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TEM03-48D12 Datasheet(PDF) 2 Page - RSG Electronic Components GmbH

Part # TEM03-48D12
Description  3 WATTS DC-DC CONVERTER
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Manufacturer  RSG [RSG Electronic Components GmbH]
Direct Link  http://www.rsg-electronic.de
Logo RSG - RSG Electronic Components GmbH

TEM03-48D12 Datasheet(HTML) 2 Page - RSG Electronic Components GmbH

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www.pduke.com
2013/5/3
TEM03 SERIES
3 WATTS
DC-DC CONVERTER
TEM03-48S05 Derating Curve
TEM03-48S05 Efficiency VS Input Voltage
TEM03-48S05 Efficiency VS Output Current
Output Current
Model
Number
Input
Range
Output
Voltage
Output
Voltage Range Min. load Full load
Output
(2)
Ripple&Noise
No Load
(3)
Input Current
Eff
(4)
(%)
Capacitor
(5)
Load max
TEM03-05S33 4.5 ~ 9 VDC 3.3 VDC
2.84 ~ 3.67 VDC
0mA
600mA
75mVp-p
50mA
71
3300µF
TEM03-05S05 4.5 ~ 9 VDC
5 VDC
4.3 ~ 6 VDC
0mA
600mA
75mVp-p
60mA
74
1500µF
TEM03-05S12 4.5 ~ 9 VDC
12 VDC
12 ~ 15 VDC
0mA
250mA
75mVp-p
55mA
78
700µF
TEM03-05D12 4.5 ~ 9 VDC ±12 VDC
±12 ~ ±15 VDC
0mA
±125mA
75mVp-p
50mA
81
±250µF
TEM03-12S33 9 ~ 18 VDC
3.3 VDC
2.84 ~ 3.67 VDC
0mA
600mA
75mVp-p
40mA
75
3300µF
TEM03-12S05 9 ~ 18 VDC
5 VDC
4.3 ~ 6 VDC
0mA
600mA
75mVp-p
55mA
79
1500µF
TEM03-12S12 9 ~ 18 VDC
12 VDC
12 ~ 15 VDC
0mA
250mA
75mVp-p
55mA
81
700µF
TEM03-12D12 9 ~ 18 VDC ±12 VDC
±12 ~ ±15 VDC
0mA
±125mA
75mVp-p
60mA
80
±250µF
TEM03-24S33 18 ~ 36 VDC 3.3 VDC
2.84 ~ 3.67 VDC
0mA
600mA
75mVp-p
10mA
75
3300µF
TEM03-24S05 18 ~ 36 VDC
5 VDC
4.3 ~ 6 VDC
0mA
600mA
75mVp-p
10mA
79
1500µF
TEM03-24S12 18 ~ 36 VDC 12 VDC
12 ~ 15 VDC
0mA
250mA
75mVp-p
15mA
81
700µF
TEM03-24D12 18 ~ 36 VDC ±12 VDC
±12 ~ ±15 VDC
0mA
±125mA
75mVp-p
30mA
82
±250µF
TEM03-48S33 36 ~ 75 VDC 3.3 VDC
2.84 ~ 3.67 VDC
0mA
600mA
75mVp-p
5mA
75
3300µF
TEM03-48S05 36 ~ 75 VDC
5 VDC
4.3 ~ 6 VDC
0mA
600mA
75mVp-p
5mA
79
1500µF
TEM03-48S12 36 ~ 75 VDC 12 VDC
12 ~ 15 VDC
0mA
250mA
75mVp-p
15mA
82
700µF
TEM03-48D12 36 ~ 75 VDC ±12 VDC
±12 ~ ±15 VDC
0mA
±125mA
75mVp-p
10mA
82
±250µF
Note:
1. BELLCORE TR-NWT-000332. Case 1:50% Stress, temperature at 40ºC.
MIL-HDBK-217F Notice2 @Ta=25 ºC, Full load(Ground, Benign, controlled environment).
2. Typical value at nominal input and full load.
3. Typical value at nominal input and no load.
4. Typical value at nominal input and full load.
5. Test by minimum input and constant resistive load.
6. The following output voltage can be obtained by connecting this terminal to an output + or – terminal. Unless the
output voltage is adjusted, this terminal should be open.
7. In addition, the voltage can be adjusted not by shorting these terminals, but by connecting them to resistances as shown below.
8. Arithmetic expression connected resistance: R ( k
)
8-1 Vo=(3.3*R+36.7)/(R+10)
8-2 Vo=(3.3*R+36.7)/(R+12.92)
8-3 Vo=2.5*[2+2.7/(R+6.8)]
8-4 Vo=2.5*[2-2.7/(R+9.5)]
8-5 Vo=2.5+9.5(R+10.9)/(R+8.2) [Between two outputs] 8-6 Vo=2.5+22*(R+12.7)/(R+10) [Between two outputs]
9. The TEM03 series standard module meets EN55022 Class A and Class B with external components.
For more detail information, please contact with P-DUKE.
CAUTION: This power module is not internally fused. An input line fuse must always be used.


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