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Instrumentation Engineer Jobs in Oxnard, CA (NOW HIRING)

This role combines mechanical systems, controls, instrumentation, data acquisition, and disciplined test execution. The Test Engineer will serve as the subject-matter expert for the supercharger test ...

Senior Calibration Engineer

Agoura Hills, CA ยท On-site

$161K - $284K/yr

... engineering team. This role offers the opportunity to work with cutting-edge Automated Test ... Develop advanced calibration algorithms for precision measurement and instrumentation subsystems.

Controls Engineer

Calabasas, CA ยท On-site

$88K - $114K/yr

Wunderlich-Malec Engineering (WM) is a 100% employee-owned ESOP and one of the largest and most ... Creates PFDs, P&IDs, single line diagrams, cable and conduit schedules, instrumentation and control ...

Flight Test Engineer

Camarillo, CA ยท On-site

$120K - $150K/yr

FLIGHT TEST ENGINEER - CAMARILLO, CA We are advancing flight control and automation technology ... Working closely with our flight test team, you'll manage and operate flight instrumentation-often ...

Flight Test Engineer

Camarillo, CA ยท On-site

$120K - $150K/yr

FLIGHT TEST ENGINEER - CAMARILLO, CA We are advancing flight control and automation technology ... Working closely with our flight test team, you'll manage and operate flight instrumentation-often ...

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Instrumentation Engineer information

See Oxnard, CA salary details

$13.2K

$111.1K

$173.7K

How much do instrumentation engineer jobs pay per year?

As of Aug 18, 2026, the average yearly pay for instrumentation engineer in Oxnard, CA is $111,083.00, according to ZipRecruiter salary data. Most workers in this role earn between $82,100.00 and $139,300.00 per year, depending on experience, location, and employer.

What is an instrumentation engineer?

Instrumentation Engineers are professionals who design, develop, install, manage, and maintain equipment used to monitor and control engineering systems, machinery, and processes. They work primarily in industries such as manufacturing, oil and gas, power generation, and chemical processing. Their main goal is to ensure that these systems operate efficiently, safely, and within regulatory standards by using instruments like sensors, control systems, and automation technologies. Instrumentation Engineers often collaborate with other engineering disciplines to optimize and troubleshoot complex processes.

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

To thrive as an Instrumentation Engineer, you need a solid understanding of instrumentation and control systems, process automation, and a degree in engineering (typically electrical, electronics, or instrumentation). Familiarity with PLCs, SCADA systems, DCS, and relevant industry certifications such as ISA CAP are commonly required. Strong analytical thinking, attention to detail, and effective communication skills help you excel in project teams and troubleshoot complex systems. These competencies are crucial for ensuring the safe, efficient, and reliable operation of industrial processes.

What are some common challenges instrumentation engineers face when working on multidisciplinary project teams?

Instrumentation Engineers frequently collaborate with professionals from mechanical, electrical, and process engineering backgrounds, which can present coordination challenges. Aligning instrumentation requirements with broader project timelines and ensuring compatibility with other systems often requires clear communication and adaptability. Additionally, troubleshooting integration issues and maintaining safety and compliance standards are ongoing aspects of the role. Successful Instrumentation Engineers develop strong teamwork and problem-solving skills to navigate these complexities.

What is the difference between Instrumentation Engineer vs Electrical Engineer?

AspectInstrumentation EngineerElectrical Engineer
CredentialsBachelor's in Instrumentation, Control Engineering, or related fields; certifications like Certified Control Systems Technician (CCST)Bachelor's in Electrical Engineering; Professional Engineer (PE) license often preferred
Work EnvironmentManufacturing plants, process industries, automation systemsPower plants, electrical systems, construction sites
Industry UsageProcess control, automation, manufacturingPower generation, electrical infrastructure, electronics
Job FocusDesign, install, and maintain control systems and instrumentationDesign, develop, and maintain electrical systems and circuits

Instrumentation Engineers primarily focus on control systems and automation within manufacturing and process industries, while Electrical Engineers work on electrical systems across various sectors. Both roles require technical certifications and often overlap in industrial environments, but their core responsibilities differ significantly.

What cities near Oxnard, CA are hiring for Instrumentation Engineer jobs?

Cities near Oxnard, CA with the most Instrumentation Engineer job openings:

Infographic showing various Instrumentation Engineer job openings in Oxnard, CA as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $111,083 per year, or $53.4 per hour.

Open Telemetry (OTel) Instrumentation Engineer

Volto USA

Woodland Hills, CA โ€ข On-site

Contractor

Posted 13 days ago


Job description

Role: Senior Open Telemetry (OTel) Instrumentation Engineer
Descriptions:
"Core Responsibilities
1. SaaS Instrumentation
• End-to-End Instrumentation: Instrument SaaS products utilizing OTel SDKs (Python, Node.js, Java, Go) to ensure spans, metrics, and structured logs are emitted at the appropriate granularity.
• Semantic Conventions: Define and enforce attribute naming conventions (e.g., service.name, tenant.id, feature.flag) aligned strictly with OTel semantic standards.
• Multi-Tenant Observability: Instrument multi-tenant surfaces to guarantee robust tenant-level observability while preventing cross-tenant data leakage.
2. Cloud Infrastructure
• Collector Fleet Management: Deploy and maintain the OTel Collector fleet across AWS, GCP, and Azure, including receiver configurations, processor pipelines, and exporter routing.
• Runtime Instrumentation: Instrument serverless (Lambda, Cloud Run) and container runtimes (EKS, GKE, AKS) utilizing auto-instrumentation where feasible, and manual instrumentation when technical nuance requires it.
• Metric Normalization: Collect and normalize cloud provider metrics (CloudWatch, Cloud Monitoring, Azure Monitor) via OTel receiver plugins.
3. Network Telemetry
• Data Collection: Gather network flow data (sFlow, NetFlow/IPFIX), SNMP traps, and BGP state via OTel-native and bridged receivers.
• Context Propagation: Correlate network events with application traces using consistent trace-context propagation across network boundaries.
• Strategy Collaboration: Partner with NetOps to define the MELT (Metrics, Events, Logs, Traces) strategy for on-prem, SD-WAN, and cloud interconnect segments.
4. Application Observability
• APM Ownership: Own Application Performance Monitoring (APM) instrumentation, including distributed tracing, custom span attributes, database query capture, and error fingerprinting.
• Asynchronous Workloads: Instrument async workloads (Kafka, SQS, Celery) ensuring W3C Trace Context propagation across message boundaries.
• SLI/SLO Definition: Define and instrument Service Level Indicators (SLIs) and Service Level Objectives (SLOs)—such as latency histograms, error-rate counters, and availability gauges—queryable directly from the Lakehouse.
5. Platform & Standards
• Internal Libraries: Build and maintain internal instrumentation libraries and language-specific wrappers that encode organizational conventions.
• Governance: Author and review instrumentation RFCs while driving the adoption of OTel semantic conventions across all engineering teams.
• Data Alignment: Collaborate with the AIOps ML team to ensure telemetry schemas meet feature engineering and ML model requirements.
• Pipeline Operations: Operate the Collector pipeline at scale, managing backpressure handling, sampling strategies (tail/head), and cardinality budgets."
"Strong expertise in:
OpenTelemetry (SDKs, APIs, Collector, OTLP)
Distributed tracing, metrics, logging principles [opentelemetry.io]