Allicdata Part #: | BF247A_J35Z-ND |
Manufacturer Part#: |
BF247A_J35Z |
Price: | $ 0.00 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | ON Semiconductor |
Short Description: | JFET N-CH 25V 0.35W TO92 |
More Detail: | JFET N-Channel 25V 350mW Through Hole TO-92-3 |
DataSheet: | BF247A_J35Z Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Packaging: | Bulk |
Part Status: | Obsolete |
FET Type: | N-Channel |
Voltage - Breakdown (V(BR)GSS): | 25V |
Current - Drain (Idss) @ Vds (Vgs=0): | 30mA @ 15V |
Voltage - Cutoff (VGS off) @ Id: | 600mV @ 100nA |
Input Capacitance (Ciss) (Max) @ Vds: | -- |
Power - Max: | 350mW |
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 |
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BF247A_J35Z transistors are among the most widely used type of transistors in today’s electronics industry. They have been used for a variety of applications ranging from low frequency amplification to high-powered applications. The BF247A_J35Z is a JFET transistor, which stands for junction field effect transistor and is especially designed for use as an amplifier, thus making it one of the most commonly used type of transistors.
A JFET is a field effect transistor which consists of two terminals known as the source and the drain. In between these two terms sits a channel of conducting material, called the channel. The channel is made up of the same material that forms other components of the transistor such as the base and the collector. When a bias voltage is applied to the gate, the channel of electrons become active, allowing current to flow from the source to the drain.
In the BF247A_J35Z transistor, the current flow is controlled by the gate voltage. The gate voltage can be adjusted in such a way that the flow of current is inversely influenced. This means that if the gate voltage is increased, the current will be shifted away from the drain and towards the source, and vice versa. This switching feature makes the BF247A_J35Z an ideal choice for use in a variety of applications.
One of the most important features of the BF247A_J35Z transistor is its low noise level performance. The low noise character of this device makes it an ideal choice for applications where low noise performance is necessary. This is another reason why many electronics engineers prefer to use the BF247A_J35Z transistor in their applications.
The BF247A_J35Z has also been used in a number of high-powered applications. This is because the BF247A_J35Z transistor is able to handle voltages up to 250 volts, making it suitable for use in higher voltage power applications. In addition, the BF247A_J35Z has a relatively low gate capacitance, which allows for higher current gains and higher speed in the power applications.
The BF247A_J35Z transistor has also found a number of other applications, such as switching in RF circuits, controlling a dynamic audio gain circuit, and driving speakers. In addition, the BF247A_J35Z transistor can be used for low frequency signal applications, such as for radio systems, Wi-Fi, Bluetooth, and for ultrasonic and microwave circuits.
The working principle of the BF247A_J35Z transistor is very simple and it is similar to the other FET transistors. The source terminal of the transistor is connected to the ground while the drain is connected to the power supply. A control signal is then applied to the gate, resulting in the variation in the current through the channel. In this way, the current is amplified or decreased which can then be used to control the other devices connected to the power supply.
The BF247A_J35Z transistor has several advantages over other types of transistors such as low noise, high input resistance, low capacitance, and high output resistance. This makes the BF247A_J35Z transistor an ideal choice for many applications.
In conclusion, the BF247A_J35Z transistor is a very versatile type of transistor that can be used for a variety of applications. It has a low noise characteristic, high input resistance, low capacitance, and high output resistance which make it well suited for a wide range of applications.
The specific data is subject to PDF, and the above content is for reference
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