ADG1233/ADG1234 Data Sheet
Rev. D | Page 10 of 17
TERMINOLOGY
V
DD
Most positive supply potential.
V
SS
Most negative power supply potential in dual supplies. In
single-supply applications, it can be connected to ground.
GND
Ground (0 V) reference.
R
ON
Ohmic resistance between D and S.
ΔR
ON
Difference between the R
ON
of any two channels.
I
S
(Off)
Source leakage current when switch is off.
I
D
(Off)
Drain leakage current when switch is off.
I
D
, I
S
(On)
Channel leakage current when switch is on.
V
D,
V
S
Analog voltage on Terminal D, Terminal S.
C
S
(Off)
Channel input capacitance for off condition.
C
D
(Off)
Channel output capacitance for off condition.
C
D
, C
S
(On)
On switch capacitance.
C
IN
Digital input capacitance.
t
ON
(
EN
)
Delay time between the 50% and 90% points of the digital input
and switch on condition.
t
OFF
(
EN
)
Delay time between the 50% and 90% points of the digital input
and switch off condition.
t
TRANSITION
Delay time between the 50% and 90% points of the digital
inputs and the switch on condition when switching from one
address state to another.
t
BBM
Off time measured between the 80% point of both switches
when switching from one address state to another.
V
INL
Maximum input voltage for Logic 0.
V
INH
Minimum input voltage for Logic 1.
I
INL
, I
INH
Input current of the digital input.
I
DD
Positive supply current.
I
SS
Negative supply current.
Off Isolation
A measure of an unwanted signal coupling through an off channel.
Charge Injection
A measure of the glitch impulse transferred from the digital
input to the analog output during switching.
Bandwidth
Frequency at which the output is attenuated by 3 dB.
On Response
Frequency response of the on switch.
THD + N
Ratio of the harmonic amplitude plus noise of the signal to the
fundamental.
Data Sheet ADG1233/ADG1234
Rev. D | Page 11 of 17
TYPICAL PERFORMANCE CHARACTERISTICS
SOURCE OR DRAIN VOLTAGE (V)
ON RESISTANCE (Ω)
200
100
0
–18 –15 –12 –9 –6 –3
12 15
90 63
18
05743-031
180
160
140
120
80
60
40
20
T
A
= 25°C
V
DD
= +15V
V
SS
= –15V
V
DD
= +16.5V
V
SS
= –16.5V
V
DD
= +13.5V
V
SS
= –13.5V
Figure 7. On Resistance as a Function of V
D
(V
S
) for Dual Supply
SOURCE OR DRAIN VOLTAGE (V)
ON RESISTANCE (W )
600
300
0
–6 –4 –2 40 2 6
05743-032
500
400
200
100
T
A
= 25°C
V
DD
= 5V
V
SS
= –5V
V
DD
= 5.5V
V
SS
= –5.5V
V
DD
= 4.5V
V
SS
= –4.5V
Figure 8. On Resistance as a Function of V
D
(V
S
) for Dual Supply
SOURCE OR DRAIN VOLTAGE (V)
ON RESISTANCE (Ω)
450
250
300
0
0 2 4 6 128 10 14
05743-033
400
350
150
200
100
50
T
A
= 25°C
V
DD
= 12V
V
SS
= 0V
V
DD
= 13.2V
V
SS
= 0V
V
DD
= 10.8V
V
SS
= 0V
Figure 9. On Resistance as a Function of V
D
(V
S
) for Single Supply
TEMPERATURE (°C)
ON RESISTANCE (Ω)
250
0
–15 –10 –5 100
5 15
05743-034
150
200
100
50
T
A
= +25°C
T
A
= +85°C
T
A
= +125°C
T
A
= –40°C
V
DD
= +15V
V
SS
= –15V
Figure 10. On Resistance as a Function of V
D
(V
S
) for Different Temperatures,
Dual Supply
TEMPERATURE (°C)
ON RESISTANCE (Ω)
600
0
0
2 4 10
6 8 12
05743-035
300
400
200
500
100
T
A
= +25°C
T
A
= +85°C
T
A
= +125°C
T
A
= –40°C
V
DD
= 12V
V
SS
= 0V
Figure 11. On Resistance as a Function of V
D
(V
S
) for Different Temperatures,
Single Supply
TEMPERATURE (°C)
LEAKAGE CURRENT (pA)
250
–250
–200
–150
–100
–50
0
100
50
150
200
0 20 40 60 80 100 120
05743-017
V
DD
= +15V
V
SS
= –15V
V
BIAS
= +10V/–10V
I
D
(OFF) +
I
S
(OFF) – +
I
D
(OFF) – +
I
D
, I
S
(ON) – –
I
D
, I
S
(ON) + +
I
S
(OFF) +
Figure 12. Leakage Currents as a Function of Temperature, Dual Supply
ADG1233/ADG1234 Data Sheet
Rev. D | Page 12 of 17
TEMPERATURE (°C)
LEAKAGE CURRENT (pA)
130
–120
–70
–20
30
80
0 20 40 60 80 100
120
05743-018
V
DD
= 12V
V
SS
= 0V
V
BIAS
= 1V/10V
I
D
(OFF) +
I
S
(OFF) – +
I
D
(OFF) – +
I
D
, I
S
(ON) – –
I
D
, I
S
(ON) + +
I
S
(OFF) +
Figure 13. Leakage Currents as a Function of Temperature, Single Supply
LOGIC, IN
X
(V)
I
DD
(µA)
200
60
80
100
120
140
160
180
40
20
0
0 2 4 6 8
10 12 14 16
05743-006
V
DD
= 12V
V
SS
= 0V
V
DD
= +15V
V
SS
= –15V
I
DD
PER CHANNEL
T
A
= 25°C
Figure 14. I
DD
vs. Logic Level
V
S
(V)
CHARGE INJECTION (pC)
6
4
2
0
–2
–4
–6
–15
–10 –5 0
1510
5
05743-008
V
DD
= +15V
V
SS
= –15V
V
DD
= 12V
V
SS
= 0V
V
DD
= +5V
V
SS
= –5V
T
A
= 25°C
Figure 15. Charge Injection vs. Source Voltage
TEMPERATURE (°C)
TIME (ns)
220
180
200
160
140
120
100
80
20
40
60
0
–40 –20
200
40 60 80 100 120
05743-011
B
OFF
A
ON
15V DS
B
OFF
A
ON
12V DS
A
OFF
B
ON
12V DS
A
OFF
B
ON
15V DS
Figure 16. t
TRANSITION
vs. Temperature
FREQUENCY (Hz)
OFF ISOLATION (dB)
0
–10
–20
–30
–40
–50
–60
–70
–80
–90
–100
–110
10k 100k
1M 10M
100M 1G
05743-036
V
DD
= +15V
V
SS
= –15V
T
A
= 25°C
Figure 17. Off Isolation vs. Frequency
FREQUENCY (Hz)
CROSSTALK (dB)
–10
–20
–30
–40
–50
–60
–90
–80
–70
–100
10k 100k 1M 10M 100M 1G
05743-012
SxA – SxB
S1x – S2x
V
DD
= +15V
V
SS
= –15V
T
A
= 25°C
Figure 18. Crosstalk vs. Frequency

ADG1233YRUZ-REEL7

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Analog Switch ICs IC 80dB 120 Ohm iCMOS Dual SPST
Lifecycle:
New from this manufacturer.
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