Full-Time

Engineer 1

Software, FPGA Timing and Power

Posted on 5/9/2026

Microchip Technology

Microchip Technology

10,001+ employees

Provides embedded hardware, software, tools

Compensation Overview

$70.3k - $143k/yr

+ Bonus + Equity Grants

San Jose, CA, USA

In Person

Bachelor's

Category
Software Engineering (2)
,
Required Skills
Bash
Python
Data Structures & Algorithms
Perl
C/C++
FPGA

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Requirements
  • Bachelor of Science in Computer Science or Electrical Engineering or a related field
  • Strong knowledge in C++, as well as a deep understanding of algorithms and data structures
  • Experience with shell scripting languages (Perl, Python, Bash, TCL)
  • Excellent problem-solving skills and attention to detail
  • Strong communication skills and the ability to work collaboratively across teams
Responsibilities
  • Develop solutions tailored towards supporting very large graph representation
  • Improve tools' run time to competitive levels
  • Improve the user experience through guidance tools and context-based help
  • Integrate some of the capabilities in an internal flow to evaluate future FPGA architectures
  • Participate to the R&D exploration activities on advanced topics such as OCV, SSTA, IR Drop
  • Help with the enforcement of Microchip’s Software Development Processes
  • Perform design reviews, unit testing, and code reviews
  • Own and sustain product features and provide customer support
  • Continue learning latest EDA discoveries and contribute to the team discussions
Desired Qualifications
  • Experience with source code management systems (ClearCase, Git, SVN, Perforce)
  • Exposure to parallel programming techniques, like Threading Building Blocks
  • Familiarity/knowledge/experience with any of the following would be a plus: FPGA architectures, Qt, AI-based applications

Microchip Technology provides embedded system solutions by selling hardware components like microcontrollers, FPGAs, silicon carbide devices, and analog parts, along with software and development tools. Its products work as configurable silicon paired with software and toolchains that engineers use to design and implement embedded systems in domains such as automotive, industrial, consumer electronics, aerospace, and telecom. The company differentiates itself through a broad product portfolio, a strong education and support ecosystem (including Microchip University), and direct B2B sales and services that help customers develop and deploy solutions. Its goal is to be a leading provider of end-to-end embedded system solutions, generating revenue from hardware, software licenses, development tools, and related services.

Company Size

10,001+

Company Stage

IPO

Headquarters

Chandler, Arizona

Founded

1989

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Simplify Jobs

Simplify's Take

What believers are saying

  • On August 14, 2026, Microchip guided September-quarter revenue to $1.589-$1.618 billion.
  • The August 13, 2026 Space CSAC-SA65 launch expands timing revenue in satellites.
  • August 11, 2026 PolarFire Rev 2.0 strengthens edge-AI wins with NVIDIA Holoscan.

What critics are saying

  • Broadcom and Astera Labs pressure Microchip's PCIe Gen 6 storage ambitions in 2026.
  • A still-fragile recovery leaves revenue dependent on distributor digestion finishing by late 2026.
  • If data-center design wins stall, Microchip's AI narrative collapses and valuation resets fast.

What makes Microchip Technology unique

  • Microchip owns broad embedded portfolios across microcontrollers, FPGAs, timing, and power products.
  • Its Space CSAC-SA65 and PolarFire stack target harsh aerospace and edge-AI deployments.
  • Microchip's Total System Solutions bundles silicon, software, and development kits for engineers.

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Benefits

Health Insurance

401(k) Retirement Plan

Stock Options

Performance Bonus

Employee Stock Purchase Plan

Company News

Yahoo Finance
Aug 14th, 2026
Microchip Technology unveils radiation-tolerant atomic clock for satellites

Microchip Technology has announced a radiation-tolerant Space CSAC SA65 atomic clock designed for satellite systems, targeting compact and energy-efficient timing in orbit. The clock offers radiation tolerance of at least 30 kRad and power consumption under 120 mW. The company also upgraded its PolarFire FPGA Ethernet Sensor Bridge, reducing board size by 60% whilst adding support for up to four cameras and NVIDIA Holoscan integration. The updated sensor bridge targets robotics, medical, and industrial applications requiring AI-driven edge sensor connectivity. Both launches align with Microchip's focus on embedded control solutions across aerospace, industrial, and medical sectors. The company, with a market capitalisation of approximately $43.1 billion, operates across the Americas, Europe, and Asia. Investors will watch for design wins and revenue contribution from these products in upcoming quarterly results.

Manufacturing Update
Aug 13th, 2026
Microchip advances space-grade timing with enhanced radiation tolerance and extended temperature performance.

Microchip advances space-grade timing with enhanced radiation tolerance and extended temperature performance. Update media group13 august 2026comments Off on Microchip advances space-grade timing with enhanced radiation tolerance and extended temperature performance. The Space CSAC-SA65 combines atomic-clock accuracy with built-in 1 PPS disciplining and low-power consumption The growing New Space market is fueling demand for smaller, less expensive space hardware to support short-duration missions for applications such as satellite-to-cellular communications, alternative navigation and Earth imaging. Microchip Technology (Nasdaq: MCHP) today announces it expanded its atomic clock portfolio with the radiation-tolerant Space CSAC-SA65, a Chip Scale Atomic Clock designed to deliver precise timing for space systems. The device provides a compact, low-power alternative to traditional radiation-hardened timing solutions, helping developers reduce size, weight, power and cost while maintaining accuracy. Building on the heritage of Microchip's Space CSAC-SA45, the Space CSAC-SA65 extends radiation tolerance to at least 30 kRad and operates in extended temperature ranges from -40°C to +80°C. Consuming less than 120 mW and occupying less than 17 cc of volume, the device is optimized for size-, weight- and power-constrained satellite designs. Its built-in 1 PPS input and output capabilities support synchronization for satellite systems, while its atomic stability enables extended operation without continuous reliance on external timing references such as Global Navigation Satellite System (GNSS) signals. "By enabling one of the lowest power atomic clocks to thrive in extreme conditions, even the smallest CubeSat can now fly with atomic accuracy," said Randy Brudzinski, corporate vice president of Microchip's frequency and time systems business unit. "The Space CSAC-SA65 brings atomic-clock performance to applications where size, weight, power and cost are tightly constrained, helping developers maintain synchronization and timing accuracy even when external timing references are unavailable." Manufactured as a Commercial Off-The-Shelf (COTS) product using radiation-tolerant commercial electronic components, the device can offer shorter lead times and lower overall costs compared to traditional space-grade oscillators. Designed for Low Earth Orbit (LEO) missions, the CSAC-SA65 is well suited for applications including satellite timing and frequency control, satellite clock reference, assured positioning, navigation and timing (PNT), and satellite cross-linking. Microchip offers an extensive portfolio of clock and timing systems, ranging from miniature component oscillators, to small plug-in timing server cards, to multi-rack time scale systems. As a primary contributor to the world's time, Microchip's timing solutions are trusted, reliable and resilient. For more information, visit Microchip's Clock and Timing Systems web page. Development tools. The CSAC-SA65 is supported by Microchip's Clockstudio(TM) software for control and analysis of atomic clocks, as well as a CSAC Developer Kit. Pricing and availability. The CSAC-SA65 (part number 090-02789-007) is available for purchase. For additional information and to purchase, contact a Microchip sales representative or authorized worldwide distributor.

Yahoo Finance
Aug 11th, 2026
Microchip Q1 beats estimates, projects $1B data center sales by 2026

Microchip Technology reported first-quarter revenues of $1.48 billion, exceeding the consensus estimate of $1.46 billion. Non-GAAP earnings reached $0.76 per share, beating expectations of $0.70. CEO Steve Sanghi said the distribution inventory correction is complete, with distributor inventory at 25 days. Sell-through increased 17% sequentially, whilst June produced the company's strongest bookings in approximately four years. Data centre sales are expected to reach about $1 billion in calendar year 2026, up 69% from $591 million in 2025. The segment represented 17.1% of June-quarter sales and grew 97.8% year over year. For the September quarter, Microchip guided revenues to rise 8% sequentially to $1.589 billion-$1.618 billion, with non-GAAP earnings projected at $0.91-$0.95 per share.

Associated Press
Aug 11th, 2026
Microchip unveils 60% smaller PolarFire FPGA Ethernet sensor bridge for edge AI systems

Microchip Technology has launched Revision 2.0 of its PolarFire FPGA Ethernet Sensor Bridge, a production-ready board for sensor integration using NVIDIA Holoscan technology. The updated board is 60% smaller than the first generation, supports twice the number of cameras (up to four), and is USB-C powered. It is offered at a lower price point. Built on PolarFire FPGA technology, the board enables developers to replace complex multi-interface sensor connections with power-efficient 10Gb Ethernet-based architectures. This reduces system cost and complexity for AI-driven medical, industrial, and robotics applications powered by NVIDIA edge computing platforms including Jetson and IGX. The board includes on-board optical latency measurement circuitry and an expansion connector for future feature growth. It supports multiple interfaces including MIPI CSI-2, I²C, UART, and GPIO. The offering includes cameras, cables, reference design, and board schematics.

Market Chameleon
Aug 11th, 2026
Microchip's new PolarFire FPGA Ethernet Sensor Bridge sets benchmark with 60% smaller form factor and double Camera support.

Microchip's new PolarFire FPGA Ethernet Sensor Bridge sets benchmark with 60% smaller form factor and double Camera support. 11 August 2026, 7:58 AM Compact design drives major step forward in edge AI sensor connectivity. Microchip Technology has unveiled Revision 2.0 of its PolarFire FPGA Ethernet Sensor Bridge - a game-changer for AI-driven devices operating at the network edge. The refreshed board cuts its physical footprint by 60%, supports up to four cameras (double the previous generation), and adopts USB-C power, streamlining integration into constrained spaces like AI robotics, industrial machines, and medical devices. Scalability and cost efficiency accelerated for developers. The upgraded sensor bridge does more than just shrink in size. Its Ethernet-based architecture replaces tangled, multi-interface sensor setups, allowing for a scalable, cost-effective approach to sensor processing. With support for 10Gb Ethernet, system complexity and bill-of-materials costs are substantially reduced - a critical advantage as developers race to make smarter, more efficient edge AI devices. Additionally, Revision 2.0 ships at a lower price point, making cutting-edge technology more accessible and practical for large-scale deployments. It's aimed squarely at engineers who want plug-and-play compatibility with NVIDIA Holoscan Sensor Bridge and popular AI platforms like NVIDIA Jetson and IGX. Key enhancements: doubling Camera capacity, lower power, and flexible interfaces. | Feature | Rev 2.0 | Prior Generation | | Physical Size Reduction | 60% smaller | - | | Supported Cameras | Up to 4 | 2 | | Power Supply | USB-C | Proprietary | | Camera Compatibility | NVIDIA Jetson | Limited | | Pricing | Lower | - | | Expansion Options | FMC & PMOD connectors, multiple interfaces (MIPI CSI-2, HDMI, DisplayPort, SLVS-EC 2.0, 12G-SDI, USB-C, etc.) | Fewer | | On-board Optical Latency Measurement | Yes (supports end-to-end latency validation) | No | Designed for AI developers: speed, security, and system integration. With AI edge systems demanding ever more performance in ever less space, the new bridge board is engineered for speed and security. It enables real-time data processing from multiple sensors over Ethernet, thanks to PolarFire FPGA's power-efficiency and built-in safety features. The integration with NVIDIA's Holoscan SDK provides a clear path for developers, reducing development cycles and system risks. Camera-ready out of the box, the offering includes cables, reference designs, board schematics, and full support for production deployment via Microchip's Libero SoC Design Suite. The enabled power-management circuity, validated with MCP16701 PMICs, ensures optimized clocking and reduced integration headaches, leading to faster development-to-deployment turnaround for new AI projects. Strategic impact: reducing barriers for robotics, automation, and AI medical devices. With an eye on next-generation robotics, industrial automation, and medical imaging, Microchip's new solution directly addresses the core needs of engineers: deterministic low-latency, compact design, and robust security. The platform's flexibility means no major redesign is needed when switching video protocols or sensor types. This future-proofs the investment and lowers long-term total cost of ownership. Looking ahead: lower risk and faster time-to-market. For teams looking to rapidly prototype or deploy AI edge systems, the Revision 2.0 PolarFire FPGA Ethernet Sensor Bridge offers tangible advantages - reduced integration risk, smaller form factor, and improved performance. Microchip is betting that these upgrades will help accelerate AI adoption in some of the most demanding real-world environments. As edge AI becomes more ubiquitous, innovations like this could define how quickly - and affordably - developers deliver powerful, connected solutions to market. Contact Information: If you have feedback or concerns about the content, please feel free to reach out to Market Chameleon via email at [email protected]. About the Publisher - Marketchameleon.com: Marketchameleon is a comprehensive financial research and analysis website specializing in stock and options markets. Market Chameleon leverage extensive data, models, and analytics to provide valuable insights into these markets. Its primary goal is to assist traders in identifying potential market developments and assessing potential risks and rewards. NOTE: Stock and option trading involves risk that may not be suitable for all investors. Examples contained within this report are simulated and may have limitations. Average returns and occurrences are calculated from snapshots of market mid-point prices and were not actually executed, so they do not reflect actual trades, fees, or execution costs. This report is for informational purposes only, and is not intended to be a recommendation to buy or sell any security. Neither Market Chameleon nor any other party makes warranties regarding results from its usage. Past performance does not guarantee future results. Please consult a financial advisor before executing any trades. You can read more about option risks and characteristics at theocc.com. 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