MAX4613CC/D [MAXIM]

Quad, SPST Analog Switch; 四路, SPST模拟开关
MAX4613CC/D
型号: MAX4613CC/D
厂家: MAXIM INTEGRATED PRODUCTS    MAXIM INTEGRATED PRODUCTS
描述:

Quad, SPST Analog Switch
四路, SPST模拟开关

开关
文件: 总10页 (文件大小:247K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
19-1362; Rev 3; 6/07  
Quad, SPST Analog Switch  
________________General Description  
____________________________Features  
The MAX4613 quad analog switch features on-resis-  
tance matching (4Ω max) between switches and guar-  
antees on-resistance flatness over the signal range (9Ω  
max). This low on-resistance switch conducts equally  
well in either direction. It guarantees low charge injec-  
tion (10pC max), low power consumption (35µW max),  
and an electrostatic discharge (ESD) tolerance of  
2000V minimum per Method 3015.7. The new design  
offers lower off-leakage current over temperature (less  
than 5nA at +85°C).  
Pin Compatible with Industry-Standard DG213  
Guaranteed R  
(4Ω max)  
Match Between Channels  
ON  
Guaranteed R  
(9Ω max)  
Over Signal Range  
FLAT(ON)  
Guaranteed Charge Injection (10pC max)  
Low Off-Leakage Current Over Temperature  
(<5nA at +85°C)  
The MAX4613 quad, single-pole/single-throw (SPST)  
analog switch has two normally closed switches and  
two normally open switches. Switching times are less  
Withstands 2000V min ESD, per Method 3015.7  
Low R (85Ω max)  
DS(ON)  
than 250ns for t  
and less than 70ns for t  
.
OFF  
ON  
Operation is from a single +4.5V to +40V supply or  
bipolar 4.5V to 20V supplies.  
Single-Supply Operation +4.5V to +40V  
Bipolar-Supply Operation 4.5V to 20V  
________________________Applications  
Low Power Consumption (35µW max)  
Rail-to-Rail Signal Handling  
Sample-and-Hold Circuits  
Communication Systems  
Battery-Operated Systems  
PBX, PABX  
Test Equipment  
TTL/CMOS-Logic Compatible  
Heads-Up Displays  
Guidance and Control Systems  
Military Radios  
Audio Signal Routing  
Modems/Faxes  
Pin Configurations/  
___Functional Diagrams/TruthTable  
________________Ordering Information  
TOP VIEW  
PART  
TEMP RANGE  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
PIN-PACKAGE  
16 Plastic DIP  
16 Narrow SO  
16 QSOP  
MAX4613CPE  
MAX4613CSE  
MAX4613CEE  
MAX4613CUE  
MAX4613CC/D  
16  
14  
13  
15  
12 S2  
1
2
3
4
S1  
16 TSSOP**  
Dice*  
11  
V+  
V-  
GND  
S4  
MAX4613  
16 TQFN-EP***  
(5mm x 5mm)  
10  
9
V
MAX4613ETE  
-40°C to +85°C  
L
*EP  
MAX4613EPE  
MAX4613ESE  
MAX4613EEE  
MAX4613EUE  
-40°C to +85°C  
-40°C to +85°C  
-40°C to +85°C  
-40°C to +85°C  
16 Plastic DIP  
16 Narrow SO  
16 QSOP  
S3  
5
6
8
7
16 TSSOP**  
THIN QFN  
*Contact factory for dice specifications.  
**Contact factory for availability.  
***EP = Exposed Pad  
*EP = EXPOSED PAD, CONNECT EP TO V+  
Pin Configurations continued at end of data sheet.  
________________________________________________________________ Maxim Integrated Products  
1
For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642,  
or visit Maxim’s website at www.maxim-ic.com.  
Quad, SPST Analog Switch  
ABSOLUTE MAXIMUM RATINGS  
Voltage Referenced to GND  
Continuous Power Dissipation (T = +70°C)  
A
V+ ......................................................................................+44V  
V-.........................................................................................-44V  
V+ to V-..............................................................................+44V  
Plastic DIP (derate 10.53mW/°C above +70°C) .............842mW  
Narrow SO (derate 8.70mW/°C above +70°C) .............696mW  
QSOP (derate 8.3mW/°C above +70°C).......................667mW  
Thin QFN (derate 33.3mW/°C above +70°C)..............2667mW  
TSSOP (derate 6.7mW/°C above +70°C) .....................457mW  
Operating Temperature Ranges  
V ...................................................(GND - 0.3V) to (V+ + 0.3V)  
L
Digital Inputs V  
V
(Note 1) ...................(V- - 2V) to (V+ + 2V)  
or 30mA (whichever occurs first)  
S_ D_  
Continuous Current (any terminal)......................................30mA  
Peak Current, S_ or D_  
(pulsed at 1ms, 10% duty cycle max) ...........................100mA  
MAX4613C_ _ ......................................................0°C to +70°C  
MAX4613E_ _ ...................................................-40°C to +85°C  
Storage Temperature Range.............................-65°C to +165°C  
Lead Temperature (soldering, 10sec) .............................+300°C  
Note 1: Signals on S_, D_, or IN_ exceeding V+ or V- are clamped by internal diodes. Limit forward current to maximum current rating.  
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional  
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to  
absolute maximum rating conditions for extended periods may affect device reliability.  
ELECTRICAL CHARACTERISTICS—Dual Supplies  
(V+ = 15V, V- = -15V, V = 5V, GND = 0V, V  
= 2.4V, V  
= 0.8V, T = T  
to T  
, unless otherwise noted.)  
MAX  
L
INH  
INL  
A
MIN  
MIN  
TYP  
(Note 2)  
MAX  
PARAMETER  
SYMBOL  
CONDITIONS  
UNITS  
SWITCH  
Analog Signal Range  
V
(Note 3)  
-15  
15  
70  
85  
4
V
ANALOG  
T
A
T
A
T
A
T
A
T
A
T
A
T
A
T
A
T
A
T
A
= +25°C  
55  
V
D
=
10V,  
Drain-Source On-Resistance  
R
Ω
DS(ON)  
I = 1mA  
S
= T  
to T  
MIN  
MAX  
MAX  
MAX  
MAX  
MAX  
= +25°C  
= T to T  
On-Resistance Match  
Between Channels (Note 4)  
V
D
=
10V,  
ΔR  
Ω
Ω
DS(ON)  
FLAT(ON)  
IS(OFF)  
I = 1mA  
S
5
MIN  
= +25°C  
= T to T  
9
V
D
=
5V,  
On-Resistance Flatness (Note 4) R  
I = 1mA  
S
15  
0.50  
5
MIN  
= +25°C  
= T to T  
-0.50  
-5  
0.01  
0.01  
Source Leakage Current  
(Note 5)  
V
D
=
14V,  
nA  
nA  
V = 14V  
S
MIN  
= +25°C  
= T to T  
-0.50  
-5  
0.50  
5
Drain-Off Leakage Current  
(Note 5)  
V
D
=
14V,  
I
D(OFF)  
V = 14V  
S
MIN  
I
D(ON)  
or  
S(ON)  
T
= +25°C  
-0.50  
-10  
0.08  
0.50  
10  
A
A
Drain-On Leakage Current  
(Note 5)  
V
=
14V,  
D
nA  
V = 14V  
S
T
= T  
to T  
MAX  
MIN  
I
INPUT  
Input Current with  
Input Voltage High  
I
V
V
= 2.4V, all others = 0.8V  
= 0.8V, all others = 2.4V  
-0.5 -0.00001  
-0.5 -0.00001  
0.5  
0.5  
µA  
µA  
INH  
IN  
Input Current with  
Input Voltage Low  
I
INL  
IN  
SUPPLY  
Power-Supply Range  
V+, V-  
I+  
4.5  
20.0  
V
T
A
T
A
T
A
T
A
= +25°C  
-1  
-5  
-1  
-5  
0.001  
0.001  
1
5
1
5
All channels on or off,  
= 0 or 5V  
Positive Supply Current  
Negative Supply Current  
µA  
V
IN  
= T  
to T  
MIN  
MAX  
MAX  
= +25°C  
= T to T  
All channels on or off,  
= 0 or 5V  
I-  
µA  
V
IN  
MIN  
2
_______________________________________________________________________________________  
Quad, SPST Analog Switch  
ELECTRICAL CHARACTERISTICS—Dual Supplies (continued)  
(V+ = 15V, V- = -15V, V = 5V, GND = 0V, V  
= 2.4V, V  
= 0.8V, T = T  
to T  
, unless otherwise noted.)  
MAX  
L
INH  
INL  
A
MIN  
MIN  
TYP  
(Note 2)  
MAX  
PARAMETER  
SYMBOL  
CONDITIONS  
UNITS  
T
A
T
A
T
A
T
A
= +25°C  
-1  
-5  
-1  
-5  
0.001  
1
5
1
5
All channels on or off,  
= 0 or 5V  
Logic Supply Current  
I
µA  
L
V
IN  
= T  
to T  
MIN  
MAX  
MAX  
= +25°C  
= T to T  
-0.0001  
All channels on or off,  
= 0 or 5V  
Ground Current  
I
µA  
GND  
V
IN  
MIN  
DYNAMIC  
Turn-On Time (Note 3)  
Turn-Off Time (Note 3)  
t
V = 10V, Figure 2  
T
T
= +25°C  
= +25°C  
150  
90  
250  
120  
ns  
ns  
ON  
S
A
t
V = 10V, Figure 2  
S
OFF  
A
Break-Before-Make Time  
Delay (Note 3)  
t
Figure 3  
T
A
T
A
T
A
T
A
= +25°C  
= +25°C  
= +25°C  
= +25°C  
5
20  
5
ns  
pC  
dB  
dB  
D
C = 1nF, V  
= 0,  
L
GEN  
Charge Injection (Note 3)  
Q
10  
R
GEN  
= 0, Figure 4  
Off-Isolation Rejection  
Ratio (Note 6)  
R = 50Ω, C = 5pF,  
L
L
f = 1MHz, Figure 5  
OIRR  
60  
100  
R = 50Ω, C = 5pF,  
L
L
Crosstalk (Note 7)  
f = 1MHz, Figure 6  
Source-Off Capacitance  
Drain-Off Capacitance  
Source-On Capacitance  
Drain-On Capacitance  
C
f = 1MHz, Figure 7  
f = 1MHz, Figure 7  
f = 1MHz, Figure 8  
f = 1MHz, Figure 8  
T
A
T
A
T
A
T
A
= +25°C  
= +25°C  
= +25°C  
= +25°C  
4
4
pF  
pF  
pF  
pF  
S(OFF)  
C
D(OFF)  
C
16  
16  
S(ON)  
C
D(ON)  
ELECTRICAL CHARACTERISTICS—Single Supply  
(V+ = 12V, V- = 0V, V = 5V, GND = 0V, V  
= 2.4V, V  
= 0.8V, T = T  
to T  
, unless otherwise noted.)  
MAX  
L
INH  
INL  
A
MIN  
MIN  
TYP  
(Note 2)  
MAX  
PARAMETER  
SWITCH  
SYMBOL  
CONDITIONS  
UNITS  
Analog Signal Range  
V
0
12  
V
ANALOG  
T
T
= +25°C  
100  
160  
200  
A
Drain-Source  
On-Resistance  
V = 5V; V = 3V, 8V;  
L D  
I = 1mA  
S
R
Ω
DS(ON)  
= T  
to T  
MAX  
A
MIN  
SUPPLY  
Power-Supply Range  
V+, V-  
I+  
4.5  
-1  
-5  
-1  
-5  
-1  
-5  
-1  
-5  
40  
1
V
T
A
T
A
T
A
T
A
T
A
T
A
T
A
T
A
= +25°C  
0.001  
-0.0001  
0.001  
All channels on or off,  
= 0 or 5V  
Power-Supply Current  
Negative Supply Current  
Logic Supply Current  
Ground Current  
µA  
V
IN  
= T  
to T  
5
MIN  
MAX  
MAX  
MAX  
MAX  
= +25°C  
= T to T  
1
All channels on or off,  
= 0 or 5V  
I-  
µA  
µA  
µA  
V
IN  
5
MIN  
= +25°C  
= T to T  
1
All channels on or off,  
= 0 or 5V  
I
L
V
IN  
5
MIN  
= +25°C  
= T to T  
-0.0001  
1
All channels on or off,  
= 0 or 5V  
I
GND  
V
IN  
5
MIN  
_______________________________________________________________________________________  
3
Quad, SPST Analog Switch  
ELECTRICAL CHARACTERISTICS—Single Supply (continued)  
(V+ = 12V, V- = 0, V = 5V, GND = 0V, V  
= 2.4V, V  
= 0.8V, T = T  
to T  
, unless otherwise noted.)  
MAX  
L
INH  
INL  
A
MIN  
MIN  
TYP  
(Note 2)  
MAX  
PARAMETER  
DYNAMIC  
SYMBOL  
CONDITIONS  
UNITS  
Turn-On Time (Note 3)  
Turn-Off Time (Note 3)  
t
V = 8V, Figure 2  
S
T
T
= +25°C  
= +25°C  
300  
60  
400  
200  
ns  
ns  
ON  
A
t
V = 8V, Figure 2  
S
OFF  
A
C = 1nF, V  
= 0,  
L
GEN  
Charge Injection (Note 3)  
Q
T
A
= +25°C  
5
10  
pC  
R
GEN  
= 0, Figure 4  
Note 2: Typical values are for design aid only, are not guaranteed and are not subject to production testing. The algebraic convention,  
where the most negative value is a minimum and the most positive value a maximum, is used in this data sheet.  
Note 3: Guaranteed by design.  
Note 4: On-resistance match between channels and flatness are guaranteed only with bipolar-supply operation. Flatness is defined  
as the difference between the maximum and the minimum value of on-resistance as measured at the extremes of the speci-  
fied analog signal range.  
Note 5: Leakage parameters I  
, I  
, I  
, and I  
are 100% tested at the maximum rated hot temperature and guaranteed at +25°C.  
S(OFF) D(OFF) D(ON)  
S(ON)  
Note 6: Off-Isolation Rejection Ratio = 20log (V /V ).  
D
S
Note 7: Between any two switches.  
__________________________________________Typical Operating Characteristics  
(T = +25°C, unless otherwise noted.)  
A
SWITCHING THRESHOLD vs.  
BIPOLAR SUPPLY VOLTAGE  
OFF LEAKAGE CURRENTS  
ON LEAKAGE CURRENTS  
1
3.5  
3.0  
2.5  
2.0  
1.5  
0.5  
2
T
= +125°C  
A
0.5  
1
IN HIGH MIN  
IN LOW MAX  
T
= +125°C  
A
T
= +85°C  
A
0
0
-1  
-2  
T
= +85°C  
A
-0.5  
-1  
V+ = 15V  
V- = -15V  
V+ = 15V  
V- = -15V  
0
-15  
-10  
-5  
0
5
10  
15  
5
10  
15  
20  
-15  
-10  
-5  
0
5
10  
15  
V , V (V)  
BIPOLAR SUPPLY VOLTAGE (V)  
V , V (V)  
S
D
S
D
ON-RESISTANCE vs. V (BIPOLAR  
D
SUPPLY VOLTAGE AND TEMPERATURE)  
ON-RESISTANCE vs. V  
ON-RESISTANCE vs. V  
D
D
(UNIPOLAR SUPPLY VOLTAGE)  
(BIPOLAR SUPPLY VOLTAGE)  
100  
80  
150  
125  
120  
90  
V+ = 15V, V- = -15V  
V+ = 5V  
V
=
5V  
=
V+ = 10V  
100  
T
= +125°C  
A
60  
V
10V  
V
V+ = 15V  
V+ = 20V  
60  
30  
75  
50  
T
= +25°C  
A
40  
20  
=
0
15V  
T
= -55°C  
A
V
= 20V  
25  
0
0
-15  
0
-10  
-5  
0
5
10  
15  
0
5
10  
(V)  
15  
20  
-20  
-10  
10  
20  
V
(V)  
D
V
V
(V)  
D
D
4
_______________________________________________________________________________________  
Quad, SPST Analog Switch  
_____________________________Typical Operating Characteristics (continued)  
(T = +25°C, unless otherwise noted.)  
A
ON-RESISTANCE vs. V (UNIPOLAR  
D
SUPPLY VOLTAGE AND TEMPERATURE)  
SWITCHING TIME vs.  
BIPOLAR SUPPLY VOLTAGE  
SWITCHING TIME vs.  
UNIPOLAR SUPPLY VOLTAGE  
150  
160  
120  
80  
200  
150  
V- = 0  
T
= +125°C  
T
A
125  
100  
75  
= +25°C  
= -40°C  
A
t
ON  
t
t
ON  
100  
50  
T
A
50  
OFF  
40  
0
25  
t
OFF  
V+ = 12V  
V- = 0  
0
0
0
4
8
12  
5
10  
15  
20  
10  
15  
20  
25  
UNIPOLAR SUPPLY VOLTAGE (V)  
V
(V)  
BIPOLAR SUPPLY VOLTAGE (V)  
D
CHARGE INJECTION vs.  
CHARGE INJECTION vs.  
V VOLTAGE  
D
V VOLTAGE  
D
10  
20  
V+ = 15V  
V- = -15V  
C = 1nF  
L
V+ = 12V  
V- = 0V  
C = 1nF  
L
10  
0
5
0
-10  
-20  
-5  
-10  
-15  
-10  
0
10  
15  
0
5
10  
15  
V
(V)  
V (V)  
D
D
_______________________________________________________________________________________  
5
Quad, SPST Analog Switch  
Pin Description  
PIN  
NAME  
FUNCTION  
DIP/SO/TSSOP  
1, 8, 9, 16  
2, 7, 10, 15  
3, 6, 11, 14  
4
THIN QFN  
6, 7, 14, 15  
5, 8, 13, 16  
1, 4, 9, 12  
2
IN1–IN4  
D1–D4  
S1–S4  
V-  
Logic Control Input  
Analog-Switch Drain Output  
Analog-Switch Source Output  
Negative-Supply Voltage Input  
Ground  
5
3
GND  
12  
13  
10  
11  
EP  
V
Logic-Supply Voltage Input  
L
V+  
Positive-Supply Voltage Input—Connected to Substrate  
Exposed Pad. Connect PAD to V+.  
PAD  
V , V-, and logic inputs. If power-supply sequencing  
L
Applications Information  
General Operation  
1) Switches are open when power is off.  
is not possible, add two small, external signal  
diodes in series with supply pins for overvoltage  
protection (Figure 1). Adding diodes reduces the  
analog signal range to 1V below V+ and 1V above  
V-, but low switch resistance and low leakage char-  
acteristics are unaffected. Device operation is  
unchanged, and the difference between V+ and V-  
should not exceed +44V.  
2) IN_, D_, and S_ should not exceed V+ or V-, even  
with the power off.  
3) Switch leakage is from each analog switch terminal  
to V+ or V-, not to other switch terminals.  
Operation with Supply Voltages  
Other than 1ꢀV  
V+  
Using supply voltages less than 15V will reduce the  
analog signal range. The MAX4613 operates with  
4.5V to 20V bipolar supplies or with a +4.5V to +40V  
single supply; connect V- to GND when operating with  
a single supply. Also, all device types can operate with  
S
D
unbalanced supplies such as +24V and -5V. V must  
L
be connected to +5V to be TTL compatible, or to V+ for  
CMOS-logic level inputs. The Typical Operating  
Characteristics graphs show typical on-resistance with  
20V, 15V, 10V, and 5V supplies. (Switching times  
increase by a factor of two or more for operation at 5V.)  
V
g
V-  
Overvoltage Protection  
Proper power-supply sequencing is recommended  
for all CMOS devices. Do not exceed the absolute  
maximum ratings because stresses beyond the list-  
ed ratings may cause permanent damage to the  
devices. Always sequence V+ on first, followed by  
Figure 1. Overvoltage Protection Using External Blocking Diodes  
6
_______________________________________________________________________________________  
Quad, SPST Analog Switch  
Timing Diagrams/Test Circuits  
+3V  
LOGIC  
INPUT  
50%  
LOGIC  
INPUT  
+3V  
0V  
t < 20ns  
t < 20ns  
r
f
0V  
50%  
V
V
D
O1  
0.9V  
O
t
OFF  
0V  
SWITCH  
OUTPUT  
V
OUT  
0.8 x V  
0.8 x V  
OUT  
OUT  
V
D
V
0.9V  
O
O2  
SWITCH  
OUTPUT  
0V  
0V  
SWITCH  
OUTPUT  
t
ON  
t
t
D
D
LOGIC INPUT WAVEFORM IS INVERTED FOR SWITCHES  
THAT HAVE THE OPPOSITE LOGIC SENSE.  
+5V  
+15V  
V+  
+15V  
V+  
+5V  
V
L
MAX4613  
V
O1  
D_  
D_  
IN_  
S_  
V
= 10V  
= 10V  
V
D
L
MAX4613  
SWITCH  
INPUT  
S_  
D_  
V
S_  
O2  
R
V
L1  
OUT  
V
D
IN_  
C
L1  
C
R
L
L2  
R
L
GND  
V-  
LOGIC  
INPUT  
+3V  
C
L2  
GND  
V-  
LOGIC  
INPUT  
-15V  
R = 1000Ω  
L
0V  
-15V  
R
L
C = 35pF  
L
REPEAT TEST FOR CHANNELS 2, 3, AND 4.  
C INCLUDES FIXTURE AND STRAY CAPACITANCE.  
L
V
= V  
D
OUT  
(
)
R + R  
L DS(ON)  
C INCLUDES FIXTURE AND STRAY CAPACITANCE. LOGIC 0 INPUT.  
L
Figure 3. Break-Before-Make Test Circuit  
Figure 2. Switching Time  
____________________Revision History  
Pages changed at Rev 3: 1, 9, 10  
_______________________________________________________________________________________  
7
Quad, SPST Analog Switch  
_________________________________Timing Diagrams/Test Circuits (continued)  
+15V  
+5V  
10nF  
MAX4613  
ΔV  
OUT  
SIGNAL  
GENERATOR 10dBm  
V
OUT  
50Ω  
V+  
V
L
D_  
S_  
R
= 50Ω  
GEN  
IN_  
0 or +2.4V  
IN_  
D_  
0 or +2.4V  
S_  
NETWORK  
ANALYZER  
V
IN  
Q = ΔV  
× C  
L
OUT  
GND  
V-  
10nF  
R
L
+5V  
+15V  
V+  
-15V  
V
MAX4613  
L
R
GEN  
Figure 6. Crosstalk  
D_  
S_  
V
OUT  
V
GEN  
C
L
+15V  
+5V  
GND IN_  
V-  
10nF  
MAX4613  
-15V  
V+  
V
L
V
= +3V  
IN  
D_  
IN_  
0 or +2.4V  
CAPACITANCE  
METER  
Figure 4. Charge Injection  
S_  
GND  
V-  
f = 1MHz  
10nF  
+15V  
V+  
+5V  
-15V  
10nF  
MAX4613  
Figure 7. Source/Drain-Off Capacitance  
SIGNAL  
GENERATOR 10dBm  
V
L
D_  
S_  
R
= 50Ω  
GEN  
+15V  
V+  
+5V  
10nF  
D_  
MAX4613  
IN_  
0 or +2.4V  
NETWORK  
ANALYZER  
V
L
CAPACITANCE  
METER  
GND  
V-  
10nF  
R
L
IN_  
f = 1MHz  
0 or +2.4V  
-15V  
S_  
V
S
Figure 5. Off-Isolation Rejection Ratio  
GND  
V-  
10nF  
-15V  
Figure 8. Source/Drain-On Capacitance  
_______________________________________________________________________________________  
8
Quad, SPST Analog Switch  
Pin Configurations (continued)  
TOP VIEW  
1
2
3
4
5
6
7
8
IN1  
D1  
S1  
V-  
16  
15  
14  
IN2  
D2  
S2  
13 V+  
MAX4613  
V
L
12  
11  
10  
9
GND  
S4  
S3  
D3  
IN3  
D4  
IN4  
DIP/SO/QSOP/TSSOP  
SW , SW  
1
LOGIC  
SW , SW  
2
4
3
OFF  
ON  
0
1
ON  
OFF  
SWITCHES SHOWN FOR LOGIC "0" INPUT  
Package Information  
(The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline information  
go to www.maxim-ic.com/packages.)  
PACKAGE OUTLINE, TSSOP 4.40mm BODY  
1
21-0066  
I
1
_______________________________________________________________________________________  
9
Quad, SPST Analog Switch  
Package Information (continued)  
(The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline information  
go to www.maxim-ic.com/packages.)  
Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are  
implied. Maxim reserves the right to change the circuitry and specifications without notice at any time.  
10 ____________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 408-737-7600  
© 2007 Maxim Integrated Products  
is a registered trademark of Maxim Integrated Products.  

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