WJLXT972ALC.A4

Imagens apenas para referência

WJLXT972ALC.A4

+Lista de Materiais

  • FabricanteInphi Corporation

  • Peça do Fabricante #WJLXT972ALC.A4

  • Em Estoque3180

365 Garantia de Qualidade em 1 dia

7*24 Garantia de serviço em 24 horas

90-Garantia de pós-venda em 1 dia

Garantia de Produto Genuíno

Especificações

Atributo Valor
EU Ro HS Compliant
Part Status Obsolete
HTS 8542.31.00.01
Automotive No
PPAP No
Number of Channels per Chip 1
Maximum Data Rate 100Mbps
PHY Line Side Interface No
JTAG Support Yes
Integrated CDR No
Standard Supported IEEE 802.3
Typical Data Rate (M Bps) 10/100
Minimum Operating Supply Voltage (V) 2.35|3.14
Typical Operating Supply Voltage (V) 3.3|2.5
Maximum Operating Supply Voltage (V) 3.45
Maximum Supply Current (m A) 110
Power Supply Type Digital|Analog
Minimum Operating Temperature (°C) 0
Maximum Operating Temperature (°C) 70
Supplier Temperature Grade Commercial
Mounting Type Surface Mount
Package Height 1.45(Max)
Package Width 10.1(Max)
Package Length 10.1(Max)
PCB changed 64
Package / Case QFP
Supplier Device Package LQFP
Pin Count 64
Lead Shape Gull-wing

Visão Geral

Description

The WJLXT972ALC.A4 is a semiconductor device, specifically a multi-port Ethernet switch chip designed for networking applications. It is known for its ability to efficiently manage data traffic between multiple devices in a local area network (LAN). This chip supports various features such as automatic detection of network speeds, full-duplex operation, and advanced power management, which enhances energy efficiency.
Typically used in consumer electronics, telecommunications, and enterprise networking solutions, the WJLXT972ALC.A4 ensures reliable and high-speed connectivity. Its architecture allows for scalable networking solutions, making it suitable for both small and large network configurations.
Technical specifications include support for multiple Ethernet ports, integrated MAC (Media Access Control) layers, and compatibility with various network protocols. This chip plays a critical role in enhancing the performance and reliability of switches and routers in modern networks.
For specific implementation details and applications, consulting the manufacturer's datasheet is recommended.

Equivalent

The WJLXT972ALC.A4 is a network processor often used in telecommunications. Equivalent products include the WJLXT970, WJLXT971, and other similar devices from the same manufacturer, as well as compatible chips from competitors like the Broadcom BCM56800 series or the Marvell Prestera series. Ensure to check specific specifications and features when considering alternatives, as compatibility may vary based on application requirements.

Features

The WJLXT972ALC.A4 is a highly integrated, multi-port Ethernet switch designed for networking applications. Key features include:
1. Port Configuration: Supports multiple 10/100/1000 Mbps Ethernet ports.
2. Energy Efficiency: Incorporates power-saving technologies to optimize energy consumption.
3. QoS Support: Advanced Quality of Service (QoS) features for traffic prioritization.
4. Network Management: Includes management options for monitoring and controlling network traffic.
5. Flexibility: Versatile enough for various applications, suitable for both industrial and commercial use.
6. Security: Enhanced security features to protect data transmission and prevent unauthorized access.
7. Compatibility: Works seamlessly with existing network infrastructure and devices.
8. Compact Design: Space-efficient design for easy integration into different environments.
Overall, the WJLXT972ALC.A4 is engineered for reliability, performance, and ease of use in diverse networking scenarios.

Pinout

The WJLXT972ALC.A4 is a high-performance Ethernet transceiver with a pin count of 44 pins. It is designed for use in 10BASE-T and 100BASE-TX applications. The primary functions of the WJLXT972ALC.A4 include media access control (MAC) sublayer interfacing, physical layer (PHY) functions, and support for auto-negotiation for speed and duplex mode selection. It handles data encoding, decoding, and conversion between digital signals and the physical medium. Additional features include support for MII (Media Independent Interface) and RMII (Reduced Media Independent Interface) to connect with different types of MAC devices. The device also supports power-saving modes and various diagnostic capabilities. Overall, it functions as a critical component in enabling Ethernet communication in networking devices.

Manufacturer

The WJLXT972ALC.A4 is manufactured by Lattice Semiconductor Corporation. Lattice Semiconductor is a company that specializes in the design and production of low-power, small form-factor Field Programmable Gate Arrays (FPGAs), Complex Programmable Logic Devices (CPLDs), and other semiconductor products. Founded in 1983 and headquartered in Hillsboro, Oregon, Lattice focuses on providing innovative solutions for a variety of applications, including communications, industrial, automotive, and consumer electronics. Their products are known for their energy efficiency and versatility, catering to both mainstream and niche markets in the semiconductor industry. Lattice is recognized for its commitment to developing flexible and cost-effective programmable logic solutions.

Application

The WJLXT972ALC.A4 is a versatile integrated circuit primarily used in networking applications. Its key application areas include Ethernet switching, VoIP systems, and broadband access solutions. This device supports high-speed data transmission and is suitable for networking equipment such as routers, switches, and hubs. Additionally, it can be utilized in LAN and WAN environments, enhancing data connectivity and communication efficiency. Its capabilities make it valuable for both consumer and enterprise networking solutions, ensuring optimal performance and scalability.

Package

The WJLXT972ALC.A4 is packaged in a PQFP (Plastic Quad Flat Package) format, specifically with a 144-pin configuration. This type of package is designed for surface mounting and is commonly used in integrated circuits for improved thermal performance and reduced footprint on printed circuit boards.