Tampilkan postingan dengan label SCR. Tampilkan semua postingan
Tampilkan postingan dengan label SCR. Tampilkan semua postingan

Jumat, 15 Juli 2011

SCR




A rudimentary test of SCR function, or at least terminal identification, may be performed with an ohmmeter. Because the internal connection between gate and cathode is a single PN junction, a meter should indicate continuity between these terminals with the red test lead on the gate and the black test lead on the cathode like this.

All other continuity measurements performed on an SCR will show "open" ("OL" on some digital multimeter displays). It must be understood that this test is very crude and does not constitute a comprehensive assessment of the SCR. It is possible for an SCR to give good ohmmeter indications and still be defective. Ultimately, the only way to test an SCR is to subject it to a load current.

If you are using a multimeter with a "diode check" function, the gate-to-cathode junction voltage indication you get may or may not correspond to what's expected of a silicon PN junction (approximately 0.7 volts). In some cases, you will read a much lower junction voltage: mere hundredths of a volt. This is due to an internal resistor connected between the gate and cathode incorporated within some SCRs. This resistor is added to make the SCR less susceptible to false triggering by spurious voltage spikes, from circuit "noise" or from static electric discharge. In other words, having a resistor connected across the gate-cathode junction requires that a strong triggering signal (substantial current) be applied to latch the SCR. This feature is often found in larger SCRs, not on small SCRs. Bear in mind that an SCR with an internal resistor connected between gate and cathode will indicate continuity in both directions between those two terminals

If an SCR's gate is left floating (disconnected), it behaves exactly as a Shockley diode. It may be latched by breakover voltage or by exceeding the critical rate of voltage rise between anode and cathode, just as with the Shockley diode. Dropout is accomplished by reducing current until one or both internal transistors fall into cutoff mode, also like the Shockley diode. However, because the gate terminal connects directly to the base of the lower transistor, it may be used as an alternative means to latch the SCR. By applying a small voltage between gate and cathode, the lower transistor will be forced on by the resulting base current, which will cause the upper transistor to conduct, which then supplies the lower transistor's base with current so that it no longer needs to be activated by a gate voltage. The necessary gate current to initiate latch-up, of course, will be much lower than the current through the SCR from cathode to anode, so the SCR does achieve a measure of amplification.

This method of securing SCR conduction is called triggering, and it is by far the most common way that SCRs are latched in actual practice. In fact, SCRs are usually chosen so that their breakover voltage is far beyond the greatest voltage expected to be experienced from the power source, so that it can be turned on only by an intentional voltage pulse applied to the gate.
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Sabtu, 17 Oktober 2009

diode, zener, Schottky, Rectifier, varicap, SCR, photodioda


Diode is the active component has two channels (termionik diode may have a third channel for heating). Diodes have two active electrodes where signals can flow, and most of the diodes used for one-way characteristics possessed. Diode varicap (Variable Capacitor / condenser variable) is used as a voltage controlled condenser.
Diode Zener diodes are made so that current can flow in the opposite direction if the applied voltage exceeds the limit "broken voltage (breakdown voltage) or" Zener voltage ". A zener diode is fed-back will show the damage that uncontrolled behavior and will miss the current electricity to keep the voltage down to keep the zener voltage.
Diode-tunnel is perfect conductor if a large voltage rated. diodes are made with high impurity-called tunnel diodes. The advantages possessed by the tunnel diode is a cheap, low noise, simple,
high-speed, immune to the environment, and low power. Weakness-tunnel diode is the difference between low-output voltage and only is a component of two-terminal. The latter caused no isolation input-output, thus causing difficulties in circuit design.
phototransistor / photodioda is one sensor that converts light intensity into electrical energy, the greater the radiance received by a photo transistor, the greater the energy that will be accepted. phototransistor or photodioda have a good response in the central region, a 100% response and the response will be half if they are in the 45-degree angle from the center.
SCR (stands for Silicon Control Rectifier). The diode is a function as a controller. SCR or Tyristor still including semiconductor families with similar characteristics thiratron tube. As the controller is the gate (G). SCR often called Therystor. SCR actually of mixed materials P and N. The contents consist of SCR PNPN (Positive Negative Positive Negative) and is usually called PNPN Trioda.
Rectifier : Rectifier current function as a rectifier (AC to DC). Rectifier usually known as a diode for rectifier current is the basic function of the diode, but more specifically a function of the rectifier.
Bridge Rectifier : Consists of four rectifier connected to each other (to form a box formation). Bridge rectifier rectify current (AC to DC) with more efficiently.
Variable Capacitance Diodes also called varicap diode or varactor diodes. The nature of this diode is when paired according to the upside will act as a condenser. Capacitance depends on the incoming voltage. Diodes of this type are widely used in FM modulator and also on the VCO a PLL (Phase Lock Loop).
Schottky diode is a special type of diode with low voltage. When current flows through the diode will be detained by the internal resistance, which causes a small voltage at the diode terminals. Normal diode between 0.7-1.7 volts, while the Schottky diode voltage approximately between 0.15-0.45 volts. Schottky diodes using metal-semiconductor junction as a Schottky barrier (of a semiconductor-semiconductor junction as in conventional diodes). Schottky barrier is produced by the contact time is very fast and low voltage. Differences pn and Schottky diodes are of the reverse recovery time, when switching from state to state does not conduct and conduct contrary. Where in the pn diode recovery time can be of the order through hundreds of nano-seconds and less than 100 nano-seconds for fast diode.

READ MORE - diode, zener, Schottky, Rectifier, varicap, SCR, photodioda