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ADM485JN
IC TRANSCEIVER HALF 1/1 8PDIP
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規格
| Part Status | Obsolete |
| Type | Transceiver |
| Protocol | RS422, RS485 |
| Number of Drivers/Receivers | 1/1 |
| Duplex | Half |
| Receiver Hysteresis | 70 mV |
| Data Rate | 5Mbps |
| Voltage - Supply | 4.75V ~ 5.25V |
| Operating Temperature | 0°C ~ 70°C |
| Mounting Type | Through Hole |
| Package / Case | 8-DIP (0.300", 7.62mm) |
| Supplier Device Package | 8-PDIP |
| Base Product Number | ADM485 |
概述
Description
ADM485JN likely refers to a specific module or course in a particular curriculum or a technical component like a chip or device, given its naming convention. However, without additional context, it's challenging to pinpoint its exact nature. If it's an academic course, it might cover advanced topics in a specialized field, possibly involving technical or engineering concepts. On the other hand, if it's a component or device, ADM485JN could pertain to electronics, possibly related to data transmission or communication protocols, given the common use of "ADM" in analog devices and "485" in RS-485 communication standards.
For a concise introduction, you should refer to the specific documentation or syllabus provided by the institution or manufacturer offering ADM485JN. This will offer detailed insights into its objectives, structure, and applications. If you can provide more context, I can offer a more precise summary.
For a concise introduction, you should refer to the specific documentation or syllabus provided by the institution or manufacturer offering ADM485JN. This will offer detailed insights into its objectives, structure, and applications. If you can provide more context, I can offer a more precise summary.
Features
The ADM485JN is an integrated circuit designed for communication applications, primarily used in RS-485 and RS-422 data transmission systems. Below are its key features:
1. High Data Rate: Supports data transmission rates up to 5 Mbps, making it suitable for high-speed communication requirements.
2. Full Duplex Communication: Offers full duplex functionality, allowing simultaneous two-way data transmission.
3. Wide Operating Voltage: Operates on a single 5V power supply, providing flexibility for various applications.
4. Low Power Consumption: Features low power requirements, which is advantageous for energy-efficient designs.
5. Enhanced Noise Immunity: Equipped with differential signaling to improve noise immunity, ensuring reliable data transmission in noisy environments.
6. Fail-Safe Receiver Inputs: Includes fail-safe mechanisms that ensure the receiver outputs a known state when inputs are open, shorted, or terminated but undriven.
7. High Receiver Input Resistance: Provides a high input impedance of 12 kΩ, supporting up to 128 transceivers on the bus.
8. Thermal Shutdown Protection: Integrates thermal shutdown protection to safeguard against overheating.
9. ESD Protection: Offers robust ESD protection on bus pins, enhancing durability and reliability.
10. Package: Available in an 8-pin narrow SOIC package for ease of integration into circuit designs.
These features make the ADM485JN suitable for industrial automation, building management systems, and other applications requiring robust and efficient data communication.
1. High Data Rate: Supports data transmission rates up to 5 Mbps, making it suitable for high-speed communication requirements.
2. Full Duplex Communication: Offers full duplex functionality, allowing simultaneous two-way data transmission.
3. Wide Operating Voltage: Operates on a single 5V power supply, providing flexibility for various applications.
4. Low Power Consumption: Features low power requirements, which is advantageous for energy-efficient designs.
5. Enhanced Noise Immunity: Equipped with differential signaling to improve noise immunity, ensuring reliable data transmission in noisy environments.
6. Fail-Safe Receiver Inputs: Includes fail-safe mechanisms that ensure the receiver outputs a known state when inputs are open, shorted, or terminated but undriven.
7. High Receiver Input Resistance: Provides a high input impedance of 12 kΩ, supporting up to 128 transceivers on the bus.
8. Thermal Shutdown Protection: Integrates thermal shutdown protection to safeguard against overheating.
9. ESD Protection: Offers robust ESD protection on bus pins, enhancing durability and reliability.
10. Package: Available in an 8-pin narrow SOIC package for ease of integration into circuit designs.
These features make the ADM485JN suitable for industrial automation, building management systems, and other applications requiring robust and efficient data communication.
Package
The ADM485JN is available in an 8-lead, narrow-body SOIC (Small Outline Integrated Circuit) package.
Pinout
The ADM485JN is an RS-485/RS-422 transceiver IC manufactured by Analog Devices. It typically comes in an 8-pin DIP (Dual In-line Package) configuration. The pin functions are as follows:
1. RO (Receiver Output): This pin provides the output for the receiver.
2. RE (Receiver Enable): An active-low input that enables the receiver when low.
3. DE (Driver Enable): An active-high input that enables the driver when high.
4. DI (Driver Input): The data input pin for the driver.
5. GND (Ground): Ground reference for the IC.
6. A/Y (Non-inverting Driver Output or Receiver Input): Acts as the non-inverting driver output or receiver input.
7. B/Z (Inverting Driver Output or Receiver Input): Acts as the inverting driver output or receiver input.
8. Vcc (Positive Supply Voltage): Supply voltage for the IC.
The ADM485JN is designed for high-speed communication over long distances in noisy environments, supporting data rates up to 5 Mbps. It is suitable for industrial automation, process control, and other applications requiring robust serial communication.
1. RO (Receiver Output): This pin provides the output for the receiver.
2. RE (Receiver Enable): An active-low input that enables the receiver when low.
3. DE (Driver Enable): An active-high input that enables the driver when high.
4. DI (Driver Input): The data input pin for the driver.
5. GND (Ground): Ground reference for the IC.
6. A/Y (Non-inverting Driver Output or Receiver Input): Acts as the non-inverting driver output or receiver input.
7. B/Z (Inverting Driver Output or Receiver Input): Acts as the inverting driver output or receiver input.
8. Vcc (Positive Supply Voltage): Supply voltage for the IC.
The ADM485JN is designed for high-speed communication over long distances in noisy environments, supporting data rates up to 5 Mbps. It is suitable for industrial automation, process control, and other applications requiring robust serial communication.
Manufacturer
The ADM485JN is manufactured by Analog Devices, Inc. Analog Devices is a multinational semiconductor company that specializes in the design and manufacturing of analog, mixed-signal, and digital signal processing (DSP) integrated circuits (ICs). The company serves a broad range of industries including communications, automotive, industrial, healthcare, and consumer electronics, providing solutions for data conversion, amplifiers, power management, radio frequency (RF) and microwave, and signal processing applications.
Application
The ADM485JN is a low power, differential line transceiver designed for multipoint communication on a single bus transmission line. It is commonly used in RS-485 or RS-422 applications, which include industrial automation, building management systems, and network communication. The device supports data rates up to 5 Mbps and is suitable for applications requiring long-distance data transmission and high noise immunity. Its robust design makes it ideal for harsh environments, such as those found in industrial and commercial settings.
Equivalent
The ADM485JN is a low power RS-485/RS-422 transceiver. Equivalent products include:
1. MAX485 by Maxim Integrated
2. SN75176 by Texas Instruments
3. SP485 by Sipex (now part of MaxLinear)
4. LTC485 by Linear Technology (now part of Analog Devices)
5. ST485 by STMicroelectronics
These chips have similar functionalities and can often be used interchangeably in designs, but always verify specific requirements such as speed, power, and package compatibility.
1. MAX485 by Maxim Integrated
2. SN75176 by Texas Instruments
3. SP485 by Sipex (now part of MaxLinear)
4. LTC485 by Linear Technology (now part of Analog Devices)
5. ST485 by STMicroelectronics
These chips have similar functionalities and can often be used interchangeably in designs, but always verify specific requirements such as speed, power, and package compatibility.
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