"Plug Socket Connector Housings" refers to protective enclosures or casings designed to house and secure plug and socket connectors. These housings provide a physical structure around the connectors, offering protection against environmental factors such as dust, moisture, and mechanical damage. They also help organize and support the connectors, ensuring proper alignment and connection. The term typically relates to components used in electrical or electronic systems where plugs and sockets are utilized for secure and reliable interconnection.
Characteristic:
Satisfies connector specifications required by automotive manufacturers.
Expanded variations.
Board-to-cable type, in-line type.
On-board type is available in both straight and right angle with a choice of one row and two rows for each.
Available in through-hole type and surface mount (SMT) type.
Socket housing is available in color variations for color coding the connectors so that they can be distinguished at mating.
Standard color Gray, another available Beige and Black.
Mechanical lock system ensures reliable mating.
Preset type retainer surely detects incomplete insertion of the terminals.
ISO/JASO standard middle tab size 0.64mm is used for pin terminals.
Socket terminal is a box structure type durable to external strength.
Number of Positions (Pin Header, Through-Hole Type) | Straight, 1 row: 5, 7 pos., 2 rows: 12, 16, 20, 24, 28, 32, 36, 40 pos., Right angle, 1 row: 3, 5, 7 pos., 2 rows: 8, 12, 16, 20, 24, 28, 32, 36, 40 pos. |
Number of Positions (Pin Header, SMT Type) | Straight, 2 rows: 12, 20, 32 pos., Right angle, 1 row: 3, 5, 7 pos., 2 rows: 8, 12, 16, 20, 24, 28, 32, 36 pos. |
Number of Positions (In-line Housing) | 2 rows: 12, 16, 20 pos. |
Number of Positions (Socket Housing) | 1 row: 3, 5, 7 pos., 2 rows: 8, 12, 16, 20, 24, 28, 32, 36, 40 pos. |
Rated Current | 3 A |
Contact Resistance | 5 milliohm max. (initial) |
Dielectric Withstanding Voltage | 1000 VACr.m.s. (1 minute) |
Insulation Resistance | 100 megohm min. |
Applicable Cable (Socket Contact: Cable Type, Conductive Area) | M34S75C4F1: AVSS 0.3,CHFUS 0.22 to 0.35, M34S75C4F2: AVSS 0.5,CHFUS 0.5 to 0.75, M34S75C4F3: CAN SD 0.35, M34S75C4F4: AVSS 0.85, M34S75C4F5: CHFUS 0.13 |
Applicable Cable (In-line Contact: Cable Type, Conductive Area (mm2)) | M34P75C4F1: AVSS 0.3,CHFUS 0.22 to 0.35, M34P75C4F2: AVSS 0.5,CHFUS 0.5 to 0.75, M34P75C4F5: CHFUS 0.13 |
Operating Temperature Range | -40 deg. C to +85 deg. C , Note) Maximum operating temperature: 130 Deg. C (ambient temperature + temperature rise by current carrying) |
Non-sealed plug socket connector housings typically consist of a housing, a plug, and a socket. The housing is made of a durable material, such as plastic or metal, and it provides mechanical support for the connector. The plug and socket are the electrical components of the connector, and they are used to connect two electrical circuits.
Non-sealed plug socket connector housings are available in a variety of sizes and configurations. The size of the housing is determined by the number of electrical circuits that need to be connected. The configuration of the housing is determined by the type of application in which it will be used.
Body-Chassis ECU, switches.
Q&A
Plug socket connector housings enhance safety by preventing accidental contact with live electrical components. The housing acts as a barrier, minimizing the risk of electric shocks, short circuits, and other electrical hazards. Additionally, they help protect the connectors from environmental factors such as moisture and dust.
Various materials can be used in the construction of plug socket connector housings, depending on the application requirements. Common materials include thermoplastics, thermosetting plastics, and metal alloys. These materials are chosen for their durability, insulating properties, and resistance to environmental conditions.
Plug socket connector housings are designed with ease of installation in mind. They often feature user-friendly designs, such as snap-fit mechanisms, color-coded connectors, and clear labeling. These elements simplify the installation process, making it more straightforward for both professionals and end-users.
In many cases, plug socket connector housings are designed to adhere to industry standards, ensuring compatibility and interchangeability across different brands. Standardization promotes a universal approach to connector design, allowing users to mix and match components from various manufacturers.
The reliability of electrical systems often depends on the integrity of individual components, including plug socket connector housings. These housings contribute to system reliability by providing a stable and protected environment for electrical connections.
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