4051G-S16-T [UTC]

8-CHANNEL ANALOG MULTIPLEXERS/DEMULTIPLEXERS; 8通道模拟多路复用器/多路解复用器
4051G-S16-T
型号: 4051G-S16-T
厂家: Unisonic Technologies    Unisonic Technologies
描述:

8-CHANNEL ANALOG MULTIPLEXERS/DEMULTIPLEXERS
8通道模拟多路复用器/多路解复用器

解复用器
文件: 总6页 (文件大小:255K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
UNISONIC TECHNOLOGIES CO., LTD  
4051  
CMOS IC  
8-CHANNEL ANALOG  
MULTIPLEXERS/DEMULTIPLEXERS  
SOP-16  
„
DESCRIPTION  
UTC 4051 is single 8-channel analog multiplexers/demultiplexers  
for application as digitally–controlled analog switches.  
The device has three binary control inputs and an inhibit input. It  
feature low ON impedance and very low OFF leakage current.  
Control of analog signals up to the complete supply voltage range  
can be achieved.  
DIP-16  
„
FEATURES  
TSSOP-16  
* Wide Analog Voltage Range: VDD–VEE = 3V~18V.  
(Note: VEE must beVSS  
)
* Break-Before-Make Switching Eliminates Channel Overlap.  
* Linearized Transfer Characteristics  
* Implement an SP8T solid state switch effectively.  
* Pin–to–Pin Replacement for CD4051  
„
ORDERING INFORMATION  
Ordering Number  
Lead Free  
Package  
Packing  
Halogen Free  
4051G-S16-R  
4051G-S16-T  
4051G-P16-R  
4051G-P16-T  
4051G-D16-T  
4051L-S16-R  
SOP-16  
SOP-16  
Tape Reel  
Tube  
4051L-S16-T  
4051L-P16-R  
TSSOP-16  
TSSOP-16  
DIP-16  
Tape Reel  
Tube  
4051L-P16-T  
4051L-D16-T  
Tube  
www.unisonic.com.tw  
Copyright © 2012 Unisonic Technologies Co., LTD  
1 of 6  
QW-R502-054.C  
4051  
CMOS IC  
„
PIN CONFIGURATION  
„ PIN DESCRIPTION  
PIN No.  
SYMBAL  
X
I/O  
I/O  
I
NAME AND FUNCTION  
3
Common Input/Output  
Inhibit Inputs  
6
INH  
7
VEE  
Supply Voltage  
Ground  
8
11,10,9  
VSS  
A,B,C  
X0~X7  
VDD  
I
Binary Control Inputs  
13,14,15,12,1,5,2,4  
16  
I/O  
Independent Inputs/Outputs  
Positive Supply Voltage  
UNISONIC TECHNOLOGIES CO., LTD  
2 of 6  
QW-R502-054.C  
www.unisonic.com.tw  
4051  
CMOS IC  
„
ABSOLUTE MAXIMUM RATING  
PARAMETER  
SYMBOL  
VDD  
RATINGS  
-0.5 ~ +18  
UNIT  
V
DC Supply Voltage (Referenced to VEE, VSSVEE  
)
Input or Output Voltage (DC or Transient)  
VIN, VOUT  
-0.5 ~ VDD +0.5  
V
(Referenced to VSS for Control Inputs and VEE for Switch I/O)  
Input Current (DC or Transient), per Control Pin  
Switch Through Current  
IIN  
±10  
±25  
mA  
mA  
ISW  
Power Dissipation  
500  
mW  
mW/℃  
PD  
Derating above 65℃  
7
Junction Temperature  
TJ  
125  
Operating Temperature  
TOPR  
TSTG  
-40 ~ +125  
-40 ~ +150  
Storage Temperature  
Note: 1.Absolute maximum ratings are those values beyond which the device could be permanently damaged.  
Absolute maximum ratings are stress ratings only and functional device operation is not implied.  
„
ELECTRICAL CHARACTERISTICS (TA=25, unless otherwise specified.)  
PARAMETER  
SYMBOL  
TEST CONDITIONS  
MIN  
TYP  
MAX  
UNIT  
V
SUPPLY REQUIREMENTS (Voltages Referenced to VEE  
)
Power Supply Voltage Range  
VDD  
IQ  
VDD – 3.0VSSVEE  
3
18  
5
V
DD=5V  
0.005  
0.010  
0.015  
Control Inputs: VIN = VSS or VDD  
Switch I/O: VEE VI/O VDD  
ΔVSW500mV(Note 2)  
Quiescent Current per  
Package  
VDD=10V  
VDD=15V  
,
10  
20  
µA  
V
DD=5V  
(0.07 µA/kHz) f + IQ  
(0.20 µA/kHz) f + IQ  
(0.36 µA/kHz) f + IQ  
Total Supply Current  
TA=25only (The channel  
ID(AV) component, (VIN-VOUT)/Ron, is  
not included.)  
(Dynamic Plus Quiescent, VDD=10V  
Per Package)  
µA  
VDD=15V  
SWITCHES IN/OUT AND COMMONS OUT/IN -- X, Y, Z (Voltages Referenced to VEE  
)
Recommended Peak–to–Peak  
VI/O  
Channel On or Off  
0
0
VDD  
600  
VPP  
Voltage Into or Out of the Switch  
Recommended Static or Dynamic  
Voltage Across the Switch  
Output Offset Voltage  
ΔVSW Channel On  
mV  
µV  
VO(OFF) VIN = 0V, No Load  
10  
250  
120  
80  
VDD=5V  
1050  
500  
280  
70  
ΔVSW500mV  
ON Resistance  
VDD=10V  
VDD=15V  
RON  
ΔRON  
IOFF  
V
V
IN = VIL or VIH (Control),  
IN = 0 to VDD (Switch)  
V
DD=5V  
25  
ΔON Resistance Between  
Any Two Channels in the  
Same Package  
VDD=10V  
VDD=15V  
10  
50  
10  
45  
VIN = VIL or VIH (Control)  
Channel to Channel or Any  
One Channel, VDD=15V  
Inhibit = VDD  
Off–Channel Leakage Current  
±0.05  
±100  
nA  
Capacitance, Switch I/O  
Capacitance, Common O/I  
Capacitance, Feedthrough  
(Channel Off)  
CI/O  
CO/I  
10  
17  
pF  
pF  
Inhibit = VDD  
Pins Not Adjacent  
Pins Adjacent  
0.15  
0.47  
CI/O  
pF  
UNISONIC TECHNOLOGIES CO., LTD  
3 of 6  
QW-R502-054.C  
www.unisonic.com.tw  
4051  
CMOS IC  
„
ELECTRICAL CHARACTERISTICS(Cont.)  
PARAMETER  
CONTROL INPUTS – INHIBIT A, B, C (Voltages Referenced to VSS  
DD=5V  
SYMBOL  
TEST CONDITIONS  
MIN  
TYP  
MAX  
UNIT  
V
)
V
2.25  
4.50  
4.0  
1.5  
3.0  
R
ON= per spec,  
Low Level Input Voltage  
VDD=10V  
VDD=15V  
VIL  
I
OFF = per spec  
6.75  
3.5  
7
V
DD=5V  
2.75  
5.5  
R
ON= per spec,  
High Level Input Voltage  
VDD=10V  
VDD=15V  
VIH  
V
I
OFF = per spec  
11  
8.25  
Input Leakage Current  
Input Capacitance  
ILEAK VIN= 0 or VDD, VDD=15V  
CIN  
±0.00001 ±0.1  
5.0 7.5  
µA  
pF  
„
DYNAMIC ELECTRICAL CHARACTERISTICS  
(CL = 50pF, TA=25, VEEVSS, unless otherwise specified)  
V
DD-VEE  
VDC  
5
PARAMETER  
SYMBOL  
TEST CONDITIONS  
PLH, tPHL =(0.17 ns/pF)CL + 26.5ns  
MIN TYP MAX UNIT  
Propagation Delay Times  
Switch Input to Switch  
Output (RL = 10k)  
t
35  
15  
90  
40  
tPLH, tPHL  
10  
15  
5
tPLH, tPHL =(0.08 ns/pF)CL + 11ns  
tPLH, tPHL =(0.06 ns/pF)CL + 9ns  
ns  
ns  
ns  
12  
30  
(RL=10k, VEE=VSS  
)
350  
170  
140  
360  
160  
120  
0.07  
700  
340  
280  
720  
320  
240  
t
t
PHZ, tPLZ  
PZH, tPZL  
Output “1” or “0” to High Impedance,  
or High Impedance to “1” or “0” Level  
Inhibit to Output  
10  
15  
5
Control Input to Output  
tPLH, tPHL  
10  
15  
10  
RL = 10k, VEE = VSS  
Total Harmonic Distortion  
Bandwidth  
THD  
BW  
RL = 10K, f = 1 kHz, Vin = 5 VPP  
RL = 1k, VIN = 1/2 (VDD–VEE) p–p,  
CL = 50pF, 20 Log (VOUT/VIN) = -3dB)  
RL=1K, VIN = 1/2 (VDD–VEE) p–p  
IN = 4.5 MHz  
RL = 1k, VIN = 1/2 (VDD–VEE) p–p  
IN = 3MHz  
R1 = 1k, RL = 10kControl  
TLH = tTHL = 20ns, Inhibit = VSS  
%
10  
10  
10  
10  
17  
-50  
-50  
75  
MHz  
Off Channel Feedthrough  
Attenuation  
dB  
dB  
f
Channel Separation  
f
Crosstalk, Control Input to  
Common O/I  
mV  
t
Note: 1. Data of “TYP” is intended as an indication of the IC’s potential performance.  
2. For voltage drops across the switch(ΔVSW)>600mV (>300mV at high temperature), excessive VDD current  
may be drawn, i.e. the current out of the switch may contain both VDD and switch input components. The  
reliability of the device will be unaffected unless the Maximum Ratings are exceeded.  
UNISONIC TECHNOLOGIES CO., LTD  
4 of 6  
QW-R502-054.C  
www.unisonic.com.tw  
4051  
CMOS IC  
„
TEST CIRCUIT  
VDD  
VDD  
VDD  
IN/OUT  
OUT/IN  
VEE  
VDD  
LEVEL  
CONVERTED  
OUT/IN  
IN/OUT  
CONTROL  
CONTROL  
VEE  
Switch Circuit Schematic  
„
TRUTH TABLE  
Control Inputs  
ON Switches  
INHIBIT  
C
B
A
0
0
0
0
0
0
0
0
0
0
1
1
0
1
0
1
X0  
X1  
X2  
X3  
0
0
0
0
1
1
1
1
0
0
1
1
0
1
0
1
X4  
X5  
X6  
X7  
1
x
x
x
None  
x = Don’t Care  
UNISONIC TECHNOLOGIES CO., LTD  
5 of 6  
QW-R502-054.C  
www.unisonic.com.tw  
4051  
CMOS IC  
„
TYPICAL CHARACTERISTICS  
UTC assumes no responsibility for equipment failures that result from using products at values that  
exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or  
other parameters) listed in products specifications of any and all UTC products described or contained  
herein. UTC products are not designed for use in life support appliances, devices or systems where  
malfunction of these products can be reasonably expected to result in personal injury. Reproduction in  
whole or in part is prohibited without the prior written consent of the copyright owner. The information  
presented in this document does not form part of any quotation or contract, is believed to be accurate  
and reliable and may be changed without notice.  
UNISONIC TECHNOLOGIES CO., LTD  
6 of 6  
QW-R502-054.C  
www.unisonic.com.tw  

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