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Microchip Adds Military-Standard Enhanced Low Dose Radiation Sensitivity (ELDRS) Qualification to Its Portfolio of Small-Signal Bipolar Junction Transistors to Ensure High Reliability for Critical Applications

In the United States the Defense Logistics Agency (DLA) manages the global defense supply chain and works with suppliers to ensure high reliability of all the components that go into an end application. Integral to the manufacturing process of components designed for military applications are rigorous tests and compliance standards that must be met to make it on the Quality Products List (QPL), which guarantees a certain level of reliability and streamlines the procurement process. As a leading supplier to the aerospace and defense market, Microchip Technology (Nasdaq: MCHP) announces its portfolio of JAN transistors is now tested and qualified to Military-Standard Enhanced Low Dose Radiation Sensitivity (ELDRS) requirements including MIL-STD-750, Test Method 1019 and specifications such as MIL-PRF-19500/255, /291, /355, /376 and /391.

These military-grade transistors have been manufactured to withstand varying levels of radiation exposure and are part of the Joint Army Navy (JAN) designation system used to specify components procured for military applications. These designations ensure that electronic components used in critical military and aerospace applications can operate reliably in radiation-rich environments.

JAN Transistor Designations

  • JANSE Transistors (30 Krad): Withstand up to 30 Krad per unit of absorbed radiation dose
  • JANSK Transistors (50 Krad): Withstand higher levels of radiation, up to 50 Krad
  • JANSU Transistors (100 Krad): The most radiation-resistant among these families, capable of enduring up to 100 Krad

Microchip’s legacy in aerospace and defense spans 60 years, with fabs dedicated to aerospace and defense semiconductor manufacturing and testing. The company’s fab in Ennis, Ireland, is a robust MIL-PRF-19500 screening and reliability testing facility. Microchip’s fab in Lawrence, Massachusetts, is DLA Certified with the capability to conduct in-house ELDRS to MIL-STD-750, Test Method 1019. Microchip provides the flexibility for customers to test to the designated Radiation Hardness Assurance (RHA) level depending on the program needs for the components and end application. 

“Through rigorous in-house testing at our Ennis and Lawrence facilities, our products are certified to operate with high performance and high reliability in harsh environments,” said Leon Gross, vice president of Microchip’s discrete products group. “We are committed to developing and manufacturing products that ease the design process based on our customers’ specific requirements. Microchip was the first company to provide Total Ionizing Dose (TID) rated Radiation-Hardened Bipolar Junction Transistors (BJTs); now, we worked closely with the DLA to add testing for ELDRS characterization.”

Microchip has a broad portfolio of high-reliability solutions designed for the aerospace and defense market including Radiation-Tolerant (RT) and Radiation-Hardened (RH) MCUs, FPGAs and Ethernet PHYs, power devices, RF products, timing solutions, as well as discrete components from bare die to system modules. Additionally, Microchip offers a wide range of components on the QPL to better serve its customers. To learn more about Microchip’s aerospace and defense solutions, visit the website.


2024071901 / 19.07.2024 / Electronic-components / Microchip Technology Inc. /

Microchip’s RTG4™ FPGAs with Lead-Free Flip-Chip Bumps Achieve Highest Space Qualification
QML Class V designation recognizes exceptional reliability and longevity for critical space missions

Microchip Releases 20 Advanced Wi-Fi® Products for Industrial and Commercial Applications
Company’s wireless connectivity portfolio represents one of the industry’s most extensive selection of Wi-Fi solutions and comprehensive support systems

New VelocityDRIVE™ Software Platform and Automotive-Qualified Multi-Gigabit Ethernet Switches for Software-Defined Vehicles

New Family of Voltage-Controlled Saw Oscillators With Ultra-Low Phase Noise Performance for Radar Applications
Microchip’s VCSO 101765 devices are available in 320 MHz and 400 MHz with a small form factor

New Solution from Microchip Makes it Easier to Build Sophisticated Graphical User Interfaces for MPLAB® Harmony v3 and Linux® Environments

Functional Safety Certification for Microchip’s PolarFire® FPGAs Speeds Time to Market
Certified tool flow and safety data package available for both IEC 61508 SIL 3 and ISO 26262 ASIL D standards

Expanded Single Pair Ethernet Portfolio with 100BASE-T1 and 1000BASE-T1 PHY Transceivers for Network Interoperability
Microchip’s LAN887x PHYs offer extended reach up to 40m and are designed to be compliant with industry standards

Microchip Technology Adds ECC20x and SHA10x Families of Secure Authentication ICs to TrustFLEX Platform
Pre-Configured CryptoAuthentication™ ICs help reduce development time and minimize design costs

Microchip and Acacia Collaborate to Enable Optimized Terabit-Scale Data Center Interconnect Systems
The companies enable an interoperable coherent optics ecosystem that can help streamline the development of data center interconnect and metro transport systems.

Pick Your Power with Microchip’s New Electric Vehicle Charger Reference Designs
Flexible and scalable EV charger reference designs are designed to meet unique regional requirements

Microchip Introduces High-Performance PCIe® Gen 5 SSD Controller Family
Flashtec® NVMe® 5016 controllers are optimized to manage growing enterprise and data center workloads

Microchip Technology Introduces a New Core in the dsPIC® Digital Signal Controller Family to Enhance Precision and Execution of Real-Time Control

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