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USB-C Screen Test Plug Industrial Grade Burn In Testing For Type C Connectors

USB-C Screen Test Plug Industrial Grade Burn In Testing For Type C Connectors

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Detail Information
Place of Origin
China
Brand Name
Sireda
Certification
ISO9001
Model Number
Test Plug
Features:
Highly Customizable
Type:
Test Connector
Highlight:

USB-C Screen Test Plug

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Test Plug Industrial Grade

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Burn In usb test plug

Product Description
Professional USB-C Screen Test Plug - & Burn-in Testing Solution
Ensure flawless Type-C port validation with our industrial-grade USB-C Test Plug, engineered for high-cycle display testing, burn-in validation, and signal integrity checks. Featuring gold-plated contacts and military-rated durability, this test connector delivers ultra-reliable performance in automated QA, manufacturing, and repair environments.
USB-C Screen Test Plug Industrial Grade Burn In Testing For Type C Connectors 0

                                                                                                        Type-C Test Plug 

Other options for test plug as below or contact us for more options:

HDMI Test Connector & Jig System – 10,000+ Mating Cycle Reliability Validation 2
Micro USB 2.0 test connector

USB-C Screen Test Plug Industrial Grade Burn In Testing For Type C Connectors 2

Mini B USB 
HDMI Test Connector & Jig System – 10,000+ Mating Cycle Reliability Validation 4
USB3.0 connector
HDMI Test Connector & Jig System – 10,000+ Mating Cycle Reliability Validation 5
HDMI for Male
Applications & Use Cases
USB-C Screen Test Plug Industrial Grade Burn In Testing For Type C Connectors 5
Key Features
  • High-quality materials ensure excellent conductivity, low wear, and extended lifespan.
  • Signal terminals are made of beryllium copper for superior conductivity and elasticity, with contact resistance below 50 m Ω.
  • Diverse contact terminal options, including blade-type, round pin, machined terminals, and more.
  • Exceptional testing durability - minimum 15,000 cycles, with some models exceeding 30,000 cycles or higher.
  • Optimized for automated testing: Structural enhancements prevent impact damage and wear.
  • Highly customizable: Test probes and support structures can be tailored to customer requirements.