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LM368-10 데이터시트(PDF) 3 Page - Texas Instruments

부품명 LM368-10
상세설명  Precision Voltage References
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Absolute Maximum Ratings (Note 8)
Input Voltage (Series Mode)
35V
Reverse Current (Shunt Mode)
50 mA
Power Dissipation
600 mW
Storage Temperature Range
b
60 Cto a150 C
Operating Temperature Range
LM368
0 Cto a70 C
Soldering Information
TO-5 (H) Package 10 sec
a
300 C
See AN-450 ‘‘Surface Mounting Methods and Their Effect
on Product Reliability’’ (Appendix D) for other methods of
soldering surface mount devices
Electrical Characteristics (Note 1)
LM368
Tested
Design
Units
Parameter
Conditions
Typical
Limit
Limit
(Max unless
(Note 2)
(Note 3)
noted)
VOUT Error
g
002
g
01
%
Line Regulation
(VOUT a3V) s VIN s 30V
g
00001
g
00005
%V
Load Regulation
0 mA s ISOURCE s 10 mA
g
00003
g
0001
%mA
(Note 4)
b
10 mA s ISINK s 0mA
g
0003
g
0008
%mA
Thermal Regulation
Te20 mS (Note 5)
g
0005
g
001
%100 mW
Quiescent Current
250
350
m
A
Change of Quiescent Current vs VIN
(VOUT a3V) s VIN s 30V
3
5
m
AV
Temperature Coefficient
of VOUT (see graph) LM368Y
0 C s TA s 70 C
g
11
g
20
ppm C
(Note 6)
LM368
0 C s TA s 70 C
g
15
g
30
ppm C
Short Circuit Current
VOUT e 0
30
70
100
mA
Noise
100V 01 - 10Hz
30
uVp-p
100Hz - 10 kHz
1100
nV
0Hz
62V 01 - 10Hz
20
uVp-p
100Hz - 10 kHz
700
nV
0Hz
50V 01 - 10Hz
16
uVp-p
100Hz - 10 kHz
575
nV
0Hz
VOUT Adjust Range 10000V
0V s VPIN5 s VOUT
45-170
60-155
V min
5000V
44-70
45-60
V min
Note 1
Unless otherwise noted these specifications apply TA e 25 C VIN e 15V ILOAD e 0 0 s CL s 200 pF Circuit is operating in Series Mode Or circuit is
operating in Shunt Mode VIN ea15V or VIN e VOUT TA ea25 C ILOAD eb10 mA 0 s CL s 200 pF
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 used to
calculate outgoing quality levels
Note 4
The LM368 has a Class B output and will exhibit transients at the crossover point This point occurs when the device is asked to sink approximately
120 mA In some applications it may be advantageous to preload the output to either VIN or 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 in power dissipation of 100 mW
Note 6
Temperature Coefficient of VOUT is defined as the worst case delta-VOUT 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
Note 8
Absolute Maximum Ratings indicate limits beyond which damage to the device may occur DC and AC electrical specifications do not apply when operating
the device beyond its Rated Operating Conditions (see Note 1 and Conditions)
2


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