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5SHX1445H0001 ABB 可控硅整流元件半导体

3BHLO00392P0101可控硅,是可控硅整流元件的简称,是一种具有三个PN结的四层结构的大功率半导体器件,亦称为晶闸管。具有体积小、结构相对简单、功能强等特点,是比较常用的半导体器件之一。该器件被广泛应用于各种电子设备和电子产品中,多用来作可控整流、逆变、变频、调压、无触点开关等。家用电器中的调光灯、调速风扇、空调机、电视机、电冰箱、洗衣机、照相机、组合音响、声光电路、定时控制器、玩具装置、无线电遥控、摄像机及工业控制等都大量使用了可控硅器件。

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产品详情

5SHX1445H0001 ABB 可控硅整流元件半导体

5SHX1445H0001.jpg

3BHLO00392P0101

基本信息

产品编号:3BHL000392P0101

ABB型号名称:5SHX1060H0001

目录说明:5SHX1060H0001;lGCT模块

详细描述:5SHX1060H0001

类别

零件和服务”驱动器_”服务”备件和消耗品”零件


3BHLO00392P0101可控硅,是可控硅整流元件的简称,是一种具有三个PN结的四层结构的大功率半导体器件,亦称为晶闸管。具有体积小、结构相对简单、功能强等特点,是比较常用的半导体器件之一。该器件被广泛应用于各种电子设备和电子产品中,多用来作可控整流、逆变、变频、调压、无触点开关等。家用电器中的调光灯、调速风扇、空调机、电视机、电冰箱、洗衣机、照相机、组合音响、声光电路、定时控制器、玩具装置、无线电遥控、摄像机及工业控制等都大量使用了可控硅器件。

3BHLO00392P0101可控硅在电路中能够实现交流电的无触点控制,以小电流控制大电流,并且不象继电器那样控制时有火花产生,而且动作快、寿命长、可靠性好。在调速、调光、调压、调温以及其他各种控制电路中都有它的身影。

3BHLO00392P0101可控硅胶是硅胶的一种,其具有导热性能好的特点,可以用于制作散热片。

可控硅胶是一种合成高分子材料,其由硅油、硅酮、催化剂等材料混合而成,具有高透光性、高绝缘、耐高温、耐老化的特点,被广泛用于电气绝缘、医疗卫生、体育器材等领域。

此外,可控硅胶还可以用于制作散热硅胶片,其具有高透光性、高绝缘、耐高温、耐老化的特点,可以用于电子元件的散热。

可控硅胶的应用领域包括但不限于以下几个方面:

电力控制领域 。可控硅胶调节技术可以用于工业自动化控制。

能源控制领域 。可控硅胶调节技术可以用于变压器无载调节电路。

无线电、电机、电讯工业 。可控硅胶调节技术可以用于电视机和示波器中高压帽等。

航空工业 。可控硅胶调节技术可以用于燃油润滑油等。

医疗事业 。可控硅胶调节技术可以用于各种硅胶管、导管、引流管等。

一、什么是晶闸管?

晶闸管是一种由硅制成的单向半导体器件,基本上晶闸管(SCR)是一种三端子四层半导体器件,由交替的P型和N型材料组成。

晶闸管具有三个pn结J1、J 2和J 3,下图显示了具有pnpn层的晶闸管。晶闸管具有端子阳极(A)、阴极(K)和栅极G),栅极端子(G)连接到靠近阴极(K)端子的p层。

二、晶闸管就像两个晶体管

晶体管四层像两个晶体管一样工作,它们连接在一起(如下图所示),一个的输出形成另一个的输入,门作为一种“启动马达”来激活它们。

单个晶闸管(SCR)是一个pnp晶体管(Q1)和一个npn晶体管(Q2)的组合。这里,Q1的发射极作为SCR的阳极端子,而Q2的发射极是它的阴极。另外,Q1的基极与Q2的集电极连接,Q1的集电极与Q的基极连接,晶闸管的栅极端子也连接到Q2的基极。

5SHX1445H0001 ABB 可控硅整流元件半导体

5SHX1445H0001.jpg

3BHLO00392P0101

Basic information

Product number :3BHL000392P0101

ABB model name :5SHX1060H0001

Directory description :5SHX1060H0001; lGCT module

Details :5SHX1060H0001

category

Parts and Services "Drive _" Service "Spare Parts and consumables" parts


3BHLO00392P0101 thyristor, is short for thyristor rectifier, is a high-power semiconductor device with three PN junction four-layer structure, also known as thyristor. It has the characteristics of small size, relatively simple structure and strong function, and is one of the most commonly used semiconductor devices. The device is widely used in various electronic equipment and electronic products, mostly used for controlled rectification, inverter, frequency conversion, voltage regulation, contactless switch and so on. Thyristor devices are widely used in household appliances such as dimming lights, speed regulating fans, air conditioners, TV sets, refrigerators, washing machines, cameras, combined audio, acousto-optic circuits, timing controllers, toy devices, radio remote control, cameras and industrial controls.

3BHLO00392P0101 thyristor in the circuit can achieve AC contactless control, control large current with small current, and unlike the relay control spark generation, and fast action, long life, good reliability. It is used in speed regulation, dimming, voltage regulation, temperature regulation and other control circuits.

3BHLO00392P0101 Controllable silica gel is a kind of silica gel, which has good thermal conductivity characteristics and can be used to make heat sink.

Controllable silica gel is a kind of synthetic polymer material, which is mixed by silicone oil, silicone, catalyst and other materials. It has the characteristics of high light transmittance, high insulation, high temperature resistance and aging resistance, and is widely used in electrical insulation, medical health, sports equipment and other fields.

In addition, controllable silicone can also be used to make cooling silicone sheets, which have the characteristics of high light transmission, high insulation, high temperature resistance, aging resistance, and can be used for heat dissipation of electronic components.

The application fields of controllable silica gel include but are not limited to the following aspects:

Power control field. Controllable silica gel adjustment technology can be used for industrial automation control.

The field of energy control. Controllable silica gel regulation technology can be used in transformer no-load regulation circuit.

Radio, electrical and telecommunications industries. Controllable silica gel adjustment technology can be used for high voltage caps in TV sets and oscilloscopes.

The aviation industry. Controllable silicone adjustment technology can be used for fuel oil lubricants.

The medical profession. The controllable silicone adjusting technology can be used for various silicone tubes, catheters, drainage tubes, etc.

What is a thyristor?

A thyristor is a unidirectional semiconductor device made of silicon, basically a thyristor (SCR) is a three-terminal, four-layer semiconductor device consisting of alternating P-type and N-type materials.

The thyristor has three pn junctions J1, J2 and J3, and the figure below shows a thyristor with a pnpn layer. The thyristor has A terminal anode (A), a cathode (K), and a gate G), and the gate terminal (G) is connected to a p layer near the cathode (K) terminal.

Second, a thyristor is like two transistors

The transistor four layers work like two transistors, they are connected together (as shown below), the output of one forms the input of the other, and the gate acts as a kind of "starter motor" to activate them.

A single thyristor (SCR) is a combination of a pnp transistor (Q1) and an npn transistor (Q2). Here, Q1's emitter acts as the anode terminal of the SCR, while Q2's emitter acts as its cathode. In addition, the base of Q1 is connected to the collector of Q2, the collector of Q1 is connected to the base of Q, and the gate terminal of the thyristor is also connected to the base of Q2.

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