
OPA3684
SBOS241A
3
www.ti.com
AC PERFORMANCE (see Figure 1)
Small-Signal Bandwidth (V
O
= 0.5Vp-p)
G = +1, R
F
= 800
G = +2, R
F
= 800
G = +5, R
F
= 800
G = +10, R
F
= 800
G = +20, R
= 800
G = +2, V
= 0.5Vp-p, R
= 800
R
F
= 800
, V
O
= 0.5Vp-p
G = +2, V
O
= 4Vp-p
G =
–
1, V
O
= 4V Step
G = +2,V
O
= 4V Step
G = +2, V
O
= 0.5V Step
G = +2, V
= 4VStep
G = +2, f = 5MHz, V
O
= 2Vp-p
R
L
= 100
R
L
≥
1k
R
L
= 100
R
≥
1k
f > 1MHz
f > 1MHz
f > 1MHz
G = +2, NTSC, V
O
= 1.4Vp, R
L
= 150
G = +2, NTSC, V
= 1.4Vp, R
L
= 150
2 Channels, f = 5MHz
3rd-Channel Measured
250
170
138
120
95
19
1.4
90
780
750
3
6.8
MHz
MHz
MHz
MHz
MHz
MHz
dB
MHz
V/
μ
s
V/
μ
s
ns
ns
typ
min
typ
typ
typ
min
max
typ
min
min
typ
typ
C
B
C
C
C
B
B
C
B
B
C
C
120
118
117
Bandwidth for 0.1dB Gain Flatness
Peaking at a Gain of +1
Large-Signal Bandwidth
Slew Rate
16
4.8
14
5.9
14
6.3
675
680
650
660
575
650
Rise-and-Fall Time
Harmonic Distortion
2nd-Harmonic
–
67
–
82
–
70
–
84
3.7
9.4
17
0.04
0.02
70
–
59
–
66
–
66
–
82
4.1
11
18
–
59
–
65
–
65
–
81
4.2
12
18.5
–
58
–
65
–
65
–
81
4.4
12.5
19
dBc
dBc
dBc
dBc
nV/
√
Hz
pA/
√
Hz
pA/
√
Hz
%
deg
dB
max
max
max
max
max
max
max
typ
typ
typ
B
B
B
B
B
B
B
C
C
C
3rd-Harmonic
Input Voltage Noise
Noninverting Input Current Noise
Inverting Input Current Noise
Differential Gain
Differential Phase
All Hostile Crosstalk
DC PERFORMANCE
(4)
Open-Loop Transimpedance Gain (Z
OL
)
Input Offset Voltage
Average Offset Voltage Drift
Noninverting Input Bias Current
Average Noninverting Input Bias Current Drift
Inverting Input Bias Current
Average Inverting Input Bias Current Drift
INPUT
Common-Mode Input Range
(5)
(CMIR)
Common-Mode Rejection Ratio (CMRR)
Noninverting Input Impedance
Inverting Input Resistance
(
R
I
)
OUTPUT
Voltage Output Swing
Current Output, Sourcing
Current Output, Sinking
Closed-Loop Output Impedance
DISABLE (Disabled LOW)
Power-Down Supply Current (+V
S
)
Disable Time
Enable Time
Off Isolation
Output Capacitance in Disable
Enable Voltage
Disable Voltage
Control Pin Input Bias Current (DIS)
POWER SUPPLY
Specified Operating Voltage
Maximum Operating Voltage Range
Max Quiescent Current
Min Quiescent Current
Power-Supply Rejection Ratio (
–
PSRR)
TEMPERATURE RANGE
Specification: D, DBQ
Thermal Resistance,
θ
JA
D
SO-14
DBQ SSOP-16
V
O
= 0V, R
= 1k
V
CM
= 0V
V
CM
= 0V
V
CM
= 0V
V
CM
= 0V
V
CM
= 0V
V
CM
= 0V
355
±
1.5
160
±
3.9
155
±
4.5
±
12
±
13.5
±
25
±
18.5
±
35
153
±
4.7
±
12
±
14
±
30
±
19.5
±
40
k
mV
μ
V/
°
C
μ
A
nA/
°
C
μ
A
nA
°
/C
min
max
max
max
max
max
max
A
A
B
A
B
A
B
±
5.0
±
12
±
5.0
±
17
±
3.75
60
50 || 2
4.0
±
3.65
53
±
3.65
52
±
3.6
52
V
dB
min
min
typ
typ
A
A
C
C
V
CM
= 0V
k
|| pF
Open-Loop, DC
1k
Load
V
O
= 0
V
= 0
G = +2, f = 100kHz
±
4.1
160
–
120
0.006
±
3.9
120
–
100
±
3.9
115
–
95
±
3.8
110
–
90
V
min
min
min
typ
A
A
A
C
mA
mA
V
DIS
= 0 (all channels)
IN
= +1V, G
= +2
V
IN
= +1V, G
= +2
G = +2, 5MHz
–
300
4
40
70
1.7
3.4
1.8
80
–
500
–
580
–
600
μ
A
ms
ns
dB
pF
V
V
μ
A
max
typ
typ
typ
typ
min
max
max
A
C
C
C
C
A
A
A
3.5
1.7
120
3.6
1.6
130
3.7
1.5
135
V
DIS
= 0V/Channel
±
5
V
V
typ
max
max
min
typ
C
A
A
A
A
±
6
1.8
1.6
54
±
6
1.85
1.55
53
±
6
1.85
1.45
53
V
S
=
±
5V/per Channel
V
S
=
±
5V/per Channel
Input Referred
1.7
1.7
60
mA
mA
dB
–
40 to +85
°
C
typ
C
Junction-to-Ambient
100
100
°
C/W
°
C/W
typ
typ
C
C
NOTES: (1) Junction temperature = ambient for +25
°
C tested specifications. (2) Junction temperature = ambient at low temperature limit, junction temperature = ambient
+2
°
C at high temperature limit for over temperature tested specifications. (3) Test levels: (A) 100% tested at +25
°
C. Over-temperature limits by characterization and
simulation. (B) Limits set by characterization and simulation. (C) Typical value only for information. (4) Current is considered positive out-of-node. V
CM
is the input
common-mode voltage. (5) Tested < 3dB below minimum specified CMR at
±
CMIR limits.
OPA3684ID, IDBQ
0
°
C to
70
°
C
(2)
–
40
°
C to
+85
°
C
(2)
MIN/
MAX
LEVEL
(3)
TEST
PARAMETER
CONDITIONS
+25
°
C
+25
°
C
(1)
UNITS
TYP
MIN/MAX OVER TEMPERATURE
ELECTRICAL CHARACTERISTICS: V
S
=
±
5V
Boldface
limits are tested at
+25
°
C.
R
F
= 800
, R
L
= 100
, and G = +2, unless otherwise noted.