UP0339700L Discrete Semiconductor Products |
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Allicdata Part #: | UP0339700LTR-ND |
Manufacturer Part#: |
UP0339700L |
Price: | $ 0.00 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | Panasonic Electronic Components |
Short Description: | TRANS PREBIAS NPN/PNP SSMINI5 |
More Detail: | Pre-Biased Bipolar Transistor (BJT) 1 NPN, 1 PNP -... |
DataSheet: | UP0339700L Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Part Status: | Obsolete |
Transistor Type: | 1 NPN, 1 PNP - Pre-Biased (Dual) |
Current - Collector (Ic) (Max): | 100mA |
Voltage - Collector Emitter Breakdown (Max): | 50V, 30V |
Resistor - Base (R1): | 10 kOhms |
Resistor - Emitter Base (R2): | 10 kOhms, 47 kOhms |
DC Current Gain (hFE) (Min) @ Ic, Vce: | 35 @ 5mA, 10V / 80 @ 5mA, 10V |
Vce Saturation (Max) @ Ib, Ic: | 250mV @ 300µA, 10mA / 1.2V @ 330µA, 50mA |
Current - Collector Cutoff (Max): | 500nA |
Frequency - Transition: | 150MHz, 80MHz |
Power - Max: | 125mW |
Mounting Type: | Surface Mount |
Package / Case: | SOT-665 |
Supplier Device Package: | SSMini5-F2 |
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
The UP0339700L is a uniquely designed pre-biased bipolar junction transistor (BJT) array, which has seen considerable success in a range of different applications.
The UP0339700L makes use of the intrinsic advantages that a pre-biased BJT array provides, allowing it to provide reliable current amplification in a wide variety of applications.
The pre-biased BJT array is made up of individual BJT stages, which can be connected together in series or parallel in order to increase the current capacity of the system. The UP0339700L utilizes two individual BJT stages, both of which can be pre-biased in order to provide optimized performance. By connecting both BJT stages in series, the current capacity of the array can be increased up to a maximum of 10 A.
The UP0339700L is capable of providing reliable current amplification in a wide range of different applications. These applications include power supplies, motor drives, switching regulators, and inverter circuits. The UP0339700L can also be used in computer applications, where its pre-biased design allows it to provide reliable power switching and voltage/current control.
The UP0339700L is well-suited for use in a variety of medical equipment, such as ultrasound scanners and other imaging devices. As the UP0339700L has a high immunity to electrical noise and EMI, it is well-suited for use in such environments, where it can provide reliable current amplification in the presence of hazardous currents and electromagnetic interference.
The UP0339700L is designed to work with a wide range of input voltages, including both alternating current (AC) and direct current (DC). It is capable of providing high current amplifications up to a maximum of 30 A while maintaining an excellent dynamic response and low quiescent current.
The working principle of the UP0339700L is based on the fact that when the base of the BJT is connected to the input voltage, its collector current flows through the collector-emitter path. This current creates a small voltage (or base-emitter voltage) which is then fed back to the base of the BJT. As the base voltage increases, the collector current increases, which in turn increases the collector-emitter voltage and further increases the current flow. This feedback loop allows for a continuous increase in the current flow, which is then amplified and fed to the output voltage.
Overall, the UP0339700L is a versatile, highly effective pre-biased BJT array, which is suited for use in a variety of different applications. Its ability to provide reliable current amplification while consuming a low quiescent current and maintaining an excellent dynamic response make it an ideal choice for many different applications, including medical equipment, power supplies, switching regulators, and inverters.
The specific data is subject to PDF, and the above content is for reference
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