Tel:+86 15913803231
Wechat:15913803231
Contact Person:Wayne Guo
PDF Show:PDF
The Φ3.5mm medical female snap button is a precision-engineered connector designed for medical electrodes, ECG cables, and patient monitoring accessories. Manufactured from high-quality brass with nickel plating, it offers excellent conductivity, corrosion resistance, and long-term durability for medical applications.
The 3.5mm 5-Pole Audio Male to Open 5-Core Cable is designed for high-fidelity audio transmission in electronics, communication devices, and professional audio equipment. With five separate cores, this cable allows independent connection for audio signals, microphones, and control channels.
The 3.9mm Stainless Steel Male Snap Button Connector is a precision-machined medical-grade component designed for reliable electrical connection in ECG, TENS, EMS, and other physiotherapy or monitoring devices. Manufactured using high-quality stainless steel, this snap button offers excellent conductivity, corrosion resistance, and long-term durability. It is widely used in medical electrode pads, ECG lead wires, wearable monitoring devices, and rehabilitation equipment.
This 9.0mm magnetic snap to 4.0mm banana female medical cable is designed for reliable signal transmission in medical and physiological monitoring applications. The magnetic snap connector allows quick and secure connection, while the 4.0mm banana female connector ensures stable compatibility with medical devices and patient monitoring equipment.
This USB Type-C to SHR-05V-S-B cable is designed for secure and stable signal and power transmission in industrial and embedded applications. Featuring a USB-C male connector with dual screw locking and a 5-pin JST SHR terminal, the cable ensures reliable connection, strong mechanical retention, and long-term durability.
Our Custom Ear Clip Electrodes with 2.0 round tube cables are designed for seamless integration with Vagus Nerve Stimulation (VNS), Transcutaneous Auricular Vagus Nerve Stimulation (TAVNS), and Transcutaneous Vagus Nerve Stimulation (TVNS) systems. Manufactured in China, these high-quality electrodes ensure safe, effective, and long-lasting use in nerve stimulation therapies. Ideal for healthcare providers and medical device manufacturers, they are a trusted choice for precision and reliability in neuromodulation.
The tVNS Vagus Nerve Ear Clip to DC 2.35mm Connector Cable is a medical-grade connection cable designed for transcutaneous vagus nerve stimulation (tVNS) systems. It connects auricular ear clip electrodes to tVNS stimulation devices equipped with a DC 2.35mm output interface, ensuring stable signal transmission for non-invasive neuromodulation applications.
This tVNS ear clip electrode cable is designed for transcutaneous vagus nerve stimulation (tVNS) therapy devices, featuring an ergonomic ear-clip electrode, an SR medical connector, and dual 2.0mm round pin outputs. Manufactured under ISO 13485 and ISO 9001 certified quality systems, this cable delivers stable stimulation performance, patient comfort, and long-term durability.
The Pogo Pin Tablet Charging Dock by Goochain is engineered to provide efficient, hassle-free charging for commercial tablets used in retail, hospitality, healthcare, and office settings. With a magnetic docking mechanism and pogo pin connection, it ensures safe and secure charging without wear and tear from constant plugging.
![]()
This dock not only charges tablets quickly but also supports data transfer, making it ideal for integrated POS and kiosk systems. Its compact, durable design makes it perfect for high-traffic use cases. We offer full customization including PCBA design, firmware development, and private labeling, making it the go-to solution for brands and system integrators.
![]()
Whether you’re powering sales counters or hospital tablets, Goochain’s charging dock helps keep operations running without interruption.
Tel:+86 15913803231
Wechat:15913803231
Contact Person:Wayne Guo
PDF Show:PDF
We have our research and development team to satisfy our customer’s OEM and ODM demand.