ISL43145IR-T [RENESAS]

QUAD 1-CHANNEL, SGL POLE SGL THROW SWITCH, PQCC16, 4 X 4 MM, PLASTIC, MO-220VGGC, QFN-16;
ISL43145IR-T
型号: ISL43145IR-T
厂家: RENESAS TECHNOLOGY CORP    RENESAS TECHNOLOGY CORP
描述:

QUAD 1-CHANNEL, SGL POLE SGL THROW SWITCH, PQCC16, 4 X 4 MM, PLASTIC, MO-220VGGC, QFN-16

输出元件
文件: 总16页 (文件大小:869K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
DATASHEET  
ISL43143, ISL43144, ISL43145  
Low-Voltage, Single and Dual Supply, Quad SPST, High Performance Analog  
Switches  
FN6037  
Rev 4.00  
Aug 31, 2017  
The Intersil ISL43143–ISL43145 devices are CMOS,  
precision, quad SPST analog switches designed to operate  
from a single +2V to +12V supply or from a 2V to 6V supply.  
Targeted applications include battery powered equipment that  
benefit from the devices’ low power consumption (<1W), low  
leakage currents (5nA max), and fast switching speeds  
Features  
• Fully Specified for 10% Tolerances at V = 5V and  
V+ = 12V, 5V and 3.3V  
S
• Four Separately Controlled SPST Switches  
• Pin Compatible with DG411/DG412/DG413  
(t  
= 52ns, t  
= 40ns). A 5maximum R flatness  
ON  
OFF  
ON  
• ON Resistance (R  
Max.) . . . . . . . . . . . . . . . . . . . . 25  
Matching Between Channels. . . . . . . . . . . . . . . . . .<1  
ensures signal fidelity, while channel-to-channel mismatch is  
guaranteed to be less than 2.  
ON  
• R  
ON  
The ISL43143/ISL43144/ISL43145 are quad single-pole/  
single-throw (SPST) devices. The ISL43143 has four normally  
closed (NC) switches; the ISL43144 has four normally open  
(NO) switches; the ISL43145 has two NO and two NC  
switches and can be used as a dual SPDT, or a dual 2:1  
multiplexer.  
• Low Power Consumption (P ). . . . . . . . . . . . . . . . . . . .<1W  
D
• Low Off Leakage Current (Max at 85°C) . . . . . . . . . 2.5nA  
• Fast Switching Action  
- t  
- t  
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 52ns  
ON  
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 40ns  
OFF  
Table 1 summarizes the performance of this family.  
• Minimum 2000V ESD Protection per Method 3015.7  
• TTL, CMOS Compatible  
TABLE 1. FEATURES AT A GLANCE  
ISL43143  
4
ISL43144  
4
ISL43145  
4
Pb-Free Plus Anneal Available (RoHS Compliant)  
Number of Switches  
Configuration  
Applications  
All NC  
18  
All NO  
18  
2 NC/2 NO  
18  
• Battery Powered, Handheld, and Portable Equipment  
- Barcode Scanners  
4.5V R  
ON  
4.5V t /t  
52ns/40ns  
14  
52ns/40ns  
14  
52ns/40ns  
14  
ON OFF  
10.8V R  
- Laptops, Notebooks, Palmtops  
ON  
10.8V t /t  
• Communications Systems  
- Radios  
40ns/27ns  
30  
40ns/27ns  
30  
40ns/27ns  
30  
ON OFF  
- XDSL and PBX / PABX  
- RF “Tee” Switches  
- Base Stations  
4.5V R  
ON  
4.5V t /t  
64ns/29ns  
51  
64ns/29ns  
51  
64ns/29ns  
51  
ON OFF  
3V R  
ON  
• Test Equipment  
- Medical Ultrasound  
- Electrocardiograph  
- ATE  
3V t /t  
120ns/50ns 120ns/50ns 120ns/50ns  
16 Ld TSSOP, 16Ld QFN 4x4  
ON OFF  
Packages  
• Audio and Video Switching  
• General Purpose Circuits  
- +3V/+5V DACs and ADCs  
- Digital Filters  
- Operational Amplifier Gain Switching Networks  
- High Frequency Analog Switching  
- High Speed Multiplexing  
Related Literature  
• Technical Brief TB363 “Guidelines for Handling and  
Processing Moisture Sensitive Surface Mount Devices  
(SMDs)”  
• AN557 “Recommended Test Procedures for Analog  
Switches”  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 1 of 16  
 
ISL43143, ISL43144, ISL43145  
Pinouts (Note 1)  
ISL43143 (TSSOP)  
ISL43143 (QFN)  
TOP VIEW  
TOP VIEW  
IN1  
COM1  
NC1  
V-  
1
2
3
4
5
6
7
8
16 IN2  
16 15 14 13  
15 COM2  
14 NC2  
13 V+  
NC1  
V-  
1
2
3
4
12 NC2  
11 V+  
GND  
NC4  
10 N.C.  
GND  
NC4  
COM4  
IN4  
12 N.C.  
11 NC3  
10 COM3  
9
NC3  
5
6
7
8
9
IN3  
ISL43144 (TSSOP)  
ISL43144 (QFN)  
TOP VIEW  
TOP VIEW  
IN1  
1
2
3
4
5
6
7
8
16 IN2  
16 15 14 13  
NO1  
COM1  
V-  
15 NO2  
14 COM2  
13 V+  
COM1  
V-  
1
2
3
4
12 COM2  
11 V+  
GND  
COM4  
NO4  
IN4  
12 N.C.  
11 COM3  
10 NO3  
GND  
COM4  
10 N.C.  
9
COM3  
5
6
7
8
9
IN3  
ISL43145 (TSSOP)  
ISL43145 (QFN)  
TOP VIEW  
TOP VIEW  
IN1  
NO1  
COM1  
V-  
1
2
3
4
5
6
7
8
16 IN2  
16 15 14 13  
15 COM2  
14 NC2  
13 V+  
COM1  
V-  
1
2
3
4
12 NC2  
11 V+  
GND  
COM4  
NO4  
IN4  
12 N.C.  
11 NC3  
10 COM3  
GND  
COM4  
10 N.C.  
9
NC3  
5
6
7
8
9
IN3  
NOTE:  
1. Switches Shown for Logic “0” Input.  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 2 of 16  
 
ISL43143, ISL43144, ISL43145  
Truth Table  
Ordering Information  
TEMP.  
RANGE  
(°C)  
ISL43143  
SW 1, 2, 3, 4  
ON  
ISL43144  
SW 1, 2, 3, 4  
OFF  
ISL43145  
PART  
MARKING  
PKG.  
LOGIC  
SW 1, 4 SW 2, 3  
PART NO.*  
PACKAGE DWG. #  
ISL43143IV  
(No longer  
available or  
supported)  
43143IV  
-40 to 85 16 Ld TSSOP M16.173  
0
1
OFF  
ON  
ON  
OFF  
ON  
OFF  
NOTE: Logic “0” 0.8V. Logic “1” 2.4V.  
ISL43143IVZ  
(Note 2)  
43143IVZ  
43143IR  
-40 to 85 16 Ld TSSOP M16.173  
(Pb-free)  
Pin Descriptions  
ISL43143IR  
(No longer  
available or  
supported)  
-40 to 85 16 Ld QFN  
L16.4x4  
PIN  
V+  
V-  
FUNCTION  
Positive Power Supply Input  
ISL43143IRZ  
(Note 2) (No  
longer available  
or supported)  
43143IRZ  
-40 to 85 16 Ld QFN  
L16.4x4  
Negative Power Supply Input. Connect to GND  
for Single Supply Configurations.  
(Pb-free)  
GND  
IN  
Ground Connection  
ISL43144IV (No 43144IV  
longer available  
-40 to 85 16 Ld TSSOP M16.173  
Digital Control Input  
or supported)  
COM  
NO  
Analog Switch Common Pin  
Analog Switch Normally Open Pin  
Analog Switch Normally Closed Pin  
No Internal Connection  
ISL43144IVZ  
(Note 2)  
43144IVZ  
-40 to 85 16 Ld TSSOP M16.173  
(Pb-free)  
ISL43144IR (No 43144IR  
longer available  
or supported)  
-40 to 85 16 Ld QFN  
L16.4x4  
L16.4x4  
NC  
N.C.  
ISL43144IRZ  
(Note 2) (No  
43144IRZ  
-40 to 85 16 Ld QFN  
(Pb-free)  
longer available,  
recommended  
replacement:  
ISL43120IHZ-T)  
ISL43145IV (No 43145IV  
longer available  
-40 to 85 16 Ld TSSOP M16.173  
or supported)  
ISL43145IVZ  
(Note 2)  
43145IVZ  
-40 to 85 16 Ld TSSOP M16.173  
(Pb-free)  
ISL43145IR (No 43145IR  
longer available  
or supported)  
-40 to 85 16 Ld QFN  
L16.4x4  
L16.4x4  
ISL43145IRZ  
(Note 2) (No  
43145IRZ  
-40 to 85 16 Ld QFN  
(Pb-free)  
longer available  
or supported)  
*Most surface mount devices are available on tape and reel; add “-T”  
to suffix.  
NOTE:  
2. Intersil Pb-free plus anneal products employ special Pb-free  
material sets; molding compounds/die attach materials and  
100% matte tin plate termination finish, which are RoHS  
compliant and compatible with both SnPb and Pb-free soldering  
operations. Intersil Pb-free products are MSL classified at  
Pb-free peak reflow temperatures that meet or exceed the  
Pb-free requirements of IPC/JEDEC J STD-020.  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 3 of 16  
 
ISL43143, ISL43144, ISL43145  
Absolute Maximum Ratings  
Thermal Information  
V+ to V- . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . -0.3 to15V  
V+ to GND . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . -0.3 to15V  
V- to GND . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . -15 to 0.3V  
All Other Pins (Note 3). . . . . . . . . . . . . ((V-) - 0.3V) to ((V+) + 0.3V)  
Continuous Current (Any Terminal) . . . . . . . . . . . . . . . . . . . . . 30mA  
Peak Current, IN, NO, NC, or COM  
Thermal Resistance (Typical)  
(°C/W)  
JA  
16 Ld TSSOP Package (Note 4) . . . . . . . . . . . . . . .  
16 Ld QFN Package (Note 5). . . . . . . . . . . . . . . . . .  
Maximum Junction Temperature (Plastic Package) . . . . . . . 150°C  
Moisture Sensitivity (See Technical Brief TB363)  
All Packages . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Level 1  
Maximum Storage Temperature Range. . . . . . . . . . . . . -65°C to 150°C  
Maximum Lead Temperature (Soldering 10s) . . . . . . . . . . . . 300°C  
(TSSOP - Lead Tips Only)  
150  
75  
(Pulsed 1ms, 10% Duty Cycle, Max) . . . . . . . . . . . . . . . . . 100mA  
ESD Rating (Per MIL-STD-883 Method 3015). . . . . . . . . . . . . .>2kV  
Operating Conditions  
Temperature Range  
ISL4314XIX . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . -40°C to 85°C  
CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating and operation of the  
device at these or any other conditions above those indicated in the operational sections of this specification is not implied.  
NOTES:  
3. Signals on NC, NO, COM, or IN exceeding V+ or V- are clamped by internal diodes. Limit forward diode current to maximum current ratings.  
4. is measured with the component mounted on a low effective thermal conductivity test board in free air. See Tech Brief TB379 for details.  
JA  
5. is measured in free air with the component mounted on a high effective thermal conductivity test board with “direct attach” features. See  
JA  
Tech Brief TB379 and Tech Brief TB389.  
Electrical Specifications: 5V Supply Test Conditions: V  
= 4.5V to 5.5V, GND = 0V, V  
Unless Otherwise Specified  
= 2.4V, V  
INL  
= 0.8V (Note 5),  
(NOTE 6)  
SUPPLY  
INH  
TEMP (NOTE 6)  
PARAMETER  
TEST CONDITIONS  
(°C)  
MIN  
TYP  
MAX  
UNITS  
ANALOG SWITCH CHARACTERISTICS  
Analog Signal Range, V  
Full  
25  
V-  
-
V+  
25  
30  
2
V
ANALOG  
ON Resistance, R  
V
= 4.5V, I  
= 10mA, V  
= 10mA, V  
= 10mA, V  
or V  
or V  
or V  
= 3.5V,  
= 3V  
-
-
18  
ON  
S
COM  
COM  
COM  
NO  
NO  
NO  
NC  
NC  
NC  
See Figure 5  
Full  
25  
-
R
Matching Between Channels,  
V
V
= 4.5V, I  
-
0.5  
ON  
R  
S
ON  
Full  
25  
-
-
-
-
-
-
-
-
-
-
4
R
Flatness, R  
= 4.5V, I  
= 0V, 3V,  
= +4.5V,  
= +4.5V,  
-
5
ON  
FLAT(ON)  
S
Note 8  
Full  
25  
-
5
NO or NC OFF Leakage Current,  
or I  
V
= 5.5V, V  
= 4.5V, V  
= 4.5V, V  
or V  
-0.1  
-2.5  
-0.1  
-2.5  
-0.2  
-5  
0.1  
2.5  
0.1  
2.5  
0.2  
5
nA  
nA  
nA  
nA  
nA  
nA  
S
COM  
COM  
COM  
NO  
NC  
NC  
I
Note 7  
NO(OFF)  
NC(OFF)  
Full  
25  
COM OFF Leakage Current,  
V
= 5.5V, V  
or V  
S
NO  
I
Note 7  
COM(OFF)  
Full  
25  
COM ON Leakage Current,  
V
= 5.5V, V  
= V  
or V  
= 4.5V, Note 7  
NC  
S
NO  
I
COM(ON)  
Full  
DIGITAL INPUT CHARACTERISTICS  
Input Voltage High, V  
Full  
Full  
Full  
2.4  
-
1.6  
1.5  
-
-
0.8  
1
V
V
INH  
Input Voltage Low, V  
Input Current, I , I  
INL  
V
= 5.5V, V = 0V or V+  
IN  
-1  
A  
INH INL  
DYNAMIC CHARACTERISTICS  
Turn-ON Time, t  
S
V
V
= 4.5V, V  
or V  
= 3V, R = 300, C = 35pF,  
25  
Full  
25  
-
-
52  
-
65  
75  
50  
55  
-
ns  
ns  
ns  
ns  
ns  
ON  
S
NO  
NC  
L
L
= 0 to 3V, See Figure 1  
IN  
Turn-OFF Time, t  
V
V
= 4.5V, V  
or V  
= 3V, R = 300, C = 35pF,  
-
40  
-
OFF  
S
NO  
NC  
L
L
= 0 to 3V, See Figure 1  
IN  
Full  
Full  
-
Break-Before-Make Time Delay  
(ISL43145 only), t  
V
V
= 5.5V, V  
or V  
= 3V, R = 300, C = 35pF,  
5
19  
S
NO  
NC  
L
L
= 0 to 3V, See Figure 3  
D
IN  
Charge Injection, Q  
C
= 1.0nF, V = 0V, R = 0, See Figure 2  
25  
25  
-
-
-
5
-
pC  
pF  
L
G
G
NO or NC OFF Capacitance, C  
f = 1MHz, V  
or V  
NC  
= V = 0V, See Figure 7  
COM  
10  
OFF  
NO  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 4 of 16  
ISL43143, ISL43144, ISL43145  
Electrical Specifications: 5V Supply Test Conditions: V  
= 4.5V to 5.5V, GND = 0V, V  
Unless Otherwise Specified (Continued)  
= 2.4V, V  
INL  
= 0.8V (Note 5),  
(NOTE 6)  
SUPPLY  
INH  
TEMP (NOTE 6)  
PARAMETER  
TEST CONDITIONS  
(°C)  
MIN  
TYP  
MAX  
UNITS  
COM OFF Capacitance,  
f = 1MHz, V  
f = 1MHz, V  
or V  
= V  
= 0V, See Figure 7  
25  
-
26  
-
pF  
NO  
NO  
NC  
COM  
C
COM(OFF)  
COM ON Capacitance, C  
OFF Isolation  
or V  
= V  
= 0V, See Figure 7  
25  
25  
25  
25  
-
-
-
-
34  
71  
-
-
-
-
pF  
dB  
dB  
dB  
COM(ON)  
NC  
COM  
R
= 50, C = 15pF, f = 1MHz,  
L
L
V
or V  
= 1V  
, See Figures 4 and 6  
NO  
NC  
RMS  
Crosstalk, Note 9  
-89  
58  
Power Supply Rejection Ratio  
R = 50, C = 5pF, f = 1MHz  
L L  
POWER SUPPLY CHARACTERISTICS  
Power Supply Range  
Full  
25  
2  
-1  
-1  
-1  
-1  
-
0.01  
-
6  
1
V
Positive Supply Current, I+  
Negative Supply Current, I-  
NOTES:  
V
= 5.5V, V = 0V or V+, Switch On or Off  
IN  
A  
A  
A  
A  
S
Full  
25  
1
0.01  
-
1
Full  
1
6. V = Input voltage to perform proper function.  
IN  
7. The algebraic convention, whereby the most negative value is a minimum and the most positive a maximum, is used in this data sheet.  
8. Leakage parameter is 100% tested at high temp, and guaranteed by correlation at 25°C.  
9. Flatness is defined as the delta between the maximum and minimum R  
10. Between any two switches.  
values over the specified voltage range.  
ON  
Electrical Specifications: 5V Supply  
Test Conditions: V+ = +4.5V to +5.5V, V- = GND = 0V, V  
Unless Otherwise Specified  
= 2.4V, V  
= 0.8V (Note 5),  
INL  
INH  
TEMP  
(°C)  
MIN  
(NOTE 6)  
MAX  
(NOTE 6) UNITS  
PARAMETER  
TEST CONDITIONS  
TYP  
ANALOG SWITCH CHARACTERISTICS  
Analog Signal Range, V  
Full  
25  
0
-
V+  
40  
50  
3
V
ANALOG  
ON Resistance, R  
V+ = 4.5V, I  
= 1.0mA, V  
or V  
= 3.5V,  
= 3V  
-
-
30  
ON  
COM  
See Figure 5  
NO  
NC  
Full  
25  
-
R
Matching Between Channels, V+ = 4.5V, I  
= 1.0mA, V  
or V  
-
0.5  
ON  
R  
COM  
NO  
NC  
ON  
Full  
25  
-
-
4
R
Flatness, R  
V+ = 5.5V, I  
Note 8  
= 1.0mA, V  
NO  
or V  
NC  
= 1V, 2V, 3V,  
-
4.4  
6
ON  
FLAT(ON)  
COM  
Full  
25  
-
-
-
-
-
-
-
-
8
NO or NC OFF Leakage Current,  
or I  
V+ = 5.5V, V  
Note 7  
= 1V, 4.5V, V  
or V  
= 4.5V, 1V,  
= 4.5V, 1V,  
-0.1  
-2.5  
-0.1  
-2.5  
-0.2  
-5  
0.1  
2.5  
0.1  
2.5  
0.2  
5
nA  
nA  
nA  
nA  
nA  
nA  
COM  
COM  
COM  
NO  
NO  
NC  
NC  
I
NO(OFF)  
NC(OFF)  
Full  
25  
COM OFF Leakage Current,  
V+ = 5.5V, V  
Note 7  
= 1V, 4.5V, V  
or V  
I
COM(OFF)  
Full  
25  
COM ON Leakage Current,  
V+ = 5.5V, V  
= V  
NO  
or V = 1V, 4.5V, Note 7  
NC  
I
COM(ON)  
Full  
DIGITAL INPUT CHARACTERISTICS  
Input Voltage High, V  
Full  
Full  
Full  
2.4  
-
1.5  
1.4  
-
-
0.8  
1
V
V
INH  
Input Voltage Low, V  
Input Current, I , I  
INL  
V+ = 5.5V, V = 0V or V+  
IN  
-1  
A  
INH INL  
DYNAMIC CHARACTERISTICS  
Turn-ON Time, t  
V+ = 4.5V, V  
or V  
= 3V, R = 300, C = 35pF,  
25  
Full  
25  
-
-
64  
-
80  
90  
40  
45  
-
ns  
ns  
ns  
ns  
ns  
ON  
NO  
NC  
L
L
V
= 0 to 3V, See Figure 1  
IN  
Turn-OFF Time, t  
V+ = 4.5V, V  
or V  
= 3V, R = 300, C = 35pF,  
-
29  
-
OFF  
NO  
NC  
L
L
V
= 0 to 3V, See Figure 1  
IN  
Full  
Full  
-
Break-Before-Make Time Delay  
(ISL43145 only), t  
V+ = 5.5V, V  
V
or V  
= 3V, R = 300, C = 35pF,  
15  
39  
NO  
= 0 to 3V, See Figure 3  
IN  
NC  
L
L
D
FN6037 Rev 4.00  
Aug 31, 2017  
Page 5 of 16  
ISL43143, ISL43144, ISL43145  
Electrical Specifications: 5V Supply  
Test Conditions: V+ = +4.5V to +5.5V, V- = GND = 0V, V  
Unless Otherwise Specified (Continued)  
= 2.4V, V  
= 0.8V (Note 5),  
INL  
INH  
TEMP  
(°C)  
MIN  
(NOTE 6)  
MAX  
(NOTE 6) UNITS  
PARAMETER  
TEST CONDITIONS  
TYP  
1.2  
10  
Charge Injection, Q  
C
= 1.0nF, V = 0V, R = 0See Figure 2  
25  
25  
25  
-
-
-
2
-
pC  
pF  
pF  
L
G
G
NO or NC OFF Capacitance, C  
f = 1MHz, V  
f = 1MHz, V  
or V  
or V  
= V  
= 0V, See Figure 7  
= 0V, See Figure 7  
OFF  
NO  
NC  
COM  
COM  
COM OFF Capacitance,  
= V  
26  
-
NO  
NC  
C
COM(OFF)  
COM ON Capacitance, C  
OFF Isolation  
f = 1MHz, V  
or V  
= V  
= 0V, See Figure 7  
25  
25  
25  
25  
-
-
-
-
34  
71  
-
-
-
-
pF  
dB  
dB  
dB  
COM(ON)  
NO  
NC  
COM  
R
= 50, C = 15pF, f = 1MHz,  
L
L
V
or V  
= 1V  
, See Figures 4 and 6  
NO  
NC  
RMS  
Crosstalk, Note 9  
-89  
58  
Power Supply Rejection Ratio  
R = 50, C = 5pF, f = 1MHz  
L L  
POWER SUPPLY CHARACTERISTICS  
Positive Supply Current, I+  
Negative Supply Current, I-  
V+ = 5.5V, V = 0V or V+, Switch On or Off  
IN  
25  
Full  
25  
-1  
-1  
-1  
-1  
0.01  
1
1
1
1
A  
A  
A  
A  
-
0.01  
-
Full  
Electrical Specifications: 3.3V Supply  
Test Conditions: V+ = +3.0V to +3.6V, V- = GND = 0V, V  
Unless Otherwise Specified  
= 2.4V, V  
= 0.8V (Note 5),  
INL  
INH  
TEMP  
(°C)  
MIN  
(NOTE 6)  
MAX  
(NOTE 6) UNITS  
PARAMETER  
TEST CONDITIONS  
TYP  
ANALOG SWITCH CHARACTERISTICS  
Analog Signal Range, V  
Full  
25  
0
-
V+  
60  
70  
3
V
ANALOG  
ON Resistance, R  
V+ = 3V, I  
= 1.0mA, V  
or V  
= 1.5V  
-
-
51  
ON  
COM  
See Figure 5  
NO  
NC  
Full  
25  
-
R
Matching Between Channels, V+ = 3V, I  
= 1.0mA, V  
or V  
= 1.5V  
-
0.5  
ON  
R  
COM  
NO  
NC  
ON  
Full  
25  
-
-
12  
-
4
R
Flatness, R  
V+ = 3V, I  
Note 8  
= 1.0mA, V  
NO  
or V  
NC  
= 0.5V, 1.5V,  
-
17  
17  
0.1  
2.5  
0.1  
2.5  
0.2  
5
ON  
FLAT(ON)  
COM  
Full  
25  
-
NO or NC OFF Leakage Current,  
or I  
V+ = 3.6V, V  
Note 7  
= 1V, 3V, V  
or V  
= 3V, 1V,  
= 3V, 1V,  
-0.1  
-2.5  
-0.1  
-2.5  
-0.2  
-5  
-
nA  
nA  
nA  
nA  
nA  
nA  
COM  
COM  
COM  
NO  
NO  
NC  
NC  
NC  
I
NO(OFF)  
NC(OFF)  
Full  
25  
-
COM OFF Leakage Current,  
V+ = 3.6V, V  
Note 7  
= 1V, 3V, V  
or V  
-
I
COM(OFF)  
Full  
25  
-
COM ON Leakage Current,  
V+ = 3.6V, V  
= V  
NO  
or V  
= 1V, 3V, Note 7  
-
I
COM(ON)  
Full  
-
DIGITAL INPUT CHARACTERISTICS  
Input Voltage High, V  
Full  
Full  
Full  
2.4  
-
1.0  
0.9  
-
-
0.8  
1
V
V
INH  
Input Voltage Low, V  
Input Current, I , I  
INL  
V+ = 3.6V, V = 0V or V+  
IN  
-1  
A  
INH INL  
DYNAMIC CHARACTERISTICS  
Turn-ON Time, t  
V+ = 3.0V, V  
or V  
= 1.5V, R = 300, C = 35pF,  
25  
Full  
25  
-
-
120  
-
138  
160  
60  
65  
-
ns  
ns  
ns  
ns  
ns  
ON  
NO  
NC  
L
L
V
= 0 to 3V, See Figure 1  
IN  
Turn-OFF Time, t  
V+ = 3.0V, V  
or V  
= 1.5V, R = 300, C = 35pF,  
-
50  
-
OFF  
NO  
NC  
L
L
V
= 0 to 3V, See Figure 1  
IN  
Full  
Full  
-
Break-Before-Make Time Delay  
(ISL43145 only), t  
V+ = 3.6V, V  
or V  
= 1.5V, R = 300, C = 35pF,  
30  
60  
NO  
= 0 to 3V, See Figure 3  
IN  
NC  
L
L
V
C
D
Charge Injection, Q  
= 1.0nF, V = 0V, R = 0See Figure 2  
25  
25  
25  
-
-
-
1
2
-
pC  
pF  
pF  
L
G
G
NO or NC OFF Capacitance, C  
f = 1MHz, V  
f = 1MHz, V  
or V  
or V  
= V  
= 0V, See Figure 7  
= 0V, See Figure 7  
10  
26  
OFF  
NO  
NC  
COM  
COM  
COM OFF Capacitance,  
= V  
-
NO  
NC  
C
COM(OFF)  
COM ON Capacitance, C  
f = 1MHz, V  
or V  
= V  
= 0V, See Figure 7  
25  
-
34  
-
pF  
COM(ON)  
NO  
NC  
COM  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 6 of 16  
ISL43143, ISL43144, ISL43145  
Electrical Specifications: 3.3V Supply  
Test Conditions: V+ = +3.0V to +3.6V, V- = GND = 0V, V  
Unless Otherwise Specified (Continued)  
= 2.4V, V  
= 0.8V (Note 5),  
INL  
INH  
TEMP  
(°C)  
MIN  
(NOTE 6)  
MAX  
(NOTE 6) UNITS  
PARAMETER  
TEST CONDITIONS  
= 50, C = 15pF, f = 1MHz,  
TYP  
71  
OFF Isolation  
R
V
25  
25  
25  
-
-
-
-
-
-
dB  
dB  
dB  
L
L
or V  
= 1V  
, See Figures 4 and 6  
NO  
NC  
RMS  
Crosstalk, Note 9  
-89  
58  
Power Supply Rejection Ratio  
R = 50, C = 5pF, f = 1MHz  
L L  
POWER SUPPLY CHARACTERISTICS  
Positive Supply Current, I+  
Negative Supply Current, I-  
V+ = 3.6V, V = 0V or V+, Switch On or Off  
IN  
25  
Full  
25  
-1  
-1  
-1  
-1  
0.01  
1
1
1
1
A  
A  
A  
A  
-
0.01  
-
Full  
Electrical Specifications: 12V Supply  
Test Conditions: V+ = +10.8V to +13.2V, V- = GND = 0V, V  
(Note 5), Unless Otherwise Specified  
= 3.0V, V  
= 0.8V  
INL  
INH  
TEMP  
(°C)  
MIN  
(NOTE 6)  
MAX  
(NOTE 6) UNITS  
PARAMETER  
TEST CONDITIONS  
TYP  
ANALOG SWITCH CHARACTERISTICS  
Analog Signal Range, V  
Full  
25  
0
-
V+  
20  
30  
2
V
ANALOG  
ON Resistance, R  
V+ = 10.8V, I  
See Figure 5  
= 1.0mA, V  
or V  
= 9V  
-
-
14  
ON  
COM  
COM  
COM  
NO  
NO  
NO  
NC  
NC  
NC  
Full  
25  
-
R
Matching Between Channels, V+ = 10.8V, I  
= 1.0mA, V  
= 1.0mA, V  
or V  
or V  
= 9V  
-
0.3  
ON  
R  
ON  
Full  
25  
-
-
4
R
Flatness, R  
V+ = 13.2V, I  
Note 8  
= 3V, 6V, 9V,  
= 12V, 1V,  
= 12V, 1V,  
-
1.7  
2
ON  
FLAT(ON)  
Full  
25  
-
-
-
-
-
-
-
-
3
NO or NC OFF Leakage Current,  
or I  
V+ = 13V, V  
Note 7  
= 1V, 12V, V  
or V  
-0.1  
-2.5  
-0.1  
-2.5  
-0.2  
-5  
0.1  
2.5  
0.1  
2.5  
0.2  
5
nA  
nA  
nA  
nA  
nA  
nA  
COM  
COM  
COM  
NO  
NO  
NC  
NC  
I
NO(OFF)  
NC(OFF)  
Full  
25  
COM OFF Leakage Current,  
V+ = 13V, V  
Note 7  
= 1V, 12V, V  
or V  
I
COM(OFF)  
Full  
25  
COM ON Leakage Current,  
V+ = 13V, V  
= V  
NO  
or V = 1V, 12V, Note 7  
NC  
I
COM(ON)  
Full  
DIGITAL INPUT CHARACTERISTICS  
Input Voltage High, V  
Full  
Full  
Full  
3.2  
-
2.8  
2.2  
-
-
0.8  
1
V
V
INH  
Input Voltage Low, V  
Input Current, I , I  
INL  
V+ = 13V, V = 0V or V+  
IN  
-1  
A  
INH INL  
DYNAMIC CHARACTERISTICS  
Turn-ON Time, t  
V+ = 10.8V, V  
NO  
or V  
= 10V, R = 300, C = 35pF,  
25  
Full  
25  
-
-
40  
-
50  
83  
35  
40  
-
ns  
ns  
ns  
ns  
ns  
ON  
NC  
= 0 to 3V, See Figure 1  
L
L
V
IN  
Turn-OFF Time, t  
V+ = 10.8V, V  
or V  
= 10V, R = 300, C = 35pF,  
-
27  
-
OFF  
NO  
NC  
L
L
V
= 0 to 3V, See Figure 1  
IN  
Full  
Full  
-
Break-Before-Make Time Delay  
(ISL43145 only), t  
V+ = 13.2V, V  
V
or V  
= 10V, R = 300, C = 35pF,  
5
20  
NO  
= 0 to 3V, See Figure 3  
IN  
NC  
L
L
D
Charge Injection, Q  
C
= 1.0nF, V = 0V, R = 0See Figure 2  
25  
25  
25  
-
-
-
12  
10  
26  
14  
-
pC  
pF  
pF  
L
G
G
NO or NC OFF Capacitance, C  
f = 1MHz, V  
f = 1MHz, V  
or V  
or V  
= V  
= 0V, See Figure 7  
= 0V, See Figure 7  
OFF  
NO  
NC  
COM  
COM  
COM OFF Capacitance,  
= V  
-
NO  
NC  
C
COM(OFF)  
COM ON Capacitance, C  
OFF Isolation  
f = 1MHz, V  
or V  
= V  
= 0V, See Figure 7  
25  
25  
25  
25  
-
-
-
-
34  
71  
-
-
-
-
pF  
dB  
dB  
dB  
COM(ON)  
NO  
NC  
COM  
R
= 50, C = 15pF, f = 1MHz,  
L
L
V
or V  
= 1V  
, See Figures 4 and 6  
NO  
NC  
RMS  
Crosstalk, Note 9  
-89  
58  
Power Supply Rejection Ratio  
R = 50, C = 5pF, f = 1MHz  
L L  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 7 of 16  
ISL43143, ISL43144, ISL43145  
Electrical Specifications: 12V Supply  
Test Conditions: V+ = +10.8V to +13.2V, V- = GND = 0V, V  
(Note 5), Unless Otherwise Specified (Continued)  
= 3.0V, V  
= 0.8V  
INL  
INH  
TEMP  
(°C)  
MIN  
(NOTE 6)  
MAX  
(NOTE 6) UNITS  
PARAMETER  
TEST CONDITIONS  
TYP  
POWER SUPPLY CHARACTERISTICS  
Positive Supply Current, I+  
Negative Supply Current, I-  
V+ = 13V, V = 0V or V+, Switch On or Off  
IN  
25  
Full  
25  
-1  
-1  
-1  
-1  
0.01  
1
1
1
1
A  
A  
A  
A  
-
0.01  
-
Full  
Test Circuits and Waveforms  
V+  
3V  
t < 20ns  
r
t < 20ns  
f
C
LOGIC  
INPUT  
50%  
SWITCH  
INPUT  
0V  
NX  
C
t
V
L
OFF  
OUT  
NO or NC  
IN  
SWITCH  
INPUT  
V
NX  
V
COM  
V
OUT  
90%  
90%  
C
35pF  
R
L
GND  
SWITCH  
OUTPUT  
300  
0V  
LOGIC  
INPUT  
t
ON  
C
V-  
Repeat test for all switches. C includes fixture and stray  
L
Logic input waveform is inverted for switches that have the opposite  
logic sense.  
capacitance.  
R
L
------------------------------  
V
= V  
OUT  
(NO or NC)  
R
+ R  
ON  
L
FIGURE 1B. TEST CIRCUIT  
FIGURE 1A. MEASUREMENT POINTS  
FIGURE 1. SWITCHING TIMES  
V+  
C
SWITCH  
OUTPUT  
V  
OUT  
V
NO or NC  
COM  
R
OUT  
G
V
OUT  
3V  
0V  
ON  
ON  
LOGIC  
INPUT  
V
GND  
IN  
OFF  
G
C
L
LOGIC  
INPUT  
C
Q = V  
x C  
L
OUT  
V-  
Logic input waveform is inverted for switches that have the opposite  
logic sense.  
Repeat test for all switches. C includes fixture and stray  
L
capacitance.  
FIGURE 2B. TEST CIRCUIT  
FIGURE 2A. MEASUREMENT POINTS  
FIGURE 2. CHARGE INJECTION  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 8 of 16  
ISL43143, ISL43144, ISL43145  
Test Circuits and Waveforms (Continued)  
V+  
C
3V  
C
LOGIC  
INPUT  
V
OUT1  
NO1  
NC2  
IN1  
0V  
V
NX  
COM1  
COM2  
C
V
R
L1  
L1  
35pF  
OUT2  
300  
90%  
90%  
SWITCH  
OUTPUT  
R
V
C
35pF  
L2  
300  
0V  
0V  
OUT1  
L2  
IN2  
LOGIC  
INPUT  
90%  
90%  
SWITCH  
OUTPUT  
GND  
V
OUT2  
t
t
D
D
C
V-  
C
includes fixture and stray capacitance.  
L
Reconfigure accordingly to test SW3 and SW4.  
FIGURE 3B. TEST CIRCUIT  
FIGURE 3A. MEASUREMENT POINTS  
FIGURE 3. BREAK-BEFORE-MAKE TIME (ISL43145 ONLY)  
V+  
C
V+  
C
R
= V /1mA  
1
SIGNAL  
GENERATOR  
ON  
NO or NC  
NO or NC  
V
NX  
0V or 2.4V  
IN  
1mA  
0.8V or 2.4V  
IN  
V
1
COM  
COM  
ANALYZER  
GND  
GND  
R
L
C
C
V-  
V-  
Repeat test for all switches.  
Repeat test for all switches.  
FIGURE 5. R  
FIGURE 4. OFF ISOLATION TEST CIRCUIT  
TEST CIRCUIT  
ON  
V+  
C
V+  
SIGNAL  
GENERATOR  
50  
NO1 or NC1  
IN2  
COM1  
NO or NC  
0V or 2.4V  
IN  
0V or 2.4V  
0V or 2.4V  
IMPEDANCE  
ANALYZER  
IN2  
NO  
COM  
CONNECTION  
NO2 or NC2  
COM2  
ANALYZER  
GND  
GND  
R
L
C
V-  
V-  
FIGURE 6. CROSSTALK TEST CIRCUIT  
FIGURE 7. CAPACITANCE TEST CIRCUIT  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 9 of 16  
ISL43143, ISL43144, ISL43145  
Power-Supply Considerations  
Detailed Description  
The ISL4314X construction is typical of most CMOS analog  
switches, in that they have three supply pins: V+, V-, and  
GND. V+ and V- drive the internal CMOS switches and set  
their analog voltage limits, so there are no connections  
between the analog signal path and GND. Unlike switches  
with a 13V maximum supply voltage, the ISL4314X 15V  
maximum supply voltage provides plenty of room for the  
10% tolerance of 12V supplies (6V or 12V single supply),  
as well as room for overshoot and noise spikes.  
The ISL43143–ISL43145 quad analog switches offer precise  
switching capability from a bipolar 2V to 6V or a single 2V  
to 12V supply with low on-resistance (18) and high speed  
switching (t  
= 52ns, t = 40ns). The devices are  
ON  
OFF  
especially well suited for portable battery powered  
equipment thanks to the low operating supply voltage (2V),  
low power consumption (1W), low leakage currents (5nA  
max). High frequency applications also benefit from the wide  
bandwidth, and the very high OFF isolation and crosstalk  
rejection.  
This family of switches performs equally well when operated  
with bipolar or single voltage supplies, and bipolar supplies  
need not be symmetrical. The minimum recommended  
supply voltage is 2V or 2V. It is important to note that the  
input signal range, switching times, and ON-resistance  
degrade at lower supply voltages. Refer to the electrical  
specification tables and Typical Performance Curves for  
details.  
Supply Sequencing And Overvoltage Protection  
As with any CMOS device, proper power supply sequencing  
is required to protect the device from excessive input  
currents which might permanently damage the IC. All I/O  
pins contain ESD protection diodes from the pin to V+ and to  
V- (see Figure 8). To prevent forward biasing these diodes,  
V+ and V- must be applied before any input signals, and  
input signal voltages must remain between V+ and V-. If  
these conditions cannot be guaranteed, then one of the  
following two protection methods should be employed.  
V+ and GND power the internal logic (thus setting the digital  
switching point) and level shifters. The level shifters convert  
the logic levels to switched V+ and V- signals to drive the  
analog switch gate terminals, so switch parameters -  
Logic inputs can easily be protected by adding a 1k  
resistor in series with the input (see Figure 8). The resistor  
limits the input current below the threshold that produces  
permanent damage, and the sub-microamp input current  
produces an insignificant voltage drop during normal  
operation.  
especially R  
- are strong functions of both supplies.  
ON  
Logic-Level Thresholds  
V+ and GND power the internal logic stages, so V- has no  
affect on logic thresholds. This switch family is TTL  
compatible (0.8V and 2.4V) over a V+ supply range of 2.5V  
to 10V (see Figure 17). At 12V the V level is about 2.8V,  
Adding a series resistor to the switch input defeats the  
IH  
so for best results use a logic family the provides a V  
OH  
greater than 3V.  
purpose of using a low R  
switch, so two small signal  
ON  
diodes can be added in series with the supply pins to provide  
overvoltage protection for all pins (see Figure 8). These  
additional diodes limit the analog signal from 1V below V+ to  
1V above V-. The low leakage current performance is  
unaffected by this approach, but the switch resistance may  
increase, especially at low supply voltages.  
The digital input stages draw supply current whenever the  
digital input voltage is not at one of the supply rails (see  
Figure 18). Driving the digital input signals from GND to V+  
with a fast transition time minimizes power dissipation. The  
ISL43143-ISL43145 switches have been designed to  
minimize the supply current whenever the digital input  
voltage is not driven to the supply rails (0V to V+). For  
example driving the device with 3V logic while operating with  
dual or single 5V supplies the device draws only 10A of  
current (see Figure 18 for VIN = 3V). Similiar devices of  
competitors can draw 8 times this amount of current.  
OPTIONAL PROTECTION  
DIODE  
V+  
OPTIONAL  
PROTECTION  
RESISTOR  
IN  
V
X
High-Frequency Performance  
In 5systems, signal response is reasonably flat even past  
200MHz (see Figure 19). Figure 19 also illustrates that the  
frequency response is very consistent over a wide V+ range,  
and for varying analog signal levels.  
V
NO or NC  
COM  
V-  
OPTIONAL PROTECTION  
DIODE  
An off switch acts like a capacitor and passes higher  
frequencies with less attenuation, resulting in signal  
feedthrough from a switch’s input to its output. OFF Isolation  
is the resistance to this feedthrough, while Crosstalk  
indicates the amount of feedthrough from one switch to  
another. Figure 20 details the high OFF Isolation and  
FIGURE 8. OVERVOLTAGE PROTECTION  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 10 of 16  
 
ISL43143, ISL43144, ISL43145  
Crosstalk rejection provided by this family. At 10MHz, OFF  
isolation is about 50dB in 5systems, decreasing  
approximately 20dB per decade as frequency increases.  
Higher load impedances decrease OFF Isolation and  
Crosstalk rejection due to the voltage divider action of the  
switch OFF impedance and the load impedance.  
Virtually all the analog leakage current comes from the ESD  
diodes to V+ or V-. Although the ESD diodes on a given  
signal pin are identical and therefore fairly well balanced,  
they are reverse biased differently. Each is biased by either  
V+ or V- and the analog signal. This means their leakages  
will vary as the signal varies. The difference in the two diode  
leakages to the V+ and V- pins constitutes the analog-signal-  
path leakage current. All analog leakage current flows  
between each pin and one of the supply terminals, not to the  
other switch terminal. This is why both sides of a given  
switch can show leakage currents of the same or opposite  
polarity. There is no connection between the analog signal  
paths and GND.  
Leakage Considerations  
Reverse ESD protection diodes are internally connected  
between each analog-signal pin and both V+ and V-. One  
of these diodes conducts if any analog signal exceeds V+  
or V-.  
Typical Performance Curves T = 25°C, Unless Otherwise Specified  
A
25  
20  
15  
70  
60  
50  
40  
30  
20  
35  
V- = -5V  
V
= (V+) - 1V  
V+ = 3V  
V- = 0V  
COM  
= 1mA  
I
= 1mA  
85°C  
COM  
I
COM  
85°C  
25°C  
25°C  
-40°C  
10  
35  
30  
25  
20  
15  
10  
200  
150  
125  
100  
75  
-40°C  
V- = -3V  
V+ = 5V  
V- = 0V  
85°C  
25°C  
-40°C  
85°C  
30  
25  
20  
25°C  
-40°C  
85°C  
15  
20  
18  
16  
14  
12  
10  
8
V- = 0V  
V+ = 12V  
V- = 0V  
85°C  
25°C  
25°C  
50  
25  
0
-40°C  
3
-40°C  
1
2
4
5
6
7
8
9
10  
11  
12  
13  
0
2
3
4
5
6
7
8
9
10 11 12  
V+ (V)  
V
(V)  
COM  
FIGURE 10. ON RESISTANCE vs SWITCH VOLTAGE  
15  
FIGURE 9. ON RESISTANCE vs POSITIVE SUPPLY VOLTAGE  
45  
V
=2V  
S
I
= 1mA  
COM  
40  
35  
30  
25  
85°C  
25°C  
10  
V+ = 12V  
-40°C  
20  
35  
V+ = 5V  
V
=3V  
5
S
30  
25  
20  
15  
85°C  
V
=5V  
25°C  
S
V+ = 3V  
0
-5  
-40°C  
10  
25  
V
=5V  
S
85°C  
20  
15  
10  
5
25°C  
-40°C  
-4  
-10  
-5  
-2.5  
0
2.5  
5
7.5  
10  
12.5  
-5  
-3  
-2  
-1  
0
1
2
3
4
5
V
(V)  
V
(V)  
COM  
COM  
FIGURE 11. ON RESISTANCE vs SWITCH VOLTAGE  
FIGURE 12. CHARGE INJECTION vs SWITCH VOLTAGE  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 11 of 16  
ISL43143, ISL43144, ISL43145  
Typical Performance Curves T = 25°C, Unless Otherwise Specified (Continued)  
A
50  
40  
30  
20  
10  
300  
250  
200  
150  
100  
50  
V
= (V+) - 1V  
V- = 0V  
V
= (V+) - 1V  
V- = 0V  
COM  
COM  
85°C  
85°C  
25°C  
25°C  
-40°C  
-40°C  
0
2
3
4
5
6
7
8
9
10  
11  
12  
2
3
4
5
6
7
8
9
10  
11  
12  
V+ (V)  
V+ (V)  
FIGURE 13. TURN - ON TIME vs POSITIVE SUPPLY VOLTAGE  
FIGURE 14. TURN - OFF TIME vs POSITIVE SUPPLY VOLTAGE  
150  
300  
V
= (V+) - 1V  
V
= (V+) - 1V  
COM  
-40°C  
25°C  
V- = -5V  
V- = -5V  
COM  
-40°C  
25°C  
25°C  
250  
200  
150  
100  
50  
100  
50  
25°C  
85°C  
85°C  
-40°C  
-40°C  
0
300  
250  
200  
150  
100  
50  
0
250  
V- = -3V  
V- = -3V  
200  
150  
100  
50  
-40°C  
-40°C  
25°C  
25°C  
3
85°C  
85°C  
-40°C  
3
0
0
2
4
5
6
7
8
9
10  
11  
12  
2
4
5
6
7
8
9
10  
11  
12  
V+ (V)  
V+ (V)  
FIGURE 15. TURN - ON TIME vs POSITIVE SUPPLY VOLTAGE  
FIGURE 16. TURN - OFF TIME vs POSITIVE SUPPLY VOLTAGE  
3.0  
V
70  
V- = -5V to 0V  
INH  
-40°C  
85°C  
2.5  
2.0  
1.5  
1.0  
25°C  
V+ = +5V  
60  
50  
40  
30  
20  
10  
0
V- = 0V to -5V  
-40°C  
0.5  
3.0  
V
INL  
2.5  
2.0  
1.5  
1.0  
0.5  
25°C  
85°C  
V- = 0V to -5V  
0
0.5  
1
1.5  
2
2.5  
(V)  
3
3.5  
4
4.5  
5
2
3
4
5
6
7
8
9
10  
11  
12  
13  
V+ (V)  
V
IN  
FIGURE 17. DIGITAL SWITCHING POINT vs POSITIVE  
SUPPLY VOLTAGE  
FIGURE 18. POSITIVE SUPPLY CURRENT vs DIGITAL INPUT  
VOLTAGE  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 12 of 16  
ISL43143, ISL43144, ISL43145  
Typical Performance Curves T = 25°C, Unless Otherwise Specified (Continued)  
A
-10  
10  
20  
30  
40  
50  
60  
70  
80  
90  
V+ = 3V to 12V or  
V+ = 2.7V (V = 2V  
IN  
)
P-P  
-20  
-30  
-40  
-50  
-60  
-70  
-80  
-90  
V
= 2V to 5V  
= 50  
S
L
3
0
V
= 2V or V+ = 5V (V = 4V  
IN  
)
P-P  
R
S
GAIN  
V
= 5V (V = 5V )  
IN P-P  
S
-3  
0
ISOLATION  
PHASE  
V
= 2V (V = 4V  
)
)
S
IN  
P-P  
)
45  
V+ = 5V (V = 4V  
IN  
P-P  
V
= 5V (V = 5V  
90  
S
IN  
P-P  
CROSSTALK  
ALL HOSTILE CROSSTALK  
135  
180  
V+ = 2.7V (V = 2V  
IN  
)
P-P  
-100  
-110  
100  
110  
R
= 50  
L
1
10  
100  
600  
1k  
10k  
100k  
1M  
10M  
100M 500M  
FREQUENCY (MHz)  
FREQUENCY (Hz)  
FIGURE 19. FREQUENCY RESPONSE  
FIGURE 20. CROSSTALK AND OFF ISOLATION  
V+ = 3V to 12V or  
Die Characteristics  
V
R
= 2V to 5V  
= 50  
S
L
SUBSTRATE POTENTIAL (POWERED UP):  
0
V
= 1V  
P-P  
IN  
V-  
10  
20  
30  
40  
50  
60  
70  
TRANSISTOR COUNT:  
ISL43143: 209  
ISL43144: 209  
ISL43145: 209  
-PSRR, SWITCH ON  
PROCESS:  
-PSRR, SWITCH OFF  
+PSRR, SWITCH OFF  
+PSRR, SWITCH ON  
Si Gate CMOS  
0.3  
1
10  
FREQUENCY (MHz)  
100  
1000  
FIGURE 21. PSRR vs FREQUENCY  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 13 of 16  
ISL43143, ISL43144, ISL43145  
Revision History  
The revision history provided is for informational purposes only and is believed to be accurate, but not warranted. Please go to the web to make  
sure that you have the latest revision.  
DATE  
REVISION  
CHANGE  
August 31, 2015  
FN6037.4  
- Ordering Information Table on page 3.  
- Added Revision History.  
- Added About Intersil Verbiage.  
-Updated POD L16.4x4 to most current version changes as follows:  
POD into new QFN format.  
-Updated POD M16.173 to most current version changes as follows:  
Converted to new POD format by moving dimensions from table onto drawing and adding land pattern.  
No dimension changes.  
About Intersil  
Intersil Corporation is a leading provider of innovative power management and precision analog solutions. The company's products  
address some of the largest markets within the industrial and infrastructure, mobile computing and high-end consumer markets.  
For the most updated datasheet, application notes, related documentation and related parts, please see the respective product  
information page found at www.intersil.com.  
You may report errors or suggestions for improving this datasheet by visiting www.intersil.com/ask.  
Reliability reports are also available from our website at www.intersil.com/support  
© Copyright Intersil Americas LLC 2003-2015. All Rights Reserved.  
All trademarks and registered trademarks are the property of their respective owners.  
For additional products, see www.intersil.com/en/products.html  
Intersil products are manufactured, assembled and tested utilizing ISO9001 quality systems as noted  
in the quality certifications found at www.intersil.com/en/support/qualandreliability.html  
Intersil products are sold by description only. Intersil may modify the circuit design and/or specifications of products at any time without notice, provided that such  
modification does not, in Intersil's sole judgment, affect the form, fit or function of the product. Accordingly, the reader is cautioned to verify that datasheets are  
current before placing orders. Information furnished by Intersil is believed to be accurate and reliable. However, no responsibility is assumed by Intersil or its  
subsidiaries for its use; nor for any infringements of patents or other rights of third parties which may result from its use. No license is granted by implication or  
otherwise under any patent or patent rights of Intersil or its subsidiaries.  
For information regarding Intersil Corporation and its products, see www.intersil.com  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 14 of 16  
ISL43143, ISL43144, ISL43145  
Package Outline Drawing  
L16.4x4  
16 LEAD QUAD FLAT NO-LEAD PLASTIC PACKAGE  
Rev 6, 02/08  
4X 1.95  
0.65  
12X  
4.00  
A
6
B
13  
16  
PIN #1 INDEX AREA  
6
PIN 1  
INDEX AREA  
1
12  
2 . 10 ± 0 . 15  
9
4
0.15  
(4X)  
5
8
0.10 M C A B  
TOP VIEW  
+0.15  
-0.10  
16X 0 . 60  
4
0.28 +0.07 / -0.05  
BOTTOM VIEW  
SEE DETAIL "X"  
C
0.10  
C
1.00 MAX  
BASE PLANE  
( 3 . 6 TYP )  
SEATING PLANE  
0.08  
C
SIDE VIEW  
(
2 . 10 )  
( 12X 0 . 65 )  
5
( 16X 0 . 28 )  
( 16 X 0 . 8 )  
0 . 2 REF  
C
0 . 00 MIN.  
0 . 05 MAX.  
DETAIL "X"  
TYPICAL RECOMMENDED LAND PATTERN  
NOTES:  
1. Dimensions are in millimeters.  
Dimensions in ( ) for Reference Only.  
2. Dimensioning and tolerancing conform to AMSE Y14.5m-1994.  
3.  
Unless otherwise specified, tolerance : Decimal ± 0.05  
4. Dimension b applies to the metallized terminal and is measured  
between 0.15mm and 0.30mm from the terminal tip.  
Tiebar shown (if present) is a non-functional feature.  
5.  
6.  
The configuration of the pin #1 identifier is optional, but must be  
located within the zone indicated. The pin #1 identifier may be  
either a mold or mark feature.  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 15 of 16  
ISL43143, ISL43144, ISL43145  
Package Outline Drawing  
M16.173  
16 LEAD THIN SHRINK SMALL OUTLINE PACKAGE (TSSOP)  
Rev 2, 5/10  
A
1
3
5.00 ±0.10  
SEE DETAIL "X"  
9
16  
6.40  
PIN #1  
I.D. MARK  
4.40 ±0.10  
2
3
0.20 C B A  
1
8
B
0.09-0.20  
0.65  
TOP VIEW  
END VIEW  
1.00 REF  
-
0.05  
H
C
0.90 +0.15/-0.10  
1.20 MAX  
SEATING  
PLANE  
GAUGE  
PLANE  
0.25 +0.05/-0.06  
0.25  
5
0.10  
C B A  
M
0.10 C  
0°-8°  
0.60 ±0.15  
0.05 MIN  
0.15 MAX  
SIDE VIEW  
DETAIL "X"  
(1.45)  
NOTES:  
1. Dimension does not include mold flash, protrusions or gate burrs.  
Mold flash, protrusions or gate burrs shall not exceed 0.15 per side.  
2. Dimension does not include interlead flash or protrusion. Interlead  
flash or protrusion shall not exceed 0.25 per side.  
3. Dimensions are measured at datum plane H.  
(5.65)  
4. Dimensioning and tolerancing per ASME Y14.5M-1994.  
5. Dimension does not include dambar protrusion. Allowable protrusion  
shall be 0.08mm total in excess of dimension at maximum material  
condition. Minimum space between protrusion and adjacent lead  
is 0.07mm.  
(0.65 TYP)  
(0.35 TYP)  
6. Dimension in ( ) are for reference only.  
TYPICAL RECOMMENDED LAND PATTERN  
7. Conforms to JEDEC MO-153.  
FN6037 Rev 4.00  
Aug 31, 2017  
Page 16 of 16  

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