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HomeCompaniesCareers Jobyaviation Icims ComFlight Research Navigation Software Engineer

Flight Research Navigation Software Engineer

Careers Jobyaviation Icims Com · Santa Cruz, CA, US · Active · $97,600–$152,000 / year · iCIMS

Job facts

FieldValue
CompanyCareers Jobyaviation Icims Com
TitleFlight Research Navigation Software Engineer
Normalized title-
Department / teamFlight Research
LocationSanta Cruz, CA, United States
Work model-
Employment typeFull Time
Salary$97,600–$152,000 / year
Statusactive
ATS provideriCIMS
Posted / first seen2024-06-06 / 2026-05-31
Changed / last seen2026-06-06 / 2026-06-06

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Linked records

CompanyCareers Jobyaviation Icims Com
Source8e5cd43b-3573-4a2e-a00f-07f733c827a1
ATS provideriCIMS

Description

Company Overview Joby Flight Research designs, develops, and flight-tests novel aircraft using a software-first autonomy approach. We build and deploy autonomy, perception, planning, and radar systems across conventional, electric, and hydrogen-electric aircraft in both CTOL and VTOL configurations. Overview Joby Aviation’s Flight Research team is looking for a driven Navigation Software Engineer to contribute to the research and development of new aircraft configurations. We are a small, close-knit and agile team; the engineer will work closely with perception, controls, and autonomy engineers to develop state estimation and navigation capabilities that connect perception systems to flight control and mission management. The role focuses on multi-sensor fusion, object and vehicle state estimation, and navigation architecture for new aircraft platforms. The engineer will develop algorithms and infrastructure enabling robust aircraft navigation, integrate perception outputs into the control stack, and support the development of advanced autonomy capabilities. The engineer will be expected to deliver high-quality flight software, act with agency, and be capable of picking up a wide variety of tasks spanning research prototyping, production flight software, and analysis tooling. Responsibilities Develop high-quality navigation and state estimation software (C++) for experimental VTOL and CTOL aircraft. Design and implement multi-sensor fusion algorithms incorporating inertial, air data, perception, and external sensor inputs. Develop and maintain navigation infrastructure including transform trees, calibration pipelines, and state estimation frameworks. Contribute to simulation and analysis tools (C++ / Python) used to evaluate navigation performance and algorithm robustness. Integrate perception outputs into downstream systems including flight controls and mission management. Formulate and execute test plans to demonstrate navigation accuracy, robustness, and performance. Support flight testing of new aircraft. Collaborate closely with perception, controls, and autonomy engineers to design well-integrated navigation and estimation architectures. Required Expert knowledge of modern state estimation methods including Kalman filtering, nonlinear filtering, or factor-graph based estimation. Experience writing real-time and safety-critical C++ flight software. Deep knowledge surrounding multi-sensor fusion systems or state estimation pipelines. Experience writing C++ and Python in a professional environment. Experience developing simulation or analysis tools for dynamic systems. Experience with real-time signal processing. This position must meet US export control compliance requirements, therefore a candidate must qualify as a “US Person” as defined by 22 C.F.R. § 120.15. “US Person” includes US Citizens, lawful permanent residents, refugees, or asylees. Desired Experience developing navigation systems or perception-integrated state estimators for autonomous aircraft. Experience with factor graph based estimation frameworks or differentiable optimization tools (e.g. Symforce, Ceres, GTSAM). Experience with multi-object tracking or perception-driven navigation systems. Experience developing flight-test experiments for quantitative evaluation of navigation or estimation performance. Experience with camera models, pixel measurements, or vision-based navigation systems. Experience with system identification and sensor calibration techniques. Compensation at Joby is a combination of base pay and Restricted Stock Units (RSUs). The target base pay for this position is $97,600 - $152,000/yr. The compensation package will be determined by job-related knowledge, skills, and experience. Joby also offers a comprehensive benefits package, including paid time off, healthcare benefits, a 401(k) plan with a company match, an employee stock purchase plan (ESPP), short-term and long-term disability coverage, life insurance, and more. Additional Information Joby Aviation is an equal opportunity employer.

Full job record

Job IDe4cea719dc8a60e535d0fc63006ff923848ebccb
Org IDfacea025-a75a-4397-bb0b-e37529b02821
Source ID8e5cd43b-3573-4a2e-a00f-07f733c827a1
Board ID8e5cd43b-3573-4a2e-a00f-07f733c827a1
Providericims
Provider Job Key4828
TitleFlight Research Navigation Software Engineer
Normalized Title
Statusactive
Activeyes
Location TextSanta Cruz, CA, US
DepartmentFlight Research
Team
Employment Typefull_time
Workplace Type
Remote Policy
CountryUnited States
RegionCA
CitySanta Cruz
Salary RawCompany Overview Joby Flight Research designs, develops, and flight-tests novel aircraft using a software-first autonomy approach. We build and deploy autonomy, perception, planning, and radar systems across conventional, electric, and hydrogen-electric aircraft in both CTOL and VTOL configurations. Overview Joby Aviation’s Flight Research team is looking for a driven Navigation Software Engineer to contribute to the research and development of new aircraft configurations. We are a small, close-knit and agile team; the engineer will work closely with perception, controls, and autonomy engineers to develop state estimation and navigation capabilities that connect perception systems to flight control and mission management. The role focuses on multi-sensor fusion, object and vehicle state estimation, and navigation architecture for new aircraft platforms. The engineer will develop algorithms and infrastructure enabling robust aircraft navigation, integrate perception outputs into the control stack, and support the development of advanced autonomy capabilities. The engineer will be expected to deliver high-quality flight software, act with agency, and be capable of picking up a wide variety of tasks spanning research prototyping, production flight software, and analysis tooling. Responsibilities Develop high-quality navigation and state estimation software (C++) for experimental VTOL and CTOL aircraft. Design and implement multi-sensor fusion algorithms incorporating inertial, air data, perception, and external sensor inputs. Develop and maintain navigation infrastructure including transform trees, calibration pipelines, and state estimation frameworks. Contribute to simulation and analysis tools (C++ / Python) used to evaluate navigation performance and algorithm robustness. Integrate perception outputs into downstream systems including flight controls and mission management. Formulate and execute test plans to demonstrate navigation accuracy, robustness, and performance. Support flight testing of new aircraft. Collaborate closely with perception, controls, and autonomy engineers to design well-integrated navigation and estimation architectures. Required Expert knowledge of modern state estimation methods including Kalman filtering, nonlinear filtering, or factor-graph based estimation. Experience writing real-time and safety-critical C++ flight software. Deep knowledge surrounding multi-sensor fusion systems or state estimation pipelines. Experience writing C++ and Python in a professional environment. Experience developing simulation or analysis tools for dynamic systems. Experience with real-time signal processing. This position must meet US export control compliance requirements, therefore a candidate must qualify as a “US Person” as defined by 22 C.F.R. § 120.15. “US Person” includes US Citizens, lawful permanent residents, refugees, or asylees. Desired Experience developing navigation systems or perception-integrated state estimators for autonomous aircraft. Experience with factor graph based estimation frameworks or differentiable optimization tools (e.g. Symforce, Ceres, GTSAM). Experience with multi-object tracking or perception-driven navigation systems. Experience developing flight-test experiments for quantitative evaluation of navigation or estimation performance. Experience with camera models, pixel measurements, or vision-based navigation systems. Experience with system identification and sensor calibration techniques. Compensation at Joby is a combination of base pay and Restricted Stock Units (RSUs). The target base pay for this position is $97,600 - $152,000/yr. The compensation package will be determined by job-related knowledge, skills, and experience. Joby also offers a comprehensive benefits package, including paid time off, healthcare benefits, a 401(k) plan with a company match, an employee stock purchase plan (ESPP), short-term and long-term disability coverage, life insurance, and more. Additional Information Joby Aviation is an equal opportunity employer.
Salary Min97,600
Salary Max152,000
Salary CurrencyUSD
Salary Periodyear
Source URLhttps://careers-jobyaviation.icims.com/jobs/4828/flight-research-navigation-software-engineer/job
Apply URLhttps://careers-jobyaviation.icims.com/jobs/4828/flight-research-navigation-software-engineer/job
First Seen At2026-05-31 18:44:11Z
Last Seen At2026-06-06 08:30:36Z
Last Checked At2026-06-06 08:30:36Z
Last Changed At2026-06-06 08:30:36Z
Inactive At
Source Posted At2024-06-06 08:30:34Z
Source Updated At2026-04-21 19:21:49Z
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