EL3H4(A)(TA)-VG

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EL3H4(A)(TA)-VG

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OPTOISO 3.75KV 1CH TRANS 4-SSOP

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  • メーカー品番 #EL3H4(A)(TA)-VG

  • データシート EL3H4(A)(TA)-VG DataSheet

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仕様

属性 値
Part Status Active
Number of Channels 1
Voltage - Isolation 3750Vrms
Current Transfer Ratio (Min) 50% @ 1mA
Current Transfer Ratio (Max) 150% @ 1mA
Rise / Fall Time (Typ) 6µs, 8µs
Input Type AC, DC
Output Type Transistor
Voltage - Output (Max) 80V
Voltage - Forward (Vf) (Typ) 1.2V
Current - DC Forward (If) (Max) 50 mA
Vce Saturation (Max) 200mV
Operating Temperature -55°C ~ 100°C
Mounting Type Surface Mount
Package / Case 4-SOIC (0.173", 4.40mm Width)
Supplier Device Package 4-SSOP
Base Product Number EL3H4

概要

Description

"Introduction to EL3H4(A)(TA)-VG" appears to be a specific course or module code, possibly from a specialized curriculum or institution. Without specific context, it's challenging to determine its exact content. However, we can infer potential elements based on typical academic course structures:
1. Course Title: The letters and numbers might denote a unique course identifier used by an educational institution. "EL" could suggest a focus area, such as English Literature, Electrical Engineering, etc.
2. Level and Type: Numbers like "3H4" could indicate the year or level of study, possibly undergraduate or postgraduate.
3. Section or Variant: "(A)(TA)" might refer to sections (like A vs. B) and teaching assistant involvement.
4. Specialization: "VG" might indicate a specialization or specific focus area within the course, such as "Video Games" or another domain.
For specific content, one would typically review the course syllabus which outlines objectives, topics covered, required materials, assignments, and evaluation methods. For precise details, consult the institution offering the course.

Equivalent

The EL3H4(A)(TA)-VG chip is not widely recognized, so identifying direct equivalents can be challenging. However, if it is a specific type of microcontroller, memory chip, or logic device, you might consider checking major manufacturers like Microchip, Texas Instruments, or STMicroelectronics for comparable products. Ensure to match specifications such as pin count, voltage, and functionality. For precise equivalency, consult a datasheet or distributor like Digi-Key or Mouser.

Pinout

The EL3H4(A)(TA)-VG is a phototransistor photocoupler, also known as an optocoupler or optoisolator, produced by Toshiba. This device is used to transfer electrical signals using light waves to provide isolation between its input and output.
The EL3H4(A)(TA)-VG typically comes in a 4-pin configuration, which includes the following functions:
1. Anode (LED): Connects to the positive voltage supply to power the internal LED.
2. Cathode (LED): Connects to the ground or negative voltage supply, completing the LED circuit.
3. Collector (Phototransistor): Acts as the output terminal connected to the load or subsequent electronic stage.
4. Emitter (Phototransistor): Connected to the ground or common line, completing the phototransistor circuit.
These pins enable the device to provide electrical isolation while allowing signal transmission from one part of a circuit to another, useful in applications like power supply regulation, signal processing, and microcontroller interfacing.

Manufacturer

The EL3H4(A)(TA)-VG is manufactured by Everlight Electronics Co., Ltd. Everlight Electronics is a Taiwanese company that specializes in the production of optoelectronic components. Founded in 1983, the company has grown to become one of the leading providers in the field, offering a wide range of products including LEDs, infrared components, optocouplers, and other lighting solutions. Everlight is known for its focus on innovation and quality, catering to various industries such as automotive, consumer electronics, telecommunications, and industrial automation. The company is committed to delivering energy-efficient and environmentally friendly products, continuously expanding its portfolio to meet the evolving needs of the global market.

Application

EL3H4(A)(TA)-VG is not a widely recognized term or model, so I can only provide a speculative response based on a general understanding of similar designations. If this refers to a specific technical component, model, or product, potential application areas could include electronics, telecommunications, automotive systems, industrial automation, or specialized equipment. These types of components or systems are typically employed in sectors requiring high reliability and advanced technology. For precise applications, consulting the manufacturer's documentation or technical specifications would be essential.

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