Allicdata Part #: | HSMP-386B-TR1G-ND |
Manufacturer Part#: |
HSMP-386B-TR1G |
Price: | $ 0.00 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | Broadcom Limited |
Short Description: | DIODE PIN GP 50V LO COST SOT-323 |
More Detail: | RF Diode PIN - Single 50V 1A SOT-323 |
DataSheet: | HSMP-386B-TR1G Datasheet/PDF |
Quantity: | 1000 |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Part Status: | Obsolete |
Diode Type: | PIN - Single |
Voltage - Peak Reverse (Max): | 50V |
Current - Max: | 1A |
Capacitance @ Vr, F: | 0.2pF @ 50V, 1MHz |
Resistance @ If, F: | 1.5 Ohm @ 100mA, 100MHz |
Operating Temperature: | 150°C (TJ) |
Package / Case: | SC-70, SOT-323 |
Supplier Device Package: | SOT-323 |
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A HSMP-386B-TR1G diode is a type of RF diode used for various applications, most commonly for functioning as a signal rectifier in RF systems. The diode is a three terminal, Junction Gate Schottky Barrier (JSB) device with a Barrier Reverse Voltage (BRV) of 9.0 V, a Forward Voltage Drop (FVD) of 0.4 V (at 10 mA) and an On-Resistance (R) of 5.8 Ω at the time of publication.
HSMP-386B-TR1G diodes are designed to have a low capacitance and low series resistance, which make them ideal for use as a powerful signal rectifier in RF applications. Common applications of these diodes include RF amplifier circuits, wide-band power conversion and signal rectification, as well as communications and radar systems.
The working principle of the HSMP-386B-TR1G diode is quite simple. In general, diode signals are composed of alternate positive and negative cycles of impulse that create two different zones - the conduction zone and the non-conduction zone. When the signal is of a positive polarity, it passes through the conduction zone and is received as a positive pulse. However, when the signal is of a negative polarity, it gets blocked or rejected by the non-conduction zone. As a result, the HSMP-386B-TR1G diode functions as a signal rectifier by allowing only the positive cycle of the signal to pass through and rejecting or blocking the negative cycle.
The signal rectification process is also known as rectification because it transforms the alternating signal of +
The specific data is subject to PDF, and the above content is for reference
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