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VDD bảng dữ liệu(PDF) 7 Page - AnaSem Hong Kong Limited. |
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VDD bảng dữ liệu(HTML) 7 Page - AnaSem Hong Kong Limited. |
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7 / 20 page ![]() AnaSem 6 Rev. E13-01 VDD Series Low voltage, Low power, ±1% High detect accuracy with delay circuit CMOS Voltage Detector .......... Future of the analog world www.anasemi.com sales@anasemi.com DESCRIPTION OF OPERATION General operation (CMOS Output) In reference to following the block diagram of CMOS output VDD series ; A. When the input voltage (VIN) is higher than the release voltage (VREL), the input voltage (VIN) is provided at the output terminal because N-ch transistor is OFF and the P-ch transistor is ON. And, the output maintains the same level of input as long as the input voltage remains above the detection voltage (VDET). B. When the input voltage (VIN) falls below the detection voltage (VDET), the N-ch transistor is ON and the P-ch transistor is OFF. And, the output voltage (VOUT) is same as ground level (VSS). C. When the input voltage (VIN) falls below the min. operating voltage, the output becomes unstable, or goes to VIN when the output is pulled up to VIN. D. When the input voltage (VIN) rises above the minimum voltage, the ground voltage (VSS) level is maintained even though the input voltage (VIN) rises above the detection voltage (VDET) as long as it does not exceed the release voltage (VREL) level. E. Following delay time, the N-ch transistor becomes OFF when the input voltage (VIN) rises above the release voltage (VREL), and the P-Ch transistor becomes ON. And, the output voltage (VOUT) is equal to input voltage (VIN). This difference between VDET and VREL is hysteresis range (VHYS). VIN Vss Voltage Reference + _ VOUT P-ch N-ch Input voltage (VIN) Output voltage (VOUT) Release voltage (VREL) Detection voltage (VDET) Min. operating voltage Power ground (VSS) Release voltage (VREL) Detection voltage (VDET) Min. operating voltage Power ground (VSS) Hysteresis range (VHYS) A B C D E [ TIMING CHART ] Delay Circuit Delay time (TDLY) |
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