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Input Voltage
Operating Storage
I= 40 to +100 I= 55 to +125
M= 55 to +100 M= 65 to +125
Features
Inputs:
28 Vdc per MIL-STD-704D/E/F
155 Vdc per MIL-STD-1399A
270 Vdc per MIL-STD-704D/E/F
Single output: 2 – 48 Vdc
Up to 23 W/in3
MIL-STD-810 environments
Up to 90% efficiency
Remote sense
Current limit
ZCS power architecture
Low noise FM control
Size: 2.28" x 2.4" x 0.5"
(57,9 x 61,0 x 12,7 mm)
Product Highlights
The MI-J00 family of DC-DC converters is
designed for applications utilizing distributed
power architectures. Based on Vicors VI-200 /
VI-J00 family of zero-current switching,
component-level DC-DC converters, the MI-J00
family offers exceptional performance in terms of
power density, efficiency, noise, ease of use, and
reliability.
The MI-J00 family meets all steady-state,
transient and under/overvoltage requirements of
MIL-STD-704D/E/F for both 28 Vdc input
(MI-J2X) and 270 Vdc input (MI-J6X), and the
worst case envelope of MIL-STD-1399A for
155 Vdc input (MI-J5X).
The output voltage can be externally trimmed or
programmed from 50% to 110% of nominal
output. Current limiting, remote sense, and an
inhibit pin all combine to offer a high degree of
protection, versatility, and reliability for power
systems.
Fully encapsulated in Vicors industry standard
package, the MI-J00 family meets MIL-STD-810
environmental testing requirements for humidity,
fungus, salt-fog, explosive atmosphere,
acceleration, vibration, and shock.
Packaging Options
Standard: Slotted baseplate
SlimMod: Flangeless baseplate, option suffix: - S
Example: MI - JXX - XX - S
FinMod: Finned heat sink, option suffix:
- F1, -F2, -F3 and - F4
Examples:
MI - JXX - XX -F1, 0.25" fins, longitudinal
MI - JXX - XX -F2, 0.50" fins, longitudinal
MI - JXX - XX -F3, 0.25" fins, transverse
MI - JXX - XX -F4, 0.50" fins, transverse
5 V <5 V
A= 10 W A=—
Z= 25 W Z=5 A
Y= 50 W Y= 10 A
Z= 2.0 V
Y= 3.3 V
0= 5.0 V
X= 5.2 V
W= 5.5 V
V= 5.8 V
T= 6.5 V
R= 7.5 V
M= 10 V
1= 12 V
P= 13.8 V
2= 15 V
N= 18.5 V
3= 24 V
L= 28 V
J= 36 V
K= 40 V
4= 48 V
MI-J
Converter Selection Chart
Semi-custom modules available, consult factory.
Product Grade Temperatures (°C)
Output Power/Current Vout
Output Voltage
Nominal Range Transient
[a] Notes
2= 28 V 18 50 V
[b]
60 V 28 Vdc input per MIL-STD 704D/E/F
5= 155 V 100 210 V 230 V 155 Vdc input per MIL-STD-1399A
6= 270 V 125 400 V
[c]
475 V 270 Vdc input per MIL-STD-704D/E/F
7= 165 V 100 310 V n/a
Data Sheet
MI-J00
DC-DC Converters
10 to 50 Watts
[a] Transient voltage for 1 second.
[b] 16 V operation at 75% load.
[c] These units rated at 75% load from 125 – 150 Vin: MI-J6Z-xY, MI-J6Y-xY, MI-J60-xY
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Parameter Min Typ Max Units Test Conditions
Inrush charge 60 x 10-6 100 x 10-6 Coulombs Nominal line
Input reflected 10% IIN Nominal line, full load
ripple current – pp
Input ripple rejection
dB 120 Hz, nominal line
dB 2400 Hz, nominal line
No load power dissipation 1.35 2 Watts
Parameter Min Typ Max Units Test Conditions
Gate out impedance 50
Gate in impedance 1000
Gate in high threshold 6 Volts Use open collector
Gate in low threshold 0.65 Volts
Gate in low current 6 mA
Parameter Min Typ Max Units Test Conditions
Setpoint accuracy 0.5 1 %VNOM
Load/line regulation
0.05 0.2 %VNOM LL to HL, 10% to Full Load
0.2 0.5 %VNOM LL to HL, No Load to 10%
Output temperature drift 0.01 0.02 % / °C Over rated temperature
Long term drift 0.02 %/1K hours
Output ripple – pp 100 150 mV Whichever is greater
1.0 1.5 %VNOM 20 MHz bandwidth
Trim range
[a]
50 110 %VNOM
Total remote 0.5 Volts
sense compensation
Current limit 105 125 %INOM Automatic restart
Short circuit current 105 130 %INOM
CONVERTER SPECIFICATIONS
(typical at TBP = 25°C, nominal line and 75% load, unless otherwise specified)
30+20 Log
(
Vin
)
Vout
20+20 Log
(
Vin
)
Vout
INPUT SPECIFICATIONS
OUTPUT CHARACTERISTICS
CONTROL PIN SPECIFICATIONS
[a]
10 V, 12 V and 15 V outputs, standard trim range ±10%. Consult factory for wider trim range.
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Parameter Min Typ Max Units Test Conditions
Efficiency 80 – 90%
Baseplate to sink 0.14 °C/Watt With thermal pads
CONVERTER SPECIFICATIONS (cont.)
Parameter Min Typ Max Units Test Conditions
Input to output 3,000 VRMS Baseplate earthed
Output to baseplate 500 VRMS
Input to baseplate 1,500 VRMS
Input to output capacitance 50 75 pF
Parameter Min Typ Max Units Test Conditions
Altitude - method 500.2 70,000 feet Procedure II
Humidity - method 507.2 88/240 %/hours Procedure I, cycle 1
Acceleration - method 513.3 9 g Procedure II
Vibration - method 514.3 20 g Procedure I, category 6
Shock - method 516.3 40 g Procedure I
DIELECTRIC WITHSTAND CHARACTERISTICS
THERMAL CHARACTERISTICS
ENVIRONMENTAL – MIL-STD-810D
Parameter Min Typ Max Units Test Conditions
25°C Ground Benign: G.B. 3,732 1,000 hours
50°C Naval Sheltered: N.S. 672 1,000 hours
65°C Airborne Inhabited
Cargo: A.I.C. 526 1,000 hours
RELIABILITY - MIL-HDBK-217F (MI-J2L-MY)
Parameter Min Typ Max Units Test Conditions
Weight 3.0 Ounces
(85) (Grams)
MECHANICAL SPECIFICATIONS
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Parameter I-Grade M-Grade
Storage temperature -55°C to +125°C -65°C to +125°C
Operating temperature (baseplate) -40°C to +100°C -55°C to +100°C
Power cycling burn-in 12 hours, 29 cycles 96 hours, 213 cycles
Temperature cycled with power off 12 cycles 12 cycles
17°C per minute rate of change -65°C to +100°C -65°C to +100°C
Test data supplied at these temperatures
[a]
-40°C, +80°C -55°C, +80°C
Warranty 2 years 2 years
Environmental compliance MIL-STD-810 MIL-STD-810
Derating NAVMAT P-4855-1A NAVMAT P-4855-1A
PRODUCT GRADE SPECIFICATIONS
CONVERTER SPECIFICATIONS (cont.)
[a]
Test data available for review or download from vicorpower.com
Parameter Qualification
Altitude MIL-STD-810D, Method 500.2, Procedure III, explosive decompression (40 K ft.).
MIL-STD-810D, Method 500.2, Procedure II, 40,000 ft., 1000 – 1500 ft./ min. to 70,000 ft., unit functioning
Explosive Atmosphere MIL-STD-810C, Method 511.1, Procedure I
Vibration
MIL-STD-810D, Method 514.3, Procedure I, category 6, helicopter, 20 g
MIL-STD-810D, Method 514.3 random: 10 – 300 Hz @ 0.02 g2/Hz, 2000 Hz @ 0.002 g2/ Hz, 3.9 total G rms
3 hrs/axis. Sine: 30 Hz @ 20 g, 60 Hz @ 10 g, 90 Hz @ 6.6 g, 120 Hz @ 5.0 g, 16.0 total G rms, 3 axes
MIL-STD-810E, Method 514.4, Table 514.4-VII, ±6 db/octave, 7.7 G rms, 1hr/axis
Shock
MIL-STD-810D, Method 516.3, Procedure I, functional shock, 40 g
MIL-STD-202F, Method 213B, 18 pulses, 60 g, 9 msec
MIL-STD-202F, Method 213B, 75 g, 11 ms saw tooth shock
MIL-STD-202F, Method 207A, 3 impacts / axis, 1, 3, 5 feet
Acceleration MIL-STD-810D, Method 513.3, Procedure II Operational test, 9 g for 1 minute along 3 mutually perpendicular axes
Humidity MIL-STD-810D, Method 507.2, Procedure I, cycle I, 240 hrs, 88% relative humidity
Solder Test MIL-STD-202, Method 208, 8 hr. aging
Fungus MIL-STD-810C, Method 508.1
Salt-Fog MIL-STD-810C, Method 509.1
ENVIRONMENTAL QUALIFICATIONS
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MECHANICAL DRAWING
5
6
7
8
9
4
3
2
1
0.080 Dia (2) places 0.080 Dia (2) places
Solder plate Matte tin over copper
over copper alloy alloy
0.040 (1,0) Dia (7) places 0.040 Dia (7) places
Matte tin over copper
Solder plate
over copper alloy alloy
.01
Aluminum Base
Product ID
this surface
Function
+In
-In
+Out
Trim
–Sense
–Out
Pin #
1
2
3
4
5
6
7
8
9
FULL R
+.030 (0,76)
-.000 (0)
(5,6) Min.
(7,6) Min. (44,4) Max.
(61,0)
(57,9)
(3,0)
(12,7)
1.90
.65
(16,5)
.49
(12,4)
.30±.015
(7,6)±(0,38)
.15
2.10
(53,4)
(33,0)
.40
(10,2)
.35± .015
(8,9)±(0,38)
1.40
(35,6)
1.00
(25,4)
.70
(17,8)
Gate In
Gate Out
+Sense
VI-J00
2.28
1.30
(3,8) .15
(3,8)
(48,3)
.22
.12
.50
.30
2.40
1.75
Standard RoHS
Standard RoHS
MI-J00
Note: For alternate package options refer to the mechanical drawing page of
vicorpower.com
Vicor Corp. Tel: 800-735-6200, 978-470-2900 Fax: 978-475-6715 MI-J00 DC-DC Converters 10 to 50 Watts Rev. 1.0 3/07
Set your site on VICOR at www.vicorpower.com
Vicor Corporation
25 Frontage Road
Andover, MA, USA 01810
Tel: 800-735-6200
Fax: 978-475-6715
email
Customer Service: custserv@vicorpower.com
Technical Support: apps@vicorpower.com
Vicor s comprehensive line of power solutions includes high density AC-DC
and DC-DC modules and accessory components, fully configurable AC-DC
and DC-DC power supplies, and complete custom power systems.
Information furnished by Vicor is believed to be accurate and reliable. However, no responsibility is assumed by Vicor for its
use. Vicor components are not designed to be used in applications, such as life support systems, wherein a failure or malfunc-
tion could result in injury or death. All sales are subject to Vicors Terms and Conditions of Sale, which are available upon
request.
Specifications are subject to change without notice.
Intellectual Property Notice
Vicor and its subsidiaries own Intellectual Property (including issued U.S. and Foreign Patents and pending patent
applications) relating to the products described in this data sheet. Interested parties should contact Vicor's Intellectual
Property Department.
Warranty
Vicor products are guaranteed for two years from date of shipment against defects in material or workmanship when in normal
use and service. This warranty does not extend to products subjected to misuse, accident, or improper application or maintenance.
Vicor shall not be liable for collateral or consequential damage. This warranty is extended to the original purchaser only.
EXCEPT FOR THE FOREGOING EXPRESS WARRANTY, VICOR MAKES NO WARRANTY, EXPRESS OR IMPLIED,
INCLUDING, BUT NOT LIMITED TO, THE WARRANTY OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR
PURPOSE.
Vicor will repair or replace defective products in accordance with its own best judgement. For service under this warranty, the
buyer must contact Vicor to obtain a Return Material Authorization (RMA) number and shipping instructions. Products returned
without prior authorization will be returned to the buyer. The buyer will pay all charges incurred in returning the product to the
factory. Vicor will pay all reshipment charges if the product was defective within the terms of this warranty.
Information published by Vicor has been carefully checked and is believed to be accurate; however, no responsibility is assumed
for inaccuracies. Vicor reserves the right to make changes to any products without further notice to improve reliability, function,
or design. Vicor does not assume any liability arising out of the application or use of any product or circuit; neither does it con-
vey any license under its patent rights nor the rights of others. Vicor general policy does not recommend the use of its compo-
nents in life support applications wherein a failure or malfunction may directly threaten life or injury. Per Vicor Terms and
Conditions of Sale, the user of Vicor components in life support applications assumes all risks of such use and indemnifies Vicor
against all damages.