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AM26LV32CDR
+BOMIC RECEIVER 0/4 16SOIC
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Nhà sản xuấtTexas Dụng cụ
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Ông. Phần #AM26LV32CDR
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Gói SOIC (D)-16
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Có sẵn3036
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Thông số kỹ thuật
| thuộc tính | Giá trị |
| Package | Tape & Reel (TR),Cut Tape (CT),Bulk |
| ProductStatus | Active |
| Type | Receiver |
| Protocol | RS422, RS485 |
| NumberofDrivers/Receivers | 0/4 |
| ReceiverHysteresis | 50 mV |
| Voltage-Supply | 3V ~ 3.6V |
| OperatingTemperature | 0°C ~ 70°C |
| MountingType | Surface Mount |
| Package/Case | 16-SOIC (0.154, 3.90mm Width) |
Tổng quan
Description
Key features include high input impedance, which reduces the load on connected data lines, and the ability to handle a wide range of input voltages, enhancing its compatibility with various systems. The AM26LV32CDR has a fail-safe design that ensures a stable output when the input is open, shorted, or terminated, providing reliable performance in noisy environments.
The receiver has a fast response time and can handle data rates up to 32 Mbps, making it ideal for systems that require rapid data transmission. Additionally, it comes in a compact SOIC package, which saves space on circuit boards. The AM26LV32CDR is commonly used in communications, industrial, and computer systems for robust and efficient data processing.
Equivalent
1. SN65LBC176 from Texas Instruments
2. MAX1487 from Maxim Integrated
3. DS8921 from National Semiconductor
4. MC3486 from ON Semiconductor
5. ISL3180 from Intersil
These alternatives offer similar functionalities, such as low-voltage operation, compatibility with RS-422/RS-485 standards, and multiple differential receivers, but it is important to verify specifications for compatibility with your specific application.
Features
1. Low Voltage Operation: Operates with a supply voltage of 3.3V, which is suitable for low-power applications.
2. High Speed: Capable of handling data rates up to 32 Mbps, making it suitable for high-speed communication systems.
3. Differential Inputs: Supports differential signaling, which enhances noise immunity and improves signal integrity over long distances.
4. Wide Common Mode Range: Offers a wide common-mode voltage range, allowing for reliable operation in environments with electrical noise.
5. ESD Protection: Includes electrostatic discharge protection to ensure durability and reliability in sensitive environments.
6. Tri-State Outputs: Features tri-state outputs, enabling the device to connect multiple receivers on a single bus without interference.
7. Low Power Dissipation: Designed for minimal power consumption, reducing heat generation and improving efficiency.
8. Industry Standard Compatibility: Compatible with standard RS-422 and RS-485 protocols, allowing easy integration into existing systems.
These features make the AM26LV32CDR ideal for applications in telecommunications, industrial automation, and data communication systems.
Pinout
Key features of the AM26LV32CDR include:
- Four independent differential line receivers.
- Operates with a supply voltage range of 3.0V to 3.6V.
- Compatible with ANSI TIA/EIA-422-B and ITU Recommendation V.11.
- High input impedance due to its CMOS technology.
- Tri-state outputs for direct bus interface capabilities.
- Designed to minimize power dissipation without sacrificing performance.
The device is available in a small-outline package (SOIC) which is suitable for space-constrained applications.
Manufacturer
Application
1. Data Communication Systems: Utilized for reliable signal reception in RS-422 and RS-485 communication networks.
2. Industrial Automation: Suitable for robust communication in factory automation and process control systems.
3. Automotive Electronics: Employed in vehicle communication systems for stable data transfer.
4. Telecommunications: Used in network infrastructure for efficient data handling.
5. Computer Peripherals: Facilitates communication between computer systems and peripheral devices.
6. Instrumentation: Ensures accurate data acquisition in measurement and test equipment.
These applications leverage the chip's ability to handle high data rates while maintaining signal integrity over long distances.