20-6000-R
AI

The part number **20-6000-R** typically refers to a high-performance **RF (Radio Frequency) Termination** (also known as a dummy load) manufactured by companies like **Barry Industries**.
These components are designed to dissipate electrical power in RF circuits while maintaining a specific impedance (usually 50 Ohms) to prevent signal reflections.
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### 1. Key Technical Specifications
The "R" suffix often denotes "RoHS Compliance" (lead-free). Below are the typical technical parameters for this series:
| Parameter | Typical Value |
| :--- | :--- |
| **Component Type** | Flanged RF Termination |
| **Resistance** | 50 Ohms (Standard) |
| **Frequency Range** | DC to 4.0 GHz |
| **Power Rating** | 60 Watts (when properly heat-sinked) |
| **Tolerance** | ± 5% |
| **Mounting Style** | Bolt-on Flange |
| **Substrate Material** | Beryllium Oxide (BeO) or Aluminum Nitride (AlN) |
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### 2. Functional Description
In RF engineering, the 20-6000-R serves as a "sink" for energy.
* **Impedance Matching:** It ensures that the circuit sees a consistent load, which minimizes the **Voltage Standing Wave Ratio (VSWR)**.
* **Heat Dissipation:** It converts RF energy into heat. Because it is a "Flanged" part, it must be bolted to a metal chassis or heat sink to prevent the component from burning out.
* **Lead Attachment:** It features a single tab (lead) for signal input, while the metal flange acts as the electrical ground.
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### 3. Common Applications
These parts are used in high-reliability environments where signal integrity is critical:
1. **Isolators/Circulators:** Used as the "dump" load for reflected power in protective circuitry.
2. **Power Dividers:** Terminating unused ports in Wilkinson power dividers.
3. **Broadcast Equipment:** Used in FM/TV transmitters to manage signal overflow.
4. **Military & Aerospace:** Integrated into radar and communication modules due to its rugged flanged design.
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### 4. Installation Best Practices
To ensure the 20-6000-R operates at its rated 60W capacity, follow these guidelines:
* **Thermal Paste:** Apply a thin layer of thermal compound between the flange and the heat sink.
* **Flatness:** Ensure the mounting surface is perfectly flat to avoid mechanical stress on the ceramic substrate.
* **Soldering:** Use high-temperature solder for the lead tab, ensuring the connection is as short as possible to minimize inductance.
- ⤷
What are the differences between BeO and AlN substrates for this part?
- ⤷ How do I calculate the heat sink requirements for a 60W RF load?
- ⤷ Can this part be used in circuits exceeding 4.0 GHz?