A336RW [MPD]

Wide Input Range, 3W Single & Dual Output DC/DC Converters; 宽输入范围, 3W单和双输出DC / DC转换器
A336RW
型号: A336RW
厂家: MICROPOWER DIRECT, LLC    MICROPOWER DIRECT, LLC
描述:

Wide Input Range, 3W Single & Dual Output DC/DC Converters
宽输入范围, 3W单和双输出DC / DC转换器

转换器
文件: 总2页 (文件大小:161K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
A300RW Series  
Wide Input Range, 3W  
Single & Dual Output  
DC/DC Converters  
Electrical Specifications  
Specifications typical @ +25°C, nominal input voltage & rated output current, unless otherwise noted. Specifications subject to change without notice.  
Input  
Parameter  
Key Features:  
3W Output Power  
Conditions  
Min.  
3.5  
Typ.  
4.0  
Max.  
4.5  
Units  
5 VDC Input  
UL Approved (File E245422)  
2:1 Input Voltage Range  
1,500 VDC Isolation  
Compact DIP Case  
12 VDC Input  
24 VDC Input  
48 VDC Input 16.0  
4.5  
8.0  
7.0  
12.0  
24.0  
9.0  
18.0  
36.0  
Input Start Voltage  
VDC  
Input Filter  
π (Pi) Filter  
Reverse Polarity Input Current  
Short Circuit Input Power  
Output  
1.0  
A
mW  
Single & Dual Outputs  
1,000 2,000  
28 Standard Models  
1.0 MH MTBF  
Parameter  
Conditions  
Min.  
Typ.  
0.5  
0.5  
0.2  
0.2  
45  
Max.  
1.0  
2.0  
0.5  
0.5  
60  
Units  
%
%
%
%
mV P - P  
mV P - P  
mV rms  
%
µSec  
%
Output Voltage Accuracy  
Output Voltage Balance  
Line Regulation  
Industry Standard Pin-Out  
Dual Output , Balanced Loads  
Vin = Min to Max  
Load Regulation  
Iout = 10% to 100%  
Ripple & Noise (20 MHz) (Note 1)  
Ripple & Noise (20 MHz)  
Ripple & Noise (20 MHz)  
Output Power Protection  
Transient Recovery Time (Note 2)  
Transient Response Deviation  
Temperature Coefficient  
Output Short Circuit  
General  
Over Line, Load & Temp.  
50% Load Step Change  
100  
15  
120  
300  
3.0  
0.01  
500  
5.0  
0.02  
RoHS Compliant  
%/ºC  
Continuous (Autorecover)  
Parameter  
Conditions  
Min.  
60 Seconds 1,500  
500 VDC 1,000  
100 kHz, 1V  
Typ.  
Max.  
Units  
VDC  
MΩ  
pF  
Isolation Voltage  
Isolation Resistance  
Isolation Capacitance  
Switching Frequency  
Environmental  
65  
300  
100  
kHz  
Parameter  
Conditions  
Min.  
Typ.  
+25  
Max.  
+71  
+90  
Units  
ºC  
ºC  
Operating Temperature Range  
Operating Temperature Range  
Storage Temperature Range  
Cooling  
Ambient  
Case  
-40  
-40  
-40  
+125  
ºC  
Free Air Convection  
RH, Non-condensing  
Humidity  
95  
%
MicroPower Direct  
292 Page Street  
Suite D  
Stoughton, MA 02072  
USA  
Physical  
Case Size  
Case Material  
Weight  
Reliability Specifications  
Parameter  
1.25 x 0.80 x 0.40 Inches (31.8 x 20.3 x 10.2 mm)  
Non-Conductive Black Plastic (UL-94V0)  
0.42 Oz (12g)  
T: (781) 344-8226  
Conditions  
Min.  
Typ.  
Max.  
Units  
F: (781) 344-8481  
MTBF  
MIL HDBK 217F, 25ºC, Gnd Benign  
1.0  
MHours  
E: sales@micropowerdirect.com  
W: www.micropowerdirect.com  
Safety Standards  
UL 1950, EN 60950, IEC 60950  
UL, cUL; File No. E245422  
Safety Approvals  
Absolute Maximum Ratings  
Parameter  
Conditions  
Min.  
Typ.  
Max.  
11.0  
25.0  
50.0  
100.0  
260  
Units  
5 VDC Input -0.7  
12 VDC Input -0.7  
24 VDC Input -0.7  
48 VDC Input -0.7  
Input Voltage Surge (1 Sec)  
VDC  
Lead Temperature  
Internal Power Dissipation  
1.5 mm From Case For 10 Sec  
All Models  
ºC  
mW  
2,500  
Caution: Exceeding Absolute Maximum Ratings may damage the module. These are not continuous operating ratings.  
Model Selection Guide  
Input  
Current (mA)  
Output  
Fuse Rating  
Slow-Blow  
(mA)  
Voltage (VDC)  
Model  
Reflected  
Ripple  
Current  
(mA, Typ)  
Efficiency  
(%, Typ)  
Voltage Current  
(VDC) (mA, Max) (mA, Min)  
Current  
Number  
Nominal  
Range  
Full-Load No-Load  
A301RW  
A302RW  
A303RW  
A304RW  
A305RW  
A306RW  
A307RW  
A311RW  
A312RW  
A313RW  
A314RW  
A315RW  
A316RW  
A317RW  
A321RW  
A322RW  
A323RW  
A324RW  
A325RW  
A326RW  
A327RW  
A331RW  
A332RW  
A333RW  
A334RW  
A335RW  
A336RW  
A337RW  
5
5
5
5
5
5
5
4.5 - 9.0  
4.5 - 9.0  
4.5 - 9.0  
4.5 - 9.0  
4.5 - 9.0  
566  
685  
779  
779  
694  
800  
800  
223  
267  
305  
305  
271  
313  
313  
109  
132  
149  
149  
132  
152  
152  
55  
40  
40  
40  
40  
40  
40  
40  
20  
20  
20  
20  
20  
20  
20  
5
5
5
5
5
5
5
3
3
100  
100  
100  
100  
100  
100  
100  
30  
30  
30  
30  
30  
30  
30  
15  
15  
15  
15  
15  
15  
3.3  
5.0  
12.0  
15.0  
5.0  
12.0  
15.0  
3.3  
600.0  
500.0  
250.0  
200.0  
250.0  
125.0  
100.0  
600.0  
500.0  
250.0  
200.0  
250.0  
125.0  
100.0  
600.0  
500.0  
250.0  
200.0  
250.0  
125.0  
100.0  
600.0  
500.0  
250.0  
200.0  
250.0  
125.0  
100.0  
60.0  
50.0  
25.0  
20.0  
25.0  
12.5  
10.0  
60.0  
50.0  
25.0  
20.0  
25.0  
12.5  
10.0  
60.0  
50.0  
25.0  
20.0  
25.0  
12.5  
10.0  
60.0  
50.0  
25.0  
20.0  
25.0  
12.5  
10.0  
70  
73  
77  
77  
72  
75  
75  
74  
78  
82  
82  
77  
80  
80  
76  
79  
84  
84  
79  
82  
82  
76  
79  
84  
84  
80  
84  
84  
1,500  
1,500  
1,500  
1,500  
1,500  
1,500  
1,500  
700  
700  
700  
700  
700  
700  
700  
350  
350  
350  
350  
350  
350  
4.5 - 9.0  
4.5 - 9.0  
12  
12  
12  
12  
12  
12  
12  
24  
24  
24  
24  
24  
24  
24  
48  
48  
48  
48  
48  
48  
48  
9.0 - 18.0  
9.0 - 18.0  
9.0 - 18.0  
9.0 - 18.0  
9.0 - 18.0  
9.0 - 18.0  
9.0 - 18.0  
18.0 - 36.0  
18.0 - 36.0  
18.0 - 36.0  
18.0 - 36.0  
18.0 - 36.0  
18.0 - 36.0  
18.0 - 36.0  
36.0 - 75.0  
36.0 - 75.0  
36.0 - 75.0  
36.0 - 75.0  
36.0 - 75.0  
36.0 - 75.0  
36.0 - 75.0  
5.0  
12.0  
15.0  
5.0  
12.0  
15.0  
3.3  
5.0  
12.0  
15.0  
5.0  
12.0  
15.0  
3.3  
15  
10  
10  
10  
10  
10  
10  
10  
350  
135  
135  
135  
135  
135  
135  
135  
66  
75  
75  
65  
75  
75  
5.0  
3
3
3
3
12.0  
15.0  
5.0  
12.0  
15.0  
3
Notes:  
Derating Curve  
1. When measuring output ripple, it is recommended that an external 0.47 µF ceramic ca-  
pacitor be placed from the +Vout pin to the -Vout pin for single output units and from  
each output to common for dual output units. For noise sensitive applications, the use  
of 3.3 µF capacitors will reduce the output ripple.  
2. Transient recovery is measured to within a 1% error band for a load step change of 75%  
to 100%.  
3. Operation at no-load will not damage these units. However, they may not meet all  
specifications.  
4. Dual output units may be connected to provide a 10 VDC, 24 VDC or 30 VDC output. To  
do this, connect the load across the positive (+Vout) and negative (-Vout) outputs and  
float the output common.  
5. The converter should be connected to a low ac-impedance source. An input source with  
a highly inductive impedance may affect the stability of the converter. In applications  
where the converter output loading is high and input power is supplied over long lines,  
it may be necessary to use a capacitor on the input to insure start-up.  
In this case, it is recommended that a low ESR (ESR <1.0Ω at 100 kHz) capacitor be mounted  
close to the converter. For 5V input units a 8.2 µF is recommended, for 12V input units,  
a 3.3 µF; and for 24V & 48V units a 2.2 µF.  
Mechanical Dimensions  
6. It is recommended that a fuse be used on the input of a power supply for protection.  
See the table above for the correct rating.  
Pin Connections  
Pin  
Single  
Dual  
Pin  
Single  
Dual  
2, 3  
9
-Vin  
-Vin  
14  
16  
+Vout  
+Vout  
No Pin Common  
NC -Vout  
-Vout Common  
+Vin +Vin  
11  
22, 23  
NC: No Connection  
Capacitive Load  
Single Output Dual Output  
Mechanical Notes:  
All dimensions are typical in inches (mm)  
Tolerance x.xx = 0.01 ( 0.25)  
Leads are gold plated for improved  
solderability.  
4,000 µF Max  
1,000 µF Max  
MicroPower Direct  
www.micropowerdirect.com  
292 Page Street Ste D Stoughton, MA 02072  
TEL: (781) 344-8226  
FAX: (781) 344-8481  
E-Mail: sales@micropowerdirect.com  

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