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TNC F 4 HOLE LMR 200 CRIMP

Original price was: ₹152.00.Current price is: ₹128.00.

The TNC Female 4-Hole LMR 200 Crimp connector is engineered for mounting on panels with a 4-hole flange, providing a secure and stable connection. Compatible with LMR 200 coaxial cables, this connector utilizes a crimp attachment for reliable performance in RF applications. It supports frequencies up to 11 GHz, making it suitable for various telecommunications and wireless systems. The design ensures minimal signal loss and excellent mechanical stability.

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### Tools and Materials Needed:
1. **TNC Female Connector with 4-Hole Crimp**
2. **LMR 200 Coaxial Cable**
3. **Cable Stripping Tool** (suitable for LMR 200)
4. **Crimping Tool** (compatible with TNC connectors and LMR 200 cable)
5. **Crimping Die for 4-Hole Configuration**
6. **Center Pin** (usually included with the connector)
7. **Heat Shrink Tubing** (optional, for additional insulation and strain relief)

### Steps to Crimp a TNC Female Connector with a 4-Hole Configuration:

1. **Prepare the Cable**:
– **Strip the Outer Jacket**: Use a cable stripping tool to remove approximately 1/2 inch (or as specified by the connector manufacturer) of the outer jacket from the LMR 200 cable. Be cautious not to damage the braided shield underneath.
– **Expose the Shielding**: Carefully pull back the braided shield to reveal the dielectric insulation. Trim any excess shielding to ensure it fits neatly inside the connector.
– **Strip the Dielectric**: Strip the dielectric insulation to expose the center conductor. The length of the exposed center conductor should be around 1/4 inch, but follow the connector’s specifications for exact requirements.

2. **Prepare the Connector**:
– **Slide on the Ferrule or Sleeve**: If the TNC female connector has a ferrule or sleeve, slide it onto the cable before inserting the cable into the connector. This ferrule will clamp down on the cable’s shield to provide a good connection.
– **Insert the Cable**: Insert the prepared end of the LMR 200 cable into the TNC female connector. Ensure that the center conductor aligns with the center pin of the connector and that the shield is correctly positioned to make contact with the ferrule or sleeve.

3. **Crimp the Connector**:
– **Crimp the Ferrule**: Use the crimping tool with the appropriate die to crimp the ferrule or sleeve around the braided shield of the cable. This crimp provides a secure mechanical connection between the shield and the connector. Ensure the crimp is uniform and tight.
– **Crimp the Center Pin**: Insert the center conductor into the center pin of the connector. Use the crimping tool to crimp the center pin onto the center conductor. Make sure the conductor is fully seated in the pin before crimping.

4. **Secure the Connector**:
– **Check the Fit**: Confirm that the connector is securely attached, and that the ferrule and center pin are properly crimped. Ensure that there are no loose or misaligned components.
– **Inspect the Assembly**: Double-check that the center conductor and shield are properly connected and that there are no gaps or loose connections.

5. **Assemble and Insulate** (Optional):
– **Apply Heat Shrink Tubing**: For additional strain relief and insulation, slide heat shrink tubing over the joint and apply heat to shrink it tightly around the connector and cable.
– **Inspect**: Ensure that the heat shrink tubing is properly applied and that everything is aligned correctly.

6. **Test the Connection**:
– **Verify Connections**: Make sure the connector is firmly attached and that there are no loose parts.
– **Test Signal**: Use appropriate testing equipment to check that the connection is functioning properly and that there are no signal issues.

Brand

RF CONNECTOR HOUSE

Material

Brass

finish

Polished

Frequency Range

DC- 3 GHz

VSWR

≤ 1.15@(0~3GHz)

Dielectric strength

≥2500V RMS, at sea level

Dielectric Resistance

≥ 5000 M Ω

Characteristic Impedance

50Ω

Contact Resistance

Center Contact ≤ 1.0 m Ω, Outer Contact ≤ 0.25 m Ω

Temperature Range

– 40°C – +85 °C

Insertion Loss

≤ 0.08dB (@2200MHz)

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