MC100LVEP210MNRG

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Mfr.Part #
MC100LVEP210MNRG
Manufacturer
onsemi
Package / Case
32-VFQFN Exposed Pad
Datasheet
Download
Description
IC CLK BUFFER 1:5 3GHZ 32QFN
Stock
21,679
In Stock :
21,679

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Manufacturer :
onsemi
Product Category :
Clock Buffers, Drivers
Published :
2005
Supply Voltage-Max (Vsup) :
3.8V
Length :
5mm
Supply Voltage :
2.5V
Ratio - Input:Output :
1:5
Number of Terminations :
32
Series :
100LVEP
Height Seated (Max) :
1mm
Number of Functions :
2
Terminal Pitch :
0.5mm
Base Part Number :
MC100LVEP210
Number of Pins :
32
Lead Free :
Lead Free
Frequency (Max) :
3GHz
Mounting Type :
Surface Mount
Number of Circuits :
2
Moisture Sensitivity Level (MSL) :
1 (Unlimited)
RoHS Status :
ROHS3 Compliant
Propagation Delay :
430 ps
Radiation Hardening :
No
JESD-609 Code :
e3
Terminal Finish :
Tin (Sn)
Pin Count :
32
Mount :
Surface Mount
Differential - Input:Output :
Yes/Yes
Halogen Free :
Halogen Free
Width :
5mm
Number of Outputs :
20
Type :
Fanout Buffer (Distribution)
Turn On Delay Time :
500 ps
Package / Case :
32-VFQFN Exposed Pad
Packaging :
Tape and Reel (TR)
Operating Temperature :
-40°C~85°C
Terminal Position :
QUAD
Input :
ECL, HSTL, LVDS, PECL
Factory Lead Time :
21 Weeks
Lifecycle Status :
ACTIVE (Last Updated: 1 day ago)
Voltage - Supply :
2.375V~3.8V
Pbfree Code :
yes
Output :
ECL, PECL
Datasheets
MC100LVEP210MNRG
Introducing Clock Buffers, Drivers onsemi MC100LVEP210MNRG from Chip IC,where excellence meets affordability. This product stands out with its Number of Terminations:32, Base Part Number:MC100LVEP210, Number of Pins:32, Mounting Type:Surface Mount, Type:Fanout Buffer (Distribution), Package / Case:32-VFQFN Exposed Pad, Operating Temperature:-40°C~85°C, Output:ECL, PECL, MC100LVEP210MNRG pinout, MC100LVEP210MNRG datasheet PDF, MC100LVEP210MNRG amp .Beyond Clock Buffers, Drivers onsemi MC100LVEP210MNRG ,we also offer PI6C49S1510AZDIEX, SY58605UMG-TR, CDCV304PW, Our vast inventory has you covered. Contact us now for immediate solutions.

onsemi MC100LVEP210MNRG


Clock Buffers, Drivers onsemi MC100LVEP210MNRG Overview

The Clock Buffers, Drivers onsemi MC100LVEP210MNRG is a high-performance, low-skew, 1:5 differential clock buffer. Designed by onsemi, this device is ideal for distributing high-speed signals throughout electronic systems. The MC100LVEP210MNRG operates at a frequency of up to 3GHz, making it suitable for advanced applications that require rapid signal processing and precise timing. Its compact 32-QFN package ensures minimal footprint and robust performance, essential for modern electronic designs. The integrated circuit helps in achieving low-jitter performance, which is crucial for maintaining signal integrity in high-frequency operations. This product is designed to meet the needs of B2B customers who require reliable, high-quality components for volume applications.

MC100LVEP210MNRG Features

This onsemi clock buffer features a 1:5 fanout, which enables it to drive multiple outputs from a single input, enhancing the efficiency of signal distribution. The 3GHz operational frequency allows for high-speed applications, supporting even the most demanding system requirements. The device is packaged in a compact 32-QFN format, offering a balance between performance and size. Additionally, the MC100LVEP210MNRG provides low additive phase noise, which helps maintain the integrity and quality of the signal throughout the system.

MC100LVEP210MNRG Applications

  • Data Centers: Utilized in server timing systems to ensure synchronized operation and maintain high-speed data transfer rates.
  • Telecommunications: Helps in the distribution of clocks in telecom infrastructure, supporting high-frequency and precise timing requirements.
  • Networking Equipment: Used in routers and switches to provide precise timing signals for managing data flow and network timing.
  • Test and Measurement Systems: Essential for ensuring accurate measurement and reliability in equipment that requires precise time-based operations.
  • High-Performance Computing: Applied in systems requiring high-speed processing and low-latency performance, optimizing overall computing operations.
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