| Attribute | Value |
|---|---|
| Product Category: | |
| Manufacturer: | Cinch Connectivity Solutions |
| Manufacturer Part Number: | Cinch Connectivity Solutions MS24264R20B28S7 |
| Gender: | Female |
| Mount Type: | Panel Mount |
| Shell Size: | 20 |
| Mating Type: | Bayonet |
| Shell Finish: | Anodized |
| Mating Cycles: | 500 cycle |
| Seal Material: | Fluorosilicone, Silicone Rubber |
| Current Rating: | 23 A, 7.5 A |
| Voltage Rating: | 1500 VAC |
| Housing Material: | Aluminum |
| Number of Contacts: | 28 (24+4) |
| Termination Method: | Crimp |
| Military Specification: | MIL-C-26500 |
| Maximum Operating Temperature: | 200 °C |
| Minimum Operating Temperature: | -55 °C |
| Shell Size - Insert Arrangement: | 20-28 |
| Series: | Omega |
| Shell Type: | Square Flange Receptacle |
| Contact Type: | Socket |
| Shell Material: | Aluminum |
| Locking Mechanism: | Bayonet |
| Insert Arrangement: | 20-28 |
| Operating Temperature: | -55 to 200 °C |
| SKU: | CIMMS24264R20B28S7 |
MS24264R20B28S7
| Heilind Number: | CIMMS24264R20B28S7 |
| Manufacturer: | Cinch Connectivity Solutions |
| Manufacturer Number: | MS24264R20B28S7 |
| ECAD Model: |
Specifications
Detailed Description
Introducing the Omega Female Circular Connector, a rugged and reliable solution designed in compliance with military specification MIL-DTL-26500. Featuring a durable aluminum housing with a panel mount configuration, this connector ensures secure and efficient connectivity in demanding environments. With four contacts, crimp termination, and a wide operating temperature range from -55°C to 200°C, it is suitable for a variety of applications. The bayonet mating type and 500 mating cycles guarantee easy and long-lasting use. The silicone rubber and fluorosilicone seals provide excellent protection, while the anodized shell finish enhances durability. With a current rating of 23A and 7.5A, and a voltage rating of 1500VAC, this connector is ideal for high-power and high-reliability applications. Trust in the MS24264R20B28S7 for superior performance in critical connectivity tasks.

