Absolute Maximum Ratings (TA = 25°C unless otherwise noted). Stresses exceeding the absolute maximum ratings may damage the device. The device may. MOC is a Zero-Crossing TRIAC driven Optocoupler or Optoisolator. Note: More details can be found at the MOC datasheet which is. MOC Datasheet, MOC 6 Pin Transistor Datasheet, buy MOC
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A simple circuit diagram in which an AC bulb is controlled using a microcontroller is shown below. Licensee agrees that the delivery of any Software does not constitute a sale and the Software is only licensed.
MOC3021 – MOC3021 6 Pin Transistor Datasheet
So if you are looking for a opto-isolator to control a AC application through DC then IC might be the right choice for you. Subject to the foregoing, this Agreement shall be binding upon and inure to the benefit of the parties, their successors and assigns.
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They are normally connected to another power switch like a Triac in our case, this TRIAC will be able to provide enough current to drive the loads and will be controlled using the opto-coupler. Since the output is controlled we can control the intensity of the light or the speed of a AC motor.
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TL — Programmable Reference Voltage. Submitted by admin on 20 May These devices contain a GaAs infrared emitting diode and a light activated silicon bilateral switch, which functions like a triac.
So we can change 9V in one micro second. Also since it has zero-crossing ability, when the AC load is switched on for the first time the TRIAC will start conductiong only after the AC wave reaches 0C this way we can avoid direct peak voltages to the Load and thus preventing it from getting damaged.
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MOC Technical Data
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They are designed for interfacing between electronic controls and power triacs to control resistive and inductive loads for V AC operations. Your request has been submitted for approval. Log into MyON to proceed. Request for this document already exists and is waiting for approval.
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Either way the normally an opto-coupler will not be allowed to drive loads directly due to its limited current rating. This switching speed depends in the amplitude of voltage that is being controlled by the TRIAC and the operating ambient temperature.
The term of this agreement is perpetual unless terminated by ON Semiconductor as set forth herein. Please allow business days for a response. Since the output is driven by a TRIAC we can drive loads upto V and the triac can conduct in both directions hence controlling AC loads will not be a problem. For example at 30 degree Celsius of ambient temperature the rate of change of voltage with respect to time will be 9V per unit time, where unit time is uS.
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