
LabVIEW Experts in Germany
matched in minutes from over 15,000 CVs with the power of AIHire experts who create automated test benches, measurement applications and hardware integrations with LabVIEW, NI-DAQmx, CompactRIO and TestStand. FRATCH connects you quickly with precise matches among vetted, available freelancers.
Meet FRATCH Experts in Germany, who have recently used LabVIEW
Muhammad Tanveer B.
Last position:
Embedded Systems Consultant / Architect | Integration and Validation Engineer / Manager at Ingenieurbüro Baig
Led the hardware development and validation of a safety-critical 400-V battery management system (BMS) for the TOGG SUV program; performed system architecture reviews, schematic validations, EMC and reliability tests, and root cause analyses in compliance with relevant automotive standards (ECE-R10, CISPR25, ISO-26262). Coordinated cross-country EU engineering teams, customer reviews, and technical documentation to deliver a production-ready, validated system.
Architected and integrated 22 state-of-the-art ADAS validation vehicles for BMW ADCAM and LIDAR programs at Magna Electronics; synchronized up to 26 heterogeneous sensors (LIDAR, RADAR, cameras, GNSS/INS) using PTP-based timing architectures. Defined the system architecture, HW/SW interfaces for hardware-in-the-loop (HIL) rework, sensor integration strategies, and data acquisition frameworks. This enabled scalable vehicle-level validation, improved validation efficiency by 25%, and reduced project costs by €1.45 million.
End-to-end validation and integration of automotive radar platforms for a Daimler project at Continental. Developed automated open-loop hardware-in-the-loop (HIL) environments to accurately test target tracking KPIs, field-of-view limits, and thermal and voltage-related ECU state machines. Skilled use of a highly complex toolchain consisting of CANoe, Lauterbach Trace32, RADAR target simulators, and EMC shielding chambers for RF and system validation. Synchronized global, interdisciplinary teams to speed up troubleshooting and close critical technical gaps.
Reconstructed and validated the product architecture of an electromechanical e-bike by integrating and troubleshooting critical subsystems (BMS, motor control, sensors, HMI, electronic locking systems). Built a comprehensive system-level test bench for functional testing, fault reproduction, and performance analysis; coordinated suppliers and implemented corrective actions to improve reliability and traceability.
Defined the system architecture and validation strategy for a LIDAR platform developed in cooperation with Elmos Semiconductor; evaluated optical measurement concepts, SPAD detector integration, and system requirements, and created technical recommendations for product development and verification.
Developed LabVIEW-based automation and verification software for a high-precision hydraulic and electromechanical test system for FTE Automotive; integrated NI DAQ hardware for high-frequency real-time capture of physical measurements. Developed automated test sequences, programmable endurance tests, troubleshooting routines, data logging, and analysis tools to improve test efficiency and traceability.
Successfully delivered full engineering life cycles for well-known industrial customers (Magna, Continental, Farasis, FTE Automotive, BMW, Daimler, TOGG) – from requirements engineering and proof of concept to system integration and validation, technical documentation, supplier coordination, and user training.
Kyra C.
Last position:
Founder at C/C++ Consultancy for Pharma and Clinical Software Development and Digitalization Support
- Designed an open clinical framework for digitalization in pharma and clinical software development.
- Developed a minimum viable product (MVP) for the framework, applying agile methodologies and rapid prototyping best practices while ensuring GxP validation and HIPAA compliance.
Jens-Uwe P.
Last position:
Architecture and Programming for Automotive Test Bench Platform at Automotive Supplier
In this project, I was responsible for the design and implementation of a new, modular, and highly scalable test bench platform for an automotive supplier. My focus was on developing a robust system architecture and programming the associated software, with consistent use of UML modeling throughout. This structured approach made it possible to greatly increase the reusability of individual LabVIEW test modules and to significantly reduce development time for follow-up projects. I also integrated modern automotive standards such as CAN FD, LIN, and safety requirements, which made the solution future-proof.
Technologies: LabVIEW, Visio, UML, CAN FD, LIN, DMM, Safety, image processing, project management, HMI, C#, C++, Python, Rust, CI
Evrard A.
Last position:
Senior Embedded Software Tester at Bosch GmbH
- Ensuring system maturity and operational readiness across the entire lifecycle of automotive products in line with ASPICE and internal quality processes
- Analyzing system behavior and system performance to identify inefficiencies, integration issues, and gaps in diagnostic coverage
- Supporting project milestones in the development cycle by validating system interactions, configurations, and boundary conditions
- Deriving test specifications from software and system requirements
- Implementing test cases with RobotFramework and Python
- Close collaboration with system, software, hardware, and calibration teams to ensure stable and high-performance system behavior before release
- Performing end-to-end system performance analyses using endurance tests and automated evaluation of results with Python and RobotFramework
- Introducing KPI-based system monitoring and performance analysis, as well as building automated evaluation and feedback pipelines
- Organizing and moderating cross-functional debugging and integration workshops
- Successful integration and validation of system and software components for series truck platforms, along with lasting improvements in performance quality, test quality, and integration stability
Christian M.
Last position:
Self-employed business consultant at CuriousMinds Unternehmensberatung
- Strategic consulting, technical consulting, interim management, and training
- Management consulting and development of application solutions through interdisciplinary solution approaches
- Employee and team development as well as innovation and communication management
Ammar A.
Last position:
Software Development | Test & Validation | Data & AI Engineering
- Requirement-based test case design for automated parking maneuvers.
- Implementing and running test cases.
- Integration within the existing AVP (Automated Valet Parking) SW framework.
Oliver O.
Last position:
Embedded Software Architect at Automotive supplier
Stellar SR6 G7 line, 32-bit Arm® Cortex®-R52+ MCU.
- MISRA-C, C99, Greenhills ARM compiler
- Dassault AUTOSAR Builder
- EB Tresos
- Sparx Enterprise Architect 16.1
- VS Code
- Python xml, lxml, NumPy and Pandas
ISO 26262, ISO 21434, hypervisor, key management, HSM. Tooling & automation. LieberLieber LemonTree + Sparx EA. Jira, Confluence, SharePoint. Git/Github. DevOps through Jenkins & Conan.
Andreas W.
Last position:
Self-employed Software Developer at amw-software.net
Johannes F.
Last position:
Project Management Conveyor Technology at Amazon Deutschland Transport GmbH
Retrofit of 10 existing distribution centers with ASML (automated scan manual labelling)
Automation of conveyor technology at the induct with the goals of improving ergonomics, reducing costs, and increasing throughput
Adaptation of existing MHE (material handling equipment)
Supplier management (internal and external)
Construction site coordination
Detailed planning and execution of the implementation concept
Acceptance tests for machine safety, Machinery Directive
Planning and execution of IOQ, SWEH, SAT, Launch
Ensuring compliance with costs, deadlines, and scope
Risk management
PM coaching of the project team and suppliers
Leading multiple international teams
International communication/coordination of sites (Delivery Stations AMZL, suppliers), RME, Ops, Safety, PMO, and Quality
Methods and tools: Interim project management, project management (classic, agile, hybrid), change management, V-model, Scrum, Ozark, Chime, PtW, RightCrowd, stakeholder management, scheduling, cost planning, resource planning, controlling, conveyor technology, logistics, mechanical engineering, construction site coordination, claim management, requirements management, specifications, functional specification, supply chain management, risk management, FMEA, lessons learned, supplier management, team leadership, communication (international)
Basel J.
Last position:
Senior Application Engineer / Product Manager at Altran Magnetics LLC
- Oversee development and optimization of key products, including DP contactors, EMI filters, and circuit breakers.
- Lead certification processes ensuring compliance with UL, TÜV, and VDE standards.
- Act as technical liaison between customers, sales teams, and manufacturing to deliver customized solutions.
Roland R.
Last position:
Support in Ongoing Project at Automotive Supplier
- closing the safety case
- creation of meaningful traceability matrices and targeted test expansion
- transferring requirements into other database systems
- structuring the requirements, assessing their completeness, and setting up new test cases based on use-case–based test strategies and the results of internal traceability matrices
- partial automation of tasks within a requirement assessment tool
- tools and languages: MS Teams, reqIF, Enterprise Architect, Codebeamer, proprietary tools for creating and evaluating traceability matrices (approx. 1000 x 1000)
Sergej V.
Last position:
Software Developer Motor Control (Project "Multi DMR – Motor-Control") at Lorch Schweißtechnik GmbH
- Modification and redesign of the software for a series component
- Review of the software concept and extension of functionality
- Modification of software functions for DC motor control
- Hardware: ARM STM32G474, CAN bus, Lauterbach T32
- Software: Microsoft Visual Studio Code
Serge Patrick T.
Last position:
Senior Test Engineer at Voith Group
- Software tests for control functions in e-mobility vehicles
- Development of software tests for complex system and component functions for control and regulation in commercial vehicles with electric mobility
- Analysis of software specifications and creation of test specifications for system and component function tests
- Further development and maintenance of test tools
- Carrying out manual and/or automated tests based on the test specifications
- Review of test specifications and participation in reviews of software specifications
- Tools: Vector CANalyzer, SIEMENS Polarion
Reshmi S.
Last position:
Software Engineer at Aumovio Engineering Services (formerly Continental Engineering Services)
- Programming: C/C++, Python, Embedded C, MATLAB
- Feature Owner for SecOC and FvM, leading development, integration, and validation
- Strong ECU hardware understanding for debugging
- Integrated AUTOSAR security modules: CSM, Crypto, CryIf, and HSM
- Hands-on experience with AUTOSAR BSW and MCAL configuration
- Implemented Secure Boot with DMA on Chorus MCU, improving boot performance
- Designed HSM key management and UDS-based key verification features
- Developed Python automation scripts to improve validation efficiency
- Performed ISO 26262 and ASPICE compliant development and testing
- Implemented diagnostics (DIDs, DTCs) for fault detection and reliability
- Strong knowledge of 32-bit MCU architectures and real-time systems
- Proficient in embedded C, compiler/debugger tools, and CANoe
- Experience with TLS, IPsec, key management, and Ethernet switch configuration
- Created architecture and system documentation for cross-team alignment
- Supported production ECU flashing and large-scale deployments
- Conducted functional safety-related tests to ensure system reliability
Aaron P.
Last position:
Hiwi Structural Dynamics at Bauhaus-Universität
- Support MATLAB-based exercise sessions, assisting students with computational analysis of SDOF, MDOF, Tuned Mass Damper, and Continuous Systems.
- Guide students in implementing and interpreting dynamic response simulations and vibration analysis results.
- Solve example problems during tutorial sessions to reinforce theoretical and numerical concepts.
Discover over 15,000 top freelancers
Statistics of experts using LabVIEW
Aggregated from the professional profiles of matched freelancers.
Experience
23 years

Position duration
2.7 years

Positions per freelancer
11

Top business areas
Product Development, Quality Assurance, Information Technology

Top industries
Manufacturing, Automotive, Information Technology

Certification focus areas
Product Development, Quality Assurance, Information Technology
Bachelor's degree or higher
95%
Master's degree or higher
75%
Doctorate
13%

Certifications per freelancer
3

Most common languages
German, English, French

Speak two or more languages
100%
Based on our profile pool as of 19 Sep 2026.
Daily rate distribution
The chart shows how the daily rates of freelancers in this technology in Germany are distributed, based on recent contracts on our platform. Each bar covers a rate range — its height shows how many freelancers charge within that range.
Average rates of experts in Germany using LabVIEW
Rates are based on recent contracts and do not include FRATCH margin.
The average daily rate is the mean of all daily rates from recent contracts of comparable freelancers on our platform.
The median daily rate is the middle value of all daily rates — half of comparable freelancers charge less, half charge more. Unlike the average, it is barely affected by outliers.
Calculated based on our freelancers’ daily rates as of 19 Sep 2026. Actual rates may vary depending on seniority level, experience, skill specialization, project complexity, and engagement length.
LabVIEW experts industry focus
See which industries our matched freelancers work in most often — every figure is calculated live from the freelancers on FRATCH.
- Manufacturing (76%)
- Automotive (69%)
- Information Technology (53%)
- Education (40%)
- Energy (38%)
- Healthcare (29%)
- Telecommunication (27%)
- Aerospace and Defense (18%)
Please note that freelancers can work across multiple industries, so percentages overlap.
About the technology
What LabVIEW does
LabVIEW is a graphical programming environment for measurement, automation and control. Its dataflow model helps teams connect instruments, process signals and visualize results without building every interface from scratch. The official name is Laboratory Virtual Instrument Engineering Workbench, and the technology is widely associated with National Instruments and NI.
Typical applications
LabVIEW is used where software must interact with physical equipment, sensors or production processes. Companies use it for automated test systems, research instrumentation, laboratory workflows, real-time control and industrial monitoring.
- Automated validation and end-of-line testing
- Data acquisition and signal analysis
- Instrument control over common interfaces
- Operator dashboards and measurement reports
Ecosystem and tooling
Strong specialists work across the LabVIEW ecosystem rather than only its visual programming language. Relevant tools include NI-DAQmx, VISA, TestStand, DIAdem, Measurement & Automation Explorer, CompactRIO and PXI hardware. Projects may also connect LabVIEW with Python, C, .NET, SQL databases or industrial communication protocols.
When companies need specialists
Freelance expertise helps when a test platform must be delivered quickly, an inherited virtual instrument needs restructuring or a hardware setup is changing. In Germany, LabVIEW is common in industrial production, automotive testing, research, medical technology and electronics. Remote work suits software, reporting and analysis; commissioning and instrument integration may require on-site collaboration.
What quality looks like
A strong professional separates acquisition, processing, presentation and hardware control into maintainable components. They define clear interfaces, handle timing and errors deliberately, document calibration assumptions and protect measurement data from silent loss. Good specialists also understand the device under test, not just the LabVIEW environment.
Selecting the right professional
Assess previous work with comparable instruments, signal types, hardware buses and test requirements. Ask how the specialist approaches version control, automated testing, deployment and troubleshooting on target machines. Communication matters when researchers, production teams and software specialists must agree on acceptance criteria, reports and long-term support.
Frequently asked questions
Before you brief your next project: the most common questions about LabVIEW.
LabVIEW is mainly used to acquire, analyze and visualize data from instruments, sensors and test equipment. Companies also use it to automate validation, control real-time systems and create operator interfaces for laboratories and production environments.
LabVIEW offers a visual dataflow approach and close integration with National Instruments hardware, which can speed up measurement and test-system development. Python and MATLAB may be preferable for broad software ecosystems, advanced modeling or flexible data science workflows, while many projects combine these tools with LabVIEW.
A strong LabVIEW specialist often works with NI-DAQmx, VISA, TestStand, PXI, CompactRIO and industrial communication protocols. Knowledge of electronics, instrumentation, signal processing, Python, C or .NET can also be important when a system spans hardware, analysis and external applications.
The right level depends on the system’s hardware, safety needs, timing constraints and lifecycle. A simple data-acquisition interface may need focused support, while a production test platform benefits from a professional who has handled architecture, deployment, diagnostics and long-term maintenance in LabVIEW.
LabVIEW software design, code reviews, data analysis and documentation can often be handled remotely from Germany or elsewhere. Hardware commissioning, instrument wiring and troubleshooting physical test benches may require scheduled on-site work, so the project plan should separate remote and in-person tasks.
Review whether the LabVIEW solution has clear module boundaries, meaningful error handling, readable front panels and documented hardware assumptions. Ask for examples of automated tests, version control, deployment procedures and recovery from disconnected instruments or invalid measurements.
NI LabVIEW can support production test systems when the architecture, hardware interfaces and deployment process are designed for repeatable operation. TestStand may add structured sequencing, reporting and result management, while specialists should also address serviceability, traceability and operator workflows.
Before starting with LabVIEW, freelancers should clarify the target hardware, driver versions, measurement timing, required reports and the team’s coding conventions. They should also understand whether the work involves legacy virtual instruments, real-time targets, TestStand sequences or integration with Python, databases or factory systems.
The average hourly rate of freelancers in Germany who have used LabVIEW in their recent projects is 93 €, which corresponds to a daily rate of about 748 € based on an 8-hour working day.
Of the freelancers in Germany who have used LabVIEW in their recent projects, 95% hold at least a Bachelor's degree, 75% hold at least a Master's degree, and 13% hold a doctorate.
On average, freelancers in Germany who have used LabVIEW in their recent projects have 23 years of professional experience, with a single engagement typically lasting around 2.7 years.
The most common languages among freelancers in Germany who have used LabVIEW in their recent projects are German (100%), English (98%), and French (20%).
The most common industries among freelancers in Germany who have used LabVIEW in their recent projects are Manufacturing (76%), Automotive (69%), and Information Technology (53%).
The most common business areas among freelancers in Germany who have used LabVIEW in their recent projects are Product Development (93%), Quality Assurance (84%), and Information Technology (71%).
Main locations of FRATCH Experts, who have recently used LabVIEW
Our freelancers and interim experts are at home across the DACH region — available on-site in the major business hubs or fully remote. Choose a location to discover matched specialists, local market insights and up-to-date availability.
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