Nail Head Hermetic Glass to Metal Seal Connectors DC Feedthroughs
- Nail head design provides enhanced mechanical stability and ensures secure, low-profile connections, even in space-constrained applications
- Glass to metal hermetic seal guarantees leak-proof, durable connections in DC feedthrough applications, offering protection against contaminants
- Optimized for DC applications, providing low-resistance, stable electrical pathways with minimal signal loss or interference
- Resistant to environmental factors such as moisture, dust, and high temperatures, ensuring long-term, reliable performance in harsh conditions
- Ideal for high-reliability sectors such as aerospace, telecommunications, medical, and defense, where performance and durability are critical
Glass to Metal Hermetic RF/DC Feedthroughs/Seals /Multi-pin Headers /Connector is also called Glass insulator. They are mainly used to transmit microwave signals, power signals and control signals between modules and modules, modules and components with gas sealing requirements. They are one of the most critical components in sealing components. The glass with low dielectric constant and low dielectric loss is used as insulating and supporting material. The housing and conductor is made of Kovar alloy that sintered under high temperature, and the surface is gold plated. The centerconductor has a variety of termination styles such as gold wire bonding, soldering and mating etc. Glass insulators are small, lightweight, hermetic, high reliable and have been widespread in electronics manufacturing industries in recent years.
Structure
Glass insulator is composed of three parts: outer conductor/shell, glass medium and center conductor/pin.Its basic structure is shown in the figure.
Reliability Requirements
Hermeticity
≤1.01325×10-³Pa·cm³/s/s
Salt spray
Glass insulators shall be tested without severe corrosion and spotting.
Temperature shock
There shall be no cosmetic or mechanical damage after testing.
Applications
High Temperature Sensors
Implanted Medical Devices
Batteries and Capacitors
Automotive Airbag
Our Advantages
Production Process
1. Put forward demand
2. Sketch design
3. Production equipment
4. Production measurement
5. Product assembly
6. Quality test
7. Product packaging
8. Product packag box
9. Deliver goods
Product Specification
Impedance | 50 ohm |
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Number of Positions | 1 Pin |
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Row | 1 |
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Shell Finish | Gold Plated |
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Shell Material | Kovar 4J29 |
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Glass Material | 7050, 7070, DM308 |
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Glass Color | Green, White |
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Withstand Voltage | ≥300V |
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Hermeticity Leak Rate | < 1.01325×10-3 Pa*cm³/s, < 1×10-9 ccHe/sec @ 1 atm, < 1×10-9 mbar*l/s |
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Insulation Resistance | ≥2000MΩ for single pin |
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Operating Temperature | -65℃ to +260℃ |
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Impedance | 50 ohm |
Number of Positions | 1 Pin |
Row | 1 |
Shell Finish | Gold Plated |
Shell Material | Kovar 4J29 |
Glass Material | 7050, 7070, DM308 |
Glass Color | Green, White |
Withstand Voltage | ≥300V |
Hermeticity Leak Rate | < 1.01325×10-3 Pa*cm³/s, < 1×10-9 ccHe/sec @ 1 atm, < 1×10-9 mbar*l/s |
Insulation Resistance | ≥2000MΩ for single pin |
Operating Temperature | -65℃ to +260℃ |
Impedance | 50 ohm |
---|---|
Number of Positions | 1 Pin |
Row | 1 |
Shell Finish | Gold Plated |
Shell Material | Kovar 4J29 |
Glass Material | 7050, 7070, DM308 |
Glass Color | Green, White |
Withstand Voltage | ≥300V |
Hermeticity Leak Rate | < 1.01325×10-3 Pa*cm³/s, < 1×10-9 ccHe/sec @ 1 atm, < 1×10-9 mbar*l/s |
Insulation Resistance | ≥2000MΩ for single pin |
Operating Temperature | -65℃ to +260℃ |
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