Allicdata Part #: | 1N767-ND |
Manufacturer Part#: |
1N767 |
Price: | $ 1.41 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | Microsemi Corporation |
Short Description: | DIODE ZENER |
More Detail: | Zener Diode |
DataSheet: | 1N767 Datasheet/PDF |
Quantity: | 1000 |
481 +: | $ 1.27273 |
Series: | -- |
Packaging: | -- |
Part Status: | Active |
Mounting Type: | -- |
Package / Case: | -- |
Supplier Device Package: | -- |
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A 1N767 diode is a single zener diode. It is a single semiconductor device composed of a p-type semiconductor material at its anode, and an n-type semiconductor material at its cathode. The 1N767 diode has several characteristics that make it useful in various applications.
Applications
1N767 diodes are most commonly used to provide a stable voltage reference in electronics circuits. This is because they are able to maintain a very constant voltage regardless of changes in current o rtemperature. This makes them particularly usefull for voltage regulation, protection, and signal conditioning in many types of devices. The 1N767 diode is also often used to provide a reference voltage in many radio and broadcast applications.
A 1N767 diode has two other common uses. First, it is often used in power supplies as a rectifier. A rectifier helps to reduce the output voltage ripple of a power supply by using its junction capacitance. This type of diode is also often used as a temperature sensor. By utilizing its junction capacitance, the 1N767 diode can help to measure temperatures.
Working Principle
The working principle of a 1N767 diode is based on the PN junction. This junction relies on the interaction between a p-type semiconductor material and an n-type semiconductor material to produce a potential difference across the junction. This potential difference is the basis for current flow in the diode. The PN junction of a 1N767 diode can also be used to control the flow of current, and to regulate voltage.
The 1N767 diode is an "on-off" type of diode. When a voltage is applied across its terminal, it will either allow the current to flow, or it will block the current flow. This is determined by the applied voltage: when a certain voltage is applied, the junction will become forward biased, and current will flow through the diode; on the other hand, if the applied voltage becomes too high, the diode will become highly reversed biased and current will be blocked.
The 1N767 diode also has a particular voltage breakdown point. When the voltage across the junction reaches this threshold, it is called the Zener voltage, and the diode will suddenly become highly conductive. This is known as the Zener breakdown, and it is responsible for the 1N767 diode\'s ability to act as a voltage regulator or temperature sensor.
In addition, the PN junction of a 1N767 diode also has a capacitance. This capacitance can be used to help control the current flowing through the diode, and it can also be used in power supplies to reduce the output voltage ripple. This junction capacitance is what makes the 1N767 diode particularly useful for the applications discussed above.
Conclusion
The 1N767 diode is a versatile, single zener diode. It is composed of a p-type semiconductor material at its anode and an n-type semiconductor material at its cathode, and it relies on the PN junction formed between these two materials to control the flow of current and regulate voltage. The 1N767 diode has many uses, most notably as a voltage regulator, a rectifier, and a temperature sensor. It can also be used to reduce output voltage ripple in power supplies. In conclusion, the 1N767 diode is a universally applicable device for a variety of electronics applications.
The specific data is subject to PDF, and the above content is for reference
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