Data Sheet ADG5208/ADG5209
Rev. C | Page 13 of 24
500
400
300
200
100
450
350
250
150
50
0
0 2
4
6 8 10 12
ON RESISTANCE (Ω)
V
S,
V
D
(V)
V
DD
= +12V
V
SS
= 0V
T
A
= +125°C
T
A
= +85°C
T
A
= +25°C
T
A
= –40°C
09917-112
Figure 12. R
ON
as a Function of V
S
, V
D
for Different Temperatures,
12 V Single Supply
ON RESISTANCE (Ω)
250
200
100
150
50
0
0 3530252015105
V
S,
V
D
(V)
V
DD
= 36V
V
SS
= 0V
T
A
= +125°C
T
A
= +85°C
T
A
= +25°C
T
A
= –40°C
09917-113
Figure 13. R
ON
as a Function of V
S
, V
D
for Different Temperatures,
36 V Single Supply
50
–250
–200
–150
–100
–50
0
0
125100755025
LEAKAGE CURRENT (pA)
TEMPERATURE (°C)
V
DD
= +15V
V
SS
= –15V
V
BIAS
= +10V/–10V
I
S
(OFF) +
I
S
(OFF) – +
I
D
, I
S
(ON) + +
I
D
(OFF) +
I
D
(OFF) – +
I
D
, I
S
(ON) – –
09917-014
Figure 14. Leakage Currents vs. Temperature, ±15 V Dual Supply
100
–200
–150
–100
–50
0
50
0
125100
7550
25
LEAKAGE CURRENT (pA)
TEMPERATURE (°C)
V
DD
= +20V
V
SS
= –20V
V
BIAS
= +15V/–15V
I
S
(OFF) +
I
S
(OFF) – +
I
D
, I
S
(ON) + +
I
D
(OFF) +
I
D
(OFF) – +
I
D
, I
S
(ON) – –
09917-015
Figure 15. Leakage Currents vs. Temperature, ±20 V Dual Supply
100
–700
–600
–500
–400
–300
–200
–100
0
0
125100
755025
LEAKAGE CURRENT (pA)
TEMPERATURE (°C)
V
DD
= 12V
V
SS
= 0V
V
BIAS
= 1V/10V
I
S
(OFF) +
I
S
(OFF) – +
I
D
, I
S
(ON) + +
I
D
(OFF) +
I
D
(OFF) – +
I
D
, I
S
(ON) – –
09917-016
Figure 16. Leakage Currents vs. Temperature, 12 V Single Supply
200
–1000
–800
–600
–400
–200
0
0 125100755025
LEAKAGE CURRENT (pA)
TEMPERATURE (°C)
V
DD
= 36V
V
SS
= 0V
V
BIAS
= 1V/30V
I
S
(OFF) +
I
S
(OFF) – +
I
D
, I
S
(ON) + +
I
D
(OFF) +
I
D
(OFF) – +
I
D
, I
S
(ON) – –
09917-017
Figure 17. Leakage Currents vs. Temperature, 36 V Single Supply
ADG5208/ADG5209 Data Sheet
Rev. C | Page 14 of 24
0
–80
–100
–120
–140
10k 100k 1M 10M 1G
09917-118
OFF ISOLATION (dB)
FREQUENCY (Hz)
100M
–60
–40
–20
T
A
= 25°C
V
DD
= +15V
V
SS
= –15V
Figure 18. Off Isolation vs. Frequency, ±15 V Dual Supply
0
–80
–100
–120
–140
10k 100k 1M 10M 1G
09917-119
CROSSTALK (dB)
FREQUENCY (Hz)
100M
–60
–40
–20
BETWEEN S1 AND S2
BETWEEN S1 AND S8
T
A
= 25°C
V
DD
= +15V
V
SS
= –15V
Figure 19. Crosstalk vs. Frequency, ±15 V Dual Supply
40
20
15
5
09917-120
CHARGE INJECTION (pC)
25
30
35
10
0
–20
–10 0 10
20 30
V
S
(V)
T
A
= 25°C
DEMUX (DRAIN TO SOURCE)
V
DD
= +15V
V
SS
= –15V
V
DD
= +20V
V
SS
= –20V
V
DD
= +36V
V
SS
= 0V
V
DD
= +12V
V
SS
= 0V
Figure 20. Charge Injection vs. Source Voltage, Drain to Source
–5
100k
1M 10M 100M
09917-122
ATTENUATION (dB)
FREQUENCY (Hz)
1G
–7
–6
ADG5208
–8
–9
–10
–11
–12
ADG5209
T
A
= 25°C
V
DD
= +15V
V
SS
= –15V
Figure 21. Bandwidth
0
–80
–100
–120
1k
10k 100k 1M
09917-121
ACPSRR (dB)
FREQUENCY (Hz)
10M
–60
–40
–20
NO DECOUPLING
CAPACITORS
T
A
= 25°C
V
DD
= +15V
V
SS
= –15V
DECOUPLING
CAPACITORS
Figure 22. ACPSRR vs. Frequency, ±15 V Dual Supply
5
1
0
–2
09917-123
CHARGE INJECTION (pC)
2
3
4
–1
–20
–10 0 10
20 30
V
S
(V)
V
DD
= +20V
V
SS
= –20V
V
DD
= +15V
V
SS
= –15V
V
DD
= +36V
V
SS
= 0V
V
DD
= +12V
V
SS
= 0V
T
A
= 25°C
MUX (SOURCE TO DRAIN)
Figure 23. Charge Injection vs. Source Voltage, Source to Drain
Data Sheet ADG5208/ADG5209
Rev. C | Page 15 of 24
300
–40
10 60 110
09917-124
TIME (ns)
TEMPERATURE (°C)
200
250
150
100
50
0
V
DD
= +12V
V
SS
= 0V
V
DD
= +36V
V
SS
= 0V
V
DD
= +20V
V
SS
= –20V
V
DD
= +15V
V
SS
= –15V
Figure 24. t
TRANSITION
Times vs. Temperature
40
35
30
25
20
15
10
5
0
–15 –10 151050–5
CAPACITANCE (pF)
V
S
(V)
T
A
= 25°C
V
DD
= +15V
V
SS
= –15V
SOURCE/DRAIN ON
DRAIN OFF
SOURCE OFF
09917-125
Figure 25. ADG5209 Capacitance vs. Source Voltage, ±15 V Dual Supply
80
70
60
50
40
30
20
10
0
–15 –10 151050–5
CAPACITANCE (pF)
V
S
(V)
T
A
= 25°C
V
DD
= +15V
V
SS
= –15V
SOURCE/DRAIN ON
DRAIN OFF
SOURCE OFF
09917-126
Figure 26. ADG5208 Capacitance vs. Source Voltage, ±15 V Dual Supply

ADG5208BRUZ-RL7

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Multiplexer Switch ICs 8:1 54MHz 160 Ohm High VTG Latch-up
Lifecycle:
New from this manufacturer.
Delivery:
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Payment:
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