
BC639-16ZL1G Discrete Semiconductor Products |
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Allicdata Part #: | BC639-16ZL1GOSTB-ND |
Manufacturer Part#: |
BC639-16ZL1G |
Price: | $ 0.00 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | ON Semiconductor |
Short Description: | TRANS NPN 80V 1A TO-92 |
More Detail: | Bipolar (BJT) Transistor NPN 80V 1A 200MHz 625mW T... |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Packaging: | Tape & Box (TB) |
Part Status: | Obsolete |
Transistor Type: | NPN |
Current - Collector (Ic) (Max): | 1A |
Voltage - Collector Emitter Breakdown (Max): | 80V |
Vce Saturation (Max) @ Ib, Ic: | 500mV @ 50mA, 500mA |
Current - Collector Cutoff (Max): | 100nA (ICBO) |
DC Current Gain (hFE) (Min) @ Ic, Vce: | 100 @ 150mA, 2V |
Power - Max: | 625mW |
Frequency - Transition: | 200MHz |
Operating Temperature: | -55°C ~ 150°C (TJ) |
Mounting Type: | Through Hole |
Package / Case: | TO-226-3, TO-92-3 (TO-226AA) (Formed Leads) |
Supplier Device Package: | TO-92-3 |
Base Part Number: | BC639 |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
BC639-16ZL1G is one of the most extensively used transistors for a number of applications ranging from switching, open collector logic applications, and A/D converters. This transistor is a general purpose NPN transistor from the single bipolar family. It is widely used in digital and power control circuits. It is a low voltage, low-power consuming NPN transistor and is used for switching, as it can handle a wide range of power when compared to other typical devices.
The BC639-16ZL1G transistor is an NPN device. It consists of an emitter, an emitter electrode, a collector electrode, and a base terminal. The emitter and collector are connected to the electrodes while the base is connected to the base terminal. The biasing of this device can be either forward bias or reverse bias. When it is forward biased, the transistor acts as a switch, while in reverse bias, it acts as a rectifier.
The BC639-16ZL1G transistor has several features which makes it ideal for a number of applications. One of the main features is its low noise level. This transistor produces little thermal noise and therefore is suitable for digital and analog applications. Another important feature is the high gain of the device. This feature helps the transistor to amplify the input signals and therefore is suitable for high-precision applications. The high gain also helps in providing a high switching speed when compared to other transistors.
The BC639-16ZL1G transistor has a wide range of applications. It is used in many circuits such as amplifiers, digital to analog converters, A/D converters, switches, and other circuits. It can also be used in high current switching applications. This device is also used in low noise amplifiers, radio frequency amplifiers, audio amplifiers, and other applications that require linear performance. The device is also commonly used in power control circuits.
The operating principle of the BC639-16ZL1G transistor is based on the NPN transistor type. When this device is forward biased, the current flows from the emitter to the collector. This creates a hole-type depletion zone between the emitter and collector electrodes. This enables the transistor to act as a switch. When the device is reverse biased, the current flows from the collector to the emitter, which creates an electron-type depletion zone. This helps the device act as a rectifier. When the voltage applied to the base exceeds the required threshold, it turns on the transistor, thus allowing the current to flow through the emitter and collector.
The BC639-16ZL1G is a single transistor which is suitable for a wide range of applications. It is used in low noise amplifiers, radio frequency amplifiers, audio amplifiers, and other linear applications. It is also used in high current switching applications, power control circuits, and A/D converters. The operating principle of this device is based on the NPN transistor type, wherein the current flows from the emitter to the collector when it is forward biased and from the collector to the emitter when it is reverse biased.
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