LT1970A
4
1970afc
For more information www.linear.com/LT1970A
elecTrical characTerisTics
The l denotes the specifications which apply over the full operating
temperature range, otherwise specifications are at T
A
= 25°C. See Test Circuit for standard test conditions.
SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS
Current Sense Bandwidth 2 MHz
R
CSF
Resistance FILTER to SENSE
l
750 1000 1250
Logic I/O Characteristics
Logic Output Leakage ISRC, ISNK, TSD V = 15V
l
1 µA
Logic Low Output Level I = 5mA (Note 6)
l
0.2 0.4 V
Logic Output Current Limit 25 mA
V
ENABLE
Enable Logic Threshold
l
0.8 1.9 2.5 V
I
ENABLE
Enable Pin Bias Current
l
–1 1 µA
I
SUPPLY
Total Supply Current V
CC
, V
+
and V
, V
EE
Connected
l
7 13 mA
I
CC
V
CC
Supply Current V
CC
, V
+
and V
, V
EE
Separate
l
3 7 mA
I
CC(STBY)
Supply Current Disabled V
CC
, V
+
and V
, V
EE
Connected, V
ENABLE
≤ 0.8V
l
0.6 1.5 mA
t
ON
Turn-On Delay (Note 7) 10 µs
t
OFF
Turn-Off Delay (Note 7) 10 µs
Note 1: Stresses beyond those listed under Absolute Maximum Ratings
may cause permanent damage to the device. Exposure to any Absolute
Maximum Rating condition for extended periods may affect device reli
-
ability and lifetime.
Note 2:
The L
T1970AC is guaranteed functional over the operating tem-
perature range of –40°C and 85°C.
Note 3:
The L
T1970AC is guaranteed to meet specified performance from
0°C to 70°C. The LT1970AC is designed, characterized and expected to
meet specified performance from –40°C to 85°C but is not tested or QA
sampled at these temperatures. The LT1970AI is guaranteed to meet speci
-
fied performance from –40°C to 85°C.
Note 4: This parameter is not 100% tested.
Note 5:
Full power bandwidth is calculated from slew rate measurements:
FPBW = SR/(2 • π • V
P
)
Note 6: The logic low output level of pin TSD is guaranteed by correlating
the output level of pin ISRC and pin ISNK over temperature.
Note 7: Turn-on and turn-off delay are measured from V
ENABLE
crossing
1.6V to the OUT pin at 90% of normal output voltage.
Note 8: Thermal resistance varies depending upon the amount of PC board
metal attached to the device. If the maximum dissipation of the package is
exceeded, the device will go into thermal shutdown and be protected.
Warm-Up Drift V
IO
vs Time
Input Bias Current vs V
CM
Total Supply Current
vs Supply Voltage
Typical perForMance characTerisTics
TIME (100ms/DIV)
1970A G01
0V
V
OS
• 1000 (50mV/DIV)
COMMON MODE INPUT VOLTAGE (V)
–15 –12 –9 –6 –3 0 3 6 9 12 15
INPUT BIAS CURRENT (nA)
–100
–120
–140
–160
–180
–200
–220
–240
–260
1970A G02
V
S
= ±15V
–I
BIAS
+I
BIAS
SUPPLY VOLTAGE (±V)
0
–14
TOTAL SUPPLY CURRENT (mA)
–10
–6
–2
14
6
4
8
10
18
1970A G03
10
2
–12
–8
–4
12
4
8
0
2 6
12
14
16
I
CC
+ I
V
+
I
EE
+ I
V
25°C
25°C
–55°C
–55°C
125°C
125°C
LT1970A
5
1970afc
For more information www.linear.com/LT1970A
Typical perForMance characTerisTics
Gain Bandwidth vs Supply Voltage
Gain vs Frequency
Gain vs Frequency with C
LOAD
Output Impedance
Disabled Output Impedance
Slew Rate vs Supply Voltage
Supply Current vs Supply Voltage
Open-Loop Gain and Phase
vs Frequency
Phase Margin vs Supply Voltage
SUPPLY VOLTAGE (±V)
2 4 6
0
SUPPLY CURRENT (mA)
0.5
1.5
2.0
2.5
14 16 18
4.5
I
V
+
I
V
1870A G04
1.0
8 10 12 20
3.0
3.5
4.0
T
A
= 25°C
V
CC
= V
+
= –V
EE
= –V
I
VCC
I
VEE
FREQUENCY (Hz)
100 1k
10
OPEN-LOOP GAIN (dB)
PHASE MARGIN (DEG)
20
30
40
50
10k 100k 1M 10M 100M
1970A G05
0
–10
–20
–30
60
70
40
50
60
70
80
30
20
10
0
90
100
PHASEGAIN
TOTAL SUPPLY VOLTAGE (V)
0
40
PHASE MARGIN (DEG)
42
46
48
50
60
54
8
16
20 36
1970A G06
44
56
58
52
4 12
24
28
32
A
V
= –1
R
F
= R
G
= 1k
T
A
= 25°C
V
OUT
= V
S
/2
TOTAL SUPPLY VOLTAGE (V)
0
0
GAIN BANDWIDTH (MHz)
1
3
4
5
8
16
20 36
1970A G07
2
4 12
24
28
32
A
V
= 100
FREQUENCY (Hz)
VOLTAGE GAIN (dB)
10
–30
0
–10
–20
10k 1M 10M
1970A G08
–40
100k
V
S
= ±5V
A
V
= 1
V
S
= ±15V
FREQUENCY (Hz)
VOLTAGE GAIN (dB)
10
–30
0
–10
–20
10k 1M 10M
1970A G09
–40
100k
30nF
10nF
1nF
0nF
V
S
= ±15V
A
V
= 1
FREQUENCY (Hz)
1k 10k
0.001
OUTPUT IMPEDANCE (Ω)
0.1
100
100k 1M 10M
100M
1970A G10
0.01
1
10
V
S
= ±15V
A
V
= 100
A
V
= 1
A
V
= 10
FREQUENCY (Hz)
1k
1
OUTPUT IMPEDANCE (Ω)
100
100k
600k
10k 100k 1M 10M
100M
1970A G11
10
1k
10k
V
S
= ±15V
V
ENABLE
= 0.8V
SUPPLY VOLTAGE (±V)
4
SLEW RATE (V/µs)
1.7
10
1970A G12
1.4
1.2
6 8 12
1.1
1.0
1.8
1.6
1.5
1.3
14 16 18
FALLING
RISING
A
V
= –1
R
F
= R
G
= 1k
T
A
= 25°C
LT1970A
6
1970afc
For more information www.linear.com/LT1970A
Typical perForMance characTerisTics
Small-Signal Response, A
V
= 1
Small-Signal Response, A
V
= –1
Output Overdriven
% Overshoot vs C
LOAD
Undistorted Output Swing
vs Frequency
Full Range Current Sense
Transfer Curve
Slew Rate vs Temperature
Large-Signal Response, A
V
= 1
Large-Signal Response, A
V
= –1
TEMPERATURE (°C)
–50 –25
0
SLEW RATE (V/µs)
1.0
2.5
0
50
75
1970A G13
0.5
2.0
1.5
25
100
125
V
S
= ±15V
FALLING
RISING
20µs/DIV
1970A G14
0V
10V
–10V
5V/DIV
R
L
= 1k
20µs/DIVR
L
= 1k
C
L
= 1000pF
1970A G15
0V
10V
–10V
5V/DIV
500ns/DIV
1970A G16
20mV/DIV
R
L
= 1k
2µs/DIV
1970A G17
20mV/DIV
R
L
= 1k
C
L
= 1000pF
200µs/DIV
1970A G18
V
OUT
5V/DIV
0V
0V
V
IN
5V/DIV
V
S
= ±5V
A
V
= 1
C
LOAD
(pF)
10
0
OVERSHOOT (%)
40
50
60
100 1k
10k
1970A G19
30
20
10
V
S
= ±15V
A
V
= 1
A
V
= –1
FREQUENCY (Hz)
100
0
OUTPUT SWING (V
P-P
)
20
25
30
1k 10k
100k
1970A G20
15
10
5
V
S
= ±15V
A
V
= –5
1% THD
V
CSNK
= V
CSRC
(V)
0
V
SENSE
(mV)
100
300
500
4
1970A G21
–100
–300
0
200
400
–200
–400
–500
1
2
3
5
SOURCING
CURRENT
SINKING
CURRENT

LT1970ACFE#TRPBF

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Operational Amplifiers - Op Amps 500mA Power OA with Adj. Current Limit
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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