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AM26LS32AIDR
+StücklisteIC RECEIVER 0/4 16SOIC
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HerstellerTexas Instruments
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Herstellerteil #AM26LS32AIDR
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Paket SOIC (D)-16
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Auf Lager1798
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| Type | Receiver |
| Protocol | RS422, RS423 |
| NumberofDrivers/Receivers | 0/4 |
| ReceiverHysteresis | 50 mV |
| Voltage-Supply | 4.75V ~ 5.25V |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 16-SOIC (0.154, 3.90mm Width) |
Übersicht
Description
Key features include:
1. Differential Inputs: It offers improved noise immunity by using differential inputs, making it suitable for environments with electrical interference.
2. Wide Supply Voltage Range: Operates with a supply voltage from 4.75V to 5.25V.
3. High Input Impedance: Ensures minimal loading on the connected transmission line.
4. Common Mode Range: Has a wide common-mode range, allowing for effective operation despite potential differences in ground levels.
5. Temperature Range: Suitable for operation in industrial temperature ranges, typically from -40°C to 85°C.
The AM26LS32AIDR is commonly used in systems requiring robust communication links, such as in industrial control, automotive, and telecommunications applications. Its reliability and compliance with standard logic levels make it a versatile component for various designs.
Equivalent
1. SN65ALS32 by Texas Instruments
2. DS26LS32 by National Semiconductor (now part of Texas Instruments)
3. MC26LS32 by ON Semiconductor
4. MAX9032 by Maxim Integrated
5. HIN26LS32 by Intersil (now part of Renesas)
These alternatives offer similar functionalities and are used in line receiver applications. Always verify the datasheet to ensure compatibility with your specific requirements.
Features
1. Differential Inputs: It supports balanced differential inputs, improving noise immunity and signal integrity over long distances.
2. Wide Supply Voltage Range: It operates on a supply voltage range from 4.5 V to 5.5 V, suitable for standard TTL logic levels.
3. High-Speed Operation: The device can handle data rates up to 10 Mbps, making it suitable for fast communication systems.
4. Failsafe Operation: The AM26LS32AIDR provides a failsafe mechanism, ensuring a known output state when inputs are open, shorted, or terminated.
5. Low Power Consumption: It features low power consumption, which is advantageous for battery-powered or power-sensitive applications.
6. Temperature Range: The device can operate in an industrial temperature range from -40°C to 85°C, making it reliable in harsh environments.
7. TI’s Quality and Reliability: As a Texas Instruments product, it ensures high quality and reliability standards.
8. Integrated Features: The device includes thermal shutdown protection for added safety and protection against over-current conditions.
These features make the AM26LS32AIDR ideal for a wide range of applications in data communication and industrial environments.
Pinout
The device comes in a 16-pin SOIC package. Here is a brief overview of its pin functions:
1. Vcc (Pin 16): Supply Voltage.
2. GND (Pin 8): Ground.
3. A, B, C, D (Pins 2, 5, 10, 13): Non-inverting inputs for each of the four receivers.
4. \(\overline{A}\), \(\overline{B}\), \(\overline{C}\), \(\overline{D}\) (Pins 3, 6, 9, 12): Inverting inputs for each of the four receivers.
5. Y1, Y2, Y3, Y4 (Pins 1, 4, 11, 14): Output pins for each of the four receivers.
6. Enable (Pins 7, 15): Enable inputs, often used to control the output state.
The AM26LS32AIDR offers high noise immunity and wide common-mode range, making it suitable for various industrial and communication applications.
Manufacturer
Application
1. Industrial Automation: For reliable data communication in noisy environments.
2. Telecommunications: In systems requiring balanced signal transmission.
3. Computer Networks: For converting differential to single-ended signals.
4. Instrumentation: Ensures accurate data transfer between sensors and processing units.
5. Military and Aerospace: Where robust and noise-resistant communication is critical.
6. Data Acquisition Systems: For precise data conversion and transfer.
Its ability to handle differential inputs helps in reducing noise and improving signal integrity over long distances.