| Attribute | Value |
|---|---|
| Product Category: | |
| Manufacturer: | Aero-Electric Connector | Conesys |
| Manufacturer Part Number: | Aero-Electric Connector | Conesys M83723/92R1404Y L/C |
| Military Specification: | MIL-DTL-83723 |
| Series: | Series III |
| Shell Size: | 14 |
| Contact Type: | Pin |
| Shell Material: | Aluminum |
| Wire Size: | 14 to 12 AWG |
| Shell Type: | RFI Grounding Plug |
| Shell Finish: | Electroless Nickel |
| Voltage Rating: | 600 VAC |
| Insert Arrangement: | 14-4 |
| Keying Position: | Y |
| Locking Mechanism: | Threaded |
| Operating Temperature: | -65 to 200 °C |
| SKU: | AERM83723/92R1404Y L/C |
M83723/92R1404Y L/C
| Heilind Number: | AERM83723/92R1404Y L/C |
| Manufacturer: | Aero-Electric Connector | Conesys |
| Manufacturer Number: | M83723/92R1404Y L/C |
| ECAD Model: |
Description:
MIL-DTL-83723 Series III Family Offers Connectors with Bayonet and Threaded Coupling Including Lanyard-Release Quick-Disconnects. These Connectors Combine the Best Features of MIL-DTL-26500 and NAS 1599 Miniature Connector Specifications. They are Intermateable with Both Bayonet and Threaded 26500 Connectors (Exception: Shell Size 8, Threaded Coupling Only) and Have the Added Advantage Provided by the Rear-Release Contact Retention System.
More >>Specifications
Detailed Description
Introducing the M83723/92R1404Y L/C, a high-performance RFI Plug designed to meet MIL-DTL-83723 specifications. Part of the Series III lineup, this connector features a durable Aluminum shell with Electroless Nickel finish, ensuring reliable performance in demanding environments. With a shell size of 14 and a threaded shell type, it offers secure grounding in military and aerospace applications. The 14-4 insert arrangement with Y keying position and threaded locking mechanism guarantees a precise and secure connection. Rated for up to 600VAC, this connector is suitable for high-voltage applications. Please note that this assembly does not ship with contacts. Trust in the Conesys M83723 series for exceptional quality and performance in circular MIL Spec connectors.

