AM26LV32EMDREP
The AM26LV32EMDREP is a high-quality quad receiver designed for RS-422 communication in a 16-pin SOIC packageAM26LV32EMDREP
The AM26LV32EMDREP is a high-quality quad receiver designed for RS-422 communication in a 16-pin SOIC package
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Manufacturer Part # : AM26LV32EMDREP
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Package/Case: SOIC (D)-16
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Brand: Texas Instruments
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Product Categories : Drivers, Receivers, Transceivers
Quality Assurance
Quality Assurance
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Certification
We have successfully obtained various certification standards and have established our own professional testing laboratory. This ensures that every product we supply to our customers meets the highest quality standards. We adhere to strict testing protocols to maintain the consistency and accuracy of our products. To ensure that our products are original and genuine, we also collaborate with reputable third-party testing facilities to conduct rigorous quality testing. Our commitment to quality extends to meeting industry, legal, regulatory, and ISO 9001:2015 requirements.
Shipping & Payment
Shipping & Payment
About Shipping
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Service & Packaging
Service & Packaging
About After Sales Service
All Parts Extended Quality Guarantee
Initiate the application within 90 days from the shipment date.
Confirm the return or exchange with our staff.
Maintain the goods in their original condition as received.
Lastly, please note that the eligibility for return or exchange of goods is subject to an assessment of the actual condition of the returned items. We will evaluate the received goods before finalizing the return or exchange process. If you have any inquiries or require further assistance regarding returns or exchanges, please don't hesitate to contact us at [email protected]
About packaging
Regarding packaging, our products are carefully packed in anti-static bags to provide ESD anti-static protection. The outer packaging is durable with secure closure. We support various packaging methods such as Tape and Reel, Cut Tape, Tube, or Tray.
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AM26LV32EMDREP DataSheet
Current price plan is under preparation. Please contact our customer service team for the latest pricing information. Thank you for your understanding and support!
Details
The AM26LV32EMDREP is a part of the AM26LV32xx-Q1 family of devices, offering a quadruple differential line receiver specifically designed for automotive applications. With an extended common-mode range and a wide common-mode voltage range of +/-7V, it is well-suited for use in noisy industrial environments. The receiver features high-speed operation, a typical propagation delay of 1.2ns, and a maximum data rate of 20Mbps, making it suitable for high-speed data transmission applications. Its wide operating temperature range of -40°C to +125°C allows it to be used in extreme environments, while its compatibility with both TTL and CMOS logic levels makes it versatile and easy to integrate into existing systems. Additionally, with a low power consumption of only 20mW per channel, the AM26LV32EMDREP is an energy-efficient solution for demanding automotive applications
Key Features
- Fast Data Transfer Rate
- Compact Package Solution
- Economical Benefits
- Improved Performance
- Reliable Operation
Application
- Compact and versatile
- Easy to integrate
- Cost-effective solution
Specifications
The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.
Number of receivers | 4 | Number of transmitters | 0 |
Duplex | Half | Supply voltage (nom) (V) | 3.3 |
Signaling rate (max) (MBits) | 32 | IEC 61000-4-2 contact (±V) | 8000 |
Fault protection (V) | -14 to 14 | Common-mode range (V) | -7 to 7 |
Number of nodes | 32 | Features | IEC ESD protection |
Isolated | No | Supply current (max) (µA) | 17000 |
Rating | HiRel Enhanced Product | Operating temperature range (°C) | -55 to 125 |
Specification Comparison
FAQs
What is AM26LV32EMDREP?
The AM26LV32EMDREP is a quad differential line receiver designed by Texas Instruments. It is specifically designed for use in balanced data transmission applications, providing high-speed, low-power operation in industrial and communication systems.
How Does AM26LV32EMDREP Work?
The AM26LV32EMDREP works by receiving and converting differential signals into single-ended outputs for further processing. It features internal protection against overvoltage transients and provides reliable data reception in noisy environments. The device operates with a wide common-mode input voltage range, making it suitable for various communication interfaces.
How Many Pins does AM26LV32EMDREP have and What are the Functions of the Pinout Configuration?
The AM26LV32EMDREP is housed in a 16-pin SOIC (Small Outline Integrated Circuit) package. The pinout configuration includes:
- VCC: Power supply pin.
- GND: Ground pin.
- IN1, IN2, IN3, IN4: Differential input pins for each channel.
- OUT1, OUT2, OUT3, OUT4: Single-ended output pins for each channel.
- EN1, EN2, EN3, EN4: Enable pins for each channel.
What are the Pros and Cons of AM26LV32EMDREP?
Pros:
- High-Speed Operation: Supports high-speed data transmission for demanding applications.
- Low Power Consumption: Operates with low power consumption, suitable for energy-efficient designs.
- Overvoltage Protection: Includes internal protection against overvoltage transients, enhancing system reliability.
- Wide Common-Mode Range: Accommodates a wide range of input voltages for versatile use.
- Quad Configuration: Provides four channels in a single package for space-saving and efficient system design.
Cons:
- Complexity: May require careful PCB layout and noise considerations for optimal performance.
- Temperature Sensitivity: Performance may be affected by temperature variations in extreme operating conditions.
- Input Signal Requirements: Differential input signals are needed for proper operation, which may require additional circuitry in some applications.
Are There Any Equivalents/Alternatives to AM26LV32EMDREP for Recommendation?
- Similar components to the AM26LV32EMDREP include the SN65LVDS152 from Texas Instruments and the DS90LV032ATM from Maxim Integrated.
- Alternatives to consider are the AM26LV32E from Texas Instruments and the SN65LVDS179 from Texas Instruments.
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