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LT1021DCS8-5

Part # LT1021DCS8-5
Description IC VREF SERIES 5V 8SOIC
Category IC
Availability Out of Stock
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Qty Price
1 + $1.29384



Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

4
LT1021
E
LECTR
IC
AL C CHARA TERIST
ICS
LT1021-10
PARAMETER CONDITIONS MIN TYP MAX UNITS
Output Voltage (Note 2) LT1021C-10 9.995 10.00 10.005 V
LT1021B-10/LT1021D-10 9.950 10.00 10.050 V
Output Voltage Temperature Coefficient (Note 3) T
MIN
T
J
T
MAX
LT1021B-10 2 5 ppm/°C
LT1021C-10/LT1021D-10 5 20 ppm/°C
Line Regulation (Note 4) 11.5V V
IN
14.5V 1.0 4 ppm/V
6 ppm/V
14.5V V
IN
40V 0.5 2 ppm/V
4 ppm/V
Load Regulation (Sourcing Current) 0 I
OUT
10mA 12 25 ppm/mA
(Note 4)
40 ppm/mA
Load Regulation (Shunt Mode) 1.7mA I
SHUNT
10mA 50 100 ppm/mA
(Notes 4, 5)
150 ppm/mA
Supply Current (Series Mode) 1.2 1.7 mA
2.0 mA
Minimum Current (Shunt Mode) V
IN
is Open 1.1 1.5 mA
1.7 mA
Output Voltage Noise (Note 6) 0.1Hz f 10Hz 6.0 µV
P-P
10Hz f 1kHz 3.5 6 µV
RMS
Long Term Stability of Output Voltage (Note 7) t = 1000Hrs Noncumulative 15 ppm
Temperature Hysteresis of Output T = ±25°C 5 ppm
Note 1: Absolute Maximum Ratings are those values beyond which the life
of a device may be impaired.
Note 2: Output voltage is measured immediately after turn-on. Changes
due to chip warm-up are typically less than 0.005%.
Note 3: Temperature coefficient is measured by dividing the change in
output voltage over the temperature range by the change in temperature.
Separate tests are done for hot and cold; T
MIN
to 25°C and 25°C to T
MAX
.
Incremental slope is also measured at 25°C.
Note 4: Line and load regulation are measured on a pulse basis. Output
changes due to die temperature change must be taken into account
separately. Package thermal resistance is 150°C/W for TO-5 (H), 130°C/W
for N and 150°C/W for the SO-8.
Note 5: Shunt mode regulation is measured with the input open. With the
input connected, shunt mode current can be reduced to 0mA. Load
regulation will remain the same.
Note 6: RMS noise is measured with a 2-pole highpass filter at 10Hz and a
2-pole lowpass filter at 1kHz. The resulting output is full-wave rectified and
then integrated for a fixed period, making the final reading an average as
opposed to RMS. Correction factors are used to convert from average to
RMS and correct for the non-ideal bandpass of the filters.
Peak-to-peak noise is measured with a single highpass filter at 0.1Hz and a
2-pole lowpass filter at 10Hz. The unit is enclosed in a still-air environment
to eliminate thermocouple effects on the leads. Test time is 10 seconds.
Note 7: Consult factory for units with long term stability data.
The denotes specifications that apply over the full operating temperature
range, otherwise specifications are T
A
= 25°C. V
IN
= 15V, I
OUT
= 0, unless otherwise noted.
5
LT1021
CCHARA TERIST
ICS
UW
AT
Y
P
I
CA
LPER
F
O
R
C
E
Start-Up (Series Mode)
Ripple Rejection
INPUT VOLTAGE (V)
0
85
REJECTION (dB)
90
95
100
105
10 20
30
40
LT1021 G01
110
115
515
25
35
f = 150Hz
LT1021-5
LT1021-10
LT1021-7
TIME (µs)
3
OUTPUT VOLTAGE (V)
4
6
7
8
13
10
2
6
8
LT1021 G04
5
11
12
9
04
10
12
14
LT1021-10
LT1021-5
LT1021-7
V
IN
= 0V TO 12V
Output Voltage Noise Spectrum
OUTPUT CURRENT (mA)
0
INPUT/OUTPUT VOLTAGE (V)
1.2
1.6
16
1021 G03
0.8
0.4
0
4
8
12
20
1.0
1.4
0.6
0.2
14
2
6
10
18
T
J
= 125 °C
T
J
= –55 °C
T
J
= 25 °C
FREQUENCY (Hz)
100
NOISE VOLTAGE (nV/Hz)
200
250
350
400
10 1k 10k
LT1021 G06
0
100
300
150
50
LT1021-10
LT1021-5
LT1021-7
Ripple Rejection
FREQUENCY (Hz)
10
90
REJECTION (dB)
110
130
120
100
80
60
100 1k 10k
LT1021 G02
70
50
V
IN
= 15V
C
OUT
= 0
LT1021-5
LT1021-10
LT1021-7
Start-Up (Shunt Mode)
LT1021-7, LT1021-10
TIME (µs)
OUTPUT VOLTAGE (V)
9
10
11
48
LT1021 G05
8
7
02
61012
6
5
LT1021-10
LT1021-7
IN
GND
OUT
NC
1k
V
OUT
0V
V
OUT
+ 2V
BANDWIDTH (Hz)
10
8
RMS NOISE (µV)
12
16
14
10
6
2
100 1k 10k
LT1021 G07
4
0
C
OUT
= 0
FILTER = 1 POLE
f
LOW
= 0.1Hz
LT1021-10
LT1021-5
LT1021-7
Output Voltage Temperature Drift
LT1021-5
Output Voltage Noise
TEMPERATURE (°C)
–50
4.994
4.996
OUTPUT VOLTAGE (V)
5.000
5.006
0
50
75
LT1021 G08
4.998
5.004
5.002
–25
25
100
125
Load Regulation LT1021-5
OUTPUT CURRENT (mA)
–10
OUTPUT CHANGE (mV)
1
3
5
4
2
0
–2
–4
6
LT1021 G09
–1
–3
–5
–6–8 –4 0 4 8
–2
2
10
V
IN
= 8V
SOURCING SINKING
Minimum Input/Output Differential
LT1021-7, LT1021-10
6
LT1021
CCHARA TERIST
ICS
UW
AT
Y
P
I
CA
LPER
F
O
R
C
E
Quiescent Current LT1021-5
INPUT VOLTAGE (V)
0
0
INPUT CURRENT (mA)
0.2
0.6
0.8
1.0
3530
1.8
LT1021 G10
0.4
5 10152025 40
1.2
1.4
1.6
T
J
= –55°C
T
J
= 25°C
T
J
= 125°C
I
OUT
= 0
Sink Mode* Current Limit
LT1021-5
OUTPUT VOLTAGE (V)
0
0
CURRENT INTO OUTPUT (mA)
10
30
40
50
4
8
10 18
LT1021 G11
20
26
12
14
16
60
V
IN
= 8V
*NOTE THAT AN INPUT VOLTAGE IS REQUIRED
FOR 5V UNITS.
Thermal Regulation LT1021-5
TIME (ms)
OUTPUT CHANGE (mV)
1.0
0.5
140
LT1021 G12
20
60
100
0
0
40
80
120
LOAD
REGULATION
THERMAL
REGULATION
I
LOAD
= 10mA
V
IN
= 25V
POWER = 200mW
Load Transient Response
LT1021-5, C
LOAD
= 1000pF
Load Transient Response
LT1021-5, C
LOAD
= 0
TIME (µs)
OUTPUT CHANGE (50mV/DIV)
2
LT1021 G13
102413
3
0
4
I
SOURCE
= 2-10mA
I
SOURCE
= 0.5mA
I
SINK
= 0
I
SINK
= 0.2mA
I
SINK
= 2-10mA
50mV 50mV
I
SINK
= 100µA
P-P
I
SOURCE
= 100µA
P-P
I
SOURCE
= 0
Output Noise 0.1Hz to 10Hz
LT1021-5
TIME (µs)
OUTPUT CHANGE (20mV/DIV)
10
LT1021 G14
501020515
15
0
20
I
SOURCE
= 2-10mA
I
SOURCE
= 0.2mA
I
SINK
= 0
I
SINK
= 0.2mA
I
SINK
= 2-10mA
20mV 20mV
I
SINK
= 100µA
P-P
I
SOURCE
= 100µA
P-P
I
SOURCE
= 0
TIME (MINUTES)
035
LT1021 G15
12
46
OUTPUT VOLTAGE NOISE (5µV/DIV)
5µV (1ppm)
FILTERING = 1 ZERO AT 0.1Hz
2 POLES AT 10Hz
Load Regulation
LT1021-7, LT1021-10
Output Voltage Temperature
Drift LT1021-7
TEMPERATURE (°C)
–50
6.997
6.998
OUTPUT VOLTAGE (V)
7.000
7.003
0
50
75
LT1021 G16
6.999
7.002
7.001
–25
25
100
125
OUTPUT CURRENT (mA)
–10
OUTPUT CHANGE (mV)
1
3
5
4
2
0
–2
–4
6
LT1021 G17
–1
–3
–5
–6–8 –4 0 4 8
–2
2
10
V
IN
= 12V
SOURCING SINKING
Quiescent Current LT1021-7
INPUT VOLTAGE (V)
0
0
INPUT CURRENT (mA)
0.2
0.6
0.8
1.0
3530
1.8
LT1021 G18
0.4
5 10152025 40
1.2
1.4
1.6
T
J
= –55°C
T
J
= 25°C
T
J
= 125°C
I
OUT
= 0
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