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SN65LVCP114ZJA
+Lista de MateriaisIC MULTIPLEXER 4CH 167NFBGA
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FabricanteTexas Instruments
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Peça do Fabricante #SN65LVCP114ZJA
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Pacote NFBGA-167
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Em Estoque3565
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Especificações
| Atributo | Valor |
| Package / Case | Tray |
| Part Status | Active |
| Type | Buffer, Multiplexer |
| Input | CML |
| Output | CML |
| Data Rate (Max) | 14.2Gbps |
| Number of Channels | 4 x 2:1, 1:2 |
| Delay Time | 200ps |
| Signal Conditioning | Input Equalization, Output Pre-Emphasis |
| Voltage - Supply | 2.375V ~ 3.465V |
| Operating Temperature | -40°C ~ 85°C |
| Mounting Type | Surface Mount |
Visão Geral
Description
The SN65LVCP114ZJA offers four differential CML outputs with programmable pre-emphasis, enabling enhanced signal integrity over extended distances and challenging transmission environments. This capability is crucial for reducing signal degradation that might occur due to long cable lengths or PCB traces.
The device also includes an input equalizer, which compensates for signal loss due to skin effect and dielectric losses in the transmission medium. Its compact design, available in a 48-pin QFN package, makes it an ideal choice for space-constrained applications. With its robust design and features, the SN65LVCP114ZJA is well-suited for use in data centers, enterprise networking, and telecommunications applications where high-speed and reliable data transmission is essential.
Equivalent
1. National Semiconductor DS90CP22x series.
2. Maxim Integrated MAX5885.
3. ON Semiconductor's NB7VPQ14M.
These alternatives may offer similar functions, such as high-speed data transfer and multiple channel configurations, but check the datasheets for specific compatibility and performance parameters.
Features
1. Data Rate Support: Capable of supporting data rates up to 3.125 Gbps per channel, making it suitable for high-speed communication applications.
2. Signal Integrity: Enhances signal integrity by compensating for signal attenuation due to PCB traces, cables, and connectors.
3. Adaptive Equalization: Features adaptive equalization to automatically adjust to varying signal conditions, improving performance over longer distances.
4. Low Power Consumption: Offers low power consumption with selectable power-down modes to reduce power usage further when not in operation.
5. Differential Signaling: Uses differential signaling to minimize electromagnetic interference (EMI) and improve noise immunity.
6. Small Package: Available in a compact package, making it ideal for space-constrained applications.
7. Temperature Range: Operates over a wide temperature range suitable for various industrial applications.
8. Compatibility: Compatible with various protocols, including PCIe, SATA, and other high-speed interfaces.
These features make the SN65LVCP114ZJA a versatile choice for applications requiring reliable high-speed data transmission.
Pinout
Key functions of the SN65LVCP114 include:
1. High-Speed Data Transmission: Designed to handle high-speed data rates, suitable for applications like telecommunications and data communications.
2. Multiplexing: Allows multiple input signals to be routed to a single output, aiding in efficient signal management.
3. Redriver Functionality: Helps in boosting signal integrity over extended distances, compensating for signal loss and ensuring reliability in data transmission.
These features make it suitable for applications requiring precise signal control and management over high-speed digital data pathways.
Manufacturer
Application
1. Telecommunications: Used in networking equipment for routing high-speed data signals.
2. Data Centers: Facilitates efficient data traffic management and signal integrity in servers and storage systems.
3. Broadcasting: Supports high-speed signal transmission and switching in broadcasting equipment.
4. Consumer Electronics: Utilized in high-definition video and audio equipment for efficient signal processing.
5. Test and Measurement: Employed in testing equipment for high-speed data applications.
These applications leverage its ability to handle high-speed signal routing with minimal signal degradation.