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ISO7331CDWR
+StücklisteDGTL ISOLTR 3KV 3CH GP 16-SOIC
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HerstellerTexas Instruments
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Herstellerteil #ISO7331CDWR
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Datenblatt ISO7331CDWR DataSheet
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Spezifikationen
| Attribut | Wert |
| Part Status | Active |
| Technology | Capacitive Coupling |
| Type | General Purpose |
| Isolated Power | No |
| Number of Channels | 3 |
| Inputs - Side 1 / Side 2 | 2/1 |
| Channel Type | Unidirectional |
| Voltage - Isolation | 3000Vrms |
| Common Mode Transient Immunity (Min) | 25kV/µs |
| Data Rate | 25Mbps |
| Propagation Delay tp LH / tp HL (Max) | 58ns, 58ns |
| Pulse Width Distortion (Max) | 4ns |
| Rise / Fall Time (Typ) | 3ns, 2ns |
| Voltage - Supply | 3V ~ 5.5V |
| Operating Temperature | -40°C ~ 125°C |
| Mounting Type | Surface Mount |
| Package / Case | 16-SOIC (0.295", 7.50mm Width) |
| Supplier Device Package | 16-SOIC |
| Base Product Number | ISO7331 |
Übersicht
Description
The device features a wide supply voltage range and high common-mode transient immunity, ensuring robust performance in electrically noisy environments. It is commonly used in applications such as motor control, power inverters, and communication interfaces, where electrical isolation is essential for safety and signal integrity.
The "CDWR" in ISO7331CDWR indicates specific package and temperature options, with "CD" often referring to the package type and "WR" to the temperature range or other specific features. Overall, the ISO7331CDWR is a reliable choice for engineers looking to implement digital signal isolation in their designs.
Equivalent
1. ADuM1310 by Analog Devices
2. Si8631 by Skyworks (formerly Silicon Labs)
3. MAX14931 by Maxim Integrated (now part of Analog Devices)
4. TLP2361 by Toshiba
These alternatives provide similar isolation capabilities and digital signal transmission, but it's crucial to review their specific datasheets to ensure compatibility in terms of electrical characteristics and package type.
Features
1. Isolation: It provides galvanic isolation between different parts of a system, typically up to 3000 V RMS, enhancing safety and noise immunity.
2. Channels: The ISO7331CDWR has multiple channels, generally three, allowing it to isolate several signals simultaneously.
3. Data Rate: It supports high-speed data rates, often up to 25 Mbps, suitable for fast digital communication.
4. Low Power Consumption: It operates with low power requirements, making it energy-efficient.
5. Wide Temperature Range: It functions reliably over an extended temperature range, often from -40°C to 125°C, suitable for various environments.
6. Integrated Noise Filter: Helps reduce signal distortion and maintains signal integrity.
7. Package Type: It is usually available in a small-form-factor package, such as the SOIC-16, which is space-efficient.
These features make the ISO7331CDWR suitable for applications in industrial automation, medical equipment, and other fields requiring robust digital isolation.
Pinout
Here’s a breakdown of the pin functions:
1. VCC1 (Pin 1): Power supply for the input side.
2. IN (Pin 2): Input signal pin.
3. GND1 (Pin 3): Ground for the input side.
4. NC (Pin 4): No internal connection, typically left unconnected.
5. GND2 (Pin 5): Ground for the output side.
6. OUT (Pin 6): Output signal pin.
7. NC (Pin 7): No internal connection, typically left unconnected.
8. VCC2 (Pin 8): Power supply for the output side.
The ISO7331CDWR provides isolation in digital communication, ensuring that signals are transmitted accurately across different voltage domains.
Manufacturer
Application
1. Industrial Automation: Protecting microcontrollers and sensors in automated systems.
2. Power Supply Systems: Isolating control and power sections.
3. Data Communication: Ensuring reliable data transfer in harsh environments.
4. Medical Equipment: Providing patient and operator safety through isolation.
5. Renewable Energy Systems: Enhancing the reliability of inverters and converters.
6. Automotive Systems: Isolating communication buses within vehicles.
These applications benefit from its high-speed communication capability and robust isolation features.