Key Product Description :
Next-Generation RF: The TC-400-4310M-X 4.3/10 Male Connector
The Times Microwave TC-400-4310M-X is a premium, straight 4.3/10 mini DIN Male (Plug) connector designed to deliver stable, ultra-low Passive Intermodulation (PIM) performance for LMR-400 and compatible 400-series coaxial cables.3
The 4.3/10 interface is the modern solution for replacing the traditional 7/16 DIN in compact, high-density applications.4 It offers the same robust design and high power handling while featuring a significantly smaller and lighter footprint, making it perfect for today’s crowded antenna arrays and RRH (Remote Radio Head) systems.5
Key Features & Advantages :
- Superior Low PIM: Guarantees exceptional signal integrity in multi-carrier, high-power environments, essential for 4G/LTE and 5G networks.
- Compact 4.3/10 Interface: Provides a lightweight, space-saving alternative to 7/16 DIN without sacrificing electrical performance.
- High Frequency Performance: Rated up to 6 GHz with excellent VSWR, supporting current and future wireless standards.
- Secure Solder/Crimp Termination (TC Style): Combines a reliable solder inner contact for the center conductor (ideal for stranded wire) and a robust
- crimp outer contact for the braid, ensuring durability and weather resistance.
- Albaloy Finish: Features premium silver-plated contacts and a White Bronze/Albaloy plated body for maximum corrosion resistance and longevity in harsh outdoor deployments.
- LMR-400® Compatibility: Guaranteed perfect fit for LMR-400, TCOM-400, and other 400-series low-loss cables.
Technical Specifications at a Glance :
| Specification | Detail | |
| Part Number | TC-400-4310M-X | |
| Connector Type | 4.3/10 mini DIN Male (Plug) | |
| Cable Compatibility | LMR-400® | |
| PIM Rating | Ultra Low PIM | |
| Max Frequency | 6 GHz | |
| Attachment Method | Solder (Pin) / Crimp (Outer) |








admin –
Excellent, compact 4.3/10 mini DIN Male for LMR-400. Delivers superior, guaranteed Low PIM performance up to 6 GHz. Ideal for space-constrained 5G/DAS applications requiring reliable, next-generation RF quality.