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DS91M124TMA/NOPBBuffer, Multiplexer 1 x 1:4 Channel 250Mbps 16-SOIC
1:$3.8370
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ABRmicro #.ABR756-DS91M1-328868
ManufacturerTexas Instruments
MPN #.DS91M124TMA/NOPB
Estimated Lead Time6 Weeks
SampleGet Free Sample
DatasheetDS91M124 (PDF)
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In Stock: 137
Shipped From Shenzhen or Hong Kong Warehouses
Min.&Mult.1
Packaging
Tube
Shipping DateDecember 24, 2024
* Quantity
Unit Price$3.8370
Ext. Price$3.8370
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* Prices exclude tax, and all prices are in USD.
Price Gradients
Qty.Unit PriceExt. Price
240$3.8370$920.8050
* Prices are for reference only and are subject to change. Final sales prices will be confirmed at the time of purchase.
Technical Specifications
Series-
Packaging
Tube
Lifecycle StatusActive
ApplicationsLVDS
Base Product NumberDS91M124
Supply Current65mA
Data Rate (Max)250Mbps
Delay Time3.9ns
InputLVTTL, LVCMOS
Mounting StyleSurface Mount
Number of Channels1 x 1:4
Operating Temperature-40°C ~ 85°C
OutputMLVDS
Signal Conditioning-
Package Type (Mfr.)16-SOIC
TypeBuffer, Multiplexer
Supply Voltage3V ~ 3.6V
Package / Case16-SOIC (0.154", 3.90mm Width)
Customize Part Specifications , or Contact Our Sales Representative to Obtain the Data You Desireinfo@Abrmicro.com
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Datasheets
PCN Design/Specification
Environmental & Export Classifications
RoHS ComplianceComplies with RoHS 3 Directive (2015/863/EU)
MSL Level1 (Unlimited, ≤ 30°C/85% RH), No special packaging
REACH RegulationNo SVHCs Present
US ECCN5A991B1 AT
HTSUS8542.39.0001 (No rates found in the Harmonized Tariff Schedule)
Related Parts
Additional Details
The Texas Instruments part DS91M124TMA/NOPB is a high-speed buffer and multiplexer that facilitates data routing in digital circuits with a configuration of 1 x 1:4 channels. It is housed in a 16-pin SOIC package and supports data transfer rates up to 250 Mbps. Designed to work with various signaling standards, it accommodates LVDS, MLVDS, LVTTL, and LVCMOS levels, providing versatility in interfacing different logic levels and signaling protocols. This component is suitable for systems requiring reliable signal conditioning and precise data channel selection.
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