特斯拉软件集成工程师,低压及车身控制 Software Integration Engineer, Low Voltage & Body Control
任职要求
Lead software architecture design of body controls products and features Define system hardware and software interfaces Bring-up and debug early software and hardware prototypes through characterizing the systems and ensuring systems perform to Support validation teams in developing component and system level test plans to meet product Understand and debug hardware and software interactions during design, launch, and deployment of products or features Perform field data analytics to improve design and performance of the system Analyze changes to assess impact to systems by summarizing impacted devices, interfaces and process in the hardware and software domain Perform DFMEA and HARA for body controls systems Serve as a system leader to provide technical direction for electrical, software, manufacturing, mechanical design, and service teams Help various cross-functional teams understand how their systems and related decisions impact different vehicle systems Bachelor’s degrees in Mechatronics, Electrical Engineering, Computer Engineering, Systems Engineering, or equivalent Strong C/C++ comprehension Comfortable with Electrical Engineering fundamentals Excellent at hands-on …
工作职责
The Role Body controls systems integration engineers within the vehicle software organization work side by side with various cross-functional teams to lead the design and development of body controls systems. This role utilizes hardware, software, and system design fundamentals to support product design, vehicle behaviors definition, prototype bring-up, and validation, with a software focus. Body controls integration engineers are responsible for overall functionality and performance of body controls systems throughout product life cycle. Systems this role will be responsible for include doors, trunk, frunk, windows, seating, lighting, mirrors, wipers, heaters, steering wheel controls, and other actuators and sensors. Responsibilities Distill vehicle product requirements into actionable software
The Role Body controls systems integration engineers within the vehicle software organization work side by side with various cross-functional teams to lead the design and development of body controls systems. This role utilizes hardware, software, and system design fundamentals to support product design, vehicle behaviors definition, prototype bring-up, and validation, with a software focus. Body controls integration engineers are responsible for overall functionality and performance of body controls systems throughout product life cycle. Systems this role will be responsible for include doors, trunk, frunk, windows, seating, lighting, mirrors, wipers, heaters, steering wheel controls, and other actuators and sensors. Responsibilities Distill vehicle product requirements into actionable software
The Role Body controls systems integration engineers within the vehicle software organization work side by side with various cross-functional teams to lead the design and development of body controls systems. This role utilizes hardware, software, and system design fundamentals to support product design, vehicle behaviors definition, prototype bring-up, and validation, with a software focus. Body controls integration engineers are responsible for overall functionality and performance of body controls systems throughout product life cycle. Systems this role will be responsible for include doors, trunk, frunk, windows, seating, lighting, mirrors, wipers, heaters, steering wheel controls, and other actuators and sensors. Responsibilities Distill vehicle product requirements into actionable software
The Role Tesla's Systems Integration Team is seeking an Integration Engineer who will be responsible for ensuring firmware support for new vehicle features and new hardware are designed, implemented and tested to achieve Tesla’s standards for safety and customer experience. The Integration Engineer is expected to move projects along at an aggressive pace – keeping track of program milestones and deliverables and pulling together the contributions of many teams into a cohesive final product. The Integration Engineer is also expected to get their hands dirty in the details of their sub-systems – digging through source code, root causing issues and proposing solutions to complex problems, as well as testing prototype firmware implementations in-vehicle. Drive Systems encompasses all aspects of safe and precise torque production. This includes integration of autopilot features such as adaptive cruise control and automatic emergency braking, smooth and safe application of power to the wheels, hill hold and one pedal driving, thermal management and the overall mapping of drive power request to motor power. The drive systems integration engineer will be responsible for ensuring firmware maturity for new hardware introductions. Responsibilities Work with the design and development engineers throughout the engineering organization to ensure the relevant subsystems are designed with appropriate requirements, interfaces and interactions to achieve specific vehicle functions. Break down new, high-level feature requests into sub-system and component level requirements, and drive the implementation, testing and release of these features against Tesla’s firmware release schedule. Utilize critical analysis of potential failure modes and effects to influence these requirements. Develop overall validation strategy for these features and work with validation teams to ensure automated test coverage is implemented for future firmware releases. Work cross-functionally across mechanical, electrical, system architecture, firmware development and firmware validation teams to understand new component-level hardware changes which are being developed and how to support them in firmware – both in manufacturing and for customer use – so that they can be seamlessly introduced to our vehicle platforms. Develop and execute firmware integration test plans on new hardware components and firmware features to rapidly retire risk from new designs and provide feedback to the development teams to accelerate our aggressive development cycles. Dig into data and source code to identify and debug issues at the system level and propose robust solutions. Work with manufacturing and with service to ensure the function(s) are rolled out and functioning properly. This can include development of processes, diagnostic tools and methods, and root-cause diagnosis for product issues. Collaborate with validation teams to design tests which will validate the functions, interfaces, and interactions of the system. Identify areas of concern, and work with teams to rectify any bugs. Develop prototype test setups to integrate new subsystems with simulated and actual vehicle components. Lead and manage integration of initial prototype systems including bring-up, debug, and engineering test of alpha- and beta-phase prototype vehicles.
The Role Tesla's Systems Integration Team is seeking an Integration Engineer who will be responsible for ensuring firmware support for new vehicle features and new hardware are designed, implemented and tested to achieve Tesla’s standards for safety and customer experience. The Integration Engineer is expected to move projects along at an aggressive pace – keeping track of program milestones and deliverables and pulling together the contributions of many teams into a cohesive final product. The Integration Engineer is also expected to get their hands dirty in the details of their sub-systems – digging through source code, root causing issues and proposing solutions to complex problems, as well as testing prototype firmware implementations in-vehicle. Drive Systems encompasses all aspects of safe and precise torque production. This includes integration of autopilot features such as adaptive cruise control and automatic emergency braking, smooth and safe application of power to the wheels, hill hold and one pedal driving, thermal management and the overall mapping of drive power request to motor power. The drive systems integration engineer will be responsible for ensuring firmware maturity for new hardware introductions. Responsibilities Work with the design and development engineers throughout the engineering organization to ensure the relevant subsystems are designed with appropriate requirements, interfaces and interactions to achieve specific vehicle functions. Break down new, high-level feature requests into sub-system and component level requirements, and drive the implementation, testing and release of these features against Tesla’s firmware release schedule. Utilize critical analysis of potential failure modes and effects to influence these requirements. Develop overall validation strategy for these features and work with validation teams to ensure automated test coverage is implemented for future firmware releases. Work cross-functionally across mechanical, electrical, system architecture, firmware development and firmware validation teams to understand new component-level hardware changes which are being developed and how to support them in firmware – both in manufacturing and for customer use – so that they can be seamlessly introduced to our vehicle platforms. Develop and execute firmware integration test plans on new hardware components and firmware features to rapidly retire risk from new designs and provide feedback to the development teams to accelerate our aggressive development cycles. Dig into data and source code to identify and debug issues at the system level and propose robust solutions. Work with manufacturing and with service to ensure the function(s) are rolled out and functioning properly. This can include development of processes, diagnostic tools and methods, and root-cause diagnosis for product issues. Collaborate with validation teams to design tests which will validate the functions, interfaces, and interactions of the system. Identify areas of concern, and work with teams to rectify any bugs. Develop prototype test setups to integrate new subsystems with simulated and actual vehicle components. Lead and manage integration of initial prototype systems including bring-up, debug, and engineering test of alpha- and beta-phase prototype vehicles.