fmuser
50W 50 Ohm Dummy Load with PL259 UHF Male Connector, RF Dummy Load for Ham Radio, Stable Performance, Low VSWR
*Price sourced from Amazon.com. Last updated 2026-04-25. Price and availability subject to change.
Key Features
- Essential Dummy Load: Efficiently absorbs and dissipates RF energy as heat instead of reflecting it back, perfectly simulating antenna load for safe ham radio and CB transmitter testing.
- Superior Stability: High-quality power resistors and an advanced aluminum heat sink ensure stable, long-lasting performance at rated power, even during extended radio operation.
- Low VSWR Design: Engineered with precision 50Ω components for excellent impedance matching and minimal signal reflection, making it ideal for use as a dummy load for ham radio systems.
- Quick & Easy Installation: Lightweight and compact with a PL259 UHF male connector, this dummy load plugs directly into your transmitter for hassle-free setup—no extra cables needed.
- Reliable for Multiple Uses: Designed for amateur radio, CB, and general RF testing environments, providing consistent results for equipment tuning and troubleshooting.
Full Specifications
| Brand | fmuser |
|---|---|
| Color | black |
| Antenna | Radio |
| Impedance | 50 Ohms |
| Model Number | DL16J |
| Maximum Range | 10000 Feet |
| Built-In Media | dummy load |
| Mfr Part Number | 1 |
| Number of Items | 1 |
| AntennaDescription | Radio |
| Number of Channels | 1 |
| Warranty Description | 1 Year |
| Reliable for Multiple Uses | Designed for amateur radio, CB, and general RF testing environments, providing consistent results for equipment tuning and troubleshooting. |
Ready to buy?
50W 50 Ohm Dummy Load with PL259 UHF Male Connector, RF Dummy Load for Ham Radio, Stable Performance, Low VSWR is available on Amazon with Prime shipping and the full Amazon returns policy. SpecPicks earns a small commission on qualifying purchases — thank you for supporting independent review work.
*Price sourced from Amazon.com. Last updated 2026-04-25. Price and availability subject to change.