AKSO-200/G Allicdata Electronics
Allicdata Part #:

AKSO-200/G-ND

Manufacturer Part#:

AKSO-200/G

Price: $ 0.06
Product Category:

Connectors, Interconnects

Manufacturer: ASSMANN WSW Components
Short Description: CONN SHUNT 2MM GOLD/BLACK
More Detail: 2 (1 x 2) Position Shunt Connector Black Open Top ...
DataSheet: AKSO-200/G datasheetAKSO-200/G Datasheet/PDF
Quantity: 1000
10000 +: $ 0.05728
Stock 1000Can Ship Immediately
$ 0.06
Specifications
Series: --
Packaging: Bulk 
Part Status: Active
Type: Open Top
Gender: Female Sockets
Number of Positions or Pins (Grid): 2 (1 x 2)
Pitch: 0.079" (2.00mm)
Height: 0.136" (3.46mm)
Contact Finish: Gold
Contact Finish Thickness: --
Color: Black
Description

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Shunts, Jumpers, and AKSO-200/G application field and working principle are one of the most important components found in circuits. Shunts and Jumpers are elements that can be used to regulate or control the voltage and current levels in a circuit. AKSO-200/G application field and working principle is a powerful tool used in many industrial processes. It can provide a more reliable and precise voltage and current control in a circuit.

The principle of the AKSO-200/G application field and working principle is based on the operation of a shunt regulator. A shunt regulator operates by using a high-speed switch to divert current from its primary circuit and then into a second circuit. This second circuit contains the AC voltage regulator. This switch is operated by the power supply\'s timing cycle.

When the switch is open, the primary circuit will not receive any current. When the switch is closed, the primary circuit will receive current in the regulated voltage and current levels. The exact duration of the switched-period depend on the magnitude and phase of the voltage across the primary. The closed switch is an active node in the secondary circuit, thereby providing the regulated voltage and current levels.

The advantages of using this principle of working are twofold. First, it helps to provide a more accurate control and regulation of the voltage and current levels in a circuit. Also, it helps to reduce the power dissipation in the circuit and thus reduce the amount of heat generated in the process. Additionally, the use of this principle in a circuit helps to reduce the overall size and weight of the circuit.

The AKSO-200/G application field and working principle involves the use of a closed-loop feedback system. This system is composed of three components: the switching circuit, the voltage regulator, and the resistor. The switching circuit is the primary circuit that provide the input to the voltage regulator.

The voltage regulator is the secondary circuit from which the regulated output voltage and current are obtained. The resistor is used to provide a great stability to the voltage regulator as it maintains the voltage at the desired level. The operation of the switched-period depends on the magnitude and phase of the voltage across the resistor.

The closed-loop system monitors the voltage across the primary circuit, and thus changing the current flow through the secondary circuits. The increased current flow in the secondary circuit generates a stronger voltage that is used to maintain the desired voltage level. This increases the stability of the regulated output voltage.

The AKSO-200/G application field and working principle is quite useful in many applications such as controlling the voltage and current of home appliances, controlling the current of DC motors, controlling of AC transformers, and keeping an eye on the DC voltage and current levels in different circuits. It is also widely used in power conditioning systems, telecommunications, and the aviation industry. Furthermore, it has been used in the automobile industry as well.

In conclusion, the AKSO-200/G application field and working principle is an important component for regulating the voltage and current levels in a circuit. It is a powerful tool that helps to provide a more reliable, precise, and stable control of the voltage and current. Additionally, it helps to reduce the power dissipation and the overall size and weight of the circuit.

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

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