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What is DG411?

This electronic component, produced by the manufacturer "Maxim Integrated", performs the same function as "SPST Analog Switches".


DG411 Datasheet PDF - Maxim Integrated

Part Number DG411
Description SPST Analog Switches
Manufacturers Maxim Integrated 
Logo Maxim Integrated Logo 


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19-4728; Rev 7; 9/08
Improved, Quad,
SPST Analog Switches
General Description
Maxim’s redesigned DG411/DG412/DG413 analog
switches now feature low on-resistance matching
between switches (3Ω max) and guaranteed on-resis-
tance flatness over the signal range (Δ4Ω max). These
low on-resistance switches conduct equally well in
either direction. They guarantee low charge injection,
low power consumption, and an 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).
The DG411/DG412/DG413 are quad, single-pole/sin-
gle-throw (SPST) analog switches. The DG411 is nor-
mally closed (NC), and the DG412 is normally open
(NO). The DG413 has two NC switches and two NO
switches. Switching times are less than 150ns max for
tON and less than 100ns max for tOFF. These devices
operate from a single +10V to +30V supply, or bipolar
±4.5V to ±20V supplies. Maxim’s improved
DG411/DG412/DG413 are fabricated with a 44V silicon-
gate process.
________________________Applications
Sample-and-Hold Circuits
Test Equipment
Heads-Up Displays
Guidance & Control Systems
Military Radios
Communication Systems
Battery-Operated Systems
PBX, PABX
Audio Signal Routing
______________________New Features
Plug-In Upgrade for Industry-Standard
DG411/DG412/DG413
Improved RDS(ON) Match Between Channels
(3Ω max)
Guaranteed RFLAT(ON) Over Signal Range (Δ4Ω)
Improved Charge Injection (10pC max)
Improved Off-Leakage Current Over Temperature
(< 5nA at +85°C)
Withstand Electrostatic Discharge (2000V min)
per Method 3015.7
__________________Existing Features
Low RDS(ON) (35Ω max)
Single-Supply Operation +10V to +30V
Bipolar-Supply Operation ±4.5V to ±20V
Low Power Consumption (35µW max)
Rail-to-Rail Signal Handling
TTL/CMOS-Logic Compatible
Ordering Information
PART
TEMP RANGE PIN-PACKAGE
DG411CJ
0°C to +70°C 16 Plastic DIP
DG411CUE
0°C to +70°C 16 TSSOP
DG411EUE
-40°C to +85°C 16 TSSOP
DG411CY
0°C to +70°C 16 Narrow SO
DG411C/D
0°C to +70°C Dice†
Ordering Information continued at end of data sheet.
Contact factory for dice specifications.
Pin Configurations/Functional Diagrams/Truth Tables
TOP VIEW
IN1 1
D1 2
S1 3
V- 4
GND 5
S4 6
D4 7
IN4 8
DG411
16 IN2
15 D2
14 S2
13 V+
12 VL
11 S3
10 D3
9 IN3
IN1 1
D1 2
S1 3
V- 4
GND 5
S4 6
D4 7
IN4 8
DG412
16 IN2
15 D2
14 S2
13 V+
12 VL
11 S3
10 D3
9 IN3
DIP/SO/TSSOP
DG411
LOGIC
SWITCH
0 ON
1 OFF
DIP/SO/TSSOP
DG412
LOGIC
SWITCH
0 OFF
1 ON
SWITCHES SHOWN FOR LOGIC “0” INPUT
Pin Configurations and Functional Diagrams continued at end of data sheet.
IN1 1
D1 2
S1 3
V- 4
GND 5
S4 6
D4 7
IN4 8
DG413
16 IN2
15 D2
14 S2
13 V+
12 VL
11 S3
10 D3
9 IN3
DIP/SO/TSSOP
DG413
LOGIC
SWITCHES
1, 4
SWITCHES
2, 3
0 OFF ON
1 ON OFF
________________________________________________________________ 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.

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DG411 equivalent
Improved, Quad,
SPST Analog Switches
__________________________________________Typical Operating Characteristics
(TA = +25°C, unless otherwise noted.)
ON-RESISTANCE vs. VD AND
POWER-SUPPLY VOLTAGE
70 A: V+ = 5V,
60
V- = -5V
B: V+ = 10V,
V- = -10V
50 C: V+ = 15V,
V- = -15V
40 D: V+ = 20V,
V- = -20V
30
A
BC
D
20
10
0
-20
-10 0
VD (V)
10
20
ON-RESISTANCE vs. VD AND
TEMPERATURE
60
V+ = 15V
50 V- = -15V
TA = +125°C
40 TA = +85°C
30
20
10
0
-20
TA = +25°C
TA = -55°C
-10 0
VD (V)
10
20
ON-RESISTANCE vs. VD AND
TEMPERATURE (SINGLE SUPPLY)
160
V- = 0V
140
120
V+ = 5V
100
80
V+ = 10V
60
V+ = 15V
40 V+ = 20V
20
0
5 10 15
VD (V)
20
ON-RESISTANCE vs. VD
(SINGLE SUPPLY)
80
V+ = 12V
70 V- = 0V
TA = +125°C
60 TA = +85°C
OFF-LEAKAGE CURRENTS vs.
TEMPERATURE
100
V+ = 16.5V
V- = -16.5V
10 VD = ±15V
VS = ±15V
1
ON-LEAKAGE CURRENTS vs.
TEMPERATURE
100
V+ = 16.5V
V- = -16.5V
10 VD = ±15V
VS = ±15V
1
50
TA = +25°C
0.1
40 0.01
0.1
0.01
30 0.001 0.001
20
0
5 10 15
VD (V)
0.0001
20 -55
CHARGE INJECTION vs.
ANALOG VOLTAGE
60
V+ = 15V
V- = -15V
40 VL = 5V
CL = 1nF
20
0
-20
+25
TEMPERATURE (°C)
0.0001
+125 -55
+25
TEMPERATURE (°C)
SUPPLY CURRENT vs. TEMPERATURE
100
A: I+ at V+ = 16.5V
10
B: I- at V- = -16.5V
C: IL at VL = 5V
1
A
0.1 B
C
0.01
+125
-40 0.001
-60
-20 -15 -10 -5 0 5
VD (V)
10 15
20
0.0001
-55
+25
TEMPERATURE (°C)
+125
_______________________________________________________________________________________ 5


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