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VRM10 Datasheet(PDF) 6 Page - Emerson Network Power

Part # VRM10
Description  non-isolated DC-DC converters
PDF  10 Pages
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Manufacturer  EMERSON-NETWORKPOWER [Emerson Network Power]
Direct Link  http://www.emersonnetworkpower.com
Logo EMERSON-NETWORKPOWER - Emerson Network Power

VRM10 Datasheet(HTML) 6 Page - Emerson Network Power

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Rev.07.20.07
vrm10 series
6 of 10
Embedded Power for
Business-Critical Continuity
Specifications
Figure 2: Thermal Derating Curve for VRM10-80-12-PY
(See Note A)
AMBIENT TEMPERATURE (ºC)
60
65
70
75
80
25
30
35
40
45
50
55
60
300 LFM
400 LFM
400 LFM
500 LFM
500 LFM
600 LFM
600 LFM
VID
≤ 1.4V
VID > 1.4V
Figure 1: Thermal Derating Curve for VRM10-85-12-UY
(See Note A)
AMBIENT TEMPERATURE (ºC)
60
65
70
75
80
25
30
35
40
45
50
55
60
85
300 LFM
400 LFM
400 LFM
500 LFM
500 LFM
600 LFM
600 LFM
VID
≤ 1.4V
VID > 1.4V
OUTPUT CURRENT (A)
Max.
11.0Vin
12.6Vin
12.0Vin
Min.
VID-0.04
VID
0
20
40
60
80
100
120
VID-LL x 0.04
VID - 0.04
Vout
Vo min. = VID - Rout * Iout - Vwindow
Vo max. = VID - Rout * Iout
AMBIENT TEMPERATURE (ºC)
20
30
40
010
20
30
40
50
60
50
300 LFM
400 LFM
400 LFM
500 LFM
500 LFM
600 LFM
600 LFM
VID
≤ 1.4V
VID > 1.4V
60
70
80
90
100
110
Notes
A
For the LFM and VID conditions graphed, there is no derating between 0 ºC
and 25 ºC.
B
For load regulation equations: VID is in Volts, programmed by the VID bits
(refer to Table 3); Rout is in
W’s, programmed by the LL bits (refer to Table 1);
and the output current, Iout is in amps. VWindow is 0.040 for VRM10-85-12-UY
and 0.038 for VRM10-80-12-PY.
C
Efficiency Vs load plotted is representative of a typical VRM10-85-12-UY with
VID = 1.4 V, LL0 = 0, LL1 = 1.
D Shown for a VRM10-80-12-P with VID = 1.4 V.
Figure 4: Load Regulation (See Notes 3 and B)
Figure 3: Thermal Derating Curve for VRM10-105-12-EY
(See Note A)



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