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MC74HC4316N Datasheet(PDF) 8 Page - ON Semiconductor |
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MC74HC4316N Datasheet(HTML) 8 Page - ON Semiconductor |
8 / 10 page MC74HC4316 MOTOROLA High–Speed CMOS Logic Data DL129 — Rev 6 8 0 – 10 – 20 – 30 – 40 – 50 – 100 1.0 2.0 FREQUENCY (kHz) – 60 – 70 – 80 – 90 FUNDAMENTAL FREQUENCY DEVICE SOURCE Figure 15. Plot, Harmonic Distortion 3.0 APPLICATION INFORMATION The Enable and Control pins should be at VCC or GND logic levels, VCC being recognized as logic high and GND being recognized as a logic low. Unused analog inputs/out- puts may be left floating (not connected). However, it is ad- visable to tie unused analog inputs and outputs to VCC or VEE through a low value resistor. This minimizes crosstalk and feedthrough noise that may be picked up by the unused I/O pins. The maximum analog voltage swings are determined by the supply voltages VCC and VEE. The positive peak analog voltage should not exceed VCC. Similarly, the negative peak analog voltage should not go below VEE. In the example below, the difference between VCC and VEE is twelve volts. Therefore, using the configuration in Figure 16, a maximum analog signal of twelve volts peak–to–peak can be con- trolled. When voltage transients above VCC and/or below VEE are anticipated on the analog channels, external diodes (Dx) are recommended as shown in Figure 17. These diodes should be small signal, fast turn–on types able to absorb the maxi- mum anticipated current surges during clipping. An alternate method would be to replace the Dx diodes with MO sorbs (Motorola high current surge protectors). MO sorbs are fast turn–on devices ideally suited for precise dc protection with no inherent wear out mechanism. ANALOG O/I ON 16 VCC = 6 V ANALOG I/O + 6 V – 6 V + 6 V – 6 V ENABLE CONTROL INPUTS (VCC OR GND) ON 16 VCC Dx Dx VCC Dx Figure 16. Figure 17. Transient Suppressor Application 8 SELECTED CONTROL INPUT Dx SELECTED CONTROL INPUT + 6 V VEE – 6 V VCC VEE ENABLE CONTROL INPUTS (VCC OR GND) VEE VEE |
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