MSK5909ERHG [MSK]

Fixed Mixed Standard Regulator, 2 Output, 10V1, -10V2, PDSO20, SOP-20;
MSK5909ERHG
型号: MSK5909ERHG
厂家: M.S. KENNEDY CORPORATION    M.S. KENNEDY CORPORATION
描述:

Fixed Mixed Standard Regulator, 2 Output, 10V1, -10V2, PDSO20, SOP-20

光电二极管 输出元件 调节器
文件: 总5页 (文件大小:315K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
MIL-PRF-38534 CERTIFIED  
DUAL RAD HARD  
+/-  
5901RH  
SERIES  
VOLTAGE REGULATOR  
M.S.KENNEDY CORP.  
4707 Dey Road Liverpool, N.Y. 13088  
(315) 701-6751  
FEATURES:  
Total Dose Tested to 50K RAD(Si) (Method 1019.7 Condition A)  
Internal Thermal Overload Protection  
Output Current to 1.5 Amps  
Output Voltage Internally Trimmed to ±1% Accuracy  
Lead Form Options: Straight and Gull Wing  
Alternate Voltage Combinations Available  
Contact MSK for MIL-PRF-38534 Qualification Status  
MSK590XRH  
MSK590XRHG  
DESCRIPTION:  
The MSK 5901RH series are dual Radiation Hardened +/- voltage regulators offering low dropout and output accuracy  
to ±1% maximum. Excellent line and load regulation characteristics ensure highly accurate performance. The MSK  
5901RH series regulators are equipped with internal thermal overload protection. The devices are packaged in a space  
efficient 20 pin flatpack with two lead form options, straight and gull wing.  
EQUIVALENT SCHEMATIC  
TYPICAL APPLICATIONS  
PIN-OUT INFORMATION  
-VRTN  
-VOUT  
-VOUT  
-VOUT  
1
2
3
20 -VIN  
19 -VIN  
18 -VIN  
17 -VIN  
Switching Power Supply Post Regulators  
Constant Voltage/Current Regulators  
High Efficiency Linear Regulators  
4
-VOUT  
5
6
7
8
9
10  
16 -Ccomp  
15 +Ccomp  
14 +VIN  
13 +VIN  
12 +VIN  
11 +VIN  
+VRTN  
+VOUT  
+VOUT  
+VOUT  
+VOUT  
1
Rev. E 10/07  
7
ABSOLUTE MAXIMUM RATINGS  
+VIN  
-VIN  
PD  
+IOUT  
-IOUT  
TJ  
+Input Voltage (VIN-VOUT)  
-Input Voltage (VIN-VOUT)  
Power Dissipation  
+Output Current  
-Output Current  
+40VDC  
-40VDC  
Internally Limited  
1.5A  
-65°C to +150°C  
300°C  
TST Storage Temperature Range  
TLD Lead Temperature Range  
(10 Seconds)  
TC Case Operating Temperature  
MSK 5901RH-5909RH  
1.5A  
+150°C  
-40°C to +85°C  
-55°C to +125°C  
Junction Temperature  
MSK 5901RH-5909RH(K/H/E)  
ELECTRICAL SPECIFICATIONS  
MSK 590XRH K/H/E  
MSK 590XRH  
Group A  
Subgroup  
4
3
2
Parameter  
Test Conditions  
8
Units  
Typ.  
Min.  
Max.  
Typ.  
Min.  
Max.  
POSITIVE OUTPUT REGULATORS:  
±0.2  
±0.8  
±1.0  
1.6  
-
-
-
-
-
-
-
-
-
-
-
±1.0  
±3.0  
±2.7  
3.0  
±0.2  
-
IOUT=10mA; VIN=VOUT+3V  
1
2,3  
1
-
-
-
-
-
-
-
-
-
-
-
Output Voltage Tolerance  
±1.5  
%
%
%
V
-
Post Radiation  
±1.0  
1.6  
-
±3.0  
3.5  
-
IOUT=0.5A; VOUT=1%  
1
Dropout Voltage  
Load Regulation  
1.9  
3.0  
2,3  
1
V
±0.2  
±0.4  
±1.0  
±0.6  
±1.0  
9.5  
±2.0  
±2.5  
±3.0  
±1.5  
±2.5  
10.5  
±0.2  
-
10mAIOUT0.5A  
VIN=VOUT+3V  
±2.5  
-
%
%
%
%
%
2,3  
1
±1.0  
±0.6  
-
Post Radiation  
±3.0  
±2.0  
-
IOUT=10mA  
1
Line Regulation  
VOUT+3VVIN35V  
2,3  
-
1
9.5  
JUNCTION TO CASE @ 125°C  
Thermal Resistance  
11.0 °C/W  
NEGATIVE OUTPUT REGULATORS:  
±0.2  
±0.8  
±1.5  
1.9  
-
-
-
-
-
-
-
-
-
-
-
±1.0  
±3.0  
±2.7  
3.0  
±0.2  
-
IOUT=10mA; VIN=VOUT -3V  
1
2,3  
1
-
-
-
-
-
-
-
-
-
-
-
Output Voltage Tolerance  
±1.5  
%
%
%
V
-
Post Radiation  
±1.5  
1.9  
-
±3.0  
3.0  
-
IOUT=0.5A; VOUT=1%  
1
Dropout Voltage  
Load Regulation  
1.5  
3.0  
2,3  
1
V
±0.2  
±0.4  
±1.5  
±0.1  
±0.2  
11.5  
±2.0  
±2.5  
±3.0  
±1.5  
±2.5  
12.5  
±0.2  
-
10mAIOUT0.5A  
VIN=VOUT -3V  
±2.5  
-
%
%
%
%
%
2,3  
1
Post Radiation  
±1.5  
±0.1  
-
±3.0  
±2.0  
-
IOUT=10mA  
1
Line Regulation  
-30VVINVOUT-3V  
JUNCTION TO CASE @ 125°C  
2,3  
-
1
11.5  
Thermal Resistance  
13.0 °C/W  
PART  
NUMBER  
5
OUTPUT VOLTAGES  
POSITIVE  
5.0  
NEGATIVE  
5.0  
NOTES:  
MSK5901  
MSK5902  
MSK5903  
MSK5904  
MSK5905  
MSK5906  
MSK5907  
MSK5908  
MSK5909  
1
Guaranteed by design but not tested. Typical parameters are representative of actual device  
performance but are for reference only.  
5.0  
5.2  
2
3
4
Industrial grade and "E" suffix devices shall be tested to subgroup 1 unless otherwise specified.  
Military grade devices shall be 100% tested to subgroups 1,2 and 3.  
Subgroup 1 TA=TC=+25°C  
12.0  
12.0  
15.0  
15.0  
5.0  
5.0  
12.0  
15.0  
5.0  
Subgroup 2 TA=TC=+125°C  
Subgroup 3 TA=TC=-55°C  
5
6
Please consult the factory if alternate output voltages are required.  
For positive regulator, output decoupled to ground using 1µF minimum tantalum capacitor unless  
otherwise specified. For negative regulator, output decoupled to ground using 1µF minimum  
tantanlum capacitor.  
12.0  
15.0  
10.0  
7
8
Continuous operation at or above absolute maximum ratings may adversly effect the device  
performance and/or life cycle.  
Pre and post irradiation limits at 25°C, up to 25Krad TID, are identical unless otherwise specified.  
5.0  
10.0  
Rev. E 10/07  
2
APPLICATION NOTES  
CAPACITOR SELECTION  
POSITIVE REGULATOR  
LOAD REGULATION  
It is important to keep the output connection between the regu-  
lator and the load as short as possible since this directly affects  
the load regulation. For example, if 20 gauge wire were used  
which has a resistance of about 0.008 ohms per foot, this would  
result in a drop of 8mV/ft at 1Amp of load current. It is also  
important to follow the capacitor selection guidelines to achieve  
best performance.  
INPUT CAPACITOR:  
An input bypass capacitor is recommenced when using the  
MSK 5901 series regulators. This is especially true if the regu-  
lator is located farther than 6 inches from the power supply filter  
capacitors. For most applications a 1µF solid tantalum capacitor  
will be suitable.  
HEAT SINKING  
To determine if a heat sink is required for your application  
and if so, what type, refer to the thermal model and govern-  
ing equation below.  
OUTPUT CAPACITOR:  
A minimum of a 1µF solid tantalum capacitor should also be  
used at the output to insure stability. Any increase of this out-  
put capacitor larger than 10µF will only improve output imped-  
ance.  
Governing Equation: Tj = Pd x (Rθjc + Rθcs + Rθsa) + Ta  
WHERE  
Tj = Junction Temperature  
+CCOMP CAPACITOR:  
For improved ripple rejection, +Ccomp can be bypassed to  
ground with a 10µF tantalum capacitor. This bypass capacitor  
will provide 80dB ripple rejection. Increased capacitance above  
10µF does not improve the ripple rejection at frequencies above  
120Hz. If the Ccomp bypass capacitor is used, it may be neces-  
sary to add a protection diode to protect the regulator from ca-  
pacitor discharge damage. See Typical Applications Circuit for  
clarification. If the bypass capacitor is not used, it should be left  
open since it is internally connected to the regulator.  
Pd = Total Power Dissipation  
Rθjc = Junction to Case Thermal Resistance  
Rθcs = Case to Heat Sink Thermal Resistance  
Rθsa = Heat Sink to Ambient Thermal Resistance  
Tc = Case Temperature  
Ta = Ambient Temperature  
Ts = Heat Sink Temperature  
EXAMPLE:  
This example demonstrates an analysis where the output cur-  
rents are at 0.5 amp each and both inputs are 8V.  
NEGATIVE REGULATOR  
INPUT CAPACITOR:  
Once again, if the regulator will be farther than 6 inches from  
power supply filter capacitors, then an input capacitor will be  
required on the negative regulator. It is recommended that a  
1µF solid tantalum capacitor be used.  
Conditions for MSK 5901RH:  
+Vin = +8.0V; Iout = 0.5A Positive Regulator  
1.) Assume 45° heat spreading model.  
2.) Find positive regulator power dissipation:  
OUTPUT CAPACITOR:  
A minimum of a 1µF solid tantalum capacitor should also be  
used at the output to insure stability. Any increase of this out-  
put capacitor larger than 10µF will only improve output imped-  
ance.  
Pd = (Vin - Vout)(Iout)  
Pd = (+8V-5V)(0.5A)  
Pd = 1.5W  
-CCOMP CAPACITOR:  
3.) For conservative design, set Tj = +125°C Max.  
4.) For this example, worst case Ta = +90°C.  
5.) Rθjc = 10.5°C/W from the Electrical Specification Table.  
6.) Rθcs = 0.15°C/W for most thermal greases.  
7.) Rearrange governing equation to solve for Rθsa:  
Rθsa= ((Tj - Ta)/Pd) - (Rθjc) - (Rθcs)  
For improved ripple rejection, -Ccomp can be bypassed to  
ground with a 10µF tantalum capacitor. This bypass capacitor  
will provide 80dB ripple rejection. Increased capacitance above  
10µF does not improve the ripple rejection at frequencies above  
120Hz. If the Ccomp bypass capacitor is used, it may be neces-  
sary to add a protection diode to protect the regulator from ca-  
pacitor discharge damage. See Typical Applications Circuit for  
clarification. If the bypass capacitor is not used, it should be left  
open since it is internally connected to the regulator.  
=
=
(125°C-90°C)/1.5W - 10.5°C/W - 0.15°C/W  
12.7°C/W  
The same exercise must be performed for the negative regula-  
tor.  
TYPICAL APPLICATION CIRCUIT  
TOTAL DOSE RADIATION TEST  
PERFORMANCE  
Radiation performance curves for TID testing have been  
generated for all radiation testing performed by MS Kennedy.  
These curves show performance trends throughout the TID  
test process and can be located in the MSK 5901RH radia-  
tion test report. The complete radiation test report is avail-  
able in the RAD HARD PRODUCTS section on the MSK  
website.  
http://www.mskennedy.com/store.asp?pid=9951&catid=19680  
Rev. E 10/07  
3
MECHANICAL SPECIFICATIONS  
MSK590XRH  
WEIGHT= 3.3 GRAMS TYPICAL  
NOTE: ALL DIMENSIONS ARE ±0.010 INCHES UNLESS OTHERWISE LABELED.  
ESD Triangle indicates pin 1.  
ORDERING INFORMATION  
Part  
Screening Level  
Number  
MSK590XRH  
MSK590XHRH  
MSK590XKRH  
MSK590XERH  
DSCC SMD TBD  
Industrial  
MIL-PRF-38534 CLASS H  
MIL-PRF-38534 CLASS K  
EXTENDED RELIABILITY  
TBD  
X - Designates voltage selection (MSK 5901-5909) See Page 2  
Rev. E 10/07  
4
MECHANICAL SPECIFICATIONS CONTINUED  
MSK590XRHG  
WEIGHT= 3.3 GRAMS TYPICAL  
NOTE: ALL DIMENSIONS ARE ±0.010 INCHES UNLESS OTHERWISE LABELED.  
ESD Triangle indicates pin 1.  
ORDERING INFORMATION  
Part  
Screening Level  
Number  
MSK590XRHG  
MSK590XHRHG  
MSK590XKRHG  
MSK590XERHG  
DSCC SMD TBD  
Industrial  
MIL-PRF-38534 CLASS H  
MIL-PRF-38534 CLASS K  
EXTENDED RELIABILITY  
TBD  
X - Designates voltage selection (MSK 5901-5909) See Page 2  
M.S. Kennedy Corp.  
4707 Dey Road, Liverpool, New York 13088  
Phone (315) 701-6751  
Fax (315) 701-6752  
www.mskennedy.com  
The information contained herein is believed to be accurate at the time of printing. MSK reserves the right to make  
changes to its products or specifications without notice, however and assumes no liability for the use of its products.  
Please visit our website for the most recent revision of this datasheet.  
Contact MSK for MIL-PRF-38534 Class H, Class K and Appendix G (radiation) status.  
Rev. E 10/07  
5

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