TC7MA2374FK_07 TOSHIBA [Toshiba Semiconductor], TC7MA2374FK_07 Datasheet

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TC7MA2374FK_07

Manufacturer Part Number
TC7MA2374FK_07
Description
Low-Voltage Octal D-Type Flip-Flop with 3.6 V Tolerant Inputs and Outputs
Manufacturer
TOSHIBA [Toshiba Semiconductor]
Datasheet
Low-Voltage Octal D-Type Flip-Flop with 3.6 V Tolerant Inputs and Outputs
flip-flop. Designed for use in 1.8 V, 2.5 V or 3.3 V systems, it
achieves high speed operation while maintaining the CMOS low
power dissipation.
outputs up to 3.6 V.
and output enable input (OE). When the OE input is high, the
eight outputs are in a high impedance state.
undershoot without external resistor.
discharge.
Features
The TC7MA2374FK is a high performance CMOS octal D-type
It is also designed with over voltage tolerant inputs and
This 8 bit D-type flip-flop is controlled by a clock input (CK)
The 26 Ω series resistor helps reducing output overshoot and
All inputs are equipped with protection circuits against static
26 Ω series resistors on outputs.
Low voltage operation: V
High speed operation: t
3.6 V tolerant inputs and outputs.
Output current: I
Latch-up performance: −300 mA
ESD performance: Machine model ≥ ±200 V
Package: VSSOP (US)
Power down protection is provided on all inputs and outputs.
Supports live insertion/withdrawal (*)
*: To ensure the high-impedance state during power up or power down, OE should be tied to V
pullup resistor; the minimum value of the resistor is determined by the current-sourcing capability of the driver.
I
I
OH
OH
OH
Human body model ≥ ±2000 V
/I
/I
/I
TOSHIBA CMOS Digital Integrated Circuit Silicon Monolithic
OL
OL
OL
t
t
pd
pd
pd
CC
= ±12 mA (min) (V
= ±8 mA (min) (V
= ±4 mA (min) (V
= 5.1 ns (max) (V
= 6.2 ns (max) (V
= 9.8 ns (max) (V
= 1.8~3.6 V
TC7MA2374FK
CC
CC
CC
CC
CC
CC
= 2.3 V)
= 1.8 V)
= 3.0~3.6 V)
= 2.3~2.7 V)
= 1.8 V)
= 3.0 V)
1
Weight: 0.03 g (typ.)
TC7MA2374FK
CC
through a
2007-10-19

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TC7MA2374FK_07 Summary of contents

Page 1

TOSHIBA CMOS Digital Integrated Circuit Silicon Monolithic Low-Voltage Octal D-Type Flip-Flop with 3.6 V Tolerant Inputs and Outputs The TC7MA2374FK is a high performance CMOS octal D-type flip-flop. Designed for use in 1 3.3 V systems, ...

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Pin Assignment (top view GND 10 Truth Table Inputs ...

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Absolute Maximum Ratings Characteristics Power supply voltage DC input voltage DC output voltage Input diode current Output diode current DC output current Power dissipation DC V /ground current CC Storage temperature Note 1: Exceeding any of the absolute maximum ratings, ...

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Electrical Characteristics DC Characteristics (Ta = −40~85°C, 2.7 V < V Characteristics Symbol High level Input voltage Low level High level Output voltage Low level Input leakage current 3-state output off-state current Power off leakage current Quiescent supply current (Ta ...

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V < Characteristics Characteristics Symbol High level Input voltage Low level High level Output voltage Low level Input leakage current 3-state output off-state current Power off leakage current Quiescent supply current < 2.3 ...

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AC Characteristics (Ta = −40~85°C, Input: t Characteristics Maximum clock frequency Propagation delay time (CK-Q) 3-state output enable time 3-state output disable time Minimum pulse width (CK) Minimum set-up time Minimum hold time Output to output skew = 50 pF, ...

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Dynamic Switching Characteristics Characteristics Quiet output maximum dynamic V OL Quiet output minimum dynamic V OL Quiet output minimum dynamic V OH Note: This parameter is guaranteed by design. Capacitive Characteristics Characteristics Input capacitance Output capacitance Power dissipation capacitance Note: ...

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AC Test Circuit Switch Output AC Waveform t 2 Input (CK) 10% Input (D) Output (Q) × Open Parameter GND t pLH Measure pHZ = ...

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Output Enable Control ( pLZ Output (Q) Low to Off to Low t pHZ Output (Q) High to Off to High Outputs enabled Figure 3 t Symbol 3.3 ± 0 2.7 ...

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Package Dimensions Weight: 0.03 g (typ.) 10 TC7MA2374FK 2007-10-19 ...

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RESTRICTIONS ON PRODUCT USE • The information contained herein is subject to change without notice. • TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to ...

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