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SN65MLVD206D
+NomenclatureIC TRANSCEIVER HALF 1/1 8SOIC
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FabricantTexas Instruments
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Pièce fabricant #SN65MLVD206D
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Package SOIC (D)-8
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En stock5792
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Spécifications
| Attribut | Valeur |
| Package | Bulk,Tube |
| ProductStatus | Active |
| Type | Transceiver |
| Protocol | LVDS, Multipoint |
| NumberofDrivers/Receivers | 1/1 |
| Duplex | Half |
| ReceiverHysteresis | 25 mV |
| DataRate | 200Mbps |
| Voltage-Supply | 3V ~ 3.6V |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) |
Présentation
Description
Key features of the SN65MLVD206D include:
- Differential signaling, which enhances noise immunity and allows for higher data rates.
- Low power consumption, making it suitable for power-sensitive applications.
- Wide temperature range, ensuring reliable operation in harsh environments.
- Integrated fail-safe circuitry to maintain a stable output in the absence of input signals.
- Compatibility with the LVDS standard, allowing easy integration into existing systems.
The transceiver is typically used in point-to-point or multi-point data communication systems such as backplanes, cables, or board-to-board connections. Its compact design and robust performance make it ideal for applications requiring efficient data transfer, such as video conferencing, networking equipment, and industrial automation systems.
Equivalent
1. DS91D176 from Texas Instruments
2. MAX9170 from Maxim Integrated
3. SN65MLVD203B from Texas Instruments
These alternatives are similar in functionality and intended for comparable applications, such as multipoint data transmission systems. Always verify specifications and compatibility before selecting a substitute.
Features
1. Data Rate: Supports high-speed data rates up to 100 Mbps.
2. Differential Signaling: Utilizes M-LVDS for enhanced noise immunity and reduced EMI.
3. Multipoint Capability: Suitable for multipoint bus configurations, allowing multiple nodes to communicate.
4. Wide Supply Voltage Range: Operates with a supply voltage between 3.0V and 3.6V.
5. Low Power Consumption: Designed for efficient power usage, making it suitable for battery-powered applications.
6. Integrated Failsafe: Provides a failsafe feature ensuring a known output state when inputs are open, shorted, or undriven.
7. Temperature Range: Operates over an extended temperature range, typically from -40°C to 85°C.
8. Robust Design: Offers ESD protection and is compliant with industry standards for reliable operation in harsh environments.
9. Package Options: Available in a compact SOIC package for space-constrained applications.
These features make the SN65MLVD206D suitable for industrial, data communication, and telecommunications applications requiring reliable, high-speed, multipoint data transfer.
Pinout
Here is the pin count and basic function description:
1. Pins 1, 8 (GND): Ground pins.
2. Pins 2, 7 (D, DE): Driver input and driver enable. DE enables or disables the driver output.
3. Pins 3, 6 (R, RE): Receiver output and receiver enable. RE enables or disables the receiver output.
4. Pins 4, 5 (A, B): Differential bus pins for M-LVDS signaling.
5. Pins 9, 14 (NC): No Connect; these pins are typically not used.
6. Pins 10, 11 (VCC): Power supply pins.
7. Pins 12, 13 (R, P): Additional receiver outputs.
The SN65MLVD206D is primarily used for high-speed data transmission in networking and telecommunications applications, where it facilitates differential signaling to improve noise immunity and reduce electromagnetic interference.
Manufacturer
Application
1. Telecommunications: For backplane interconnects and line drivers.
2. Industrial Automation: In industrial control systems for robust data transmission.
3. Data Communications: Used in network switches and routers for efficient data transfer.
4. Medical Equipment: For reliable signal communication in imaging and diagnostic devices.
5. Consumer Electronics: In devices requiring efficient communication interfaces.
Its capabilities make it suitable for environments needing reliable, high-speed data transfer with low electromagnetic interference.