When you're working with high-voltage applications in nuclear instruments, medical devices, or electronic measurement equipment, safety comes first. That's where the SHV Jack becomes your trusted partner. This Safety High Voltage connector combines exceptional performance with built-in protection features. The product belongs to the bayonet-coupled RF coaxial connector family and serves as the female connector interface. You'll find it engineered specifically for applications requiring both high voltage handling and reliable signal transmission. Whether you need board-mounted installations or cable terminations, this connector delivers the safety and performance you demand.

Our product design prioritizes your safety above everything else. The recessed center contact configuration ensures external conductors connect before internal conductors. This prevents dangerous high-voltage shock risks during mating operations. You get superior safety performance compared to standard MHV connectors.
Each product maintains 50-ohm impedance for optimal signal integrity. You can operate confidently up to 300MHz with excellent VSWR performance. The connector handles up to 3.5kV RMS AC or 5kV DC, making it perfect for demanding applications. Insulation resistance exceeds 5000 MΩ for reliable long-term operation.

We build every connector using nickel-plated brass housings for durability. Gold-plated center contacts ensure reliable connections over thousands of cycles. PTFE insulators provide excellent dielectric properties across the entire temperature range. Your SHV Jack connectors will perform reliably from -45°C to 125°C.
| Specification | Value |
|---|---|
| Impedance | 50 Ohms nominal |
| Frequency Range | DC to 300MHz |
| Temperature Range | -45°C to 125°C |
| Compatible Cables | RG316, RG58 |
| Parameter | Specification |
|---|---|
| VSWR | 1.3:1 to 300MHz typical |
| Insertion Loss | 0.1√f (GHz) |
| DWV @ Sea Level | 5000Vrms |
| Insulation Resistance | 5,000 megohms minimum |
| Contact Resistance (Outer) | 1.5 milliohms maximum |
| Contact Resistance (Inner) | 2 milliohms maximum |
| Component | Material |
|---|---|
| Housing | Nickel-plated brass |
| Center Contacts | Gold-plated brass |
| Insulators | PTFE |
| Specification | Value |
|---|---|
| Mating Cycles | 500 cycles minimum |
| Engagement Force | ≥0.6 N.m |
You'll find our product connectors essential for radiation detection equipment and nuclear measurement systems. The high-voltage capability and safety features make them ideal for sensitive nuclear applications.
Medical devices requiring high-voltage connections benefit from the safety design. X-ray equipment, imaging systems, and diagnostic instruments rely on these reliable connections.
Laboratory instruments and measurement devices need dependable high-voltage connections. Our SHV Jack provides the precision and safety required for accurate measurements.
Universities and research facilities trust these connectors for experimental setups and prototype development. The consistent performance ensures reliable data collection.

At Shaanxi Chuangyu Electronic Technology Co., Ltd., we maintain strict quality control throughout manufacturing. Every connector undergoes comprehensive testing to meet or exceed industry standards. Our production facility in Xi'an follows rigorous process management ensuring consistent quality.
We test each product for:

Need specific configurations? We offer customization services for non-standard applications. Our engineering team can modify dimensions, materials, or performance characteristics to meet your unique requirements. Contact us to discuss your specific needs.
Ready to upgrade your high-voltage connections? Our team stands ready to help you select the right SHV Jack configuration for your application. We provide technical support throughout the selection and implementation process.
Contact our experts today at postmaster@cymicrowave.com for detailed specifications, pricing, and delivery information. Let us help you find the perfect connector solution for your critical applications.