K2000GRP Allicdata Electronics

K2000GRP Discrete Semiconductor Products

Allicdata Part #:

F11470TR-ND

Manufacturer Part#:

K2000GRP

Price: $ 0.35
Product Category:

Discrete Semiconductor Products

Manufacturer: Littelfuse Inc.
Short Description: SIDAC 190-215V 1A DO15
More Detail: Diac/Sidac Thyristor 190 ~ 215V 1A DO-15
DataSheet: K2000GRP datasheetK2000GRP Datasheet/PDF
Quantity: 1000
5000 +: $ 0.31220
10000 +: $ 0.30047
Stock 1000Can Ship Immediately
$ 0.35
Specifications
Supplier Device Package: DO-15
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
Voltage - Breakover: 190 ~ 215V
Current - Breakover: 10µA
Current - Hold (Ih) (Max): 150mA
Current - Peak Output: 1A
Operating Temperature: -40°C ~ 125°C (TJ)
Package / Case: DO-204AC, DO-15, Axial
Description

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K2000GRP application fields and working principles are key components of AC voltage power transmission relay and autotransformers. In the past, these components had predominantly been constructed using Thyristors - DIACs, SIDACs, and triacs. Therefore, a thorough understanding of the various aspects of these components is necessary in order to successfully implement them into a given system.

Diacs are a type of semiconductor device, commonly referred to as rectifiers. They are used for controlling the flow of current, and because of their fast switching speed and small size, are often used in applications such as automotive and industrial power controllers. Specifically, diacs are used to convert alternating current (AC) supplies into steady direct current (DC) supplies that can then be used to drive components such as solenoids and relays. They are solid-state switches that are activated by the presence of a negative or positive impulse.

The working principle of a diode is based upon the fact that electric current will only flow in one direction when a diode is connected to a power source. As the electric current passes through the diode, it is blocked in the opposite direction. This principle is known as the “diode effect” and is used to control the current that is sent through a circuit.

SIDACs, which stands for silicon-controlled rectifiers, are similar to diacs in that they are semiconductor switching devices used for controlling the flow of current. The main difference between the two is that SIDACs are capable of bi-directional current control and are thus able to reduce both high and low voltage levels. The primary advantages of SIDACs include their higher power-handling capabilities and their faster switching speeds.

The working principle of SIDACs is the same as with diacs, but the conduction in SIDACs is determined by both their forward and reverse bias voltages. This means that, unlike diacs, SIDACs can be used as an ON/OFF switch to reverse the direction of current flow. This makes them especially useful in applications that require bi-directional current control, such as AC power relays and autotransformers.

Triacs are similar to both diacs and SIDACs in that they are also semiconductor switching devices used for controlling the flow of current. However, the main difference between the three is that triacs are able to handle significantly larger currents than diacs and SIDACs. This allows them to be used in applications that require a large amount of electric power such as vehicular components, electric motors, and high-powered lighting systems.

The working principle of triacs is based on the fact that electric current is able to flow through both the positive and negative electrodes of the device. This allows them to be used to both turn on and turn off electric current, allowing them to switch current between multiple circuits or to perform a similar function as a contactor. Furthermore, triacs can also be used to provide a variable voltage output in order to optimize the efficiency of power systems.

In conclusion, K2000GRP application field and working principle are important aspects of the AC voltage power transmission relay and autotransformers, and both diacs, SIDACs, and triacs all play significant roles in their implementation. By having a thorough understanding of the various aspects of these components, engineers and technicians can successfully and efficiently design various power systems.

The specific data is subject to PDF, and the above content is for reference

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