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LM369 Scheda tecnica(PDF) 3 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
Il numero della parte LM369
Spiegazioni elettronici  Precision Voltage Reference
Download  14 Pages
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Produttore elettronici  NSC [National Semiconductor (TI)]
Homepage  http://www.national.com
Logo NSC - National Semiconductor (TI)

LM369 Scheda tecnica(HTML) 3 Page - National Semiconductor (TI)

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Electrical Characteristics LM369D (Note 1)
Tested
Design
Units
Parameter
Conditions
Typical
Limits
Limit
(Max
(Notes 2 13)
(Note 3)
Unless
Noted)
Vout Nominal
a
10000
V
Vout Error
70
g
1000
ppm
LM369D
07
g
100
mV
Vout Tempco
Tmin s Tj s Tmax
5
30
ppm C
(Note 6)
Line Regulation
13V s VIN s 30V
24
g
60
12
ppmV
Load Regulation
Sourcing
0 to 10 mA
a
3
g
12
g
25
ppmmA
Sinking (Note 12)
0 to b10 mA
a
80
a
160
ppmmA
(Note 4 Note 9)
Thermal Regulation
(t e 10 msec
Sourcing
After Load
40
g
25
ppm100 mW
Sinking (Note 12)
is Applied)
40
ppm100 mW
(Note 5)
Supply Current
15
20
24
mA
D
Supply Current
13V s VIN s 30V
006
016
03
mA
Short Circuit
27
14
10
mA min
Current
50
65
mA max
Noise Voltage
10 Hz to 1 kHz
10
30
m
V rms
01 Hz to 10 Hz
4
m
V p-p
(10 Hz to 10 kHz
4
m
V rms
Cfilter e 01 mF)
Long-Term
1000 Hours
8
ppm
Stability
Tj k Tmax
(Non-Cumulative)
(Measured at
a
25 C)
Temperature
D
T e 25 C
5
ppm
Hysteresis of Vout
Output Shift
1500
2800
ppm
Per 1 mA at Pin 5
Note 1
Unless otherwise noted these conditions apply Tj ea25 C 13V s Vin s 17V 0 s Iload s 10 mA CL e s 200 pF Specifications in BOLDFACED
TYPE apply over the rated operating temperature range
Note 2
Tested limits are guaranteed and 100% tested in production
Note 3
Design Limits are guaranteed (but not 100% production tested) over the indicated temperature and supply voltage ranges These limits are not to be used
to calculate outgoing quality levels
Note 4
The LM169 has a Class B output and will exhibit transients at the crossover point This point occurs when the device is required to sink approximately 10
mA In some applications it may be advantageous to pre-load the output to either Vin or to ground to avoid this crossover point
Note 5
Thermal regulation is defined as the change in the output voltage at a time T after a step change of power dissipation of 100 mW
Note 6
Temperature Coefficient of VOUT is defined as the worst-case DVout measured at Specified Temperatures divided by the total span of the Specified
Temperature Range (see graphs) There is no guarantee that the Specified Temperatures are exactly at the minimum or maximum deviation
Note 7
In metal can (H) iJ-C is 75 CW and iJ-A is 150 CW In plastic DIP iJ-A is 160 CW In S0-8 iJ-A is 180 CW in TO-226 iJ-A is 160 CW
Note 8
Absolute Maximum Ratings indicate limits beyond which damage to the device may occur DC and AC electrical specifications are not guaranteed beyond
the Rated Operating Conditions
Note 9
Regulation is measured at constant temperature using pulse testing with a low duty cycle Changes in output voltage due to heating effects are covered
under the specifications for Thermal Regulation and Tempco Load Regulation is measured at a point on the output pin 18
below the bottom of the package
Note 10
Consult factory for availability of devices with Guaranteed Long-term Stability
Note 11
Consult factory for availability of devices with tighter Accuracy and Tempco Specifications
Note 12
In Sinking mode connect 01 mF tantalum capacitor from output to ground
Note 13
A military RETS electrical test specification is available on request
3


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