1

Clinical Engineer Jobs in Springfield, MA (NOW HIRING)

Manager, Clinical Program

Holyoke, MA · On-site

$76K - $102K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

How you'll contribute The Manager of Inpatient Clinical Programs ensures that all operations and programing in the outpatient PHP/IOP or IP programs operate efficiently and professionally while ...

Manager, Clinical Program

Holyoke, MA · On-site

$76K - $102K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

How you'll contribute The Manager of Inpatient Clinical Programs ensures that all operations and programing in the outpatient PHP/IOP or IP programs operate efficiently and professionally while ...

Clinical Laboratory Team Lead

Holyoke, MA

$35 - $44/hr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

... a Clinical Laboratory Team Leader to join our team at our lab in Holyoke, MA . Work Schedule ... Work closely with service engineers during service visits * Monitor, operate and troubleshoot ...

Clinical Laboratory Team Lead

Holyoke, MA

$35 - $44/hr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

... a Clinical Laboratory Team Leader to join our team at our lab in Holyoke, MA . Work Schedule ... Work closely with service engineers during service visits * Monitor, operate and troubleshoot ...

Clinical Laboratory Team Lead

Holyoke, MA · On-site

$35 - $44/hr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

... is seeking a Clinical Laboratory Team Leader to join our team at our lab in Holyoke, MA Work ... Work closely with service engineers during service visits * Monitor, operate and troubleshoot ...

Showing results 21-40

Clinical Engineer information

See Springfield, MA salary details

$40.4K

$93.4K

$135.5K

How much do clinical engineer jobs pay per year?

As of Aug 15, 2026, the average yearly pay for clinical engineer in Springfield, MA is $93,372.00, according to ZipRecruiter salary data. Most workers in this role earn between $69,800.00 and $109,100.00 per year, depending on experience, location, and employer.

What does a clinical engineer do?

A Clinical Engineer is a professional who applies engineering principles to the healthcare field, particularly in medical technology and equipment management within hospitals and clinics. Their main responsibilities include ensuring the safe and effective use of medical devices, maintaining and troubleshooting equipment, and providing technical support to medical staff. Clinical Engineers may also be involved in equipment procurement, regulatory compliance, and training users on new technologies. By bridging the gap between engineering and medicine, they help improve patient care and safety.

What is the difference between Clinical Engineer vs Biomedical Equipment Technician?

AspectClinical EngineerBiomedical Equipment Technician
CredentialsBachelor's degree in engineering or related field; certifications like CBET or CCEAssociate's or bachelor's degree; certifications like CBET or CRES
Work EnvironmentDesign, evaluate, and oversee medical equipment; collaborate with healthcare staffMaintain, repair, and calibrate medical devices on-site in healthcare facilities
Employer & IndustryHospitals, medical device companies, healthcare institutionsHospitals, clinics, biomedical service companies

Clinical Engineers focus on the design, evaluation, and management of medical equipment, often working on system integration and safety protocols. Biomedical Equipment Technicians primarily handle the maintenance, repair, and calibration of medical devices. Both roles are essential in healthcare settings, but Clinical Engineers typically have a broader scope involving engineering principles and system oversight, while Biomedical Equipment Technicians focus on hands-on equipment servicing.

What is a clinical engineer?

A clinical engineer collaborates with scientists to develop medical equipment and biomedical research advances. Testing and designing medical technology are their primary responsibilities. Your work may involve artificial tissues, such as joints, hearing implants, and heart valves; pharmaceuticals; medical instruments; or diagnostic equipment, like imaging machines and monitoring apparatus. Job duties include maintaining biomedical equipment and computer systems, overseeing teams of technicians, and leading research studies in biomedical technology.

How does a clinical engineer typically interact with clinical staff and medical device vendors in a healthcare setting?

Clinical Engineers play a pivotal role in bridging the gap between medical technology and clinical practice. They regularly collaborate with clinical staff to ensure that medical equipment is used safely and efficiently, providing training and addressing any technical concerns. Additionally, Clinical Engineers coordinate with device vendors for equipment maintenance, troubleshooting, and upgrades, often acting as the primary point of contact during installations or when evaluating new technologies. This collaborative environment requires strong communication skills and a proactive approach to problem-solving, making teamwork a central aspect of the role.

What are the key skills and qualifications needed to thrive as a clinical engineer, and why are they important?

To thrive as a Clinical Engineer, you need a strong background in biomedical engineering, electronics, and healthcare technology, typically supported by a relevant degree and sometimes professional certification (e.g., CCE). Familiarity with medical device regulations, hospital equipment management systems, and quality assurance tools is essential. Excellent problem-solving, communication, and teamwork skills help Clinical Engineers collaborate with medical staff and address complex technical issues. These abilities are critical for ensuring the safety, compliance, and optimal performance of medical devices in healthcare environments.

What are popular job titles related to Clinical Engineer jobs in Springfield, MA?

For Clinical Engineer jobs in Springfield, MA, the most frequently searched job titles are:

What job categories do people searching Clinical Engineer jobs in Springfield, MA look for?

The top searched job categories for Clinical Engineer jobs in Springfield, MA are:

What cities near Springfield, MA are hiring for Clinical Engineer jobs?

Cities near Springfield, MA with the most Clinical Engineer job openings:

Infographic showing various Clinical Engineer job openings in Springfield, MA as of August 2026, with employment types broken down into 2% As Needed, 71% Full Time, 20% Part Time, and 7% Contract. Highlights an 94% Physical, 1% Hybrid, and 5% Remote job distribution, with an average salary of $93,372 per year, or $44.9 per hour.

Agentic AI Engineer - Healthcare AI

Deloitte

Hartford, CT • On-site

Full-time

Re-posted 7 days ago


Deloitte rating

8.2

Company rating: 8.2 out of 10

Based on 92 frontline employees who took The Breakroom Quiz

44th of 150 rated financial services


Job description

Three hundred fifty million Americans rely on a healthcare system whose decision-making has become slow, costly, and adversarial - care delayed by prior authorization and paperwork, claims that misfire, clinical decisions made without the right information at the right moment, and patients who struggle to navigate or afford the care they need. Deloitte has a new AI-first effort, backed by $1B in committed investment, building the reasoning models and agentic systems to rebuild how that system decides - across payers, providers, and life sciences, and for the patients they serve - so that care is faster, fairer, and far less wasteful. This is not AI applied at the margins. It is a ground-up rebuild of the decision-making machinery behind American healthcare, at national scale.

This is an early, well-funded build. You will own agent systems end to end - from architecture through production - and your work ships into live clinical and operational settings within your first months, not into a lab.

As an Agentic AI Engineer, you will design, build, and operationalize the LLM- and SLM-powered systems behind real healthcare decisioning - the reasoning, orchestration, retrieval, memory, and control layers that let intelligent agents operate reliably across the hardest decisions in the industry: clinical reasoning, prior authorization and claims integrity, care navigation, and the operational workflows that run across payers, providers, and life sciences. This is not a prompt-only role. We are looking for builders who think deeply about system behavior, grounding, and reliability where a wrong action has real consequences for patients and the clinicians who serve them.

You do not need a healthcare background. We pair every engineer with clinical and domain experts and teach you the domain - you bring the agentic engineering depth.

We hire on demonstrated depth, not years - the level you join at is determined through our interview process, based on the depth and judgment you demonstrate, not your years in a title.

Work you'll do

Agent architecture & orchestration

Design and implement agentic systems capable of multi-step reasoning, planning, tool use, and workflow execution against complex, regulated operational processes.

Build stateful workflows using frameworks such as LangGraph and LangChain - including branching, retries, self-correction, human-in-the-loop checkpoints, and reusable orchestration patterns.

Engineer for long-horizon reliability - multi-step task completion, recovery from compounding errors, planning under uncertainty, and robust tool use when individual steps fail.

Build the reasoning behind regulated decisions - policy- and criteria-grounded outputs, structured proposer/critic/judge-style review, and auditable rationales for high-stakes decisions across the industry, from clinical review and prior authorization to claims integrity and care management.

Retrieval, grounding & context engineering

Develop end-to-end Retrieval-Augmented Generation (RAG) pipelines: ingestion, chunking, embeddings, vector and hybrid retrieval, reranking, contextual compression, and grounding strategies.

Engineer memory and context management - conversational state, persistent memory, retrieval-aware context assembly, and token-efficient context selection.

Apply modern context-delivery patterns (e.g., MCP-style tool/context interfaces) so agents access the right information at the right time.

Reliability, evaluation & safety

Implement observability and tracing for prompts, tool calls, retrieval quality, agent traces, failures, drift, latency, and production behavior.

Apply guardrails, safety controls, and failure-handling to reduce hallucinations and unsafe actions.

Evaluate agents at the trajectory and task level - multi-step task success, failure-mode and regression analysis, and sandboxed test environments - alongside retrieval- and generation-quality metrics, automated checks, and human review.

Engineer healthcare-grade safety - deployment eval gates, human-oversight and escalation models, auditability and traceability for regulated decisions, and PHI/HIPAA-aware data handling.

Integration & production craft

Build integrations with internal and external tools, APIs, enterprise systems, databases, and model providers so agents operate safely within real business workflows.

Deliver production-quality code with strong practices in testing, CI/CD, logging, versioning, and documentation; make architecture decisions that balance quality, safety, latency, cost, and model risk.

Partner with our modeling and post-training engineers to improve model behavior for tool use, grounding, and long-horizon reasoning - through evaluation-driven feedback and, where it helps, fine-tuned or reasoning-optimized models.

Translate ambiguous, high-complexity operational processes into robust system logic and reusable AI patterns; stay current with advances in agentic systems and translate research into practical engineering decisions.

The team

Deloitte brings together AI researchers, modeling and platform engineers, architects, clinical and domain specialists, and product leaders to build, deploy, and operate verticalized AI systems across software, data, models, and cloud infrastructure - engineered for one of the most complex operating environments in the world. The work spans the healthcare industry - payers, providers, and life sciences - and involves genuinely hard reasoning problems, nuanced operational workflows, and a high bar for reliability, with little tolerance for shallow or unreliable outputs. We pair frontier AI research with production-grade engineering, and we ship into real clinical and operational settings rather than leaving models in the lab.

Required qualifications

Bachelor's degree in Computer Science, Engineering, Data Science, Computational Linguistics, or a related field.

Demonstrated depth building and shipping production agentic systems - this is your primary craft, not a recent exploration. We weigh shipped systems, research, model releases, and open source over years in a title; expect strong software/ML fundamentals plus substantial, recent hands-on agentic work.

Strong, hands-on experience building production agent systems with modern orchestration - LangGraph/LangChain or equivalent, including custom orchestration.

Experience designing and optimizing end-to-end RAG systems: indexing, retrieval, reranking, grounding, and evaluation.

Strong understanding of memory and context management, including context windows, retrieval-driven context assembly, persistent memory, and high-signal context selection.

Deep, practical understanding of LLM behavior - strengths, limitations, hallucination risks, reasoning constraints, and latency/cost trade-offs - and the evaluation methods used to measure them.

Experience evaluating and debugging agent behavior - task-success and trajectory analysis, not just output quality.

Strong Python engineering skills and modern software practices: testing, CI/CD, version control, and API integration; experience implementing observability, tracing, and debugging for LLM-based systems in production.

Hands-on experience with at least one frontier model platform (e.g., Anthropic, Google, OpenAI) and/or open-weight/self-hosted models (e.g., Llama via vLLM), including production tool use and agent capabilities.

Ability to travel 0-50%, on average, based on the work you do and the clients and industries/sectors you serve.

Limited immigration sponsorship may be available.

Preferred qualifications

Experience with multi-agent systems and agent collaboration patterns.

Familiarity with vector databases and retrieval infrastructure such as Pinecone, Weaviate, or Milvus.

Exposure to model adaptation and fine-tuning techniques such as LoRA or QLoRA.

Understanding of traditional NLP concepts: tokenization, semantic similarity, entity extraction, summarization, and transformer fundamentals.

Experience operating in highly regulated, high-stakes, or operationally complex environments; healthcare exposure - clinical, payer, or life-sciences workflows, or standards such as FHIR - is a plus, not a requirement.

Demonstrated habit of staying current with AI research, benchmarks, and emerging engineering patterns.

Compensation

Base salary is benchmarked to leading technology companies rather than traditional consulting scales, and the role carries a substantial performance-based incentive opportunity designed to grow with the value you help create - startup-style upside, with the backing of a committed, well-capitalized platform. The estimated base salary range is $110,700-$372,900 (not adjusted for geographic differential); actual base pay depends on your skills, experience, and level, and you may also be eligible for a discretionary annual incentive based on individual and organizational performance.


Qualifications:

Three hundred fifty million Americans rely on a healthcare system whose decision-making has become slow, costly, and adversarial - care delayed by prior authorization and paperwork, claims that misfire, clinical decisions made without the right information at the right moment, and patients who struggle to navigate or afford the care they need. Deloitte has a new AI-first effort, backed by $1B in committed investment, building the reasoning models and agentic systems to rebuild how that system decides - across payers, providers, and life sciences, and for the patients they serve - so that care is faster, fairer, and far less wasteful. This is not AI applied at the margins. It is a ground-up rebuild of the decision-making machinery behind American healthcare, at national scale.

This is an early, well-funded build. You will own agent systems end to end - from architecture through production - and your work ships into live clinical and operational settings within your first months, not into a lab.

As an Agentic AI Engineer, you will design, build, and operationalize the LLM- and SLM-powered systems behind real healthcare decisioning - the reasoning, orchestration, retrieval, memory, and control layers that let intelligent agents operate reliably across the hardest decisions in the industry: clinical reasoning, prior authorization and claims integrity, care navigation, and the operational workflows that run across payers, providers, and life sciences. This is not a prompt-only role. We are looking for builders who think deeply about system behavior, grounding, and reliability where a wrong action has real consequences for patients and the clinicians who serve them.

You do not need a healthcare background. We pair every engineer with clinical and domain experts and teach you the domain - you bring the agentic engineering depth.

We hire on demonstrated depth, not years - the level you join at is determined through our interview process, based on the depth and judgment you demonstrate, not your years in a title.

Work you'll do

Agent architecture & orchestration

Design and implement agentic systems capable of multi-step reasoning, planning, tool use, and workflow execution against complex, regulated operational processes.

Build stateful workflows using frameworks such as LangGraph and LangChain - including branching, retries, self-correction, human-in-the-loop checkpoints, and reusable orchestration patterns.

Engineer for long-horizon reliability - multi-step task completion, recovery from compounding errors, planning under uncertainty, and robust tool use when individual steps fail.

Build the reasoning behind regulated decisions - policy- and criteria-grounded outputs, structured proposer/critic/judge-style review, and auditable rationales for high-stakes decisions across the industry, from clinical review and prior authorization to claims integrity and care management.

Retrieval, grounding & context engineering

Develop end-to-end Retrieval-Augmented Generation (RAG) pipelines: ingestion, chunking, embeddings, vector and hybrid retrieval, reranking, contextual compression, and grounding strategies.

Engineer memory and context management - conversational state, persistent memory, retrieval-aware context assembly, and token-efficient context selection.

Apply modern context-delivery patterns (e.g., MCP-style tool/context interfaces) so agents access the right information at the right time.

Reliability, evaluation & safety

Implement observability and tracing for prompts, tool calls, retrieval quality, agent traces, failures, drift, latency, and production behavior.

Apply guardrails, safety controls, and failure-handling to reduce hallucinations and unsafe actions.

Evaluate agents at the trajectory and task level - multi-step task success, failure-mode and regression analysis, and sandboxed test environments - alongside retrieval- and generation-quality metrics, automated checks, and human review.

Engineer healthcare-grade safety - deployment eval gates, human-oversight and escalation models, auditability and traceability for regulated decisions, and PHI/HIPAA-aware data handling.

Integration & production craft

Build integrations with internal and external tools, APIs, enterprise systems, databases, and model providers so agents operate safely within real business workflows.

Deliver production-quality code with strong practices in testing, CI/CD, logging, versioning, and documentation; make architecture decisions that balance quality, safety, latency, cost, and model risk.

Partner with our modeling and post-training engineers to improve model behavior for tool use, grounding, and long-horizon reasoning - through evaluation-driven feedback and, where it helps, fine-tuned or reasoning-optimized models.

Translate ambiguous, high-complexity operational processes into robust system logic and reusable AI patterns; stay current with advances in agentic systems and translate research into practical engineering decisions.

The team

Deloitte brings together AI researchers, modeling and platform engineers, architects, clinical and domain specialists, and product leaders to build, deploy, and operate verticalized AI systems across software, data, models, and cloud infrastructure - engineered for one of the most complex operating environments in the world. The work spans the healthcare industry - payers, providers, and life sciences - and involves genuinely hard reasoning problems, nuanced operational workflows, and a high bar for reliability, with little tolerance for shallow or unreliable outputs. We pair frontier AI research with production-grade engineering, and we ship into real ...


What Deloitte employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom