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Bot Auto
Houston, TX
Source: Bot Auto careers · View original posting
From Bot Auto's posting. “We” and “our” refer to the employer.
Company Introduction
At Bot Auto, we build autonomous trucks to transform the way goods are transported and improve the quality of life for communities worldwide. With a start-up spirit yet long-established experience, Bot Auto has the most seasoned team that has delivered several world’s first and world’s only. Together, we share vision, we see and build miracles and we drive the future of transportation. Join us and turn your dream into something RUNNING.
Position Overview
We are seeking a Junior E/E Architecture & Electrical Systems Engineer to support the design, integration, and validation of production-intent vehicle electrical/electronic architectures for autonomous and software-defined vehicles. This engineer will contribute to in-vehicle network topology, ECU and centralized-compute integration, pinout definition, wiring harness design, power distribution, safety analysis, and system verification under the guidance of senior engineers.
Hands-on experience contributing to automotive-grade in-vehicle network architecture design is required.
Assist with defining and maintaining ECU, sensor, actuator, and compute-platform pinouts, including signal types, voltage levels, current limits, wake/sleep behavior, power, grounds, and shielding requirements.
Support the design and review of low-voltage harnesses, schematics, connectors, wire gauges, splices, fusing, routing, grounding, shielding, serviceability, and manufacturing constraints.
Assist with integrating ECUs, gateways, sensors, actuators, power-distribution modules, and high-performance vehicle computers; support hardware bring-up and interface validation.
Work with suppliers and internal hardware, software, mechanical, safety, manufacturing, and vehicle-integration teams to align electrical interfaces and network requirements.
Maintain architecture models, schematics, BOMs, DBC/ARXML/LDF files, interface baselines, variants, and change traceability.
Participate in system FMEA/DFMEA and fault-tree analyses; help identify failure modes, effects, detection mechanisms, design mitigations, safe states, and verification evidence.
Support the definition and execution of network and electrical integration tests for bandwidth, latency, bus load, time sync, power modes, diagnostics, fault injection, EMC, HIL, bench, and vehicle operation.
Assist with diagnosing cross-domain electrical, communication, and hardware/software issues using logs, network traces, measurements, and structured root-cause analysis; help drive defects to verified closure.
Work with autonomy, controls, software, hardware, cybersecurity, safety, suppliers, and platform partners to implement architecture decisions, interfaces, dependencies, and changes.
Participate in design and release-readiness reviews; help maintain documentation, verification evidence, manufacturing and service inputs, and clear tracking of residual risks.
Skills and Qualifications
Bachelor's or advanced degree in Electrical Engineering, Electronics Engineering, Computer Engineering, Automotive Engineering, Mechatronics, or a related field.
Hands-on experience contributing to automotive-grade in-vehicle network architecture design through industry experience, an internship, co-op, or an equivalent vehicle-platform project.
Working knowledge of centralized, domain-based, or zonal E/E architectures, including function allocation, gateways, ECUs, and high-performance-compute integration.
Hands-on knowledge of CAN and CAN-FD, with familiarity with LIN and Automotive Ethernet concepts such as topology, bandwidth, latency, diagnostics, and communication matrices.
Practical experience supporting pinout definition for power, ground, analog, digital, high-speed, wake, reset, diagnostics, and safety-related signals.
Hands-on exposure to wiring diagrams, harness schematics, connectors, wire sizing, grounding, shielding, power distribution, and design for manufacturing.
Basic working knowledge of UDS, DoIP, SOME/IP, DDS, gPTP/IEEE 802.1AS, or similar diagnostic, middleware, and time-synchronization technologies.
Exposure to FMEA/DFMEA, fault-tree analysis, design risk assessment, or verification planning in an ISO 26262-oriented process.
Familiarity with tools such as CANoe/CANalyzer, Wireshark, oscilloscopes, logic and power analyzers, and HIL or bench systems.
Ability to work with requirements, interfaces, configuration records, and engineering changes, with sound problem-solving, documentation, and cross-functional communication skills.
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