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CD74ACT04E Datasheet(PDF) 8 Page - Texas Instruments |
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CD74ACT04E Datasheet(HTML) 8 Page - Texas Instruments |
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8 / 23 page ![]() 7 Application and Implementation Note Information in the following applications sections is not part of the TI component specification, and TI does not warrant its accuracy or completeness. TI’s customers are responsible for determining suitability of components for their purposes, as well as validating and testing their design implementation to confirm system functionality. 7.1 Power Supply Recommendations The power supply can be any voltage between the MIN and MAX supply voltage rating located in the Section 4.2 table. Each VCC pin should have a good bypass capacitor to prevent power disturbance. For devices with a single supply, 0.1 μF is recommended. If there are multiple VCC pins, 0.01 μF or 0.022 μF is recommended for each power pin. It is acceptable to parallel multiple bypass caps to reject different frequencies of noise. A 0.1 μF and 1 μF are commonly used in parallel. The bypass capacitor should be installed as close to the power pin as possible for best results. 7.2 Layout 7.2.1 Layout Guidelines When using multiple bit logic devices, inputs should not float. In many cases, functions or parts of functions of digital logic devices are unused. Some examples are when only two inputs of a triple-input AND gate are used, or when only 3 of the 4-buffer gates are used. Such input pins should not be left unconnected because the undefined voltages at the outside connections result in undefined operational states. Specified in Layout Example are rules that must be observed under all circumstances. All unused inputs of digital logic devices must be connected to a high or low bias to prevent them from floating. The logic level that should be applied to any particular unused input depends on the function of the device. Generally they will be tied to GND or VCC, whichever makes more sense or is more convenient. It is acceptable to float outputs unless the part is a transceiver. If the transceiver has an output enable pin, it will disable the outputs section of the part when asserted. This will not disable the input section of the I/Os so they also cannot float when disabled. 7.2.2 Layout Example 1 2 3 4 5 6 7 14 13 12 11 10 9 8 1A 1Y 2Y 3A 3Y GND V CC 6A 6Y 5Y 4A 4Y GND V CC 5A 2A 0.1 F Unused inputs tied to VCC Bypass capacitor placed close to the device Avoid 90° corners for signal lines Recommend GND flood fill for improved signal isolation, noise reduction, and thermal dissipation Unused output left floating Figure 7-1. Layout Diagram CD54ACT04, CD74ACT04 SCHS310D – JANUARY 2001 – REVISED AUGUST 2024 www.ti.com 8 Submit Document Feedback Copyright © 2024 Texas Instruments Incorporated Product Folder Links: CD54ACT04 CD74ACT04 |
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