HARVTECH is building the next generation of electric agricultural machinery with a focus on efficiency, affordability, and smart automation. The company is developing high-performance electric weeders that combine advanced motor systems, modern battery technology, and intelligent control mechanisms. This internship opportunity places interns at the intersection of electric vehicle powertrains, automation, and hands-on field engineering. The position is ideal for individuals who want practical exposure to hardware, embedded systems, and real-world validation rather than purely theoretical or lab-only work.
Company mission, product focus, and engineering culture
HARVTECH concentrates on creating electric agricultural machinery that improves productivity while keeping costs manageable and systems intelligent. The product focus centers on electric weeders that use advanced motors, modern batteries, and integrated control systems to perform reliably in field conditions. This combination of mechanical design, electrical powertrain integration, and automated control creates a development environment that requires multidisciplinary engineering collaboration.
Key elements of HARVTECH’s approach
- Efficiency: Emphasis on powertrain and control approaches that maximize the effective use of energy.
- Affordability: Design and component choices aimed at cost-effective deployment of electric agricultural tools.
- Smart automation: Use of intelligent control and sensor integration to enable safer and more effective operation.
Engineering work at HARVTECH is centered around tangible outcomes for agricultural tasks. Teams are expected to integrate hardware and software into machines that will operate in real-world environments. The culture favors practical problem solving, iterative testing, and hands-on adjustments driven by field feedback. Collaboration across motor design, battery integration, control algorithm development, and sensor systems is routine.
HARVTECH is building next-generation electric agricultural machinery focused on efficiency, affordability, and smart automation.
Role overview: EV Automation Engineer Intern — hands-on integration and testing
The EV Automation Engineer Intern role focuses on automation, control systems, and smart integration of electric powertrain components. This position is designed for people who prefer working directly with machines, controllers, and field tests rather than purely theoretical tasks. Interns will have responsibilities that span embedded programming, motor control tuning, sensor integration, and real-world validation.
Daily tasks and practical exposure
- Develop and implement automation logic for EV subsystems in collaboration with the engineering team.
- Tune motor controllers for BLDC and PMSM motors to achieve desired performance and efficiency.
- Integrate sensors such as current, voltage, temperature, and IMU sensors for monitoring and control.
- Participate in hands-on field testing to validate systems in real agricultural settings.
Work in this role emphasizes measurable outcomes: diagnosing issues, optimizing system performance, and validating safety logic through testing. The position provides a balance between embedded software work and mechanical/electrical integration, ensuring that interns experience the end-to-end process of bringing an EV subsystem from concept to field-ready operation. The practical nature of the role also means troubleshooting and iterative refinement will be frequent activities.
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Key responsibilities: control systems, embedded work, and powertrain integration
This chapter outlines the specific responsibilities interns will undertake across automation, embedded systems, and EV powertrain integration. The work is separated into complementary areas: Automation & Control Systems; Embedded & Software Work; EV Powertrain Integration; and Testing & Field Work. Each area contains tasks that together form a comprehensive hands-on learning and contribution opportunity.
Automation & Control Systems
- Develop and implement automation logic for various EV subsystems to achieve functional and safety goals.
- Work on motor controller tuning for BLDC and PMSM motors to refine responsiveness and efficiency.
- Assist in integrating sensors including current, voltage, temperature, and IMU sensors for monitoring and control feedback.
- Build control algorithms focused on improving both efficiency and operational safety.
Embedded & Software Work
- Program microcontrollers such as Arduino, STM32, or ESP32 for embedded control tasks and real-time logic.
- Work with CAN communication protocols to enable inter-component data exchange and system coordination.
- Assist in developing dashboard and telemetry systems to visualize status and support debugging.
- Perform data logging and real-time monitoring to capture field performance and facilitate analysis.
EV Powertrain Integration, Testing & Field Work
- Support the integration of motor, controller, and battery systems to create cohesive driveline behavior.
- Assist in BMS interaction and implement safety logic that governs charging, discharging, and operational limits.
- Conduct testing, debugging, and validation of complete EV subsystems under realistic conditions.
- Participate in field testing, diagnose failures, and work on component improvements based on observed performance.
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Required skills, good-to-have abilities, and ideal applicant profile
The internship requires a foundation in electric vehicles and power electronics, familiarity with BLDC and PMSM motors, and experience programming microcontrollers. Candidates should understand basic circuits and sensors, which supports tasks like sensor integration and troubleshooting. These core skills enable interns to contribute quickly to control tuning, embedded implementations, and field validation.
Must-have skills
- Basic understanding of Electric Vehicles and Power Electronics.
- Knowledge of BLDC and PMSM motor fundamentals and control implications.
- Experience working with microcontrollers such as Arduino, ESP, or STM32 for embedded tasks.
- Understanding of basic circuits and common sensors to support integration and diagnostics.
Good-to-have abilities
- Experience with CAN protocol for component-level communication.
- Familiarity with MATLAB or Simulink for algorithm exploration or system modeling.
- Knowledge of Python or Embedded C for scripting, analysis, or firmware tasks.
- Experience with EVs, robotics, or drones that provides related practical context.
Who should apply
- Candidates passionate about EVs, automation, and hardware systems who want hands-on experience.
- Individuals who enjoy building, testing, and experimenting with technology in a practical setting.
- Those comfortable working in a fast-paced startup environment where tasks span multiple disciplines.
- Applicants who are ready for a hands-on workshop environment and field testing activities.
What you’ll gain: outcomes, exposure, and potential opportunities
Interns at HARVTECH will gain direct, real-world experience in building EV products from the ground up. The role delivers exposure to motor control systems, battery technologies, automation, and embedded systems that drive product functionality. Working alongside the founding team offers close mentorship and insight into startup decision-making and product iteration.
Key learning and career benefits
- Hands-on experience constructing EV products and integrating subsystems into functional machines.
- Practical exposure to motor control, battery integration, and automation technologies used in fielded products.
- Opportunities to work closely with the founding team and learn about product development cycles in a startup context.
- Possibility of receiving a Pre-Placement Offer (PPO) based on performance during the internship.
The internship emphasizes demonstrable engineering contributions that translate into tangible product improvements. Interns who excel at diagnosing field issues, implementing robust control logic, and integrating reliable hardware-software interfaces are likely to showcase the value they bring to the team. The combination of technical exposure and hands-on responsibility helps interns build strong experience for roles in EVs, robotics, or related hardware-focused fields.
Frequently Asked Questions
What is HARVTECH building?
HARVTECH is building next-generation electric agricultural machinery that emphasizes efficiency, affordability, and smart automation. The company is developing high-performance electric weeders that combine advanced motor systems, battery technology, and intelligent control mechanisms to operate effectively in agricultural settings.
What will the EV Automation Engineer Intern do day to day?
The intern will work on automation, control systems, and smart integration of electric powertrain components. Day-to-day tasks include motor controller tuning, sensor integration, programming microcontrollers, data logging, and participating in field testing to diagnose and optimize system performance.
What technical skills are required for this internship?
Applicants must have a basic understanding of electric vehicles and power electronics, knowledge of BLDC and PMSM motors, experience with microcontrollers such as Arduino, ESP, or STM32, and an understanding of basic circuits and sensors. These skills enable hands-on work with controllers, sensors, and embedded systems.
Is field work part of the internship?
Yes. The role involves direct hands-on work with machines in real-world field testing rather than purely theoretical tasks. Interns are expected to participate in field testing, diagnose issues, and help optimize performance and component reliability.
What can interns expect to gain from this position?
Interns will gain real-world experience building EV products from scratch, exposure to motor control systems, batteries, and automation technologies, and close working relationships with the founding team. Strong performers may also be considered for a Pre-Placement Offer (PPO) based on their contributions.
HARVTECH’s EV Automation Engineer Intern role offers a hands-on pathway to develop practical engineering skills in electric vehicle subsystems and automated control. The internship is designed to immerse candidates in concrete tasks that include embedded programming, motor tuning, sensor integration, and extensive field testing. For motivated candidates who enjoy workshop work, diagnostics, and iterative improvement, the role provides meaningful exposure to product development and the chance to contribute directly to machines that will operate in agricultural contexts.






