JL140H-5SXA [TI]

IC VREG 5 V FIXED POSITIVE REGULATOR, BCY3, Fixed Positive Single Output Standard Regulator;
JL140H-5SXA
型号: JL140H-5SXA
厂家: TEXAS INSTRUMENTS    TEXAS INSTRUMENTS
描述:

IC VREG 5 V FIXED POSITIVE REGULATOR, BCY3, Fixed Positive Single Output Standard Regulator

输出元件 调节器
文件: 总6页 (文件大小:18K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
MICROCIRCUIT DATA SHEET  
Original Creation Date: 05/09/95  
Last Update Date: 02/17/97  
MJLM140-05-H REV 0B0  
Last Major Revision Date: 05/09/95  
VOLTAGE REGULATOR, +5 VOLTS AT 0.5A  
General Description  
The LM140 monolithic 3-terminal positive voltage regulators employ internal current  
limiting, thermal shutdown and safe-area compensation, making them essentially  
indestructible. If adequate heat sinking is provided, they can deliver over 0.5A output  
current. They are intended as fixed voltage regulators in a wide range of applications  
including local (on-card) regulation for elimination of noise and distribution problems  
associated with single-point regulation. In addition to use as fixed voltage regulators,  
these devices can be used with external components to obtain adjustable output voltages  
and currents.  
Considerable effort was expended to make the entire series of regulators easy to use and  
minimize the number of external components. It is not necessary to bypass the output,  
although this does improve transient response. Input bypassing is needed only if the  
regulator is located far from the filter capacitor of the power supply.  
Industry Part Number  
NS Part Numbers  
LM140  
JL140H-5BXA  
JL140H-5SXA  
Prime Die  
LM141  
Controlling Document  
38510/10702 REV C  
Processing  
Subgrp Description  
Temp (oC)  
MIL-STD-883, Method 5004  
1
Static tests at  
+25  
2
Static tests at  
+125  
-55  
3
Static tests at  
4
Dynamic tests at  
Dynamic tests at  
Dynamic tests at  
Functional tests at  
Functional tests at  
Functional tests at  
Switching tests at  
Switching tests at  
Switching tests at  
+25  
Quality Conformance Inspection  
5
+125  
-55  
6
MIL-STD-883, Method 5005  
7
+25  
8A  
8B  
9
+125  
-55  
+25  
10  
11  
+125  
-55  
1
MICROCIRCUIT DATA SHEET  
MJLM140-05-H REV 0B0  
Features  
- Output current in excess of 0.5A  
- No external components  
- Internal thermal overload protection  
- Internal short circuit current-limiting  
- Output transistor safe-area compensation  
2
MICROCIRCUIT DATA SHEET  
MJLM140-05-H REV 0B0  
(Absolute Maximum Ratings)  
(Note 1)  
DC Input Voltage  
35V  
Internal Power Dissipation  
(Note 2)  
Internally Limited  
150 C  
Maximum Junction Temperature  
Storage Temperature Range  
-65 C to +150 C  
300 C  
Lead Temperature  
Soldering, (10 seconds)  
Thermal Resistance  
ThetaJA  
(Still Air)  
232 C/W  
77 C/W  
(500 LF/Min Air Flow)  
ThetaJC  
15 C/W  
ESD Susceptibility  
(Note 3)  
2KV  
Note 1: Absolute Maximum Ratings are limits beyond which damage to the device may occur.  
Operating Conditions are conditions under which the device functions but the  
specification might not be guaranteed. For guaranteed specifications and test  
conditions see the Electrical Characteristics.  
Note 2: The Maximum allowable power dissipation at any ambient temperature is a function of  
the maximum junction temperature for operation (TjMAX = 150 C), the  
junction-to-ambient thermal resistance (ThetaJA), and the ambient temperature (TA).  
PDMAX = (TjMAX - TA)/ThetaJA. If this dissipation is exceeded, the die temperature  
will rise above TjMAX and the electrical specifications do not apply. If the die  
temperature rises above 150 C, the device will go into the thermal shutdown.  
Note 3: Human body model, 100pF discharged through 1.5K Ohms  
Recommended Operating Conditions  
(Note 1)  
Temperature Range (TA)  
(Note 2)  
-55 C to +125 C  
Note 1: Absolute Maximum Ratings are limits beyond which damage to the device may occur.  
Operating Conditions are conditions under which the device functions but the  
specification might not be guaranteed. For guaranteed specifications and test  
conditions see the Electrical Characteristics.  
Note 2: The Maximum allowable power dissipation at any ambient temperature is a function of  
the maximum junction temperature for operation (TjMAX = 150 C), the  
junction-to-ambient thermal resistance (ThetaJA), and the ambient temperature (TA).  
PDMAX = (TjMAX - TA)/ThetaJA. If this dissipation is exceeded, the die temperature  
will rise above TjMAX and the electrical specifications do not apply. If the die  
temperature rises above 150 C, the device will go into thermal shutdown.  
3
MICROCIRCUIT DATA SHEET  
MJLM140-05-H REV 0B0  
Electrical Characteristics  
DC PARAMETERS  
PIN-  
NAME  
SUB-  
SYMBOL  
PARAMETER  
CONDITIONS  
Vin = 8V, Il = -5mA  
NOTES  
MIN  
MAX UNIT  
GROUPS  
Vout (1)  
Output Voltage  
4.75  
5.25  
V
1, 2,  
3
Vin = 8V, Il = -500mA  
4.75  
4.75  
4.75  
4.75  
4.75  
-150  
-50  
5.25  
5.25  
5.25  
5.25  
5.25  
150  
V
1, 2,  
3
Vin = 20V, Il = -5mA  
V
1, 2,  
3
Vin = 20V, Il = -500mA  
Vin = 35V, Il = -5mA  
V
1, 2,  
3
V
1, 2,  
3
Vin = 35V, Il = -50mA  
V
1, 2,  
3
VRLINE  
VRLOAD  
ISCD  
Line Regulation  
Load Regulation  
8V < Vin < 35V, Il = -50mA  
8V < Vin < 25V, Il = -350mA  
Vin = 10V, -500mA < Il < -5mA  
Vin = 35V, -50mA < Il < -5mA  
mV  
mV  
mV  
mV  
mA  
mA  
mA  
1, 2,  
3
50  
1, 2,  
3
-100  
-150  
-7  
100  
1, 2,  
3
150  
1, 2,  
3
Stand by Current Vin = 10V, Il = -5mA  
Drain  
-0.5  
-0.5  
1
1, 2,  
3
Vin = 35V, Il = -5mA  
-8  
1, 2,  
3
Delta ISCD Stand by Current 8V < Vin < 35V, Il = -5mA  
-1  
1, 2,  
3
(LINE)  
Drain vs. Line  
Voltage  
Delta ISCD Stand by Current Vin = 10V, -500mA < Il < -5mA  
-0.5  
0.5  
mA  
A
1, 2,  
3
(LOAD)  
Drain vs. Load  
Current  
Iol  
Overload Current Vin = 8V, FORCED Delta Vout = -0.48V  
-2  
-0.5  
1, 2,  
3
Ios  
Output Short  
Circuit Current  
Vin = 10V  
Vin = 25V  
Vin = 35V  
-2  
-0.01 A  
-0.01 A  
-0.01 A  
1, 2,  
3
-1.5  
-1  
1, 2,  
3
1, 2,  
3
Vout (2)  
Output Voltage  
Vin = 10V, Il = -5mA  
1
4
4
4.7  
-2  
5.3  
2
V
2
Delta  
Average  
Vin=10V, Il = -5mA, 25 C < TA < 125 C  
Vin=10V, Il = -5mA, -55 C < TA < 25 C  
mV/C 8A  
mV/C 8B  
Vout/  
Temperature  
Coefficient of  
Output Voltage  
Delta T  
-2  
2
4
MICROCIRCUIT DATA SHEET  
MJLM140-05-H REV 0B0  
Electrical Characteristics  
AC PARAMETERS  
PIN-  
NAME  
SUB-  
SYMBOL  
Vout  
PARAMETER  
CONDITIONS  
Vin = 10V, Il = -5mA  
NOTES  
MIN  
MAX UNIT  
5.25  
GROUPS  
Output Voltage  
2
4.75  
V
7, 8A,  
8B  
NO  
Output Noise  
Voltage  
Vin = 10V, Il = -50mA  
3
125  
30  
uVrms 7  
Delta  
Vout/Delta Response  
Vin  
Transient Line  
Vin = 10V, VPulse = 3V, Il = -5mA  
mV/V 7  
Delta  
Transient Load  
Response  
Vin = 10V, Delta Il = -200mA,  
Il = -50mA  
2.5  
mV/mA 7  
Vout/  
Delta Il  
Delta  
Vin/Delta  
Vout  
Ripple Rejection Vin = 10V, ei = 1Vrms at f = 2400Hz,  
Il = -125mA  
60  
dB  
4
DC PARAMETERS: DRIFT VALUES  
(The following conditions apply to all the following parameters, unless otherwise specified.)  
DC: "Delta calculations performed on JAN S and QMLV devices at group B, subgroup 5 only".  
Vout  
Output Voltage  
Vin = 8V, Il = -5mA  
Vin = 8V, Il = -500mA  
Vin = 20V, Il = -5mA  
Vin = 20V, Il = -500mA  
Vin = 35V, Il = -5mA  
Vin = 35V, Il = -50mA  
-0.025 0.025 V  
1
1
1
1
1
1
1
-0.025 0.025 V  
-0.025 0.025 V  
-0.025 0.025 V  
-0.025 0.025 V  
-0.025 0.025 V  
ISCD  
Stand by Current Vin = 10V, Il = -5mA  
Drain  
-20  
20  
%
Note 1: Tested at TA = +125 C, correlated to TA = +150 C.  
Note 2: Tested at extremes as a set up for Delta Vout/Delta T tests.  
Note 3: Bench tested.  
Note 4: Calculated parameter. For calculations use Vout at Vin = 10V, Il = -5mA. (NOTE 2)  
5
MICROCIRCUIT DATA SHEET  
MJLM140-05-H REV 0B0  
Graphics and Diagrams  
GRAPHICS#  
DESCRIPTION  
H03ARC  
(blank)  
See attached graphics following this page.  
6

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