Detectors
● High-Sensitivity Signal Detection
● Wideband Coverage
● Low Noise Floor Design
● Fast Response Time
● Temperature-Stable Performance
● Compact and Integration-Friendly Structure
| Part No. | Item | Frequency range | Main specification | Connector type | Material | Size(mm) | Download |
|---|---|---|---|---|---|---|---|
| MX-PD-0043-P | Detectors | 0.1-43GHz | Positive voltage,Sensitivity-20dBm,600V/W | 2.92mm Female-SMA Female | Gold-plated brass | 15x12.5x10 | |
| MX-PD-0050-P | Detectors | 0.1-50GHz | Positive voltage,Sensitivity-20dBm,600V/W | 2.4mm Female-SMA Female | Gold-plated brass | 15x12.5x10 | |
| MX-PD-0067-P | Detectors | 0.1-67GHz | Positive voltage,Sensitivity-20dBm,600V/W | 1.85mm Female-SMA Female | Gold-plated brass | 15x12.5x10 | |
| MX-PD-00110-P | Detectors | 0.1-110GHz | Positive voltage,Sensitivity-20dBm,600V/W | 1.0mm Female-SMA Female | Gold-plated brass | 15x12.5x10 | |
| MX-PD-0018-N | Detectors | 0.01-18GHz | Negative voltage,Sensitivity-40dBm,400V/W | SM male-SMA Female | Nickel-plated stainless steel | Coaxial length 35 | |
| MX-PD-0043-N | Detectors | 0.01-43GHz | Negative voltage,Sensitivity-40dBm,400V/W | 2.92mm male-SMA Female | Nickel-plated stainless steel | Coaxial length 35 | |
| MX-PD-2044-P | Detectors | 20-40GHz | Positive voltage, Sensitivity-20dBm,3000V/W | 2.92mm Female(Male is optional) | / | / | Download |
-
Solid state power amplifiers explained — what an SSPA is, how it works, the main types (LDMOS, GaN, GaAs), key specifications like gain, efficiency and linearity, and how SSPA compares to TWTAs and tube amplifiers.Aug 31 ,26
-
Use our free mW to dBm conversion calculator to instantly convert between milliwatts (mW) and decibel-milliwatts (dBm). Includes formula, examples, RF power reference table, and best practices.Aug 31 ,26
-
Understanding DC blockers — what they are, how they prevent ground loops in RF test benches, the main types (inline, bias-tee internal, capacitive), key specs, and how to integrate them into your measurement setup.Aug 31 ,26
-
What is an EMI filter? Learn how electromagnetic interference filters work, the main types (power-line, signal-line, common-mode, differential-mode), key specifications, and how to choose the right one for your application.Aug 31 ,26
-
An introduction to microwave limiters — what they are, how they protect sensitive receivers from high-power signals, the main types (PIN diode, Schottky, GaN), key specifications, and design considerations.Aug 31 ,26
-
Learn how to select high-directivity directional couplers for high-power microwave systems. This guide covers directivity, coupling, isolation, power handling, thermal management, and design trade-offs.Aug 31 ,26










