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ADG782 Schematic ( PDF Datasheet ) - Analog Devices

Teilenummer ADG782
Beschreibung 2.5 ohm Quad SPST Switches in Chip Scale Package
Hersteller Analog Devices
Logo Analog Devices Logo 




Gesamt 8 Seiten
ADG782 Datasheet, Funktion
a
FEATURES
1.8 V to 5.5 V Single Supply
Low On Resistance (2.5 Typ)
Low On-Resistance Flatness (0.5 )
–3 dB Bandwidth > 200 MHz
Rail-to-Rail Operation
20-Lead 4 mm ؋ 4 mm Chip Scale Package
Fast Switching Times
tON = 16 ns
tOFF = 10 ns
Typical Power Consumption (< 0.01 W)
TTL/CMOS Compatible
For Functionally Equivalent Devices in 16-Lead TSSOP
and SOIC Packages, See ADG711/ADG712/ADG713
APPLICATIONS
Battery Powered Systems
Communication Systems
Sample Hold Systems
Audio Signal Routing
Video Switching
Mechanical Reed Relay Replacement
2.5 Quad SPST Switches
in Chip Scale Package
ADG781/ADG782/ADG783
FUNCTIONAL BLOCK DIAGRAMS
S1
IN1
D1
S2
IN2
D2
ADG781
S3
IN3
D3
S4
IN4
D4
S1 S1
IN1 IN1
D1 D1
S2 S2
IN2 IN2
D2
ADG782
S3
D2
ADG783
S3
IN3 IN3
D3 D3
S4 S4
IN4 IN4
D4 D4
SWITCHES SHOWN FOR A LOGIC “1” INPUT
GENERAL DESCRIPTION
The ADG781, ADG782, and ADG783 are monolithic CMOS
devices containing four independently selectable switches. These
switches are designed on an advanced submicron process that
provides low power dissipation and high switching speed, low on
resistance, low leakage currents and high bandwidth.
They are designed to operate from a single 1.8 V to 5.5 V sup-
ply, making them ideal for use in battery powered instruments
and with the new generation of DACs and ADCs from Analog
Devices. Fast switching times and high bandwidth make the
part suitable for video signal switching.
The ADG781, ADG782, and ADG783 contain four independent
single-pole/single throw (SPST) switches. The ADG781 and
ADG782 differ only in that the digital control logic is inverted.
The ADG781 switches are turned on with a logic low on the
appropriate control input, while a logic high is required to turn
on the switches of the ADG782. The ADG783 contains two
switches whose digital control logic is similar to the ADG781,
while the logic is inverted on the other two switches.
Each switch conducts equally well in both directions when ON.
The ADG783 exhibits break-before-make switching action.
The ADG781/ADG782/ADG783 are available in 20-lead chip
scale packages.
PRODUCT HIGHLIGHTS
1. 20-Lead 4 mm ϫ 4 mm Chip Scale Package (CSP).
2. 1.8 V to 5.5 V Single Supply Operation. The ADG781,
ADG782, and ADG783 offer high performance and are
fully specified and guaranteed with 3 V and 5 V supply
rails.
3. Very Low RON (4.5 max at 5 V, 8 max at 3 V). At supply
voltage of 1.8 V, RON is typically 35 over the temperature
range.
4. Low On-Resistance Flatness.
5. –3 dB Bandwidth >200 MHz.
6. Low Power Dissipation. CMOS construction ensures low
power dissipation.
7. Fast tON/tOFF.
8. Break-Before-Make Switching. This prevents channel shorting
when the switches are configured as a multiplexer (ADG783
only).
REV. A
Information furnished by Analog Devices is believed to be accurate and
reliable. However, no responsibility is assumed by Analog Devices for its
use, nor for any infringements of patents or other rights of third parties that
may result from its use. No license is granted by implication or otherwise
under any patent or patent rights of Analog Devices.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781/329-4700
www.analog.com
Fax: 781/326-8703
© Analog Devices, Inc., 2002






ADG782 Datasheet, Funktion
ADG781/ADG782/ADG783
30
40
VDD = 5V, 3V
50
60
70
80
90
100
110
120
130
10k
100k
1M 10M
FREQUENCY Hz
TPC 5. Off Isolation vs. Frequency
100M
30
40
VDD = 5V, 3V
50
60
70
80
90
100
110
120
130
10k
100k
1M 10M
FREQUENCY Hz
TPC 6. Crosstalk vs. Frequency
100M
0
VDD = 5V
2
4
6
10k
100k
1M 10M
FREQUENCY Hz
100M
TPC 7. On Response vs. Frequency
25
TA = 25؇C
20
15
10 VDD = 3V
5
VDD = 5V
0
5
10
0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5
SOURCE VOLTAGE V
TPC 8. Charge Injection vs. Source Voltage
APPLICATIONS
C1
Figure 1 illustrates a photodetector circuit with programmable
gain. An AD820 is used as the output operational amplifier.
R1
33k
With the resistor values shown in the circuit, and using different
combinations of the switches, gain in the range of 2 to 16 can
be achieved.
D1 2.5V
5V
AD820
VOUT
R2
510k
5V
R4 R5
S1 D1 240k240k
(LSB) IN1
S2
R6 R7
D2 120k120k
R3
510k
IN2 R8
S3 D3 120k
IN3
(MSB) IN4
S4 D4
GND
R9
120k
R10
120k
2.5V
GAIN RANGE 2 TO 16
Figure 1. Photodetector Circuit with Programmable Gain
–6– REV. A

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