As a clock IC, PLLs is packaged using the Tape & Reel (TR) method. Embedded in the 32-VFQFN Exposed Pad package is this Clock PLL. Frequency generator can maintain a maximum temperature of 260 under reflowing conditions. There are 32 terminations found in the file. To operate this time clock generator, 3.3V voltage should be applied. This clock generator receives its inputs from LVCMOS, Crystal, which is designed to be the clock source. 1 circuits are implemented to access the electronic component's full performance. The frequency generator has a maximum frequency of 683.27MHz. With the Surface Mount, it is easy to install this electric component on the panel. Clock generators can take up to 3.6V of power as a maximum supply voltageThere should be a voltage supply above 3V for this frequency generator in order to ensure its safety. This clock PLL works with a supply voltage of 3V~3.6V. The ambient temperature should be set at -40°C~85°C, which is estimated by the test statistics. The frequency synthesizer in this product is compatible with all levels of LVCMOS, LVDS, LVPECL logic. This electronic component can be classified as a Clock Generator. There is a 32-bit clock-generating IC built specifically for microprocessors in this frequency generator. It is possible to find its related electronic parts by searching for the base part number CDCM61004. There are 32 pins on the frequency generators that are available for use. There is a maximum supply voltage of 3.3V that clock generator can handle. 4 signal outputs allow for maximi4ation of output frequency. At 0.06 ns Max, this clock generator offers low timing skew. A loading capacitance of 5pF is capable of being delivered through it. A clock generator ic such as this would be well suited to the TR package.
CDCM61004RHBR Features
Available in the 32-VFQFN Exposed Pad Supply voltage of 3.3V Operating supply voltage of 3.3V Load capacitance of 5pF
CDCM61004RHBR Applications
There are a lot of Texas Instruments CDCM61004RHBR Clock Generators applications.
Automatic control
Clock signals to the high-speed Digital RF circuits