Clock Generator, Fanout Distribution 40MHz ICS525-11 Clock Generators 28-SSOP (0.154, 3.90mm Width) Surface Mount 3V~5.5V Tape & Reel (TR)
SOT-23
525R-11LFT Datasheet
non-compliant
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Specifications
Name
Value
Type
Parameter
Mounting Type
Surface Mount
Package / Case
28-SSOP (0.154, 3.90mm Width)
Operating Temperature
0°C~70°C
Packaging
Tape & Reel (TR)
Part Status
Obsolete
Moisture Sensitivity Level (MSL)
1 (Unlimited)
Type
Clock Generator, Fanout Distribution
Voltage - Supply
3V~5.5V
Base Part Number
ICS525-11
Output
CMOS
Number of Circuits
1
Frequency (Max)
40MHz
Input
Clock, Crystal
Ratio - Input:Output
2:2
PLL
Yes with Bypass
Differential - Input:Output
No/No
Divider/Multiplier
Yes/No
525R-11LFT Product Details
525R-11LFT Overview
In order to package it as a clock IC, the Tape & Reel (TR) package is used. There is a clock generator embedded in the 28-SSOP (0.154, 3.90mm Width) package. In this clock generator, Clock, Crystal is used as the input to the clock. It is possible to access the full performance of the electrical part by implementing 1 circuits. There is a maximum frequency of 40MHz Max with this clock-based frequency generator. Thanks to the Surface Mount, this electric component can be conveniently installed on the panel. This clock PLL works with a supply voltage of 3V~5.5V. Based on the test statistics, an ambient temperature of 0°C~70°C should be set. In this case, we are dealing with a frequency synthesizer that can be used with CMOS logic levels. A Clock Generator, Fanout Distribution is a classification for the electronic part in question. ICS525-11 is the base part number for finding related electronic parts.
525R-11LFT Features
Available in the 28-SSOP (0.154, 3.90mm Width)
525R-11LFT Applications
There are a lot of Renesas Electronics America Inc. 525R-11LFT Clock Generators applications.
Clock recovery
Broadcast communication
Televisions
Notebooks
Radio receivers
Frequency shifting decodes
Frequency synthesis
CB radios
FM demodulation networks for FM operations
Clock signals to the high-speed Digital RF circuits