Features: High speed: fMAX = 200 MHz (typ) at VCC = 5.0VLow power dissipation: ICC = 2 A (max) at TA = 25High noise immunity: VNIH = VNIL = 28% VCC (min)Power down protection is provided on all inputsPin and function compatible with 74HC112PinoutSpecifications Supply Voltage (VCC) -0.5V to +...
74VHC112: Features: High speed: fMAX = 200 MHz (typ) at VCC = 5.0VLow power dissipation: ICC = 2 A (max) at TA = 25High noise immunity: VNIH = VNIL = 28% VCC (min)Power down protection is provided on all inpu...
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Supply Voltage (VCC) | -0.5V to +7.0V |
DC Input Voltage (VIN) | -0.5V to +7.0V |
DC Output Voltage (VOUT) | -0.5V to VCC + 0.5V |
Input Diode Current (IIK) | -20 mA |
Output Diode Current (IOK) | ±20 mA |
DC Output Current (IOUT) | ±25 mA |
DC VCC/GND Current (ICC) | ±50 mA |
Storage Temperature (TSTG) | -65 to +150 |
Lead Temperature (TL) | |
(Soldering, 10 seconds) | 260 |
The 74VHC112 is an advanced high speed CMOS device fabricated with silicon gate CMOS technology. It achieves the high-speed operation similar to equivalent Bipolar Schottky TTL while maintaining the CMOS low power dissipation.
The 74VHC112 contains two independent, high-speed JK flipflops with Direct Set and Clear inputs. Synchronous state changes are initiated by the falling edge of the clock. Triggering occurs at a voltage level of the clock and is not directly related to transition time. The J and K inputs can change when the clock is in either state without affecting the flip-flop, provided that they are in the desired state during the recommended setup and hold times relative to the falling edge of the clock. The LOW signal on PR or CLR prevents clocking and forces Q and Q HIGH, respectively.Simultaneous LOW signals on PR and CLR force both Q and Q HIGH.
An input protection circuit of the 74VHC112 ensures that 0V to 7V can be applied to the input pins without regard to the supply voltage. This device can be used to interface 5V to 3V systems and two supply systems such as battery backup. This circuit prevents device destruction due to mismatched supply and input voltages.