D38999/24TJ20SA

ICC Number:AAND38999/24TJ20SA
Manufacturer:Amphenol Aerospace
Manufacturer Number:D38999/24TJ20SA
Datasheet:Catalog
ECAD Model:
3D Model

Description:

38999 SERIES III

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Specifications

AttributeValue
Product Category:
Manufacturer:Amphenol Aerospace
Manufacturer Part Number:Amphenol Aerospace D38999/24TJ20SA
Number of Contacts:30 (13+10+4+3)
Contact Plating:Gold
Shell Size:25
Contact Type:Socket
Shell Material:Aluminum
Wire Size:20 to 16 AWG, 24 to 20 AWG
Shell Type:Jam Nut Receptacle
Shell Finish:Durmalon
Current Rating:13 A, 23 A, 7.5 A
Voltage Rating:300 VAC
Insert Arrangement:25-20
Keying Position:A
Locking Mechanism:Threaded
Operating Temperature:-65 to 175 °C
MIL Type:MIL-DTL-38999
SKU:AAND38999/24TJ20SA

Detailed Description

MIL-DTL-38999 III (D38999) harsh environment connectors, designated as SKU D38999/24TJ20SA, are meticulously engineered for reliable performance in demanding applications. This series features a comprehensive range of connectivity solutions, including wall mount receptacles, jam nut receptacles, and straight self-locking RFI plugs. With 9 shell sizes and 54 insert arrangements available, these connectors offer versatility for various system designs. Constructed with high-quality materials such as aluminum, stainless steel, and lightweight composite, they ensure durability in rugged conditions. The gold-plated removable crimp contacts, compatible with sizes 8(3), 12(4), 16(13), and 20(10), guarantee secure and efficient signal transmission. Rated for a wide operating temperature range from -65°C to 175°C, and boasting a service rating of N, Coax, Twinax, these connectors are suitable for aerospace, military, and other high-reliability applications. The nickel PTFE finish coating on the aluminum shell provides enhanced protection against environmental factors, while the conductive contact style (socket) ensures optimal performance. RoHS-compliant and with a service life of 500 cycles, the D38999 Series III connectors, including the D38999/24TJ20SA model, offer unparalleled quality and performance for critical systems.