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PDF TC7MZ273FK Data sheet ( Hoja de datos )

Número de pieza TC7MZ273FK
Descripción Low-Voltage Octal D-Type Flip-Flop
Fabricantes Toshiba Semiconductor 
Logotipo Toshiba Semiconductor Logotipo



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TC7MZ273FK
TOSHIBA CMOS Digital Integrated Circuit Silicon Monolithic
TC7MZ273FK
Low-Voltage Octal D-Type Flip-Flop with Clear with 5-V Tolerant Inputs and Outputs
The TC7MZ273FK is a high-performance CMOS octal D-type
flip-flop. Designed for use in 3.3-V systems, it achieves
high-speed operation while maintaining CMOS low power
dissipation.
The device is designed for low-voltage (3.3-V) applications, but
can also be used to interface both inputs and outputs with a 5-V
supply environment.
D-input signal is sent to Q-output when clock rises. Clear input
is Low-active and all flip-flop outputs are reset Low.
All inputs are equipped with protection circuits to guard
against static discharge.
Features
Weight: 0.03 g (typ.)
Low voltage operation: VCC = 2.0 V~3.6 V
High-speed operation: tpd = 8.5 ns (max) (VCC = 3.0 V~3.6 V)
Output current: |IOH|/IOL = 24 mA (min) (VCC = 3.0 V)
Latch-up performance: ±500 mA
Package: VSSOP (US20)
Power-down protection is provided for all inputs and outputs.
Pin and function compatible with the 74 Series (74AC/VHC/HC/F/ALS/LS etc.) 273 type.
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1 2001-10-23

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TC7MZ273FK pdf
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Dynamic Switching Characteristics
(Ta = 25°C, Input: tr = tf = 2.5 ns, CL = 50 pF, RL = 500 )
TC7MZ273FK
Characteristics
Symbol
Test Condition
Quiet output maximum dynamic VOL VOLP VIH = 3.3 V, VIL = 0 V
Quiet output minimum dynamic VOL |VOLV| VIH = 3.3 V, VIL = 0 V
Typ.
VCC (V)
3.3 0.8
3.3 0.8
Unit
V
V
Capacitive Characteristics (Ta = 25°C)
Characteristics
Input capacitance
Output capacitance
Power dissipation capacitance
Symbol
CIN
COUT
CPD
fIN = 10 MHz
Test Condition
Typ.
VCC (V)
3.3 7
08
(Note11) 3.3
25
Unit
pF
pF
pF
Note11: CPD is defined as the value of the internal equivalent capacitance which is calculated from the operating
current consumption.
Average operating current can be obtained by the equation:
ICC (opr) = CPDVCCfIN + ICC/8 (per bit)
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5 2001-10-23

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