CDCP1803MRGETEP

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Mfr.Part #
CDCP1803MRGETEP
Manufacturer
Texas Instruments
Package / Case
24-VFQFN Exposed Pad
Datasheet
Download
Description
IC CLK BUFFER 1:3 800MHZ 24QFN
Stock
8,549
In Stock :
8,549

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Manufacturer :
Texas Instruments
Product Category :
Clock Buffers, Drivers
Number of Outputs :
3
RoHS Status :
ROHS3 Compliant
JESD-609 Code :
e4
Output :
LVPECL
Mounting Type :
Surface Mount
Number of Terminations :
24
Thickness :
880μm
Input :
CML, HSTL, LVDS, LVPECL, LVTTL, SSTL-2, VML
Propagation Delay (tpd) :
0.6 ns
Height :
1mm
Peak Reflow Temperature (Cel) :
260
Supply Voltage :
3.3V
Differential - Input:Output :
Yes/Yes
Contact Plating :
Gold
Operating Temperature :
-55°C~125°C
Lifecycle Status :
LIFEBUY (Last Updated: 6 days ago)
Packing Method :
TR
Terminal Position :
QUAD
Pin Count :
24
Weight :
45.387587mg
Voltage - Supply :
3V~3.6V
Supply Voltage-Min (Vsup) :
3V
Length :
4mm
Frequency (Max) :
800MHz
fmax-Min :
800 MHz
Number of Circuits :
1
Mount :
Surface Mount
Base Part Number :
CDCP1803
ECCN Code :
EAR99
Type :
Fanout Buffer (Distribution), Divider, Multiplexer
Packaging :
Tape and Reel (TR)
Prop. Delay@Nom-Sup :
0.6 ns
Terminal Pitch :
0.5mm
Width :
4mm
Radiation Hardening :
No
Logic Function :
Clock
Lead Free :
Lead Free
Ratio - Input:Output :
1:3
Number of Pins :
24
Package / Case :
24-VFQFN Exposed Pad
Number of Functions :
1
Moisture Sensitivity Level (MSL) :
2 (1 Year)
Datasheets
CDCP1803MRGETEP
Introducing Clock Buffers, Drivers Texas Instruments CDCP1803MRGETEP from Chip IC,where excellence meets affordability. This product stands out with its Output:LVPECL, Mounting Type:Surface Mount, Number of Terminations:24, Operating Temperature:-55°C~125°C, Base Part Number:CDCP1803, Type:Fanout Buffer (Distribution), Divider, Multiplexer, Number of Pins:24, Package / Case:24-VFQFN Exposed Pad, CDCP1803MRGETEP pinout, CDCP1803MRGETEP datasheet PDF, CDCP1803MRGETEP amp .Beyond Clock Buffers, Drivers Texas Instruments CDCP1803MRGETEP ,we also offer PI6C49S1510AZDIEX, SY58605UMG-TR, CDCV304PW, Our vast inventory has you covered. Contact us now for immediate solutions.

Texas Instruments CDCP1803MRGETEP


Clock Buffers, Drivers Texas Instruments CDCP1803MRGETEP Overview

The Texas Instruments CDCP1803MRGETEP is a high-performance clock buffer designed for precision time management in sophisticated electronic systems. This integrated circuit ensures reliable distribution of a single input clock signal to three outputs, supporting frequencies up to 800 MHz. Encased in a compact 24-QFN package, the CDCP1803MRGETEP offers a blend of advanced technology and enhanced functionality, making it an ideal choice for high-frequency applications. With its robust design and cutting-edge capabilities, the Clock Buffers, Drivers Texas Instruments CDCP1803MRGETEP significantly boosts system performance by providing low-jitter, high-accuracy clock signals, crucial for maintaining system integrity and synchronization in complex environments.

CDCP1803MRGETEP Features

This IC features a 1:3 fanout buffer configuration, capable of handling clock speeds up to 800 MHz, which is essential for high-speed digital systems. The CDCP1803MRGETEP supports both LVPECL and LVDS output types, offering flexibility for different digital interfaces. Moreover, its low-skew properties ensure minimal delay variations between outputs, crucial for maintaining the timing accuracy across multiple pathways in a system. The device's ESD protection and wide operating temperature range make it suitable for demanding industrial applications.

CDCP1803MRGETEP Applications

  • Data Centers: In data centers, this clock buffer can manage clock distribution networks, ensuring synchronized operations across servers and storage units, enhancing overall data throughput and system reliability.
  • Telecommunications Equipment: Used in telecom infrastructures, the CDCP1803MRGETEP helps in timing signal distribution, crucial for maintaining the integrity of high-speed data transmissions and network reliability.
  • Test and Measurement Systems: In testing equipment, it provides precise clock signals necessary for accurate measurement and data analysis, ensuring the reliability of test results.
  • High-Performance Computing: Ideal for supercomputing environments where multiple processors require synchronized clock signals to operate cohesively and efficiently.
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