RF Hardware Intern (Fall 2026)
Tacit · San Francisco, CA · Today
On-siteInformation Technology$40–$60/hrVolunteer
About Tacit We are an early-stage, deep tech startup based in San Francisco, developing innovative hardware that rethinks human-computer interaction. We are backed by General Catalyst, Khosla Ventures, and Greylock Partners, with a founding team from Stanford, BrainGate, Oculus, and Tesla. While we can’t reveal too much just yet, our team is tackling cutting-edge engineering challenges to bring revolutionary products to life. About The Role We're seeking motivated RF Hardware interns to contribute to the development and validation of RF systems for our cutting-edge sensing technology. Depending on your experience, interests, and the needs of the team, your work may focus on exploring new RF architectures or on validating and improving the performance of existing RF systems. Projects may involve prototyping new circuit concepts, evaluating RF components and system architectures, bringing up RF transceiver and evaluation hardware, developing automated measurement infrastructure, or characterizing hardware performance across devices, builds, and operating conditions. For this fall, the primary focus areas are (a) systematic, per-build characterization of our RF signal chain against expected performance, and (b) bring-up of RF transceiver evaluation hardware, combining embedded firmware work with RF exploration. Each intern will own a focused project area and work closely with RF and validation engineers to turn experimental results into engineering recommendations. This role offers hands-on experience across RF hardware, embedded firmware, test automation, and data analysis, along with collaborative learning, technical mentorship, and direct involvement in product development within a dynamic startup environment. This position is primarily for a fall-start internship. What You'll Do Depending on your project area, you may: Run systematic, per-build characterization of the RF signal chain: execute defined test sets across all RF blocks and compare measured results against datasheet-based expected performance, flagging typical vs. atypical behaviorBring up RF transceiver evaluation hardware: radio configuration and control, RF performance exploration, and integration into our measurement infrastructurePrototype and evaluate RF components, circuits, and sensing architecturesDesign and assemble evaluation boards, test fixtures, and PCB prototypesCharacterize RF signal-chain components such as amplifiers, mixers, filters, switches, couplers, and antennasInvestigate architectural tradeoffs involving sensitivity, bandwidth, noise, power consumption, size, and system complexityDevelop test methods to characterize RF system performance, repeatability, and reliabilityMeasure parameters such as gain, loss, sensitivity, noise, linearity, frequency response, and device-to-device variationBuild automated test setups using Python, laboratory instruments, and embedded hardwareDevelop validation procedures and test coverage for new hardware revisionsInvestigate performance limitations and support root-cause analysisContribute to embedded firmware (C/C++) used for hardware bring-up, radio configuration, test control, calibration, and diagnosticsAnalyze experimental data and compare results against simulations, component specifications, and system requirementsDocument test procedures and clearly present engineering findings, tradeoffs, and recommendations Requirements Currently enrolled in (or completing) an MS or PhD program in Electrical Engineering, RF & Applied Electromagnetics, Microwave & Wireless Engineering, or a closely related fieldAvailable for a fall-start internship, onsite in San Francisco Strong candidates may have Experience with RF circuits, wireless systems, antennas, or microwave engineeringFamiliarity with RF concepts such as S-parameters, impedance matching, gain, noise figure, compression, phase noise, and link budgetsExperience using RF laboratory equipment such as a VNA, spectrum analyzer, signal generator, oscilloscope, or power meterExperience with embedded C/C++ on microcontrollers, including peripheral interfaces such as SPI/I2C/UART and register-level device configurationExperience with Python for measurement automation and data analysis, or with PCB designExperience with Altium Designer or another PCB design toolExperience with analog or mixed-signal design at the system or PCB levelExperience bringing up COTS RF transceivers, radio modules, or SDR platformsFamiliarity with RF simulation tools such as ADS, HFSS, CST, or similar toolsExperience automating measurements or analyzing experimental dataStrong hands-on debugging and problem-solving skillsIndependent work ethic, flexibility, and resourcefulnessEffective written and verbal communication skillsComfort working in a fast-moving startup environment and excitement about building and testing hardware independently Compensation Range $40–$60/hr