74vhc273 STMicroelectronics, 74vhc273 Datasheet

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74vhc273

Manufacturer Part Number
74vhc273
Description
Octal D-type Flip Flop With Clear
Manufacturer
STMicroelectronics
Datasheet

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DESCRIPTION
The 74VHC273 is an advanced high-speed
CMOS OCTAL D-TYPE FLIP FLOP WITH CLEAR
fabricated with sub-micron silicon gate and
double-layer metal wiring C
Information signals applied to D inputs are
transferred to the Q outputs on the positive going
edge of the clock pulse.
Figure 1: Pin Connection And IEC Logic Symbols
November 2004
HIGH SPEED:
f
LOW POWER DISSIPATION:
I
HIGH NOISE IMMUNITY:
V
POWER DOWN PROTECTION ON INPUTS
SYMMETRICAL OUTPUT IMPEDANCE:
|I
BALANCED PROPAGATION DELAYS:
t
OPERATING VOLTAGE RANGE:
V
PIN AND FUNCTION COMPATIBLE WITH
74 SERIES 273
IMPROVED LATCH-UP IMMUNITY
LOW NOISE: V
MAX
CC
PLH
OH
NIH
CC
= 4 A (MAX.) at T
| = I
(OPR) = 2V to 5.5V
= 165 MHz (TYP.) at V
= V
t
PHL
OL
NIL
= 8 mA (MIN)
= 28% V
OLP
= 0.9V (MAX.)
CC
A
=25°C
(MIN.)
2
MOS technology.
CC
= 5V
OCTAL D-TYPE FLIP FLOP WITH CLEAR
Table 1: Order Codes
When the CLEAR input is held low, the Q outputs
are held low independently of the other inputs.
Power down protection 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 are equipped with
protection circuits against static discharge, giving
them 2KV ESD immunity and transient excess
voltage.
PACKAGE
TSSOP
SOP
SOP
74VHC273
Rev. 5
74VHC273MTR
74VHC273TTR
TSSOP
T & R
1/14

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74vhc273 Summary of contents

Page 1

... SERIES 273 IMPROVED LATCH-UP IMMUNITY LOW NOISE 0.9V (MAX.) OLP DESCRIPTION The 74VHC273 is an advanced high-speed CMOS OCTAL D-TYPE FLIP FLOP WITH CLEAR fabricated with sub-micron silicon gate and 2 double-layer metal wiring C Information signals applied to D inputs are transferred to the Q outputs on the positive going edge of the clock pulse ...

Page 2

... Figure 2: Input Equivalent Circuit Table 3: Truth Table INPUTS CLEAR Don’t Care Figure 3: Logic Diagram This logic diagram has not be used to estimate propagation delays 2/14 Table 2: Pin Description PIN N° 12, 15, 16, 13, 14, 17 ...

Page 3

... V Input Voltage I V Output Voltage O T Operating Temperature op Input Rise and Fall Time (note 1) (V dt/ from 30 Parameter Parameter = 3.3 0.3V 5.0 0.5V) CC 74VHC273 Value Unit -0.5 to +7.0 V -0.5 to +7 -65 to +150 °C 300 °C Value Unit ...

Page 4

... Table 6: DC Specifications Symbol Parameter V High Level Input IH Voltage 3 Low Level Input IL Voltage 3 High Level Output OH Voltage V Low Level Output OL Voltage I Input Leakage I Current I Quiescent Supply CC Current 4/14 Test Condition (V) Min. 2.0 1.5 0.7V CC 5.5 2.0 5.5 I =-50 A 2.0 1 =-50 A 3.0 2 =-50 A 4.5 4.4 O ...

Page 5

... Min. 8.7 13.6 1.0 16.0 1.0 11.2 17.1 1.0 19.5 1.0 5.8 9.0 1.0 10.5 1.0 7.3 11.0 1.0 12.5 1.0 8.9 13.6 1.0 16.0 1.0 11.4 17.1 1.0 19.5 1.0 5.2 8.5 1.0 10.0 1.0 6.7 10.5 1.0 12.0 1.0 5.0 6.0 5.0 5.0 5.5 6.5 5.0 5.0 5.5 6.5 4.5 4.5 1.0 1.0 1.0 1.0 2.5 2.5 2.0 2.0 120 165 100 100 110 70 70 1.5 1.5 1.0 1 pHLn Value = 25°C -40 to 85°C -55 to 125°C A Typ. Max. Min. Max. Min CC(opr 74VHC273 Unit Max. 16.0 19.5 ns 10.5 12.5 16.0 19.5 ns 10.0 12.0 6.0 ns 5.0 6.5 ns 5.0 6.5 ns 4.5 1.0 ns 1.0 2.5 ns 2.0 MHz 1.5 ns 1.0 Unit Max (per IN CC 5/14 ...

Page 6

... Table 9: Dynamic Switching Characteristics Symbol Parameter V Dynamic Low OLP Voltage Quiet V OLV Output (note 1, 2) Dynamic High V Voltage Input IHD (note 1, 3) Dynamic Low V Voltage Input ILD (note Worst case package. 2) Max number of outputs defined as (n). Data inputs are driven 0V to 5.0V, (n-1) outputs switching and one output at GND. ...

Page 7

... Figure 5: Waveform - Propagation Delays, Setup And Hold Times (f=1MHz; 50% duty cycle) Figure 6: Waveform - Propagation Delays (f=1MHz; 50% duty cycle) 74VHC273 7/14 ...

Page 8

... Figure 7: Waveform - Recovery Time (f=1MHz; 50% duty cycle) 8/14 ...

Page 9

... MIN. A 2.35 A1 0.1 B 0.33 C 0.23 D 12. 10.00 h 0.25 L 0.4 k 0° ddd mm. TYP MAX. 2.65 0.093 0.30 0.004 0.51 0.013 0.32 0.009 13.00 0.496 7.6 0.291 1.27 10.65 0.394 0.75 0.010 1.27 0.016 8° 0.100 74VHC273 inch MIN. TYP. 0.050 0° 0016022D MAX. 0.104 0.012 0.020 0.013 0.512 0.299 0.419 0.030 0.050 8° 0.004 9/14 ...

Page 10

... DIM. MIN 0.05 A2 0.8 b 0.19 c 0.09 D 6.4 E 6 0˚ PIN 1 IDENTIFICATION 1 10/14 TSSOP20 MECHANICAL DATA mm. TYP MAX. 1.2 0.15 1 1.05 0.30 0.20 6.5 6.6 6.4 6.6 4.4 4.48 0.65 BSC 8˚ 0.60 0. inch MIN. TYP. 0.002 0.004 0.031 0.039 0.007 0.004 0.252 0.256 0.244 0.252 0.169 0.173 0.0256 BSC 0˚ 0.018 0.024 ...

Page 11

... Tape & Reel SO-20 MECHANICAL DATA DIM. MIN 12 10.8 Bo 13.2 Ko 3.1 Po 3.9 P 11.9 mm. TYP MAX. 330 13.2 0.504 0.795 2.362 30.4 11 0.425 13.4 0.520 3.3 0.122 4.1 0.153 12.1 0.468 74VHC273 inch MIN. TYP. MAX. 12.992 0.519 1.197 0.433 0.528 0.130 0.161 0.476 11/14 ...

Page 12

... Tape & Reel TSSOP20 MECHANICAL DATA DIM. MIN 12 6.8 Bo 6.9 Ko 1.7 Po 3.9 P 11.9 12/14 mm. TYP MAX. 330 13.2 0.504 0.795 2.362 22.4 7 0.268 7.1 0.272 1.9 0.067 4.1 0.153 12.1 0.468 inch MIN. TYP. MAX. 12.992 0.519 0.882 0.276 0.280 0.075 0.161 0.476 ...

Page 13

... Table 10: Revision History Date Revision 12-Nov-2004 5 Description of Changes Order Codes Revision - pag. 1. 74VHC273 13/14 ...

Page 14

... Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject to change without notice ...

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