| Attribute | Value |
|---|---|
| Product Category: | |
| Manufacturer: | TE Connectivity |
| Manufacturer Part Number: | TE Connectivity 1757253-1 |
| Gender: | Plug |
| Termination Method: | Surface Mount |
| Contact Material: | Beryllium Copper |
| Contact Plating: | Gold |
| Body Orientation: | Straight |
| Mating Type: | Push-On |
| Impedance: | 50 Ω |
| Operating Frequency: | 20 GHz |
| Body Material: | Brass |
| Number of Positions: | 1 |
| Mount Orientation: | Vertical |
| Interface: | SMPM |
| GPL: | E25 |
| Port Configuration: | Single Port |
| Packaging: | Package |
| Operating Temperature Range: | -55 - 125 °C, -67 - 257 °F |
| GPL Description: | Aerospace Defense & Marine |
| Product Code: | K595 |
| Number of Coaxial Contacts: | 1 |
| Body Finish: | Plated |
| Body Plating Material: | Gold |
| Center Contact Plating Material: | Gold |
| Center Contact Material: | Beryllium Copper |
| Detent: | Smooth Bore |
| Dielectric Material: | Polyamide |
| Height Above PC Board: | .113 in, 2.87 mm |
| Contact Captivation Method: | Mechanical |
| Mated Outer Diameter (Approximate): | .187 in, 4.75 mm |
| Mating Force: | Low Force |
| Contact Spacing: | .135 in, 3.43 mm |
| Part Aliases: | 1757253-1 |
| SKU: | AMP1757253-1 |
1757253-1
Specifications
Detailed Description
Enhance your RF connectivity with our SMPM Surface Mount connector, designed for top performance in aerospace, defense, and marine applications. Featuring a straight body orientation and push-on mating type, it offers seamless integration into your systems. With a 50 Ω impedance and operating frequency of up to 20 GHz, this connector ensures reliable signal transmission. Crafted from high-quality materials like beryllium copper and gold plating, it guarantees durability and conductivity. Its surface mount termination method and vertical mount orientation make installation a breeze. RoHS compliant and suitable for a wide temperature range, from -55 to 125°C (-67 to 257°F), it meets stringent industry standards. Trust in the K595 connector for your critical RF needs.

