HD74HC4051
8-Channel Analog Multiplexer Demultiplexer
REJ03D0648-0200
(Previous ADE-205-535)
Rev.2.00
Mar 30, 2006 Description
This device connects together the outputs of 8 switches, thus achieving an 8 Channel Multiplexer. The binary code placed on the A, B, and C select lines determine which one of the eight switches in “on”, and connects one of the eight inputs to the common output.
Features
? High Speed Operation
? Wide Operating Voltage: V CC = 2 to 6 V
? Low Quiescent Supply Current: I CC (static) = 4 μA max (Ta = 25°C)
? Ordering Information
Part Name Package Type
Package Code
(Previous Code)
Package
Abbreviation
Taping Abbreviation
(Quantity)
HD74HC4051P DILP-16
pin PRDP0016AE-B
(DP-16FV)
P —
HD74HC4051FPEL SOP-16 pin (JEITA) PRSP0016DH-B
(FP-16DAV)
FP EL (2,000 pcs/reel)
HD74HC4051RPEL SOP-16 pin (JEDEC) PRSP0016DG-A
(FP-16DNV)
RP EL (2,500 pcs/reel)
Note: Please consult the sales office for the above package availability.
Function Table
Control Inputs
Inhibit C B A
ON Switch L L L L X0
L L L H X1
L L H L X2
L L H H X3
L H L L X4
L H L H X5
L H H L X6
L H H H X7
H X X X — X: Irrelevant
Pin Arrangement
Block Diagram
Absolute Maximum Ratings
Item Symbol Rating Unit
V CC –0.5 to +7.0 V Supply voltage V CC – V EE –0.5 to +7.0 V Control input voltage V IN GND – 0.5 to V CC + 0.5 V Switch I/O voltage V I/O
V EE – 0.5 to V CC + 0.5
V
(V CC ) I CC +50 mA
Supply current
(GND) I GND –50 mA
Switch I/O current (per pin) I I/O
±25 mA Control input diode current I IK
±20 mA
Switch I/O diode current I IOK ±20 mA Power dissipation
P T 500 mW Storage temperature range Tstg
–65 to +150
°C
Recommended Operating Conditions
Item Symbol Min Typ Max Unit
V CC – V EE 2 — 6 V Supply voltage GND – V EE –4
—
V
Control input voltage
V IN 0 — V CC V Switch I/O voltage
V I/O V EE — V CC V Operating temperature Topr –40 — +85 °C
V CC = 2.0 V
0 — 1000
ns
V CC = 4.5 V
0 — 500
ns
Input rise/fall time V CC = 6.0 V
t r , t f 0 — 400
ns
Electrical Characteristics
Ta = 25°C
Ta = –40 to+85°C
Item Symbol V CC (V) Min Typ Max Min Max Unit Test Conditions
2.0 1.5 — — 1.5 — 4.5
3.15 — — 3.15
— V IH 6.0 4.2 — — 4.2
—
V
2.0 — — 0.5 — 0.5 4.5 — — 1.35 — 1.35 Control input voltage V IL
6.0 — — 1.8 — 1.8 V 2.0 — 2000 5000 — 6250 4.5 — 120 180 — 225 6.0 — 100 170 — 210 ? V INH = V IL
V I/O = V CC to V EE I I/O ≤ 2 mA 2.0 — 200 800 — 1000 4.5 — 80 150 — 190
ON resistance R ON
6.0 — 70 140 — 175 ? V INH = V IL
V I/O = V CC or V EE V I/O ≤ 2 mA 2.0 — 50 — — — 4.5 — 13 40 — 50 ?ON resistance between any two channels ?R ON
6.0 — 10 20 —
25
? V INH = V IL
V I/O = V CC to V EE I I/O ≤ 2 mA
OFF channel leakage current (switch off) I S (OFF) 6.0 — — ±0.1 — ±1.0 μA V INH = V IL
OFF channel leakage current (switch on)
I S (ON) 6.0 — — ±0.1 — ±1.0 μA V INH = V IL
Control input current Iin 6.0 — — ±0.1 — ±1.0 μA Vin = V CC or GND Quiescent supply current I CC 6.0 — — 4.0 — 40 μA Vin = V CC or GND
Switching Characteristics (C L = 50 pF, Input t r = t f = 6 ns, V EE = GND)
Ta = 25°C
Ta = –40 to +85°C
Item Symbol V CC (V) Min Typ Max Min Max Unit Test Conditions
2.0 — 25 60 — 75 4.5 — 6 12 — 15
t PLH 6.0 — 5 10 — 13
ns 2.0 — 25 60 — 75 4.5 — 6 12 — 15 Propagation delay time t PHL
6.0 — 5 10 — 13 ns
R L = 10 k ? Switch input to switch output 2.0 — 50 153 — 191 4.5 — 16 30 — 38 t PLH
6.0 — 14 26 — 33
ns 2.0 — 50 153 — 191 4.5 — 16 30 — 38 Propagation delay time
t PHL
6.0 — 14 26 — 33 ns R L = 10 k ?
Control input to switch output
2.0 — 50 153 — 191 4.5 — 14 30 — 38 t ZH
6.0 — 12 26 — 33
ns 2.0 — 50 153 — 191 4.5 — 14 30 — 38 Output enable time
t ZL
6.0 — 12 26 — 33 ns R L = 1 k ? 2.0 — 40 153 — 191 4.5 — 17 30 — 38 t HZ
6.0 — 14 26 — 33
ns 2.0 — 40 153 — 191 4.5 — 17 30 — 38
Output disable time
t LZ
6.0 — 14 26 — 33
ns R L = 1 k ? Control input capacitance Cin — — 5 10 — 10 pF Switch input capacitance
Cin 5.0 — 5 — — — pF Output capacitance (Common pin) Cout 5.0 — 22 — — — pF Feed through capacitance
Cin–out 5.0 — 0.7 — — — pF Power dissipation capacitance C PD 5.0 — 22.0 — — — pF Sine wave distortion 4.5
—
0.1
—
—
—
%
f in = 1 kHz, Vin = 4 V P-P
R L = 10 k ?, C L = 50 pF
Frequency response channel “ON” (Sine wave input)
4.5 — 95 — —
— MHz f in = 1 MHz,
20 log 10 V OS /V IS = –3 dB R L = 50 ?, C L = 10 pF
Feed through attenuation
4.5 — –50 — — — dB R L = 600 ?, C L = 50 pF,
f in = 1 MHz
2.0 — 25 — — — 4.5 — 60 — — —
Cross talk between any two switches 6.0 — 75 — — —
mV R L = 600 ?, C L = 15 pF,
f in = 1 MHz 2.0 — 20 — — — 4.5 — 30 — — — Maximum control frequency
6.0 — 30 — — —
MHz R L = 1 k ?, C L = 15 pF Vout = 1/2 (V CC )
Test Circuit
Maximum Control Frequency
Cross talk (Control Input to Switch Output)
Cin, Cout, Cin–out (Input, Output, and Feed through Capacitance)
R ON: ON Resistance
I S (OFF): OFF Channel Leakage Current (Switch OFF)
I S (ON): OFF Channel Leakage Current (Switch ON)
t PLH, t PHL: Propagation Delay Time (Switch Input to Switch Output)
t PLH, t PHL: Propagation Delay Time (Control Input to Switch Output)
t ZH, t ZL/t HZ, t LZ: Output Enable and Disable Time
Package Dimensions
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