Part Number Hot Search : 
L4448 MBR164 1MD1WBE BA4910 ID8155H L4448 MX7225UQ H5300
Product Description
Full Text Search
 

To Download KK74VHC08D Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 TECHNICAL DATA
Quad 2-Input AND Gate
KK74VHC08 is high-speed logic IC made by CMOS technology and designed for use in high-performance calculating systems with a wide supply voltage range. As for operation speed, KK74VHC08 can be compared with equivalent bipolar ICs based on Schottky TTL and two times surpasses ICs of KK74 series. KK74VHC08 tolerates operation under conditions when voltage on input is exceeded up to 7V without affecting characteristics and IC reliability. This possibility allows to use KK74VHC08 in radio-electronic devices for interfacing with supply voltages 5V and 3V, eliminate IC failure under supply voltage source emergency outage. Use of output edge shaping block in the microcircuit allows to reduce noise amplitude of noises when switching outputs into the same state simultaneously. Input and output levels of KK74VHC08 are compatible with CMOS levels
KK74VHC08
ORDERING INFORMATION KK74VHC08N Plastic KK74VHC08D SOIC TA = -40 to 85 C for all packages
* * * * * * * * * * .
Features: Supply voltage range 2.0 to 5.5 V. Output current 8 mA. Low consumption current: 0.2 mkA (typical value) at = 25 . Latchup current not less than 300 mA at = 85 . Tolerable value of static potential not less than 2000 V as per human body model (HBM) and not less than 200 V as per machine model (). Ambient operation temperature minus 40 to plus 85 . Balanced signal propagation delay. Ensures voltage exceeding mode on input Low noise level at the simultaneous switching of outputs in the same state: VOLP = 0.8 V (max). For pins and functions, compatible with KK7408.
1
KK74VHC08
KK74VHC08 truth table
Input Output
A L L H H
B L H
L
Y= * L L L H
H
Note - H - high voltage level; L - low voltage level;
Pinout
A1 01
B1 02
14
Vcc B4 A4
13
Y1 03
12
A2 04
11 Y4
10
B2 05
Y2 06
B3 A3 Y3
09
GND 07
08
Pins description in KK74VHC08
Pin No. 01 02 03 04 05 06 07 08 09 10 11 12 13 14 Symbol 1 1 Y1 2 2 Y2 GND Y3 3 3 Y4 4 4 VCC Description Input Input Output Input Input Output Common output Output Input Input Output Input Input Supply output from voltage source
2
KK74VHC08
Absolute maximum conditions* Parameter, unit Symbol min -0.5 -0.5 -0.5 - - Value max 7.0 7.0 Vcc+0.5V -20 50
Supply voltage, V VCC Input voltage, V Vin Vout Output voltage, V Input diode current, mA Iik Current of common output and supply Icc output, mA Output current, mA Iout - 25 Output diode current, mA Iok - 20 Dissipated power, mW Pd - 180 *Under absolute maximum conditions operation of microcircuit is not guaranteed. Operation is guaranteed under maximum conditions
Maximum conditions Parameter, unit Symbol min 2.0 0 0 - 0 0 Value max 5.5 VCC VCC 8.0 100 20
Supply voltage, V Input voltage,V Output voltage, V Output current, mA Input rise and fall time, ns/V at Vcc = (3.3 0.3) V at Vcc = (5.0 0.5) V
VCC Vin Vout Iout tLH, tHL
3
KK74VHC08
DC electrical characteristics
Symbo l
Parameter
Test conditions
VCC, V 2.0 3.0 4.5 5.5 2.0 3.0 4.5 5.5 2.0 3.0 4.5 5.5 3.0 4.5 2.0 3.0 4.5 5.5 3.0 4.5 5.5 5.5 0 5.5
Value 25 C min 1.5 0.7 VCC 0.7 VCC 0.7 VCC max -40 to 85 C min max 1.5 0.7 VCC 0.7 VCC 0.7 VCC 0.5 0.3 VCC 0.3 VCC 0.3 VCC 1.9 2.9 4.4 5.4 2.48 3.8 0.09 0.09 0.09 0.09 0.36 0.36 -0.1 0.1 0.1 2.0 0.1 0.1 0.1 0.1 0.44 0.44 -1.0 1.0 1.0 20
Unit
VI High level input VO 0.1 V or voltage VO VCC -0.1 V VIL Low level input VO 0.1 V or voltage VO VCC -0.1 V VOH High level output VI = VI or VIL voltage IO = -50 uA VI = VI or VIL IO = -4 mA VI = VI or VIL IO = -8 mA Low level output VI = VI or VIL voltage IOL = 50 uA VI = VI or VIL IOL = 4 mA VI = VI or VIL IOL = 8 mA Low level input VI = 0
current
V
1.92 2.92 4.42 5.42 2.58 3.94 -
0.5 0.3 VCC 0.3 VCC 0.3 VCC -
VOL
IIL II II1 ICC
uA
High level input VI = VCC current High level input VI = 5.5 current Consumption VI = 0 VCC current
4
KK74VHC08
AC electrical characteristics (tLH = tHL = 3.0 ns VIL = 0 V, VI=VCC,) Symbol Parameter Test condition VCC, V s Value CL, pF -40 to 85 C min max min max 8.8 - 10.5 12.3 14.0 5.9 7.07.9 9.0 10 36 25 C Unit ns
tPHL, tPLH Propagation delay time when switching "on", "off" CI CD
Input capacity Dynamic capacity
3.3 0.3 15 50 5.0 0.5 15 50 5.0 VI = 0 V 5.0 or VCC
pF
Noise characteristics (CL = 50 pF) Parameter Symbol VOLP VOLV VIHD VILD VCC, V Positive noise of low output 5.0 voltage Negative noise of low output 5.0 voltage Input dynamic high voltage Input dynamic low voltage 5.0 5.0 min -0.8
3.5 -
Value max 0.8 1.5
Unit V
- Time diagram of input and output pulses
t 0.9 A, B 0.5 0.1 t PH
L LH
t
HL
0.9 0.5 0.1 t PL
H
VCC
GND VCC
0.5 Y
0.5 0V
5
KK74VHC08
N SUFFIX PLASTIC DIP (MS - 001AA)
A 14 8 B 1 7
Dimension, mm Symbol A B C MIN 18.67 6.1 MAX 19.69 7.11 5.33 0.36 1.14 2.54 7.62 0 2.92 7.62 0.2 0.38 10 3.81 8.26 0.36 0.56 1.78
F
L
D F
C -T- SEATING N G D 0.25 (0.010) M T K
PLANE
G H
H J
M
J K L M N
NOTES: 1. Dimensions "A", "B" do not include mold flash or protrusions. Maximum mold flash or protrusions 0.25 mm (0.010) per side.
D SUFFIX SOIC (MS - 012AB) Dimension, mm
8
A 14
Symbol A
MIN 8.55 3.8 1.35 0.33 0.4 1.27 5.27 0 0.1 0.19 5.8 0.25
MAX 8.75 4 1.75 0.51 1.27
H
B
P
B C
1
G
7 C R x 45
D F G
-TD 0.25 (0.010) M T C M K
SEATING PLANE
H
J F M
J K M P R
8 0.25 0.25 6.2 0.5
NOTES: 1. Dimensions A and B do not include mold flash or protrusion. 2. Maximum mold flash or protrusion 0.15 mm (0.006) per side for A; for B 0.25 mm (0.010) per side.
6


▲Up To Search▲   

 
Price & Availability of KK74VHC08D

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X