| Distributor | Stock | Pricing | MOQ | PKG | Lead Time | Date Code | On Order Quantity | On Order Delivery | |
|---|---|---|---|---|---|---|---|---|---|
|
2 pcs
|
2 pcs | On Request | 1 | On Request | On Request | On Request | On Request | On Request |
| Category | |
| Manufacturer Name | |
| Cable Retention - RG-178 | |
| Center Contact Material | |
| Connector Style | |
| Connector Type | |
| Contact Resistance - Center Contact (After Environmental) | |
| Contact Resistance - Center Contact (Initial) | |
| Contact Resistance - Outer Contact (After Environmental) | |
| Contact Resistance - Outer Contact (Initial) | |
| Contact Retention | |
| Contact Termination | |
| Dielectric Withstanding Voltage | |
| Engagement/Disengagement Force | |
| Fastening Type | |
| Frequency | |
| Frequency - Max | |
| Housing Color | |
| Impedance | |
| Insulation Resistance | |
| Mounting Type | |
| Number of Ports | |
| Shield Termination | |
| Tape & Reel | |
| Termination Style | |
| Working Voltage |
The Cinch 135-3701-301 is an MMCX right angle jack receptacle designed for through hole solder mounting. It offers 50 Ohm impedance and operates up to 6 GHz. This uncabled receptacle features a snap-on fastening mechanism and gold plated beryllium copper center contact. Electrical ratings include working voltage of 170 Vrms, dielectric withstanding voltage of 500 Vrms, and insulation resistance of 1000 MOhm minimum. Contact resistance is 5.0 mOhm max initial for center contact and 1.0 mOhm max for outer contact. Mechanical specifications include engagement force of 8 lbs max axial and disengagement force of 1.4 lbs min axial, with contact retention of 2.0 lbf minimum. Cable retention for RG-178 is 7.0 lbf. The housing is gold colored. This connector is suitable for RF applications requiring a compact, right angle interface on a PCB.
Working voltage 170 Vrms at sea level, dielectric withstanding voltage 500 Vrms at sea level.
Through hole, right angle.
50 Ohm.
6 GHz.
Beryllium copper.
Snap-on.
8 lbs max axial engagement, 1.4 lbs min axial disengagement.