Aerospace Grade Rigid-Flex PCB MIL-PRF-50884 Compliant High Vibration Resistance Wide Temperature Range

Key Attributes
Brand Name: Jiaqing Circuit
Place of Origin: China
Certification: ISO9001
Price: negotiate
Delivery Time: 15-30 Days
Payment Terms: L/C,D/A,D/P,T/T

Product Summary

This aerospace-grade rigid-flex PCB is manufactured to meet the demanding requirements of avionics, satellite systems, and communication equipment. Compliant with MIL-PRF-50884 and IPC-6013 Class 3 standards, this board delivers exceptional reliability in environments subject to extreme temperature ...

Product Custom Attributes

Layer Configuration:
4 – 12 Layers
Surface Finish Options:
ENEPIG, Hard Gold (30-50µin), ENIG
Flex Material:
Polyimide (PI / Kapton) With RA Copper
Rigid Material:
High-Tg FR-4, Medical-grade PI Laminates
Operating Temperature:
-40°C To +125°C
Product Description

This aerospace-grade rigid-flex PCB is manufactured to meet the demanding requirements of avionics, satellite systems, and communication equipment. Compliant with MIL-PRF-50884 and IPC-6013 Class 3 standards, this board delivers exceptional reliability in environments subject to extreme temperature cycling (–55°C to +125°C), high vibration, and mechanical shock. The hybrid construction integrates rigid FR-4 sections for stable component mounting with flexible polyimide sections that absorb vibration and eliminate connector-related failure points. With tight impedance control (±5%) for high-speed digital and RF signals, and optional hard gold or ENIG surface finishes, this rigid-flex PCB is trusted in critical aerospace applications including flight control systems, radar equipment, and satellite communication payloads.

Applications & Key Advantages by Category
Avionics Systems – Flight control computers, navigation systems, and cockpit displays benefit from the wide operating temperature range (–55°C to +125°C) and vibration resistance that ensure reliable performance throughout the aircraft's service life. The elimination of connectors reduces the number of potential failure points in critical flight systems.
Satellite Communication Payloads – Spaceborne transceivers and antenna systems leverage the low-loss RF materials and tight impedance control (±5%) to maintain signal integrity in the harsh vacuum and radiation environment of space. The lightweight construction (polyimide flex is lighter than FR-4) reduces launch mass.
Avionics & Weapon Guidance – Missile guidance systems, radar equipment, and electronic warfare modules rely on the robust construction and MIL-PRF-50884 compliance to withstand the extreme mechanical stresses of launch and flight. The rigid-flex design enables compact 3D packaging within space-constrained weapon systems.
Unmanned Aerial Vehicles (UAVs) – Drone flight controllers, payload processors, and communication links benefit from the significant weight reduction achieved by eliminating connectors and cables. The rigid-flex construction absorbs vibration from motors and propellers, extending system reliability.
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