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PDF MC74LVXT8053 Data sheet ( Hoja de datos )

Número de pieza MC74LVXT8053
Descripción Analog Multiplexer/Demultiplexer
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MC74LVXT8053
Analog Multiplexer /
Demultiplexer
High–Performance Silicon–Gate CMOS
The MC74LVXT8053 utilizes silicon–gate CMOS technology to
achieve fast propagation delays, low ON resistances, and low OFF
leakage currents. This analog multiplexer/demultiplexer controls
analog voltages that may vary across the complete power supply range
(from VCC to GND).
The LVXT8053 is similar in pinout to the high–speed HC4053A,
and the metal–gate MC14053B. The Channel–Select inputs determine
which one of the Analog Inputs/Outputs is to be connected by means
of an analog switch to the Common Output/Input. When the Enable
pin is HIGH, all analog switches are turned off.
The Channel–Select and Enable inputs are compatible with
TTL–type input thresholds. The input protection circuitry on this
device allows overvoltage tolerance on the input, allowing the device
to be used as a logic–level translator from 3.0V CMOS logic to 5.0V
CMOS Logic or from 1.8V CMOS logic to 3.0V CMOS Logic while
operating at the higher–voltage power supply.
The MC74LVXT8053 input structure provides protection when voltages
up to 7V are applied, regardless of the supply voltage. This allows the
MC74LVXT8053 to be used to interface 5V circuits to 3V circuits.
This device has been designed so that the ON resistance (Ron) is more
linear over input voltage than Ron of metal–gate CMOS analog switches.
Fast Switching and Propagation Speeds
Low Crosstalk Between Switches
Diode Protection on All Inputs/Outputs
Analog Power Supply Range (VCC – GND) = 2.0 to 6.0 V
Digital (Control) Power Supply Range (VCC – GND) = 2.0 to 6.0 V
Improved Linearity and Lower ON Resistance Than Metal–Gate
Counterparts
Low Noise
In Compliance With the Requirements of JEDEC Standard No. 7A
LOGIC DIAGRAM
Triple Single–Pole, Double–Position Plus Common Off
X0 12
X1 13
X SWITCH
14 X
ANALOG
INPUTS/OUTPUTS
Y0 2
Y1 1
Y SWITCH
15 Y COMMON
OUTPUTS/INPUTS
Z0 5
Z1 3
Z SWITCH
4Z
A 11
CHANNEL-SELECT
INPUTS
B 10
C9
ENABLE 6
PIN 16 = VCC
PIN 8 = GND
NOTE: This device allows independent control of each switch.
Channel–Select Input A controls the X–Switch, Input B controls
the Y–Switch and Input C controls the Z–Switch
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16–LEAD SOIC
D SUFFIX
CASE 751B
16–LEAD TSSOP
DT SUFFIX
CASE 948F
PIN CONNECTION AND
MARKING DIAGRAM (Top View)
VCC Y X X1 X0 A B C
16 15 14 13 12 11 10 9
12345678
Y1 Y0 Z1 Z Z0 Enable NC GND
For detailed package marking information, see the Marking
Diagram section on page 11 of this data sheet.
FUNCTION TABLE – MC74LVXT8053
Control Inputs
Enable
Select
CBA
ON Channels
L L L L Z0 Y0 X0
L L L H Z0 Y0 X1
L L H L Z0 Y1 X0
L L H H Z0 Y1 X1
L H L L Z1 Y0 X0
L H L H Z1 Y0 X1
L H H L Z1 Y1 X0
L H H H Z1 Y1 X1
H XXX
NONE
X = Don’t Care
ORDERING INFORMATION
Device
Package Shipping
MC74LVXT8053D
SOIC 48 Units/Rail
MC74LVXT8053DR2 SOIC 2500 Units/Reel
MC74LVXT8053DT TSSOP 96 Units/Rail
MC74LVXT8053DTR2 TSSOP 2500 Units/Reel
© Semiconductor Components Industries, LLC, 1999
March, 2000 – Rev. 2
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1
Publication Order Number:
MC74LVXT8053/D

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MC74LVXT8053
ADDITIONAL APPLICATION CHARACTERISTICS (GND = 0 V)
Symbol
Parameter
BW Maximum On–Channel Bandwidth
or Minimum Frequency Response
(Figure 6)
Condition
fin = 1MHz Sine Wave; Adjust fin Voltage to Obtain
0dBm at VOS; Increase fin Frequency Until dB
Meter Reads –3dB;
RL = 50, CL = 10pF
— Off–Channel Feedthrough Isolation fin = Sine Wave; Adjust fin Voltage to Obtain 0dBm
(Figure 7)
at VIS
fin = 10kHz, RL = 600, CL = 50pF
fin = 1.0MHz, RL = 50, CL = 10pF
— Feedthrough Noise.
Vin 1MHz Square Wave (tr = tf = 3ns); Adjust RL
Channel–Select Input to Common at Setup so that IS = 0A;
I/O (Figure 8)
Enable = GND
RL = 600, CL = 50pF
— Crosstalk Between Any Two
Switches (Figure 12)
RL = 10k, CL = 10pF
fin = Sine Wave; Adjust fin Voltage to Obtain 0dBm
at VIS
fin = 10kHz, RL = 600, CL = 50pF
fin = 1.0MHz, RL = 50, CL = 10pF
THD Total Harmonic Distortion
(Figure 14)
fin = 1kHz, RL = 10k, CL = 50pF
THD = THDmeasured – THDsource
VIS = 2.0VPP sine wave
VIS = 4.0VPP sine wave
VIS = 5.0VPP sine wave
*Limits not tested. Determined by design and verified by qualification.
VCC
V
3.0
4.5
5.5
3.0
4.5
5.5
3.0
4.5
5.5
3.0
4.5
5.5
3.0
4.5
5.5
3.0
4.5
5.5
3.0
4.5
5.5
3.0
4.5
5.5
Limit*
25°C
120
120
120
–50
–50
–50
–37
–37
–37
25
105
135
35
145
190
–50
–50
–50
–60
–60
–60
0.10
0.08
0.05
Unit
MHz
dB
mVPP
dB
%
45
40
35
30 125°C
25 85°C
25°C
20
– 55°C
15
10
5
0 0 1.0 2.0 3.0 4.0
VIN, INPUT VOLTAGE (VOLTS)
Figure 1a. Typical On Resistance, VCC = 3.0 V
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MC74LVXT8053
MARKING DIAGRAMS
(Top View)
16 15 14 13 12 11 10 9
LVXT8051
AWLYWW*
12345678
16 15 14 13 12 11 10 9
LVXT
8051
ALYW*
12345678
16–LEAD SOIC
D SUFFIX
CASE 751B
16–LEAD TSSOP
DT SUFFIX
CASE 948F
*See Applications Note #AND8004/D for date code and traceability information.
–A
16
1
PACKAGE DIMENSIONS
D SUFFIX
PLASTIC SOIC PACKAGE
CASE 751B–05
ISSUE J
9
–B
8
P 8 PL
0.25 (0.010) M B M
–T
SEATING
PLANE
G
K
C
D 16 PL
0.25 (0.010) M T B S A S
M
R X 45°
F
J
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: MILLIMETER.
3. DIMENSIONS A AND B DO NOT INCLUDE
MOLD PROTRUSION.
4. MAXIMUM MOLD PROTRUSION 0.15 (0.006)
PER SIDE.
5. DIMENSION D DOES NOT INCLUDE DAMBAR
PROTRUSION. ALLOWABLE DAMBAR
PROTRUSION SHALL BE 0.127 (0.005) TOTAL
IN EXCESS OF THE D DIMENSION AT
MAXIMUM MATERIAL CONDITION.
MILLIMETERS
INCHES
DIM MIN MAX MIN MAX
A 9.80 10.00 0.386 0.393
B 3.80 4.00 0.150 0.157
C 1.35 1.75 0.054 0.068
D 0.35 0.49 0.014 0.019
F 0.40 1.25 0.016 0.049
G
1.27 BSC
0.050 BSC
J 0.19 0.25 0.008 0.009
K 0.10 0.25 0.004 0.009
M 0° 7° 0° 7°
P 5.80 6.20 0.229 0.244
R 0.25 0.50 0.010 0.019
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