Features: ` HIGH SPEED: fMAX = 185 MHz (TYP.) at VCC = 5V` LOW POWER DISSIPATION: ICC = 4 A (MAX.) at TA=25` HIGH NOISE IMMUNITY: VNIH = VNIL = 28% VCC (MIN.)` POWER DOWN PROTECTION ON INPUTS` SYMMETRICAL OUTPUT IMPEDANCE: |IOH| = IOL = 8mA (MIN)` BALANCED PROPAGATION DELAYS: tPLH tPHL` OPERATING ...
74VHC16374: Features: ` HIGH SPEED: fMAX = 185 MHz (TYP.) at VCC = 5V` LOW POWER DISSIPATION: ICC = 4 A (MAX.) at TA=25` HIGH NOISE IMMUNITY: VNIH = VNIL = 28% VCC (MIN.)` POWER DOWN PROTECTION ON INPUTS` SYMME...
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Symbol |
Parameter |
Value |
Unit |
VCC |
Supply Voltage |
-0.5 to +7.0 |
V |
VI |
DC Input Voltage |
-0.5 to +7.0 |
V |
VO |
DC Output Voltage |
-0.5 to VCC + 0.5 |
V |
IIK |
DC Input Diode Current |
- 20 |
mA |
IOK |
DC Output Diode Current |
± 20 |
mA |
IO |
DC Output Current |
±25 |
mA |
ICC or IGND |
DC VCC or Ground Current |
±75 |
mA |
Tstg |
Storage Temperature |
-65 to +150 |
|
TL |
Lead Temperature (10 sec) |
300 |
The 74VHC16374 is an advanced high-speed FLIP FLOP with 3 STATE OUTPUTS NON INVERTING fabricated with sub-micron silicon gate and double-layer metal wiring C2MOS technology.
These 16 bit D-TYPE flip-flop is controlled by two clock inputs (CK) and two output enable inputs (nOE). The device can be used as two 8-bit flip-flops or one 16-bit flip-flop.
On the positive transition of the clock, the Q outputs will be set to the logic state that were setup at the D inputs.
While the (OE) input of the 74VHC16374 is low, the outputs will be in a normal logic state (high or low logic level); while OE is high, the outputs will be in a high impedance state.
The output control of the 74VHC16374 does not affect the internal operation of flip-flops; that is, the old data can be retained or the new data can be entered even while the outputs are off.
Power down protection of the 74VHC16374 is provided on all inputs and 0 to 7V can be accepted on inputs with no regard to the supply voltage. This device can be used to interface 5V to 3V.
All inputs and outputs of the 74VHC16374 are equipped with protection circuits against static discharge, giving them 2KV ESD immunity and transient excess voltage.