OM1326N2M [ETC]

VOLT REGULATOR|ADJUSTABLE|+1.2 TO +57V|BIPOLAR|LLCC|20PIN|CERAMIC ; VOLT稳压器|可调| 1.2至+ 57V |双极| LLCC | 20PIN |陶瓷\n
OM1326N2M
型号: OM1326N2M
厂家: ETC    ETC
描述:

VOLT REGULATOR|ADJUSTABLE|+1.2 TO +57V|BIPOLAR|LLCC|20PIN|CERAMIC
VOLT稳压器|可调| 1.2至+ 57V |双极| LLCC | 20PIN |陶瓷\n

稳压器
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中文:  中文翻译
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OM1326SMM  
OM1326NKM  
OM1326NMM OM1326STM OM1326SRM  
OM1326N2M  
OM1326NTM  
1.5 AMP POSITIVE ADJUSTABLE VOLTAGE  
REGULATOR APPROVED TO DESC DRAWING 7703407  
Three Terminal, Precision Adjustable  
Positive Voltage Regulator In Hermetic  
Style Packages (LM117AHV)  
Please see mechanical  
outlines herein  
FEATURES  
• Similar To Industry Standard LM117AHV  
• Approved To DESC Standardized Military Drawing Number 7703407  
• Built In Thermal Overload Protection  
• Short Circuit Current Limiting  
• Available In Six Package Styles  
• Maximum Output Voltage Tolerance Is Guaranteed to + 1%  
DESCRIPTION  
These three terminal positive regulators are supplied in hermetically sealed  
packages. All protective features are designed into the circuit, including thermal  
shutdown, current-limiting, and safe-area control. With heat sinking, these devices  
can deliver up to 1.5 Amps of output current. The LCC-20 device is limited to 0.5  
Amps. The unit also features output voltages that can be fixed from 1.2 Volts to 57  
Volts using external resistors.  
ABSOLUTE MAXIMUM RATINGST @ 25°C  
c
Power Dissipation  
LCC-20 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1.1 W  
Case-All Others. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .20 W  
Input - Output Voltage Differential . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 60 V  
Operating Junction Temperature Range . . . . . . . . . . . . . . . . . . . . . - 55°C to + 150°C  
Storage Temperature Range . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . - 65°C to + 150°C  
Lead Temperature (Soldering 10 seconds) . . . . . . . . . . . . . . . . . . . . . . . . . . . 300°C  
Thermal Resistance, Junction to Case:  
3.3  
LCC-20 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17°C/W  
TO-257 (Isol), SMD-3 and SMD 257. . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4.2°C/W  
TO-257 (Non-Isol) and SMD-1. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3.5°C/W  
TO-3 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3.0°C/W  
Maximum Output Current:  
LCC-20. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.5 A  
Case-All Others. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1.5A  
Recommended Operating Conditions:  
Output Voltage Range . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .1.2 to 57 VDC  
Ambient Operating Temperature Range (TA). . . . . . . . . . . . . . . . - 55°C to + 125°C  
Input Voltage Range . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4.25 to 61.25 VDC  
1 08 R3  
Supersedes 4 11 R2  
3.3 - 25  
OM1326NTM, OM1326STM, OM1326NKM, OM1326SMM, OM1326NMM, OM1326N2M, OM1326SRM  
ELECTRICAL CHARACTERISTICS -55°C TA 125°C, IL = 8mA (unless otherwise specified)  
OM1326NTM, OM1326STM, OM1326NKM, OM1326SMM, OM1326NMM, OM1326SRM  
Parameter  
Symbol  
Test Conditions  
VDIFF = 3.0V, TA = 25°C  
VDIFF = 3.3V  
Min.  
1.238  
1.225  
1.225  
1.225  
-4.5  
-9  
Max.  
1.262  
1.270  
1.270  
1.270  
4.5  
-9  
Unit  
Reference Voltage  
VREF  
V
VDIFF = 40V  
VDIFF = 60V  
Line Regulation  
(Note 1)  
RLINE  
3.0V VDIFF 40V, Vout = Vref, TA = 25°C  
3.3V VDIFF 40V, Vout = Vref  
mV  
mV  
40V VDIFF 60V, Vout = Vref, TA = 25°C  
40V VDIFF 60V, Vout = Vref  
-5  
5
-10  
10  
Load Regulation  
(Note 1)  
RLOAD  
VDIFF = 3.0V, 10mA IL 1.5A, TA = 25°C  
-15  
15  
V
DIFF = 3.3V, 10mA IL 1.5A  
-15  
15  
VDIFF = 40V, 10mA IL 300mA, TA = 25°C  
VDIFF = 40V, 10mA IL 195mA  
VDIFF = 60V, 10mA IL 30mA  
Vin = 14.6V, IL = 1.5A  
-15  
15  
-15  
15  
-15  
15  
Thermal Regulation  
VRTH  
-5  
5
mV  
dB  
Pd = 20 Watts, t = 20 ms, TA = 25°C  
f = 120 Hz, Vout = Vref  
Ripple Rejection  
(Note 2)  
RN  
66  
CAdj = 10 µF, Iout = 100 mA  
Adjustment Pin Current  
IAdj  
VDIFF = 3.0V, TA = 25°C  
100  
100  
100  
100  
5
VDIFF = 3.3V  
µA  
VDIFF = 40V  
VDIFF = 60V  
Adjustment Pin  
Current Change  
IAdj  
VDIFF = 3.0V, 10mA IL 1.5A, TA = 25°C  
VDIFF = 3.3V, 10mA IL 1.5A  
-5  
-5  
-5  
-5  
-5  
-5  
-5  
5
V
DIFF = 40V, 10mA IL 300mA, TA = 25°C  
VDIFF = 40V, 10mA IL 195mA  
3.0V VDIFF 40V, TA = 25°C  
3.3V VDIFF 40V  
5
5
µA  
5
5
3.3V VDIFF 60V  
5
Miminum Load Current  
ILmin  
VDIFF = 3.0V, Vout = 1.4V (forced)  
VDIFF = 3.3V, Vout = 1.4V (forced)  
VDIFF = 40V, Vout = 1.4V (forced)  
VDIFF = 60V, Vout = 1.4V (forced)  
VDIFF = 5V  
5.0  
5.0  
5.0  
7.0  
3.5  
1.5  
0.50  
mA  
Current Limit  
(Note 2)  
ICL  
1.5  
0.3  
VDIFF = 40V, TA = 25°C  
A
VDIFF = 60V, TA = 25°C  
0.05  
Notes:  
1. Load and Line Regulation are specified at a constant junction temperature. Pulse testing with low duty cycle is used.  
Changes in output voltage due to heating effects must be taken into account separately.  
2. If not tested, shall be guaranteed to the specified limits.  
3. The • denotes the specifications which apply over the full operating temperature range.  
3.3  
PART NUMBER DESIGNATOR  
Standard Military Drawing Number  
77034074  
Omnirel Part Number  
OM1326SRM  
OM1326SMM  
OM1326STM  
Omnirel Package Designation  
SMD257  
SMD-3  
TO-257 (Isolated)  
TO-257 (non-Isolated)  
TO-3  
7703407M  
7703407U  
7703407T  
7703407Y  
7703407N  
77034072  
OM1326NTM  
OM1326NKM  
OM1326NMM  
OM1326N2M  
SMD-1  
LCC-20  
Part Numbering System  
Voltage Regulators  
* Package Codes:  
K= TO-204AA (TO-3)  
T= TO-257AA  
2= LCC-20  
OM-1326-S-T-M  
Company  
Identification  
Screening  
M= MIL-M 38535  
(see Package codes*)  
M= SMD-1, 3  
Part  
Number  
R= D2Pac  
Package  
S= Isolated  
N= Non isolated  
3.3 - 26  
OM1326NTM, OM1326STM, OM1326NKM, OM1326SMM, OM1326NMM, OM1326N2M, OM1326SRM  
ELECTRICAL CHARACTERISTICS -55°C TA 125°C, IL = 8mA (unless otherwise specified)  
OM1326N2M  
Parameter  
Symbol  
Test Conditions  
VDIFF = 3.0V, TA = 25°C  
VDIFF = 3.3V  
Min.  
1.238  
1.225  
1.225  
1.225  
-4.5  
-9  
Max.  
1.262  
1.270  
1.270  
1.270  
4.5  
-9  
Unit  
Reference Voltage  
VREF  
V
VDIFF = 40V  
VDIFF = 60V  
Line Regulation  
(Note 1)  
RLINE  
3.0V VDIFF 40V, Vout = Vref, TA = 25°C  
3.3V VDIFF 40V, Vout = Vref  
mV  
mV  
40V VDIFF 60V, Vout = Vref, TA = 25°C  
40V VDIFF 60V, Vout = Vref  
-5  
5
-10  
10  
Load Regulation  
(Note 1)  
RLOAD VDIFF = 3.0V, 10mA IL 500 mA, TA = 25°C  
VDIFF = 3.3V, 10mA IL 500 mA  
-15  
15  
-15  
15  
VDIFF = 40V, 10mA IL 150 mA, TA = 25°C  
VDIFF = 40V, 10mA IL 100 mA  
-15  
15  
-15  
15  
VDIFF = 60V, 10mA IL 20 mA  
-15  
15  
Thermal Regulation  
VRTH  
Vin = 14.6V, IL = 300 mA  
Pd = 4.0 Watts, t = 20 ms, TA = 25°C  
f = 120 Hz, Vout = Vref  
-2  
2
mV  
dB  
Ripple Rejection  
(Note 2)  
RN  
66  
CAdj = 10 µF, Iout = 100 mA  
VDIFF = 3.0V, TA = 25°C  
VDIFF = 3.3V  
Adjustment Pin Current  
IAdj  
100  
100  
100  
100  
5
µA  
VDIFF = 40V  
VDIFF = 60V  
Adjustment Pin  
Current Change  
IAdj  
VDIFF = 3.0V, 10mA IL 500 mA, TA = 25°C  
-5  
-5  
-5  
-5  
-5  
-5  
-5  
VDIFF = 3.3V, 10mA IL 500 mA  
5
VDIFF = 40V, 10mA IL 150 mA, TA = 25°C  
VDIFF = 40V, 10mA IL 100 mA  
3.0V VDIFF 40V, TA = 25°C  
3.3V VDIFF 40V  
5
5
µA  
5
5
3.3V VDIFF 60V  
5
Miminum Load Current  
ILmin  
VDIFF = 3.0V, Vout = 1.4V (forced)  
VDIFF = 3.3V, Vout = 1.4V (forced)  
VDIFF = 40V, Vout = 1.4V (forced)  
VDIFF = 60V, Vout = 1.4V (forced)  
VDIFF = 5V  
5.0  
5.0  
5.0  
7.0  
1.65  
0.65  
0.28  
mA  
Current Limit  
(Note 2)  
ICL  
0.5  
VDIFF = 40V, TA = 25°C  
0.15  
0.02  
A
VDIFF = 60V, TA = 25°C  
Notes: Please see page 34.  
3.3  
STANDARD APPLICATION  
Vout  
Vin  
* Cin is required if regulator is located an  
appreciable distance from power supply filter.  
OM1326STM  
R1  
240  
** Co is not needed for stability, however it does  
improve transient response.  
IAdj  
Adjust  
R2  
Cin*  
0.1 µF  
Co**  
1.0 µF  
R2  
R1  
Vout = 1.25 V (1 +  
)+ IAd j R2  
Since IAdj is controlled to less than 100 µA,  
the error associated with this term is negligible  
in most applications.  
3.3 - 27  
OM1326NTM, OM1326STM, OM1326NKM, OM1326SMM, OM1326NMM, OM1326N2M, OM1326SRM  
MECHANICAL OUTLINE  
.425  
.140  
.140  
.140  
.015  
1
2
.075  
.157  
.075  
.030  
.100  
3
.425  
.200  
.035 WIDE  
FLAT 3 PLCS.  
2
1
MIN.  
.350 MIN.  
.020  
.115  
.415  
.062  
3
.160  
.375  
.020  
.080  
OM1326NMM
Pin 1 - Adjust  
Pin 2 - Input  
OM1326SMM  
Front View  
Pin 1 - Adjust  
Pin 2 - Input  
Pin 3 - Output  
Pin 3 - Output  
Case - Isolated  
.009 R.  
20 PLCS.  
.065  
1.197  
1.177  
.020 X45°  
.040  
4
.075 ( .010)  
TYP.  
1.53  
REF.  
REF.  
(
.003)  
.025  
TYP.  
.010  
9
3
0.675  
0.655  
0.875  
MAX.  
.160  
SQ. REF.  
0.440  
0.420  
1
0.188 R.  
MAX.  
.085  
0.135  
MAX.  
13  
19  
.025 SQ.  
TYP.  
0.450  
14  
.050  
TYP.  
18  
.003  
0.250  
.050 ( .005)  
TYP.  
.040 X45°  
0.312  
MIN.  
REF (3 PL)  
0.525 R.  
MAX.  
0.225  
0.205  
0.043  
0.038  
0.161  
0.151  
OM1326N2M  
SEATING  
PLANE  
2 PLCS.  
Pin 1 NC  
Pin 2 NC  
Pin 3 NC  
Pin 4 NC  
Pin 5 NC  
Pin 6 NC  
Pin 7 NC  
Pin 8 NC  
Pin 9 NC  
Pin 10 NC  
Pin 11 VIN  
Pin 12 VOUT  
Pin 13 VOUT  
Pin 14 VOUT(Sense)  
Pin 15 NC  
Pin 16 NC  
Pin 17 NC  
Pin 18 ADJUST  
Pin 19 NC  
Pin 20 VIN  
OM1326NKM  
Pin 1 - Adjust  
Pin 2 - Input  
Case - Output  
3.3  
For additional information please see the mechanical outline section.  

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