參數(shù)資料
型號: OPA2677N
英文描述: Dual, Wideband, High Output Current OPERATIONAL AMPLIFIER
中文描述: 雙路,寬帶,高輸出電流運算放大器
文件頁數(shù): 3/12頁
文件大小: 150K
代理商: OPA2677N
3
OPA2677
SPECIFICATIONS: V
S
= +5V
At T
A
= +25
°
C, G = +2, R
F
= 453
, and R
L
= 100
, unless otherwise noted. See Figure 2 for AC performance only
OPA2677U, H, N
TYP
GUARANTEED
0
°
C to
70
°
C
(3)
–40
°
C to
+85
°
C
(3)
MIN/
MAX
LEVEL
(1)
TEST
PARAMETER
CONDITIONS
+25
°
C
+25
°
C
(2)
UNITS
AC PERFORMANCE (Figure 2)
Small-Signal Bandwidth (V
O
= 0.5Vp-p)
G = +1, R
F
= 536
G = +2, R
F
= 511
G = +4, R
F
= 453
G = +8, R
= 332
G = +4, V
O
= 0.5Vp-p
G = +4, V
= 2Vp-p
G = +4, 2V Step
G = +4, V
= 2V Step
V
O
= 2Vp-p, 5MHz, 100
V
O
= 2Vp-p, 100kHz, 100
160
150
160
160
70
100
1100
2
67
87
2.0
14
21
–80
MHz
MHz
MHz
MHz
MHz
MHz
V/
μ
s
ns
dB
dB
nV/
Hz
pA/
Hz
pA/
Hz
dB
typ
typ
typ
typ
typ
typ
typ
typ
typ
typ
typ
typ
typ
typ
C
C
C
C
C
C
C
C
C
C
C
C
C
C
Bandwidth for 0.1dB Gain Flatness
Large-Signal Bandwidth
Slew Rate
Rise/Fall Time
Spurious Free Dynamic Range
Input Voltage Noise
Non-Inverting Input Current Noise
Inverting Input Current Noise
Channel-to-Channel Crosstalk
f = 5MHz, Input Referred
DC PERFORMANCE
(4)
Open-Loop Transimpedance Gain
Input Offset Voltage
Average Offset Voltage Drift
Non-Inverting Input Bias Current
Average Non-Inverting Input Bias Current Drift
Inverting Input Bias Current
Average Inverting Input Bias Current Drift
V
O
= 0V, R
= 100
V
CM
= 0V
V
CM
= 0V
V
CM
= 0V
V
CM
= 0V
V
CM
= 0V
V
CM
= 0V
125
±
0.8
90
±
4.0
85
±
5.5
35
±
45
250
±
45
250
80
±
6.0
40
±
55
350
±
55
350
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
±
10
±
30
±
10
±
30
INPUT
(4)
Most Positive Input Voltage
Least Positive Input Voltage
Common-Mode Rejection Ratio(CMRR)
Non-Inverting Input Impedance
Minimum Inverting Input Resistance
Maximum Inverting Input Resistance
3.7
1.3
52
3.4
1.6
50
3.3
1.7
49
3.2
1.8
48
V
V
dB
min
max
min
typ
min
max
A
A
A
C
B
B
V
CM
= 2.5V, Input Referred
250 || 2
29
29
k
|| pF
Open-Loop
Open-Loop
20
37
OUTPUT
(4)
Most Positive Output Voltage
No Load
R
= 100
No Load
R
L
= 100
V
O
= 2.5V
V
= 2.5V
G = +4, f = 100kHz
4.2
4.0
0.8
1.0
300
300
0.02
4.0
3.9
1.0
1.1
200
200
3.9
3.8
1.1
1.2
160
160
3.7
3.6
1.3
1.5
120
120
V
V
V
V
min
min
max
max
min
min
typ
A
A
A
A
A
A
C
Least Positive Output Voltage
Current Output, Sourcing
Current Output, Sinking
Closed-Loop Output Impedance
mA
mA
Power Control
(SO-14 only)
Maximum Logic 0
Minimum Logic 1
Logic Input Current
Supply Current at Full Power
Supply Current at Power Cutback
Supply Current at Idle Power
Supply Current at Shutdown
Output Impedance in Idle Power
Output Impedance in Shutdown
Supply Current Step Time
Output Switching Glitch
Shutdown Isolation
A0, A1
A0, A1
A0 = A1 = 0
A0 = 1, A1 = 1
A0 = 0, A1 = 1
A0 = 1, A1 = 0
A0 = 0, A1 = 0
G = +4, f = 100kHz
1.8
2.3
50
13.5
11
2
0.8
0.1
100 || 4
200
±
20
85
1.0
2.6
100
V
V
μ
A
mA
mA
mA
mA
max
min
max
typ
typ
typ
typ
typ
typ
typ
typ
typ
A
A
A
C
C
C
C
C
C
C
C
C
k
|| pF
ns
mV
dB
10% to 90% Change
Inputs at GND
G = +4, 1MHz, A0 = 0, A1 = 0
POWER SUPPLY
Specified Operating Voltage
Maximum Operating Voltage
Maximum Quiescent Current
Minimum Quiescent Current
Power Supply Rejection Ratio (PSRR)
+5
V
V
typ
max
max
min
typ
C
A
A
A
C
+12.6
14.5
12.5
+12.6
15
12
+12.6
15.5
11.5
V
S
= +5V, Full Power
V
= +5V, Full Power
f = 100kHz, Input Referred
13.5
13.5
52
mA
mA
dB
TEMPERATURE RANGE
Specification: U, N
Thermal Resistance,
θ
JA
U
SO-8
H
PSO-8
N
SO-14
–40 to +85
°
C
Junction-to-Ambient
125
55
100
°
C/W
°
C/W
°
C/W
NOTES: (1) 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. (2) Junction temperature = ambient for 25
°
C guaranteed specifications. (3) Junction temperature = ambient at low temperature
limit: junction temperature = ambient +23
°
C at high temperature limit for over temperature guaranteed specifications. (4) Current is considered positive-out-of node.
V
CM
is the input common-mode voltage. (5) Tested < 3dB below minimum specified CMRR at
±
CMIR limits.
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