ADA4310-1 Data Sheet
Rev. B | Page 6 of 14
PIN CONFIGURATIONS AND FUNCTION DESCRIPTIONS
+V
S
1
NIC
2
OUT A
3
–IN A
4
+IN A
5
OUT B
10
–IN B
9
+IN B
8
PD1
7
PD0
6
06027-101
NOTES
1. THE EXPOSED PAD MUST BE CONNECTED
TO GROUND (ELECTRICAL CONNECTION REQUIRED).
2. NIC = NO INTERNAL CONNECTION.
ADA4310-1
Figure 5. 10-Lead MSOP Pin Configuration
NIC
−IN A
+IN
A
GND
−IN B
NIC
+IN B
PD1
NIC
OUT A
+V
S
OUT B
06027-002
NOTES
1. NIC = NO INTERNA
L CONNECTION.
2. THE EXPOSED P
AD MUST BE
CONNECTED TO GND.
12
11
10
1
3
4
9
2
6
5
7
8
16
15
14
13
NIC
NIC
PD0
ADA4310-1
–V
S
Figure 6. 16-Lead LFCSP Pin Configuration
Table 4. 10-Lead MSOP Pin Function Description
Pin No. Mnemonic Description
1 +V
S
Positive Power Supply Input
2 NIC No Internal Connection
3 OUT A Amplifier A Output
4 IN A Amplifier A Inverting Input
5 +IN A Amplifier A Noninverting Input
6 PD0 Power Dissipation Control
7 PD1 Power Dissipation Control
8 +IN B Amplifier B Noninverting Input
9 IN B Amplifier B Inverting Input
10
OUT B
Amplifier B Output
11 (Exposed
Paddle)
GND Ground (Electrical Connection
Required)
Table 5. 16-Lead LFCSP Pin Function Description
Pin No. Mnemonic Description
1, 5, 6, 12, 15 NIC No Internal Connection
2 IN A Amplifier A Inverting Input
3 +IN A Amplifier A Noninverting Input
4 GND Ground
7 −V
S
Negative Power Supply Input
8 PD0 Power Dissipation Control
9 PD1 Power Dissipation Control
10 +IN B Amplifier B Noninverting Input
11 IN B Amplifier B Inverting Input
13
OUT B
Amplifier B Output
14 +V
S
Positive Power Supply Input
16 OUT A Amplifier A Output
17 (Exposed
Paddle)
GND Ground
Data Sheet ADA4310-1
Rev. B | Page 7 of 14
TYPICAL PERFORMANCE CHARACTERISTICS
06027-022
FREQUENCY (MHz)
NORMALIZED GAIN (dB)
–18
–12
–9
–6
–3
0
3
12
1
10 100 1000
–15
G = +2
G = +10
G = +20
9
6
G = +5
V
OUT
= 100mV p-p
R
L
= 50
PD1, PD0 = 0, 0
Figure 7. Small Signal Frequency Response for Various Closed-Loop Gains
06027-021
FREQUENCY (MHz)
GAIN (dB)
–10
–7
–4
–1
2
5
8
11
20
23
1
10 100 1000
PD1, PD0 = 0, 0
PD1, PD0 = 0, 1
PD1, PD0 = 1, 0
17
14
V
OUT
= 100mV p-p
G = +5
R
L
= 50
Figure 8. Small Signal Frequency Response for Various Modes
FREQUENCY (MHz)
MAGNITUDE (k)
PHASE (Degrees)
0.1
1
10
100
1000
10000
100000
0.0001 0.001 0.01 0.1 1 10 100 1000
–270
–225
–180
–135
–90
–45
R
L
= 100
06027-013
Figure 9. Open-Loop Transimpedance Gain and Phase vs. Frequency
06027-023
FREQUENCY (MHz)
HARMONIC DISTORTION (dBc)
–120
–100
–90
–80
–70
–60
–50
20
0.1
110100
–110
–30
–40
V
OUT
= 2V p-p
R
L
= 50
G = +5
PD1, PD0 = 0, 0
PD1, PD0 = 0, 1
PD1, PD0 = 1, 0
HD2
HD3
Figure 10. Harmonic Distortion vs. Frequency
1
10
100
FREQUENCY (Hz)
VOLTAGE NOISE (nV/Hz)
10 100 1k 10k 100k 1M 10M 100M 1G
06027-012
Figure 11. Voltage Noise vs. Frequency
06027-020
OUTPUT (V)
–0.20
–0.15
–0.10
–0.05
0
0.05
0.10
0.15
0.20
G = +5
R
L
= 50
10ns/DIV
Figure 12. Small Signal Transient Response
ADA4310-1 Data Sheet
Rev. B | Page 8 of 14
COMMON-MODE REJECTION (dB)
–70
–50
–40
–30
–20
0
–60
–10
FREQUENCY (MHz)
0.01 0.1 1 10 100 1000
PD1, PD0 = (0, 0)
R
L
= 100
0
6027-007
Figure 13. Common-Mode Rejection(CMR) vs. Frequency
–80
–70
–60
–50
–40
–30
–20
–10
0
–PSR
+PSR
FREQUENCY (MHz)
POWER SUPPLY REJECTION (dB)
0.01 0.1 1 10 100 1000
G = +5
PD1, PD0 = (0, 0)
R
L
= 100
06027-006
Figure 14. Power Supply Rejection(PSR) vs. Frequency
FREQUENCY (MHz)
OUTPUT IMPEDANCE ()
0.01
0.1
1
10
100
0.1 1 10 100 1000
0
6027-009
PD1, PD0 = (0, 0)
Figure 15. Closed-Loop Output Impedance vs. Frequency
FREQUENCY (MHz)
FEEDTHROUGH (dB)
–120
–100
–80
–60
40
1 10 100 1000
PD1, PD0 = (1,1)
06027-010
Figure 16. Off-Isolation vs. Frequency
OUTPUT IMPEDANCE (k)
0.001
1000
FREQUENCY (MHz)
0.01 0.1 1 10 100 1000
0.01
0.1
1
10
100
06027-008
PD1, PD0 = (1,1)
Figure 17. Output Impedance vs. Frequency (Disabled)
VOLTAGE (V)
–0.5
0
0.5
1.0
1.5
2.0
2.5
V
OUT
V
PD0
, V
PD1
06027-011
10ns/DIV
Figure 18. Power-Down Turn On/Turn Off

ADA4310-1ARHZ-R7

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Video Amplifiers Dual Hi Crnt Output Line Dvr w/ Shutdown
Lifecycle:
New from this manufacturer.
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