DS32ELX0124SQE/NOPB Allicdata Electronics

DS32ELX0124SQE/NOPB Integrated Circuits (ICs)

Allicdata Part #:

296-48389-2-ND

Manufacturer Part#:

DS32ELX0124SQE/NOPB

Price: $ 5.50
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC DESERIAL W/DDR LVDS 48WQFN
More Detail: 3.125Gbps Deserializer 2 Input 5 Output 48-WQFN (7...
DataSheet: DS32ELX0124SQE/NOPB datasheetDS32ELX0124SQE/NOPB Datasheet/PDF
Quantity: 1000
1 +: $ 5.50000
10 +: $ 5.33500
100 +: $ 5.22500
1000 +: $ 5.11500
10000 +: $ 4.95000
Stock 1000Can Ship Immediately
$ 5.5
Specifications
Series: Automotive, AEC-Q100
Packaging: Tape & Reel (TR) 
Part Status: Active
Function: Deserializer
Data Rate: 3.125Gbps
Input Type: CML
Output Type: LVDS
Number of Inputs: 2
Number of Outputs: 5
Voltage - Supply: 2.5V, 3.3V
Operating Temperature: -40°C ~ 85°C (TA)
Mounting Type: Surface Mount
Package / Case: 48-WFQFN Exposed Pad
Supplier Device Package: 48-WQFN (7x7)
Base Part Number: DS32ELX0124
Description

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The DS32ELX0124SQE/NOPB is a standard among the Serializers and Deserializers (SERDESs) available on the market. It is an advanced semiconductor component used for the purpose of connecting multiple communication channels to one centralizing source. Its main purpose is to bridge the gap between various communication channels, allowing for various networks to be connected together.

Serializers convert parallel data inputs into serial format, whilst deserializers do the inverse. The serdes is one of the most powerful digital signal processing solutions today, owing to its small physical form factor and impressive performance. Serialization and deserialization enables faster communication between devices, reducing latency and allowing more efficient data transfer.

The DS32ELX0124SQE/NOPB is especially useful in industries such as automotive, communications, and high speed industrial automation. It is ideal for scenarios in which longer data connections are needed, for instance for high speed serial communication, applications such as automotive infotainment systems, data centers, and networks using various protocols.

At its core, the DS32ELX0124SQE/NOPB is an integrated multi-channel SERDES device containing two integrated Serializer/Deserializer pairs plus a control interface. Each serializer/deserializer (SerDes) is capable of handling 12-bit data at up to 3.125 Gbps per lane. Both the serializer and the deserializer are compatible with the LinerX and CMLX/High Speed SERDES protocols and therefore compatible with multiple standard and custom protocol physical layers.

The DS32ELX0124SQE/NOPB is an ideal component for applications requiring high speed, reliable, and multiple communication channels. It offers excellent signal integrity, low latency, and excellent power efficiency in a compact form factor. The Serializer/Deserializer component of this chip provides all the necessary functions to control and manage the transferred data.

The Serializer component lines up the input parallel words to be transmitted in a serial form over the desired communication interface. It incorporates an integrated industry-standard MIPI D-PHY quad-lane, dual-lane, or single-lane serializer interface and multiple protocol options. The Deserializer component provides a low jitter, low latency output, making this chip an ideal component for applications requiring high speed and reliable transmission.

Additionally, the DS32ELX0124SQE/NOPB also integrates a high-speed differential clock input and additional LVDS vs. SC-DDR clock output pin to provide the maximum clock speed and flexibility. The integrated control interface allows the user to configure different performance settings and even check the operating mode. Additionally, it is also capable of transmitting and receiving control information over the physical layer.

The DS32ELX0124SQE/NOPB is an excellent SERDES solution for multiple industries and applications. Its combination of integrated components, small form factor, and reliable performance makes it an ideal choice for deployments in high speed, low latency, and power efficient systems.

The specific data is subject to PDF, and the above content is for reference

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