires a strong understanding of remote monitoring systems and excellent analytical skills. Collaboration with on-site teams and other technical staff is essential, often demanding clear communication and the ability to provide detailed instructions remotely. Additionally, you may need to adapt to various software platforms and technological updates, frequently learning new tools on the job. Overcoming these challenges helps ensure seamless operations and reliability of instrumentation systems, regardless of location.

What are the most commonly searched types of Instrumentation jobs in New York?

The most popular types of Instrumentation jobs in New York are:

What cities in New York are hiring for Remote Instrumentation jobs?

Cities in New York with the most Remote Instrumentation job openings:

Infographic showing various Remote Instrumentation job openings in New York as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% Remote job distribution.

Mechanical Engineering Expert - Remote

YO AI Labs

New York, NY • Remote

Full-time

Posted yesterday

New


Job description

Mechanical Engineering Technician

Job Type: Contractor
Location: Remote

Job Overview

We are seeking experienced Mechanical Engineering Technicians to support an advanced AI benchmark project. You will use your hands-on technical expertise to create realistic testing, data interpretation, and failure-diagnosis scenarios.

No prior AI experience is required.

Key Responsibilities
  • Create realistic technician tasks involving test setup, instrumentation, data collection, and failure diagnosis.
  • Develop technical datasets such as test logs, calibration records, sensor outputs, and failure reports.
  • Define accurate solution pathways and next-step recommendations based on test data.
  • Create detailed 35+ point grading rubrics covering instrumentation, data interpretation, and failure analysis.
  • Document test procedures, observations, results, and diagnostic findings clearly.
  • Ensure tasks reflect real-world professional complexity rather than textbook scenarios.
Required Skills
  • Test Setup
  • Data Interpretation
  • Failure Diagnosis
  • Instrumentation
  • Sensor & Data Acquisition
  • Mechanical Testing
  • Technical Documentation
  • Data Analysis
  • Quality & Troubleshooting
Preferred Qualifications
  • 4+ years of hands-on experience in mechanical testing, laboratory, or production environments.
  • Associate degree or relevant trade/technical credential preferred.
  • Strong experience with instrumentation, sensors, data acquisition systems, and prototype testing.
  • Ability to document test procedures, results, and failure modes accurately.
  • Strong analytical and troubleshooting skills.
  • Comfortable working with CSVs, spreadsheets, PDFs, and technical datasets.
  • Ability to work independently in a remote environment.
Compensation & Availability

Compensation is output-based, with payment per approved task. Minimum weekly submission requirements apply.

Selected experts should be ready to begin their first tasks within 24–48 hours of completing onboarding. Roles are typically filled within 48 hours.

Screening Questions
  1. How many years of hands-on mechanical testing or technician experience do you have?
  2. What experience do you have with instrumentation, sensors, and data acquisition systems?
  3. Describe your experience with test setup and failure diagnosis.
  4. Have you worked with test logs, calibration records, sensor data, or failure reports?
  5. What technical documentation tools or formats do you regularly use?
  6. Are you comfortable creating detailed evaluation rubrics and diagnostic scenarios?
  7. How soon can you start?