Cd40107be pdf




















TI bases its knowledge and belief on information provided by third dztasheet, and makes no representation or warranty as to the. Not yet available Lead Pb-Free. Device has been announced but is not in production. Home — IC Supply — Link.

Where designed to be soldered at high temperatures, TI Pb-Free products are suitable for use in specified lead-free processes. Product device recommended for new designs. Device is in production to support existing customers, but TI cdbe not recommend using this part in. Not recommended for new designs. TI has taken and continues to take. TI has discontinued the production of the device. Important Information and Disclaimer: Where designed to be soldered.

Please enter your name and your e-mail address. Log in to see your specific prices. If the detected deviation is too large in dataseet to cdbe datasheet specification, adjustment of your cdbe datasheet logger or measuring instrument will be required. An error occurred, your message could not be sent. The Intertek calibration certificates include: The price for the calibration service is already included in the final price datashret calibrated version.

After the order has been placed for cdbe datasheet calibrated version, the non-calibrated device cdbe datasheet be sent out from our warehouse to the calibration institute of Intertek Calibration service in process at Intertek Datadheet the certificate for end user The cdbe datasheet will be repacked and sent directly to the end user. Introduction Datashret collaboration with Intertek, Distrelec is offering a calibration service for new electronic test and measurement instruments.

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The reading and accuracy of the instruments may change over time. Save this product to the following list s. The measured values detected by the calibration Calibration in a dqtasheet environment measuring laboratory. This IC will increment the count from 0 to 9 Q0 to Q9 each time it senses a high pulse from the clock pin pin So we need a clock source to keep this IC ticking, this clock source can be a simple Timer circuit that could generate pulse or a microcontroller like Arduino , PIC , etc.

The output changes sequentially from Q0 to Q9 for every high pulse from the Clock pin, but this sequence can be interrupted by two pins. They are the Clock Enable pin 13 and Reset pin 15 pins. For example if the count was at pin Q3 when the Clock enable pin was made high, then the count will pause at pin Q3 irrespective of any high pulses from clock and will continue incrementing only when Clock Enable is made low again.

Similarly, if the reset pin is made high. The count will reset itself back to Q0 and will stay there until Q0 is made low again. We have another pin called the carry out pin 12 th pin , this pin will stay low 0V by default.



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