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DS90LV001TLD
+NomenclatureIC REDRIVER LVDS 1CH 8WSON
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FabricantTexas Instruments
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Pièce fabricant #DS90LV001TLD
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Package WFDFN-8
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En stock4576
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Spécifications
| Attribut | Valeur |
| Package | Tape & Reel (TR),Cut Tape (CT),Bulk |
| ProductStatus | Not For New Designs |
| Type | Buffer, ReDriver |
| Applications | LVDS |
| Input | CML, LVDS, LVPECL |
| Output | LVDS |
| DataRate(Max) | 800Mbps |
| NumberofChannels | 1 |
| DelayTime | 1.4ns |
| Voltage-Supply | 3V ~ 3.6V |
| Current-Supply | 47mA |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 8-WFDFN Exposed Pad |
Présentation
Description
This chip supports data rates up to 800 Mbps, making it suitable for high-speed applications such as telecommunications, networking, and video systems. The DS90LV001TLD operates over a wide power supply range and is designed to drive low-swing differential signals over controlled-impedance transmission lines, making it an ideal choice for minimizing signal integrity issues.
The device is housed in a small footprint package, often featuring a lead-free, RoHS-compliant design. It includes features like power-down mode, enhanced ESD protection, and an extended temperature range, which contribute to its robustness and versatility. Overall, the DS90LV001TLD is a reliable choice for designs requiring fast, efficient data communication with minimal power usage and electromagnetic interference.
Equivalent
1. SN65LVDS100 by Texas Instruments
2. MC100LVEP16 by ON Semiconductor
3. MAX9120 by Maxim Integrated
4. FIN1002 by Fairchild Semiconductor
These alternatives perform similar functions, but it's essential to check the specific datasheets and compatibility to ensure they meet your requirements.
Features
1. Data Rate: Supports data rates up to 800 Mbps, making it suitable for high-speed data transmission.
2. Low Power Consumption: Designed for minimal power usage, typically consuming around 20 mW.
3. Input Tolerance: Provides a wide common-mode range and input threshold adjustment for signal integrity.
4. Output Drive: Capable of driving standard LVDS loads, facilitating seamless integration with LVDS systems.
5. Package: Available in a small, 6-pin Leadless Leadframe Package (LLP) for space-constrained applications.
6. Temperature Range: Supports operation over a wide temperature range, from -40°C to +85°C, ensuring reliability in various environments.
7. Applications: Suitable for use in data communication systems, clock distribution networks, and as a buffer in signal routing.
These features make the DS90LV001TLD an ideal choice for applications requiring efficient, high-speed signal transmission with low power consumption.
Pinout
1. Differential Signaling: The DS90LV001TLD supports Low Voltage Differential Signaling (LVDS) which enhances signal integrity and reduces electromagnetic interference (EMI).
2. Driver/Receiver: It functions both as a driver and a receiver, making it versatile for different data transmission requirements.
3. High-Speed Data Transmission: Capable of operating at high data rates, making it suitable for high-speed data communication applications.
4. Low Power Consumption: It is designed to consume minimal power, which is ideal for battery-powered and portable devices.
This part is typically used in communication systems, computer peripherals, and other applications that require reliable high-speed data transfer.
Manufacturer
Application
1. Data Communication Systems: Ensures reliable transmission of data over long distances with minimal signal degradation.
2. Telecommunications Equipment: Used in network routers, switches, and other communication devices.
3. Consumer Electronics: Supports high-speed interfaces in devices like televisions and gaming consoles.
4. Automotive Systems: Facilitates in-vehicle networking with robust data transfer capabilities.
5. Industrial Automation: Used in factory automation and control systems for reliable communication between components.
These applications benefit from the device's low-voltage differential signaling, reducing electromagnetic interference and power consumption.