Bias Tee
● Wideband signal transmission
● Low insertion loss design
● High DC-RF isolation
● Excellent temperature stability
● Compact structure for easy integration
● High reliability and long lifespan
| Part No. | Item | Frequency range | Main specification | Connector type | Material | Size(mm) |
|---|---|---|---|---|---|---|
| MX-BT-200k110G-25V | Bias Tee | 200kHz-110GHz | Insert loss4.5dB,Voltage25V,Current300mA,Power1W | 1.0mm Female-1.0mm Female or male | Gold-plated brass | 35x15x14 |
| MX-BT-16k67G-25V | Bias Tee | 16kHz-67GHz | Insert loss4dB,Voltage25V,Current500mA,Power1W | 1.85mm Female-1.85mm Female or male | Gold-plated brass | 35x15x14 |
| MX-BT-30k67G-25V | Bias Tee | 30kHz-67GHz | Insert loss4dB,Voltage25V,Current700mA,Power1W | 1.85mm Female-1.85mm Female or male | Gold-plated brass | 35x15x14 |
| MX-BT-16k50G-25V | Bias Tee | 16kHz-50GHz | Insert loss3.5dB,Voltage25V,Current500mA,Power1W | 2.4mm Female-2.4mm Female or male | Gold-plated brass | 35x15x14 |
| MX-BT-30k50G-25V | Bias Tee | 30kHz-50GHz | Insert loss3.5dB,Voltage25V,Current700mA,Power1W | 2.4mm Female-2.4mm Female or male | Gold-plated brass | 35x15x14 |
| MX-BT-16k43G-50V | Bias Tee | 16kHz-43GHz | Insert loss3.5dB,Voltage50V,Current500mA,Power5W | 2.92mm Female-2.92mm Female or male | Gold-plated brass | 35x15x14 |
| MX-BT-30k40G-50V | Bias Tee | 30kHz-40GHz | Insert loss3dB,Voltage50V,Current500mA,Power5W | 2.92mm Female-2.92mm Female or male | Gold-plated brass | 35x15x14 |
| MX-BT-30k26G-50V | Bias Tee | 30kHz-26.5GHz | Insert loss3dB,Voltage50V,Current700mA,Power5W | SMA Female-SMA Female or male | Gold-plated brass | 35x15x14 |
| MX-BT-100k18G-50V | Bias Tee | 100kHz-18GHz | Insert loss2.8dB,Voltage50V,Current700mA,Power5W | SMA Female-SMA Female or male | Gold-plated brass | 35x15x14 |
| MX-BT-30k18G-50V | Bias Tee | 30kHz-18GHz | Insert loss2dB,Voltage50V,Current700mA,Power5W | SMA Female-SMA Female or male | Gold-plated brass | 35x15x14 |
-
Discover how RF power amplifiers enable military communication systems. Learn roles in tactical radios, EW, radar, SATCOM, SDR, and phased arrays, plus GaN vs GaAs trade-offs and design tips.Sep 11 ,26
-
Compare GaAs and GaN RF power amplifiers side by side. Learn differences in bandwidth, efficiency, power density, thermal performance, frequency range, cost, and the right application for each technology.Sep 11 ,26
-
Learn what a passive low pass filter (LPF) is, how RC and RL circuits work, common topologies (Butterworth, Chebyshev, Bessel), key specifications, real-world applications, and design tips.Sep 10 ,26
-
Normally Closed vs Normally Open switch contacts — what NC and NO mean, how each operates, the differences between them, schematic symbols, and real-world applications.Sep 10 ,26
-
Ohm's Law explained — what V = IR means, the formula, an interactive Ohm's Law Calculator, the relationship with electrical power, and real-world applications.Sep 09 ,26
-
What is an N-type connector? Learn about the N-type coaxial RF connector — its origin, mechanical design, electrical performance, common variants, and applications up to 18 GHz.Sep 09 ,26











