Features: Typical propagation delay: 15 ns Wide operating voltage range: 2V±6V Low input current: 1 mA maximum Low quiescent current: 80 mA maximum (74 Series) Output drive capability: 15 LS-TTL loadsSpecifications Supply Voltage (VCC)DC Input Voltage (VIN)DC Output Voltage (VOUT)Clamp Dio...
MM74HC366: Features: Typical propagation delay: 15 ns Wide operating voltage range: 2V±6V Low input current: 1 mA maximum Low quiescent current: 80 mA maximum (74 Series) Output drive capability: 15 LS-TTL lo...
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Supply Voltage (VCC) DC Input Voltage (VIN) DC Output Voltage (VOUT) Clamp Diode Current (IIK, IOK) DC Output Current, per pin (IOUT) DC VCC or GND Current, per pin (ICC) Storage Temperature Range (TSTG) Power Dissipation (PD) (Note 3) S.O. Package only Lead Temp. (TL) (Soldering 10 seconds) |
-0.5 to +7.0V -1.5 to VCC+1.5V -0.5 to VCC+0.5V ±20 mA ±25 mA ±50 mA -65oC to +150oC 600 mW 500 mW 260oC |
These TRI-STATE buffers MM74HC366 are general purpose high speed inverting and non-inverting buffers that utilize advanced silicon- gate CMOS technology. They have high drive current outputs which enable high speed operation even when driving large bus capacitances. These circuits of MM74HC366 possess the low power dissipation of CMOS circuitry, yet have speeds comparable to low power Schottky TTL circuits. All 4 circuits are capable of driving up to 15 low power Schottky inputs.
The MM74HC366 and the MM54/74HC368 are inverting buffers, where as the MM54/74HC365 and the MM54/74HC367 are non-inverting buffers. The MM54/74HC365 and the MM54/74HC366 have two TRI-STATE control inputs (G1 and G2) which are NORed together to control allsix gates. The MM54/74HC367 and the MM54/74HC368 also have two output enables, but one enable (G1) controls 4 gates and the other (G2) controls the remaining 2 gates. All inputs of MM74HC366 are protected from damage due to static discharge by diodes to VCC and ground.