MM74C14M SS | Alldatasheet
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Hex Schmitt Trigger Inverter in Plastic Small-Outline Package (SOIC) - Rev 1.0 17/02/2023 CMOS High Voltage Logic – MM74C14M Description Features: The MM74C14M Hex Schmitt Trigger is a monolithic complementary MOS (CMOS) integrated circuit constructed with N-channel and P-channel enhancement transistors. The positive and negative going threshold voltages, VT+ and VT- , show low variation with respect to temperature (typ. 0.0005V/°C at VCC = 10V), and hysteresis, VT+ - VT- ≥ 0.2 VCC is guaranteed. All inputs are protected from damage due to static discharge by diode clamps to VCC and GND.
Ordering Information
Wide supply voltage range: 3V to 15V High noise immunity: 0.70 V CC (typ.) Low power TTL compatibility: o 0.40 V CC (typ.) o 0.20 V CC (guaranteed) Hysteresis: o 0.40 V CC (typ.) o 0.20 V CC (guaranteed). Schematic & Connection Diagram The following part suffixes apply: MM74C14M - 14 Lead Plastic SOIC Package VCC 1 2 3 4 5 6 7 14 13 12 11 10 9 8 A6 Y6 A5 Y5 A4 Y4 Y3 A3 Y2 A2 Y1 A1 GND Function Table INPUT A OUTPUT Y L H H L Absolute Maximum Ratings1 PARAMETER SYMBOL VALUE UNIT Voltage at any input pin VIN -0.3 to VCC + 0.3 V Voltage at any output pin VOUT -0.3 to VCC + 0.3 V Operating VCC range VCC 3 to 15 V Absolute maximum VCC V CC(MAX) 18 V Maximum Power Dissipation PD 700 mW Operating Temperature Range TA -40 to +85 °C Storage Temperature Range TSTG -65 to +150 °C Lead Temperature (Soldering, 10 seconds) TL 260 °C 1. Operation above the absolute maximum rating may cause device failure. Operation at the absolute maximum ratings, for extended periods, may reduce device reliability. Page 1 of 4 www.siliconsupplies.com A ll data sheet.com
d Page 2 of 4 www.siliconsupplies.com Rev 1.0 17/02/2023 PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX UNITS CMOS TO CMOS VCC = 5V 3.0 3.6 4.3 V VCC = 10V 6.0 6.8 8.6 V Positive Going Threshold Voltage VT+ VCC = 15V 9.0 10.0 12.9 V VCC = 5V 0.7 1.4 2.0 V VCC = 10V 1.4 3.2 4.0 V Negative Going Threshold Voltage VT- VCC = 15V 2.1 5.0 6.0 V VCC = 5V 1.0 2.2 3.6 V VCC = 10V 2.0 3.6 7.2 V Hysteresis VT+ - VT- VCC = 15V 3.0 5.0 10.8 V VCC = 5V, IO = -10µA 4.5 - - V Logical “1” Output Voltage VOUT(1) VCC = 10V, IO = -10µA 9.0 - - V VCC = 5V, IO = 10µA - - 0.5 V Logical “0” Output Voltage VOUT(0) VCC = 10V, IO = 10µA - - 1.0 V Logical “1” Input Current IIN(1) VCC = 15V, VIN = 15V - 0.005 1.0 µA Logical “0” Input Current IIN(0) VCC = 15V, VIN = 0V -1.0 -0.005 - µA Supply Current ICC VCC =15V,VIN=0V/15V - 0.05 15 µA VCC = 5V, VIN = 2.5V - 20 - µA VCC = 10V, VIN = 5V - 200 - µA Supply Current2 ICC VCC = 15V, VIN = 7.5V - 600 - µA CMOS/LPTTL INTERFACE Logical “1” Input Voltage VIN(1) VCC = 5V 4.3 - - V Logical “0” Input Voltage VIN(0) VCC = 5V - - 0.7 V Logical “1” Output Voltage VOUT(1) VCC= 4.75V,IO= -360µA 2.4 - - V Logical “0” Output Voltage VOUT(0) VCC =4.75V, IO = 360µA - - 0.4 V OUTPUT DRIVE CURRENT TA = 25°C VCC = 5V, VOUT = 0V -1.75 -3.3 - mA Output Source Current (P-Channel) ISOURCE VCC = 10V, VOUT = 0V -8.0 -15 - mA VCC = 5V, VOUT = VCC 1.75 3.6 - mA Output Source Current (N-Channel) ISINK VCC = 10V, VOUT = VCC 8.0 16 - mA DYNAMIC ELECTRICAL CHARACTERISTICS3 TA = 25°C, CL = 50pF unless otherwise stated VCC = 5V - 220 400 ns Propagation Delay from Input to Output tPD0, tPD1 VCC = 10V - 80 200 ns Input Capacitance CIN Any Input - 5.0 - pF Power Dissipation Capacitance4 CPD Per Gate - 20 - pF 2. Only one of the six inputs is at ½ VCC; the others are either at VCC or GND. 3. Not production tested in die form, characterized by chip design. 4. Used to determine the no-load dynamic power consumption: PD = CPD VCC f + ICC VCC. CMOS High Voltage Logic – MM74C14M A ll data sheet.com
CMOS High Voltage Logic – MM74C14M Rev 1.0 16/07/2021 Page 4 of 4 www.siliconsupplies.com DISCLAIMER: The information given in this document shall in no event be regarded as a guarantee of conditions or characteristics. With respect to any examples or hints given herein, any typical values stated herein and/or any information regarding the application of the device, Silicon Supplies Ltd hereby disclaims any and all warranties and liabilities of any kind. LIFE SUPPORT POLICY: Silicon Supplies Ltd components may be used in life support devices or systems only with the express written approval of Silicon Supplies Ltd, if a failure of such components can reasonably be expected to cause the failure of that life support device or system or to affect the safety or effectiveness of that device or system. Life support devices or systems are intended to be implanted in the human body or to support and/or maintain and sustain and/or protect human life. If they fail, it is reasonable to assume that the health of the user or other persons may be endangered. A ll data sheet.com