MC100LVEP111FAG

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Mfr.Part #
MC100LVEP111FAG
Manufacturer
onsemi
Package / Case
32-LQFP
Datasheet
Download
Description
IC CLK BUFFER 2:10 3GHZ 32LQFP
Stock
4
In Stock :
4

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Manufacturer :
onsemi
Product Category :
Clock Buffers, Drivers
Input :
ECL, HSTL, LVDS, PECL
Length :
7mm
Operating Temperature :
-40°C~85°C
Halogen Free :
Halogen Free
Pin Count :
32
Base Part Number :
MC100LVEP111
Nominal Supply Current :
90mA
Interface :
Logic
Input Current :
90mA
Number of Circuits :
1
Peak Reflow Temperature (Cel) :
260
Max Input Voltage :
2.42V
Prop. Delay@Nom-Sup :
0.59 ns
Power Supplies :
+-2.375/+-3.8V
JESD-609 Code :
e3
Published :
2005
Ratio - Input:Output :
2:10
Output :
ECL, PECL
Width :
7mm
Lifecycle Status :
ACTIVE (Last Updated: 2 days ago)
Packaging :
Tray
Number of Terminations :
32
Mount :
Surface Mount
Logic Function :
Clock
Turn On Delay Time :
590 ps
Termination :
SMD/SMT
Terminal Position :
QUAD
Type :
Fanout Buffer (Distribution), Multiplexer
Supply Voltage-Max (Vsup) :
3.8V
Differential - Input:Output :
Yes/Yes
Moisture Sensitivity Level (MSL) :
2 (1 Year)
Factory Lead Time :
23 Weeks
Terminal Pitch :
0.8mm
RoHS Status :
ROHS3 Compliant
Radiation Hardening :
No
Voltage - Supply :
2.375V~3.8V
Same Edge Skew-Max (tskwd) :
0.025 ns
Lead Free :
Lead Free
Frequency :
3GHz
Number of Pins :
32
ECCN Code :
EAR99
Height :
1.45mm
Package / Case :
32-LQFP
Mounting Type :
Surface Mount
REACH SVHC :
No SVHC
Propagation Delay :
590 ps
Time@Peak Reflow Temperature-Max (s) :
40
Pbfree Code :
yes
Supply Voltage :
2.5V
Terminal Finish :
Tin (Sn)
Supply Voltage-Min (Vsup) :
2.375V
Number of Outputs :
10
Additional Feature :
NECL MODE OPERATING RANGE: VCC = 0V WITH VEE = -2.375V TO -3.8V
Terminal Form :
Gull wing
Series :
100LVEP
Number of Functions :
1
Introducing Clock Buffers, Drivers onsemi MC100LVEP111FAG from Chip IC,where excellence meets affordability. This product stands out with its Operating Temperature:-40°C~85°C, Base Part Number:MC100LVEP111, Output:ECL, PECL, Number of Terminations:32, Type:Fanout Buffer (Distribution), Multiplexer, Number of Pins:32, Package / Case:32-LQFP, Mounting Type:Surface Mount, MC100LVEP111FAG pinout, MC100LVEP111FAG datasheet PDF, MC100LVEP111FAG amp .Beyond Clock Buffers, Drivers onsemi MC100LVEP111FAG ,we also offer PI6C49S1510AZDIEX, SY58605UMG-TR, CDCV304PW, Our vast inventory has you covered. Contact us now for immediate solutions.

onsemi MC100LVEP111FAG


Clock Buffers, Drivers onsemi MC100LVEP111FAG Overview

The onsemi MC100LVEP111FAG is a high-performance, low-skew, 2:10 differential clock buffer designed to meet the needs of demanding applications in advanced digital systems. With its capability to operate up to 3GHz, this IC provides precise clock distribution and minimizes timing errors in high-speed computing environments. The MC100LVEP111FAG is housed in a compact 32LQFP package, making it ideal for integration into space-constrained designs while offering excellent thermal performance and reliability. The integration of advanced features ensures that the Clock Buffers, Drivers onsemi MC100LVEP111FAG meets the stringent requirements of modern electronic systems, making it a go-to solution for designers looking to optimize their applications with a reliable clock management solution.

MC100LVEP111FAG Features

  • High Frequency Operation: Capable of handling frequencies up to 3GHz, ensuring support for high-speed digital signals.
  • Low Skew: Provides minimal propagation delay differences between outputs, crucial for maintaining signal integrity in complex designs.
  • 2:10 Differential Output: Offers ten outputs from two input signals, facilitating robust signal distribution and redundancy.
  • 32LQFP Package: Compact footprint for use in space-restricted applications while providing adequate thermal management.
  • Advanced Thermal Design: Ensures stable operation under varying environmental conditions.

MC100LVEP111FAG Applications

  • Data Centers: Utilized for distributing clock signals across multiple racks and servers efficiently, ensuring synchronized operations without timing discrepancies.
  • High-Frequency Trading Systems: Critical in maintaining ultra-low latency communications by providing precise timing to multiple processing nodes.
  • Telecommunications: Helps in the timing management of high-speed network equipment, enhancing data throughput and system reliability.
  • Satellite Communications: Ensures accurate timing distribution for onboard systems, crucial for maintaining the integrity of signal transmissions to and from earth stations.
  • Advanced Computing: Used in high-performance computing clusters to distribute clock signals precisely, vital for parallel processing and multi-core systems.
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