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V048F060T040 Datasheet PDF Download - Vicor Corporation

Номер произв V048F060T040
Описание (V048x060x040) Voltage Transformation Module
Производители Vicor Corporation
логотип Vicor Corporation логотип 
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V048F060T040 Даташит, Описание, Даташиты
www.DataSheet4U.com
VTM
PRELIMINARY
V•I ChipTM – VTM
Voltage Transformation Module
• 48 V to 6 V V•I Chip Converter
• 40.0 A (60.0 A for 1 ms)
• High density – 974 W/in3
• Small footprint – 220 W/in2
• Low weight – 0.5 oz (14 g)
• Pick & Place / SMD
• 125°C operation
• 1 µs transient response
• 3.5 million hours MTBF
• Typical efficiency 95%
• No output filtering required
• Surface mount BGA or J-Lead
packages
V048K060T040
K indicates BGA configuration. For other
mounting options see Part Numbering below.
©
Vf = 26 - 55 V
VOUT = 3.25 - 6.87 V
IOUT = 40.0 A
K = 1/8
ROUT = 7.5 mmax
Actual size
Product Description
The V048K060T040 V•I Chip Voltage Transformation
Module (VTM) excels at speed, density and efficiency to
meet the demands of advanced DSP, FPGA, and ASIC at
the point of load (POL) while providing isolation from
input to output. It achieves a response time of less than
1 µs and delivers up to 40.0 A in a volume of less than
0.25 in3 with unprecedented efficiency. It may be
paralleled to deliver hundreds of amps at an output
voltage settable from 3.25 to 6.87 Vdc.
The VTM V048K060T040’s nominal output voltage is
6 Vdc from a 48 Vdc input Factorized Bus, Vf, and is
controllable from 3.25 to 6.87 Vdc at no load, and from
2.95 to 6.60 Vdc at full load, over a Vf input range of
26 to 55 Vdc. It can be operated either open- or closed-
loop depending on the output regulation needs of the
application. Operating open-loop, the output voltage
tracks its Vf input voltage with a transformation ratio,
K = 1/8 , for applications requiring a programmable
output voltage at high current and high efficiency.
Closing the loop back to an input Pre-Regulation Module
(PRM) or DC-DC converter enables tight load regulation.
The 6 V VTM achieves a power density of 974 W/in3 in a
V•I Chip package compatible with standard pick-and-
place and surface mount assembly processes. The
V•I Chip BGA package supports in-board mounting with
a low profile of 0.16" (4 mm) over the board. A J-lead
package option supports on-board surface mounting
with a profile of only 0.25" (6 mm) over the board. The
VTM’s fast dynamic response and low noise eliminate the
need for bulk capacitance at the load, substantially
increasing the POL density while improving reliability and
decreasing cost.
Absolute Maximum Ratings
Parameter
+In to -In
+In to -In
PC to -In
VC to -In
+Out to -Out
Isolation voltage
Output current
Peak output current
Output power
Peak output power
Case temperature
Operating junction temperature(1)
Values
-1.0 to 60
100
-0.3 to 7.0
-0.3 to 19.0
-0.1 to 15.0
2,250
40.0
60.0
240
360
208
-40 to 125
-55 to 125
Storage temperature
-40 to 150
-65 to 150
Unit
Vdc
Vdc
Vdc
Vdc
Vdc
Vdc
A
A
W
W
°C
°C
°C
°C
°C
Notes
For 100 ms
Input to Output
Continuous
For 1 ms
Continuous
For 1 ms
During reflow
T - Grade
M - Grade
T - Grade
M - Grade
Note:
(1) The referenced junction is defined as the semiconductor having the highest temperature.
This temperature is monitored by a shutdown comparator.
Part Numbering
V 048
Voltage
Transformation
Module
Input Voltage
Designator
K
Configuration Options
F = On-board (Figure 15)
K = In-board (Figure 14)
060
Output Voltage
Designator
(=VOUT x10)
T
040
Output Current
Designator
(=IOUT)
Product Grade Temperatures (°C)
Grade Storage Operating
T -40 to150 -40 to125
M -65 to150 -55 to125
vicorpower.com 800-735-6200
V•I Chip Voltage Transformation Module
V048K060T040
Rev. 1.0
Page 1 of 15
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V048F060T040 Даташит, Описание, Даташиты
Electrical Specifications
PRELIMINARY
V•I Chip Voltage Transformation Module
Input Specs (Conditions are at 48 Vin, full load, and 25°C ambient unless otherwise specified)
Parameter
Input voltage range
Input dV/dt
Input overvoltage turn-on
Input overvoltage turn-off
Input current
Input reflected ripple current
No load power dissipation
Internal input capacitance
Internal input inductance
Min Typ Max Unit
Note
26 48 55 Vdc Operable down to zero V with VC voltage applied
1 V/µs
55.0 Vdc
59.0 Vdc
5.5 Adc
275
mA p-p
Using test circuit in Figure 16; See Figure 1
2.3 3.5
W
4.0 µF
20 nH
Output Specs (Conditions are at 48 Vin, full load, and 25°C ambient unless otherwise specified)
Parameter
Output voltage
Rated DC current
Peak repetitive current
Short circuit protection set point
Current share accuracy
Efficiency
Half load
Full load
Internal output inductance
Internal output capacitance
Output overvoltage setpoint
Output ripple voltage
No external bypass
10 µF bypass capacitor
Effective switching frequency
Line regulation
K
Load regulation
ROUT
Transient response
Voltage overshoot
Response time
Recovery time
Min Typ Max Unit
3.25 6.87 Vdc
2.95 6.60 Vdc
0 40.0 Adc
60.0 A
42.8 49.9 55.0
5 10
Adc
%
94.3 95.8
93.8 94.8
1.1
55.0
6.9
%
%
nH
µF
Vdc
230 300
mV
12.5 mV
2.0 2.5 3.0 MHz
0.1238
1/8 0.1263
5.5 7.5 m
180 mV
200 ns
1 µs
Note
No load
Full load
26 - 55 VIN
Max pulse width 1ms, max duty cycle 10%,
baseline power 50%
Module will shut down
See Parallel Operation on Page 10
See Figure 3
See Figure 3
Effective value
Module will shut down
See Figures 2 and 5
See Figure 6
Fixed, 1.25 MHz per phase
VOUT = K•VIN at no load
See Figure 19
40.0 A load step with 100 µF CIN; See Figures 7 and 8
See Figures 7 and 8
See Figures 7 and 8
vicorpower.com 800-735-6200
V•I Chip Voltage Transformation Module
V048K060T040
Rev. 1.0
Page 2 of 15
--------------------------------------------

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V048F060T040 Даташит, Описание, Даташиты
Electrical Specifications (continued)
PRELIMINARY
Waveforms
Figure 1— Input reflected ripple current at full load and 48 Vf.
220
200
180
160
140
120
100
80
60
40
20
0
Ripple vs. Output Current
4 8 12 16 20 24 28 32 36 40
Output Current (A)
Figure 2— Output voltage ripple vs. output current at 6 Vout with no POL
bypass capacitance.
96
95.5
95
94.5
94
93.5
93
92.5
92
91.5
91
0
Efficiency vs. Output Current
4 8 12 16 20 24 28 32 36 40
Output Current (A)
Figure 3— Efficiency vs. output current at 48 Vf.
Power Dissipation
14
13
12
11
10
9
8
7
6
5
4
3
2
0 4 8 12 16 20 24 28 32 36 40
Output Current (A)
Figure 4—Power dissipation as a function of output current at 48 Vf.
Figure 5— Output voltage ripple at full load and 6 Vout; without any
external bypass capacitor.
Figure 6—Output voltage ripple at full load and 6 Vout with 10 µF ceramic
external bypass capacitance and 20 nH distribution inductance.
vicorpower.com 800-735-6200
V•I Chip Voltage Transformation Module
V048K060T040
Rev. 1.0
Page 3 of 15
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