MIL-DTL-38999 III (D38999) harsh environment connectors consist of wall mount receptacles, jam nut receptacles, and straight self-locking RFI plugs. They are offered in 9 shell sizes and 54 insert arrangements, utilizing M39029 contacts in sizes 22D, 20, 16, 12, 10 power, and 8 twinax. 38999 Series 3 connectors are offered in a variety of shell materials, including aluminum, stainless steel, and lightweight composite. They are also available in a wide assortment of plating options, including olive drab cadmium, nickel, black zinc nickel, and passivated stainless steel. Selection includes RoHS-compliant, cadmium-free finishes, as well as Boeing BACC-approved designs.
Part Aliases: TE Connectivity | Deutsch YACT24MJ61HNV00100
The MIL-DTL-38999 III (D38999) harsh environment connectors offer rugged reliability for demanding applications. Available as wall mount receptacles, jam nut receptacles, and straight self-locking RFI plugs, they provide versatile connectivity solutions. With 9 shell sizes and 54 insert arrangements, these connectors accommodate a wide range of requirements. Featuring M39029 contacts in various sizes, including 22D, 20, 16, 12, 10 power, and 8 twinax, they ensure secure electrical connections. Constructed from durable materials such as aluminum, stainless steel, and lightweight composite, these connectors are built to withstand tough conditions. Offering multiple plating options, including olive drab cadmium, nickel, black zinc nickel, and passivated stainless steel, they meet diverse industry standards. Whether needing RoHS-compliant, cadmium-free finishes or Boeing BACC-approved designs, these connectors provide reliable performance. Suitable for temperatures ranging from -65°C to 200°C (-85°F to 392°F) and with a voltage rating of up to 1800 Vrms, they are ideal for military, aerospace, and industrial applications. Designed for 1500 cycles of mating life, with a conductivity rating of conductive, and ingress protection for environment resistance, these connectors ensure long-lasting, high-quality connectivity in even the harshest environments.