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D12F200B

Description
DC-DC Regulated Power Supply Module, 1 Output, 200W, Hybrid, PACKAGE-11
CategoryPower/power management    The power supply circuit   
File Size497KB,13 Pages
ManufacturerDelta Electronics
Download Datasheet Parametric View All

D12F200B Overview

DC-DC Regulated Power Supply Module, 1 Output, 200W, Hybrid, PACKAGE-11

D12F200B Parametric

Parameter NameAttribute value
MakerDelta Electronics
Parts packaging codeMODULE
package instructionPACKAGE-11
Contacts11
Reach Compliance Codecompliant
ECCN codeEAR99
Analog Integrated Circuits - Other TypesDC-DC REGULATED POWER SUPPLY MODULE
Maximum input voltage13.8 V
Minimum input voltage4.5 V
Nominal input voltage12 V
JESD-30 codeR-XSMA-T11
length38.48 mm
Number of functions1
Output times1
Number of terminals11
Minimum output voltage0.6 V
Nominal output voltage2.5 V
Package body materialUNSPECIFIED
Package shapeRECTANGULAR
Package formMICROELECTRONIC ASSEMBLY
Certification statusNot Qualified
Maximum seat height28.19 mm
surface mountNO
technologyHYBRID
Terminal formTHROUGH-HOLE
Terminal locationSINGLE
Maximum total power output200 W
Fine-tuning/adjustable outputYES
width10.85 mm

D12F200B Preview

FEATURES
High Efficiency: 94% @ 12Vin, 5.0V/40A out
Wide input range: 4.5V~13.8V
Output voltage programmable from 0.6Vdc
to 5.0Vdc via external resistors
No minimum load required
Fixed frequency operation
Input UVLO, output SCP, OVP.
Remote On/Off (Positive logic)
Power Good Function
RoHS 5 / RoHS 6
ISO 9001, TL 9000, ISO 14001, QS9000,
OHSAS18001 certified manufacturing facility
Delphi D12F200 Non-Isolated Point of Load
DC/DC Modules:
4.5V~13.8Vin, 0.6V~5.0Vout, 40A
The D12F200, 4.5~13.8V wide input, single output, non-isolated point
of load DC/DC converter is the latest offering from a world leader in
power systems technology and manufacturing -- Delta Electronics, Inc.
The D12F200 and ND/NE product families are part of the second
generation, non-isolated point-of-load DC/DC power modules which cut
the module size by almost 50% in most of the cases compared to the
first generation NC series POL modules for networking and data
communication applications. D12F200 product provides up to 40A
output current and the output can be resistor trimmed from 0.6Vdc to
5.0Vdc. It provides a highly efficient, high power and current density
and very cost effective point of load solution. With creative design
technology and optimization of component placement, these
converters possess outstanding electrical and thermal performance, as
well as extremely high reliability under highly stressful operating
conditions.
APPLICATIONS
Telecom / DataCom
Distributed power architectures
Servers and workstations
LAN / WAN applications
Data processing applications
DATASHEET
DS_D12F200_01212011
TECHNICAL SPECIFICATIONS
(Ambient Temperature=25°C, nominal V
in
=12Vdc unless otherwise specified.)
PARAMETER
ABSOLUTE MAXIMUM RATINGS
Input Voltage
Operating Temperature
Storage Temperature
INPUT CHARACTERISTICS
Operating Input Voltage
Input Under-Voltage Lockout
Turn-On Voltage Threshold
Turn-Off Voltage Threshold
Maximum Input Current
No-Load Input Current
Off Converter Input Current
Input voltage slew rate
OUTPUT CHARACTERISTICS
Output Voltage Adjustment Range
Output Voltage Set Point
Output Voltage Regulation
Over Load
Over Line
Total output range
Output Voltage Ripple and Noise
Peak-to-Peak
Output Current Range
Output Voltage Under-shoot at Power-Off
Output short-circuit current, RMS value
Over Current Protection
Over Voltage Protection
DYNAMIC CHARACTERISTICS
Transient Response
Output Dynamic Load Response
Settling Time
Turn-On Transient
Rise Time
Turn on Delay (power)
Turn on Delay (Remote on/off)
Turn on Transient (overshoot)
Turn off Transient (undershoot)
Maximum Output Capacitance
EFFICIENCY
Vo=0.6V
Vo=0.9V
Vo=1.2V
Vo=1.5V
Vo=1.8V
Vo=2.5V
Vo=3.3V
Vo=5.0V
FEATURE CHARACTERISTICS
Switching Frequency
ON/OFF Control
Logic High
Logic Low
Remote Sense Range
Power Good
Power Good Delay
Output to Power Good Delay Time
GENERAL SPECIFICATIONS
Calculated MTBF
Weight
NOTES and CONDITIONS
Min.
Refer to Fig.37 for the measuring point
-0.3
0
-40
4.5
4.3
4.0
Vin=12V, Vo=5V, Io=40A
Vin=12V, Vo=5V, Io=40A
Remote OFF
dV/dt
Refer to Fig.19 for the relations between input and output voltage
With a 0.1% trim resistor
Vo≦1.2Vdc
Vo>1.2Vdc
Vin=Vin_min to Vin_max
Over load, line, temperature regulation and set point
5Hz to 20MHz bandwidth
Full Load, 10uF Tan cap, total input & output range
Vin=12V, Turn OFF
12Vin, 5Vout
Hiccup mode
Non-latching shutdown
25% step load, Slew rate=10A/uS, 0.6V~1.8V output
25% step load, Slew rate=10A/uS, 2.5V~ 5.0V output
12Vin, 2.5Vout, 1µF ceramic and 10µF Tan cap
Settling to be within regulation band (to 10% Vo deviation)
From 10% to 90% of Vo
Vin=12V, Io=min-max. (Wthin 10% of Vo)
Vin=12V, Io=min-max. (Wthin 10% of Vo)
0.6
-1.0
-20
-1.5
-0.5
-3.0
20
0
D12F200
Typ.
Max.
13.8
70
125
13.8
Units
Vdc
°C
°C
V
Vdc
Vdc
A
mA
mA
V/mS
Vdc
%Vo
mV
%Vo
%Vo
%Vo
mV
A
mV
A
A
%
mVpk
mVpk
µs
mS
mS
mS
Vo
mV
µF
µF
%
%
%
%
%
%
%
%
KHz
260
17
18
300
20
10
5.0
+1.0
+20
+1.5
+0.5
+3.0
50
40
100
10
70
120
120
130
20
8
13
13
0.5%
0
0
70
78
81
84
85
88
90
92
71.4
79.4
83.5
85.9
87.5
90.4
92.2
94.0
500
1.2
0
0
4.0
0.2
Vinmax
0.6
0.5
0.4
5.1
2
1
150
160
50
15
25
20
100
20000
5000
ESR
10mΩ
ESR < 10mΩ
Vin=12V, Io=40A
Vin=12V, Io=40A
Vin=12V, Io=40A
Vin=12V, Io=40A
Vin=12V, Io=40A
Vin=12V, Io=40A
Vin=12V, Io=40A
Vin=12V, Io=40A
Fixed, per phase
Positive logic (internally pulled high)
Module On (or leave the pin open)
Module Off
Vo is out off +/-10% Vo,set
Vo is within +/-10% Vo,set
V
V
V
V
V
mS
mS
Mhours
grams
25℃, 300LFM, 80% load
5.6
14
DS_D12F200_01212011
2
ELECTRICAL CHARACTERISTICS CURVES
90
85
Efficiency (%)
95
90
Efficiency (%)
85
80
75
5Vin
12Vin
13.8Vin
80
75
70
65
60
0
5
10 15 20 25 30
Output Current, Io (A)
35
40
5Vin
12Vin
13.8Vin
70
65
0
5
10 15 20 25 30
Output Current, Io (A)
35
40
Figure 1:
Converter efficiency vs. output current
(0.9V output voltage, 5V&12V input)
Figure 2:
Converter efficiency vs. output current
(1.2V output voltage, 5V&12V input)
100
95
Efficiency (%)
90
85
80
75
70
0
5
10 15 20 25 30
Output Current, Io (A)
35
40
5Vin
12Vin
13.8Vin
100
95
Efficiency (%)
90
85
80
75
70
0
5
10 15 20 25 30
Output Current, Io (A)
35
40
5Vin
12Vin
13.8Vin
Figure 3:
Converter efficiency vs. output current
(1.8V output voltage, 5V&12V input)
Figure 4:
Converter efficiency vs. output current
(2.5V output voltage, 5V&12V input)
100
95
Efficiency (%)
90
85
80
75
70
0
5
10 15 20 25 30
Output Current, Io (A)
35
40
7Vin
12Vin
13.8Vin
100
95
Efficiency (%)
90
85
80
75
70
0
5
10 15 20 25 30
Output Current, Io (A)
35
40
9Vin
12Vin
13.8Vin
Figure 5:
Converter efficiency vs. output current
(3.3V output voltage, 12V input)
Figure 6:
Converter efficiency vs. output current
(5.0V output voltage, 12V input)
DS_D12F200_01212011
3
ELECTRICAL CHARACTERISTICS CURVES (CONTINUED)
Figure 7:
Output ripple & noise at 12Vin, 0.9V/40A out
(10mv/div, 2uS/div)
Figure 8:
Output ripple & noise at 12Vin, 1.2V/40A out
(10mv/div, 2uS/div)
Figure 9:
Output ripple & noise at 12Vin, 1.8V/40A out
(10mv/div, 2uS/div)
Figure 10:
Output ripple & noise at 12Vin, 2.5V/40A out
(10mv/div, 2uS/div)
Figure 11:
Output ripple & noise at 12Vin, 3.3V/40A out
(10mv/div, 2uS/div)
Figure 12:
Output ripple & noise at 12Vin, 5.0V/40A out
(10mv/div, 2
u
S/div)
DS_D12F200_01212011
4
ELECTRICAL CHARACTERISTICS CURVES (CONTINUED)
Figure 13:
Turn on delay time at 12Vin, 0.9V/40A out (4mS/div)
Ch1: Enable, Ch2: PG, Ch3: Vo
Figure 14:
Turn on delay time at 12Vin, 1.2V/40A out (4mS/div)
Ch1: Enable, Ch2: PG, Ch3: Vo
Figure 15:
Turn on delay time at 12Vin, 1.8V/40A out (4mS/div)
Ch1: Enable, Ch2: PG, Ch3: Vo
Figure 16:
Turn on delay time at 12Vin, 2.5V/40A out (4mS/div)
Ch1: Enable, Ch2: PG, Ch3: Vo
Figure 17:
Turn on delay time at 12Vin, 3.3V/40A out (4mS/div)
Ch1: Enable, Ch2: PG, Ch3: Vo
Figure 18:
Turn on delay time at 12Vin, 5.0V/40A out (4mS/div)
Ch1: Enable, Ch2: PG, Ch3: Vo
DS_D12F200_01212011
5
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