The USB 3.0 threaded rear panel mount solder wire to solder pad connector is a plastic waterproof connector launched by CAZN. It belongs to the EUSB series and adopts a threaded connection method, complying with the USB 3.0 standard. Driven by the rapid development of Industry 4.0 and intelligent manufacturing, industrial equipment places higher demands on connector stability, protection performance, and environmental adaptability. The E13 USB female rear panel mount solder wire receptacle to solder pad (threaded type), with its innovative design and outstanding performance, has become an ideal solution for applications such as industrial robot debugging and automated equipment communication.

Structure Type: Rear panel mount plug, threaded connection
Termination Method: Solder type
Rated Voltage: 30V AC/DC, supports USB 3.0 protocol
Rated Current: 1A
Mating Cycles: ≥500 cycles
Protection Rating: IP67 (when locked)
Operating Temperature: -25°C to +80°C
Contact Resistance: ≤30 mΩ
Insulation Resistance: ≥10 MΩ
Quality Standard: IPC-A-620
High Voltage Test: DC 300V / 0.01S
Insulation Impedance: 10MΩ MIN
Conductor Resistance: 3Ω MAX
Short/Open Circuit Test: 100% tested
Certifications: CE, RoHS
The E13 series adopts a threaded locking design. By tightening through rotation, the connection remains secure even in long-term high-vibration environments such as robotic arm movement and AGV operation, ensuring uninterrupted signal transmission. According to field test data from an automotive welding workshop, after using this receptacle, the failure rate of robot control cabinet debugging interfaces was reduced by 80%.
Oil contamination, cutting fluids, and outdoor dust are common challenges for connectors. The E13 series housing is made of PA66 thermoplastic plastic (V-0 flame-retardant rating) and features a sealed structure to achieve IP68 protection. In photovoltaic power station inspection robot applications, this receptacle successfully withstood sandstorms and heavy rain, ensuring stable outdoor debugging data transmission.
From outdoor northern winters at -25°C to high-temperature industrial equipment environments reaching +85°C, the E13 series operates reliably. Its temperature range covers the complete requirements of industrial applications, preventing material deformation or contact oxidation caused by temperature fluctuations.
Supports direct cable soldering, eliminating the contact resistance associated with traditional plug-in cables and improving signal transmission stability. At the same time, users can customize cable lengths according to equipment installation space to meet different installation requirements.

During robot control cabinet or robot body debugging, the E13 series solves connector loosening caused by vibration through its threaded locking mechanism and IP68 protection while resisting workshop oil contamination. After adopting this receptacle, motion control signal latency for precision assembly robots was reduced to the microsecond level.
Mobile equipment such as AGVs and drones frequently requires navigation map updates or motion algorithm debugging. The E13 series' anti-vibration design and outdoor protection capabilities ensure stable data transmission during outdoor debugging, preventing task interruptions caused by environmental factors.
In factory Industrial IoT upgrades, the E13 series serves as the communication interface between equipment and edge computing nodes. Its high mating cycle life and stable signal transmission characteristics reduce maintenance costs while improving overall production line efficiency (OEE).
The EUSB female rear panel mount solder wire receptacle to solder pad (threaded type) redefines industrial connection standards with its core advantages of vibration resistance, corrosion resistance, and temperature stability. Whether in automotive manufacturing, electronics assembly, or the new energy industry, this product provides a reliable guarantee for stable equipment operation. Contact CAZN today to obtain the product catalog and industry solutions, and begin a new chapter in intelligent manufacturing connectivity.

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