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SN65LVDS2DR
+NomenclatureIC TRANSCEIVER 0/1 8SOIC
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FabricantTexas Instruments
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Pièce fabricant #SN65LVDS2DR
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Fiche technique SN65LVDS2DR DataSheet
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En stock2459
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Spécifications
| Attribut | Valeur |
| Series | 65LVDS |
| Part Status | Active |
| Type | Receiver |
| Protocol | LVDS |
| Number of Drivers/Receivers | 0/1 |
| Data Rate | 400Mbps |
| Voltage - Supply | 2.4V ~ 3.6V |
| Operating Temperature | -40°C ~ 85°C |
| Mounting Type | Surface Mount |
| Package / Case | 8-SOIC (0.154", 3.90mm Width) |
| Supplier Device Package | 8-SOIC |
| Base Product Number | 65LVDS2 |
Présentation
Description
Key features of the SN65LVDS2DR include fast switching speeds, typically supporting data rates up to a few hundred megabits per second, and compatibility with the TIA/EIA-644 standard for LVDS. It operates over a wide input-voltage range, providing robust performance under various conditions. The device is housed in a small package that facilitates easy integration into space-constrained designs.
The SN65LVDS2DR is commonly used in applications such as data communication, video signal processing, and any systems requiring reliable high-speed data transfer. Its efficiency and compact design contribute to its suitability for both consumer electronics and industrial applications where high performance and low power are critical.
Equivalent
1. DS90LV001 from Texas Instruments
2. MAX9120 from Maxim Integrated
3. FIN1001 from ON Semiconductor
4. MC100LVEP11 from ON Semiconductor
These alternatives offer similar LVDS line driving capabilities, but it's important to compare specific parameters such as data rate, supply voltage, and package type to ensure compatibility with your application.
Features
1. High Data Rate: Supports data rates up to 400 Mbps, making it suitable for high-speed communication applications.
2. Low Power Consumption: Operates on a 3.3V power supply with a typical power dissipation of less than 30 mW.
3. Low-Voltage Differential Signaling (LVDS): Provides noise immunity and low electromagnetic interference (EMI), enhancing signal integrity over longer distances.
4. Wide Common-Mode Range: Accepts a wide input common-mode voltage range, allowing for flexibility in system design.
5. Failsafe: Incorporates a failsafe mechanism to handle open, shorted, or terminated input conditions without erroneous output.
6. Temperature Range: Operates effectively over an industrial temperature range of -40°C to 85°C.
7. Compact Package: Available in a small footprint package, facilitating integration into space-constrained designs.
These features make the SN65LVDS2DR suitable for various applications, including networking, telecommunications, and data communication systems requiring efficient and reliable high-speed data transfer.
Pinout
The SN65LVDS2DR comes in an 8-pin SOIC (Small Outline Integrated Circuit) package. The pin functions are as follows:
1. VCC (Pin 1): Power supply pin.
2. D (Pin 2): Data input pin. Accepts TTL/CMOS input levels.
3. GND (Pin 3): Ground pin.
4. EN (Pin 4): Enable pin. Controls the output state; active-high.
5. NC (Pin 5): No connection; used for mechanical stability.
6. Y (Pin 6): Non-inverting LVDS output pin.
7. Z (Pin 7): Inverting LVDS output pin.
8. NC (Pin 8): No connection; used for mechanical stability.
This IC is suitable for applications requiring data rate up to 400 Mbps and is used in various communication and networking applications.
Manufacturer
Application
1. Data Communication: Used in high-speed data transfer systems, such as routers and network switches.
2. Telecommunications: Supports high-speed data links in telecom infrastructure.
3. Industrial Systems: Facilitates reliable data transmission in factory automation and process control.
4. Medical Imaging: Ensures precise data transfer in imaging equipment.
5. Consumer Electronics: Used in high-definition displays and audio/video equipment for efficient data exchange.
6. Automotive Systems: Supports infotainment and advanced driver-assistance systems (ADAS) with high-speed data communication.
These applications benefit from the SN65LVDS2DR's ability to handle high data rates with low power consumption and minimal electromagnetic interference.