Images
Mfr.Part #
In Stock
Manufacturer
Description
Package
BCC0ELW BCC0ELW 9708 Balluff CBL 4POS MALE TO FMALE 0.98' Bag
HSDSJZSPZ06-16 HSDSJZSPZ06-16 4976 Amphenol RF CBL 4POS MALE TO FMALE 3.28' Bag
BCC0CYN BCC0CYN 1077 Balluff CBL 5POS MALE TO WIRE 1.97' Bag
AK323G-2 AK323G-2 1486 Assmann WSW Components CBL 6POS MALE TO FMALE 6.56' Bulk
AK678-2 AK678-2 1908 Assmann WSW Components CBL 6POS MALE TO MALE 6.56' Bulk
AK323-2 AK323-2 8299 Assmann WSW Components CBL 6POS MALE TO FMALE 6.56' Box
A-M08A04MOE10002BK00 A-M08A04MOE10002BK00 1952 Assmann WSW Components CBL CIRC 4POS MALE TO WIRE 3.28' Bag
M12D-04BMMM-PL8D04 M12D-04BMMM-PL8D04 2785 Amphenol LTW CBL CIRC 4P MALE TO WIRE 13.12' Bag
MSAS-17BFFM-SL8D02 MSAS-17BFFM-SL8D02 6981 Amphenol LTW CBL 17POS FMALE TO WIRE 6.56' Bag
CD-08AFFM-QL8D01 CD-08AFFM-QL8D01 9952 Amphenol LTW CBL 8POS FMALE TO WIRE 3.28' Bag
M12A-05PMMS-SS8E15 M12A-05PMMS-SS8E15 1329 Amphenol LTW CBL CIRC 5POS MALE 0.49' Bag
BD-06AFMM-QR8D01 BD-06AFMM-QR8D01 7532 Amphenol LTW CBL 6POS MALE TO WIRE 3.28' Bulk
M12A-08PMMS-SS8E15 M12A-08PMMS-SS8E15 5460 Amphenol LTW CBL CIRC 8POS MALE 0.49' Bag
BD-06AMMM-QL8D01 BD-06AMMM-QL8D01 1580 Amphenol LTW CBL 6POS MALE TO WIRE 3.28' Bulk
M12A12FL-12AMR-SDA05 M12A12FL-12AMR-SDA05 5543 Amphenol LTW CBL 12POS MALE TO FMALE 1.64' Bag
Q8D-04AFFM-QL8A01 Q8D-04AFFM-QL8A01 3476 Amphenol LTW CBL 4POS FMALE TO WIRE 3.28' Bulk
MSDS-04BMMM-SR8E01 MSDS-04BMMM-SR8E01 7631 Amphenol LTW CBL CIRC 4POS MALE 3.28' Bag
Q8D-04AMMM-QL8A01 Q8D-04AMMM-QL8A01 477 Amphenol LTW CBL 4POS MALE TO WIRE 3.28' Bulk
MSDS-04BMMM-SR8E02 MSDS-04BMMM-SR8E02 8753 Amphenol LTW CBL CIRC 4POS MALE 6.56' Bag
BD-05AFMM-QL8D01 BD-05AFMM-QL8D01 8771 Amphenol LTW CBL 5POS MALE TO WIRE 3.28' Bag

Circular Cable Assemblies

Circular Cable Assemblies are a special type of cable assembly in the field of electronic interconnection, designed for harsh environments and complex scenarios.

 

1. What are the Structural Design of Circular Cable Assemblies?

The circular connector shell supports high-density contact arrangement, especially in miniaturized design, it can still maintain the stability of multi-pin configuration.

 

The connector gender (male/female) is decoupled from the shell gender, with high design flexibility to meet customized needs.

 

The cable diameter covers 0-26 AWG, which is suitable for different current and signal transmission needs.

 

2. What are Circular Cable Assemblies Used for?

Military and Shipbuilding: Certified by MIL standards, resistant to extreme temperatures, vibration, humidity, and electromagnetic interference, suitable for shipborne equipment, field communications, and other scenarios.

Industrial Equipment: Used for signal and power transmission with high-reliability requirements such as factory automation and robot control.

Aerospace: Meet the needs of lightweight, radiation resistance, and high sealing.

 

3. What are the Advantages of Circular Cable Assemblies?‌

‌Withstand Voltage and Durability‌: Package size and material selection directly affect to withstand voltage levels, and large packages can support higher voltage environments‌.

‌Signal Integrity‌: Reduce signal attenuation and crosstalk through shielding design and high-quality insulation materials (such as nylon and metal oxide film).

‌Fast Deployment‌: Modular design supports plug-and-play and reduces the complexity of on-site installation‌.

 

4. ‌Typical Manufacturers of Circular Cable Assemblies‌

‌Electro Standards‌: Provides MIL standard circular custom cable assemblies that support multi-pin arrangement and miniaturized design‌.

‌Molex‌: Produces high-density interconnect solutions such as Mini-LC fiber optic assemblies to meet the needs of miniaturized equipment‌.

 

5. How to Choose Circular Cable Assemblies?‌

Choose products that meet IP ratings or MIL certifications based on the working environment (temperature, humidity, vibration).

 

In high-density scenarios, parameters such as pin spacing and contact resistance are prioritized to ensure long-term stability‌.

 

Such components play a key role in complex system integration and require balancing performance, cost, and reliability based on specific scenarios.