LT1809IS6#TRM Linear Technology, LT1809IS6#TRM Datasheet - Page 4

IC OPAMP R-R IN/OUT SNGL SOT23-6

LT1809IS6#TRM

Manufacturer Part Number
LT1809IS6#TRM
Description
IC OPAMP R-R IN/OUT SNGL SOT23-6
Manufacturer
Linear Technology
Datasheet

Specifications of LT1809IS6#TRM

Amplifier Type
General Purpose
Number Of Circuits
1
Output Type
Rail-to-Rail
Slew Rate
350 V/µs
Gain Bandwidth Product
180MHz
-3db Bandwidth
320MHz
Current - Input Bias
12.5µA
Voltage - Input Offset
800µV
Current - Supply
15mA
Current - Output / Channel
85mA
Voltage - Supply, Single/dual (±)
2.5 V ~ 12.6 V, ±1.25 V ~ 6.3 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
SOT-23-6
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
LT1809IS6#TRMTR

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LT1809/LT1810
ELECTRICAL CHARACTERISTICS
unless otherwise noted.
SYMBOL
t
GBW
SR
FPBW
THD
t
ΔG
Δθ
The
V
SYMBOL
V
V
ΔV
I
ΔI
I
ΔI
A
CMRR
PSRR
V
4
OFF
S
B
OS
VOL
OS
OS
OL
CM
B
OS
OS
TC
l
= V
denotes the specifi cations which apply over the 0°C ≤ T
OUT
PARAMETER
Input Offset Voltage
Input Offset Voltage Drift (Note 8)
Input Offset Voltage Shift
Input Offset Voltage Match (Channel-to-Channel)
(Note 10)
Input Bias Current
Input Bias Current Shift
Input Bias Current Match (Channel-to-Channel)
(Note 10)
Input Offset Current
Input Offset Current Shift
Large-Signal Voltage Gain
Common Mode Rejection Ratio
CMRR Match (Channel-to-Channel) (Note 10)
Input Common Mode Range
Power Supply Rejection Ratio
PSRR Match (Channel-to-Channel) (Note 10)
Minimum Supply Voltage (Note 6)
Output Voltage Swing LOW (Note 7)
PARAMETER
Turn-Off Time
Gain-Bandwidth Product
Slew Rate
Full Power Bandwidth
Total Harmonic Distortion
Settling Time
Differential Gain (NTSC)
Differential Phase (NTSC)
= half supply, unless otherwise noted.
CONDITIONS
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
No Load
I
I
SINK
SINK
CM
CM
CM
CM
CM
CM
CM
CM
CM
CM
CM
CM
CM
CM
CM
CM
CM
S
S
S
S
S
S
S
S
S
CONDITIONS
V
Frequency = 2MHz
V
V
V
0.1%, V
V
V
= 5V, V
= 5V, V
= 3V, V
= 5V, V
= 3V, V
= 5V, V
= 3V, V
= 2.5V to 10V, V
= 2.5V to 10V, V
SHDN
S
S
S
S
S
T
= V
= V
= V
= V
= V
= V
= V
= V
= V
= V
= V
= V
= V
= V
= V
= V
= V
= 5mA
= 25mA
A
= 5V, A
= 5V, V
= 5V, A
= 5V, A
= 5V, A
A
= 25°C. V
+
+
+
+
+
+
, V
to V
to V
+ 0.4V
+ 0.4V
+ 0.4V
+ 0.4V to V
≤ 70°C temperature range. V
– 0.2V
– 0.2V
= 4.5V to 0.3V, R
+ 0.4V to V
O
O
O
CM
CM
CM
CM
– 0.2V
S
CM
= 0.5V to 4.5V, R
= 1V to 4V, R
= 0.5V to 2.5V, R
= 5V, V
V
OUT
V
V
V
= V
= V
= V
= V
+
+
= 1, R
= –1, R
= 2, R
= 2, R
= V
= 4V
, V
, V
to V
to V
+
S
CM
CM
STEP
CM
CM
= 5V, 0V; V
L
L
L
+
+
LT1809 SO-8
LT1809 SO-8
LT1809 SO-8
P-P
L
= 1k, V
= 150Ω
= 150Ω
+
+
= 0V
= 0V
– 0.2V
– 0.2V
= 1k, V
= V
= V
= 2V, A
L
L
= 100Ω to V
+
+
= 100
L
L
O
= 1k to V
= 1k to V
O
= 2V
V
= 4V
S
= –1, R
= 3V, 0V; V
P-P
P-P
, f
S
S
S
/2
L
/2
/2
C
= 500Ω
= 5MHz
S
= 5V, 0V; V
SHDN
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
= open; V
MIN
MIN
–30
3.5
S
20
12
64
60
58
54
70
64
V
= 3V, 0V; V
CM
0.015
23.5
0.05
TYP
160
300
– 86
0.05
0.40
0.45
TYP
–14
200
50
27
0.5
0.5
1.2
0.1
0.5
8.5
2.3
16
75
40
80
75
80
75
83
83
12
55
1
1
1
1
9
9
2
= V
SHDN
OUT
MAX
MAX
140
400
= half supply,
3.0
3.0
3.5
3.5
2.5
3.0
6.5
1.5
4.5
2.5
25
25
10
40
10
V
60
5
6
= open;
+
180910fa
UNITS
UNITS
μV/°C
μV/°C
V/mV
V/mV
V/mV
MHz
V/μs
MHz
Deg
mV
mV
mV
mV
mV
mV
mV
mV
mV
mV
μA
μA
μA
μA
μA
μA
μA
μA
dB
dB
dB
dB
dB
dB
dB
ns
ns
%
V
V

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