HV MFM™
Filter
MFM1714xD2KD2F4yzz
High-Voltage MIL-COTS Input Filter Module
Features & Benefits
Product Description
• 270V nominal input
The MFM DCM™ Filter is a DC front-end module that provides
EMI filtering and transient protection. The MFM DCM Filter
enables designers using Vicor 270V nominal input voltage VIA™
or ChiP™ [a] modules to meet conducted emission/conducted
susceptibility per MIL-STD-461E/F/G; and input transients per
MIL-STD-704F. The MFM DCM Filter accepts an input voltage
of 160 – 420VDC (270V nominal input ) and delivers output
power up to 640W.
• 99% efficiency
• EMI filtering
MIL-STD-461E/F/G, selected CE and CS tests
• Input transient protection
MIL-STD-704F
normal and abnormal transients
• Envronmental qualification
MIL-STD-810
MIL-STD-202
• Low M-Grade temperature rating,
providing operation down to –55°C
• Output power up to 640W
• Available in chassis and PCB mount
• Small size
1.76 x 1.40 x 0.36in
[44.6 x 35.5 x 9.2mm]
Size:
1.76 x 1.40 x 0.36in
[44.6 x 35.5 x 9.2mm]
Typical Applications
• Defense
• Aerospace
Compatible Products
• High input voltage DCM3714 VIA™
[a]
• High input voltage ChiP [a] DCM
Additional components are required for EMI filtering and transient
suppression, when used with ChiP™ package modules.
Part Ordering Information
Part Number
MFM1714BD2KD2F4M04
MFM1714BD2KD2F4M08
MFM1714VD2KD2F4M00
HV MFM™ Filter
Page 1 of 16
Package Type
Product Grade
Option Field
04 = Short Pin
B = Board VIA
M = –55 to 100°C
V = Chassis VIA
08 = Long Pin
00 = Chassis
Rev 1.5
03/2020
MFM1714xD2KD2F4yzz
Typical Application
[b]
MFM
F
160 – 420V
Source
+IN
RIN_D
DCM3714 VIA™
+IN
+OUT
VDDE
EN
TR
–SENSE
+SENSE
EMI GND
CIN
–IN
+OUT
–OUT
–IN
COUT-EXT
L
O
A
D
–OUT
earth ground
Alternate configuraon
CIN_1
DCM3714 VIA™ with a MFM input filter, to meet the MIL-STD-461E/F/G requirements
Parts List for Typical Application
F
Littelfuse 0487 Series rated 8A
Cooper/Bussman PC-Tron Series, fast acting fuses rated 5A
RIN_D
Vishay Dale CRCW25123R30FKEG, 3.3Ω, 1W
CIN [b]
TDK Corporation C5750X6S2W225K250KA, 5 x 2.2µF (11µF)
Parts List for Alternate Configuration
CIN_1 [c]
Rubycon 450QXW100MEFC16X35, 100µF, 450V
[b]
A minimum load of 10% is required to meet the conducted emissions CE102 for input voltages in the range of 270 – 420VDC. For EMI test report, contact
Vicor Applications.
[c] No minimum load is required to meet CE102 with C
IN_1 = 100µF.
HV MFM™ Filter
Page 2 of 16
Rev 1.5
03/2020
MFM1714xD2KD2F4yzz
Pin Configuration
+OUT
+IN
EMI
GND
–IN
–OUT
MFM1714 Filter – Chassis (Lug) Mount – Terminals Up
–IN
–OUT
EMI
GND
+IN
+OUT
MFM1714 Filter – PCB Mount – Pins Down
Note: These pin drawings are not to scale.
Pin Descriptions
Signal Name
Type
+IN
INPUT POWER
Positive input power terminal
–IN
INPUT POWER
RETURN
Negative input power terminal
EMI GND
EMI GROUND
EMI ground terminal
+OUT
OUTPUT POWER
Positive output power terminal
–OUT
OUTPUT POWER
RETURN
Negative output power terminal
HV MFM™ Filter
Page 3 of 16
Function
Rev 1.5
03/2020
MFM1714xD2KD2F4yzz
Absolute Maximum Ratings
The absolute maximum ratings below are stress ratings only. Operation at or beyond these maximum ratings can cause permanent damage to the device.
Electrical specifications do not apply when operating beyond rated operating conditions.
Parameter
Comments
Min
Max
Unit
Input Voltage (+IN to –IN)
Continuous
–0.5
460.0
V
Output Voltage (+OUT to –OUT)
Continuous
–0.5
460.0
V
2121
VDC
Dielectric Withstand
(Input/Output to EMI GND/Case)
Storage Temperature
M-Grade
–65
125
°C
Internal Operating Temperature
M-Grade
–55
125
°C
4
A
4 [0.45]
in.lbs [N.m]
Average Output Current
Input/Output Pin Torque and
Mounting Torque
Electrical Specifications
Specifications apply over all line and load conditions, unless otherwise noted; boldface specifications apply over the temperature range of
–55°C ≤ TCASE ≤100°C (M-Grade); all other specifications are at TCASE = 25°C unless otherwise noted.
Attribute
Symbol
Conditions / Notes
Min
Typ
Max
Unit
160
270
420
V
4
A
Continuous, over all line conditions
640
W
@270V, 2.37A, 100°C baseplate
0.80
VDC
99
%
Power Input / Output Specification
Input Voltage Range
Maximum Output Current [d]
Rated Output Power [d]
VIN
IOUT_MAX
POUT
Internal Voltage Drop
Efficiency
[d]
η
Continuous operation
Continuous, at VOUT = 160V
(IOUT = POUT/VIN)
Full load, low line, high temperature
99.4
99.6
Full load, nominal line, high temperature
99.7
99.8
%
Full load, high line, high temperature
99.8
99.9
%
One MFM for each DCM™ even if the total power of the DCM is below POUT maximum value.
HV MFM™ Filter
Page 4 of 16
Rev 1.5
03/2020
MFM1714xD2KD2F4yzz
EMI/EMC
Standard
Test Procedure
Notes
MIL-STD-461E/F/G
Conducted Emmisions
Conducted Susceptibility
CE101
Figure CE101-4, Navy ASW & Army Aircraft, Curve #1 (above 28VDC)
CE102
Figure CE102-1, Basic curve + 10dB limit relaxation for all applications
CS101
Figure CS101, Curve #1, for all applications (above 28VDC)
MIL-HDBK-704-7
MIL-STD-704F normal transients
From table HDC105-III: overvoltage 330VDC for 20ms duration,
undervoltage 200VDC for 50ms duration
MIL-STD-704F abnormal transients
From table HDC302-III: overvoltage 350VDC for 50ms duration,
undervoltage 180VDC for 50ms duration
Transient Immunity
HV MFM™ Filter
Page 5 of 16
Rev 1.5
03/2020
MFM1714xD2KD2F4yzz
Typical Characteristics
1
Attenuation (dB)
-20
2
-Common Mode
-Differential Mode
-40
-60
-80
f/Hz
Atten./dB
Cursor 1 100.000k -40.030
Cursor 2 1.000M -76.273
C2-C1 900.000k -36.242
-100
104
105
106
107
Frequency (Hz)
Output Impedance
Magnitude (dBΩ)
Figure 1 — Attenuation (dB) vs. frequency (Hz), input leads are terminated with LISN impedances 25Ω for common mode,
100Ω for differential mode
1
40
2
20
0
-20
f/Hz Mag./dB
Cursor 1 39.587k 37.956
Cursor 2 1.686M -42.183
C2-C1 1.646M -80.139
-40
102
103
104
105
106
107
Frequency (Hz)
Figure 2 — Output Impedance (dBΩ) vs. frequency (Hz) plot looking back into the output terminals of the MFM with shorted
input terminals
HV MFM™ Filter
Page 6 of 16
Rev 1.5
03/2020
MFM1714xD2KD2F4yzz
Typical Conducted Emissions
CE101 peak scans with MFM1714VD2KD2F4M00 and DCM3714VD2K26E0M01 or DCM3714VD2K31E0T01, in either condition:
–OUT connected to GND or –OUT floating.
50Ω Termination on
Signal Output Port
(One for Each LISN)
DCM3714 VIA™
DC +
Power
Supply –
LISN
Screen
Room/
Filters
+IN
CIN
+OUT
+IN
+OUT
–IN
–OUT
HV MFM
–IN
LISN
Load
COUT
–OUT
EMI GND
Current
Probe
EMI
Receiver
Figure 3 — A typical test setup for conducted emissions CE101 is shown above. A current probe is used to measure and plot the
variations in the current through the RED and BLACK leads at various load conditions.
ResBW
37.71 dB A
INPUT 2
140
Det
Marker 1 [T1]
Att 10 dB
Meas T
626.00000000 Hz
100 Hz
1 kHz
MA Trd
100 Hz
20 ms Unit
1 [T1]
130
CE101RED
100 Hz
20 ms Unit
1 [T1]
CE101RED
dB A
10 dB
kHzA
58.43
626.00000000 Hz
SGL
110 CE101-41
1MA
100
90
80
80
70
70
60
60
50
50
1
40
1MA
100
90
1
40
30
30
20
20
10
10
19.Oct 2018 14:36
30 Hz
0
10 kHz
Title:
Peak
Comment B: ""
Date:
19.OCT.2018
Att 10 dB
14:36:48
Marker 1 [T1]
INPUT 2
140
89.24 dB A
30.00000000 Hz
100 Hz
Det
ResBW
Meas T
1 kHz
130
19.Oct 2018 14:15
30 Hz
10 kHz
Title:
Peak
Comment B: ""
Date:
19.OCT.2018
Figure 4 — Peak scan for the RED lead with CIN = 11µF,
RIN_D = 3.3Ω COUT = 2200µF, 0% load, VIN = 160V
MA Trd
100 Hz
20 ms Unit
1 [T1]
14:15:19
Figure 5 — Peak scan for the RED lead with CIN = 11µF,
RIN_D = 3.3Ω COUT = 2200µF, 100% load, VIN = 160V
CE101BLK
Att 10 dB
dB A
Marker 1 [T1]
INPUT 2
140
10 dB
kHzA
89.24
30.00000000 Hz
87.35 dB A
30.00000000 Hz
100 Hz
Det
ResBW
Meas T
1 kHz
130
SGL
120
MA Trd
100 Hz
20 ms Unit
1 [T1]
CE101BLK
dB A
10 dB
kHzA
87.35
30.00000000 Hz
SGL
120
110 CE101-41
110 CE101-41
1MA
100
1MA
100
1
90
901
80
80
70
70
60
60
50
50
40
40
30
30
20
20
10
0
1 kHz
MA Trd
100 Hz
120
110 CE101-41
0
Meas T
626.00000000 Hz
130
SGL
120
ResBW
58.43 dB A
INPUT 2
140
10 dB
kHzA
37.71
626.00000000 Hz
Det
Marker 1 [T1]
Att 10 dB
dB A
10
19.Oct 2018 15:47
30 Hz
Title:
Peak
Comment B: ""
Date:
19.OCT.2018
19.Oct 2018 15:54
30 Hz
Title:
Peak
Comment B: ""
Date:
19.OCT.2018
15:47:35
Figure 6 — Peak scan for the BLACK lead with CIN = 11µF,
RIN_D = 3.3Ω COUT = 2200µF, 0% load, VIN = 160V
HV MFM™ Filter
Page 7 of 16
0
10 kHz
10 kHz
15:54:30
Figure 7 — Peak scan for the BLACK lead with CIN = 11µF,
RIN_D = 3.3Ω COUT = 2200µF, 100% load, VIN = 160V
Rev 1.5
03/2020
MFM1714xD2KD2F4yzz
Typical Conducted Emissions (Cont.)
CE101 peak scans with MFM1714VD2KD2F4M00 and DCM3714VD2K26E0M01 or DCM3714VD2K31E0T01, in either condition:
–OUT connected to GND or –OUT floating.
Det
Att 10 dB
ResBW
INPUT 2
140
Meas T
100 Hz
MA Trd
CE101
Marker 1 [T1]
100 Hz
20 ms Unit
1 kHz
140
10 kHz
100 Hz
Det
MA Trd
ResBW
20 ms Unit
1 kHz
110 CE101-41
dB A
10 kHz
78.74 dB A
1 [T1]
1.36000000 kHz
2 [T1]
120
SGL
CE101
100 Hz
Meas T
130
120
61.33 dB A
5.00000000 kHz SGL
110 CE101-41
1MA
100
1MA
100
90
90
80
80
70
70
60
60
50
50
40
40
30
30
20
20
10
1
2
10
18.Nov 2016 14:43
30 Hz
Date:
0
10 kHz
18.NOV.2016
14:43:53
Det
Att 10 dB
ResBW
INPUT 2
140
Meas T
100 Hz
18.Nov 2016 14:39
30 Hz
Date:
Figure 8 — Peak scan for the RED lead with CIN_1 = 100µF,
COUT = 2000µF, 0% load
1 kHz
MA Trd
Att 10 dB
81.16 dB A
1.84000000 kHz
INPUT 2
dB A
140
10 kHz
120
14:39:33
Marker 1 [T1]
CE101
100 Hz
20 ms Unit
10 kHz
18.NOV.2016
Figure 9 — Peak scan for the RED lead with CIN_1 = 100µF,
COUT = 2000µF, 100% load
100 Hz
Det
ResBW
Meas T
1 kHz
MA Trd
20 ms Unit
1 [T1]
dB A
10 kHz
81.16 dB A
1.84000000 kHz
2 [T1]
120
SGL
CE101
100 Hz
130
130
62.40 dB A
5.00000000 kHz SGL
110 CE101-41
110 CE101-41
1MA
100
1MA
100
90
90
1
80
80
70
70
2
60
60
50
50
40
40
30
30
20
20
10
10
0
1.36000000 kHz
INPUT 2
130
0
78.74 dB A
Att 10 dB
dB A
0
18.Nov 2016 14:21
30 Hz
Date:
10 kHz
18.NOV.2016
HV MFM™ Filter
Page 8 of 16
Date:
14:21:58
Figure 10 — Peak scan for the BLACK lead with CIN_1 = 100µF,
COUT = 2000µF, 0% load
18.Nov 2016 14:25
30 Hz
10 kHz
18.NOV.2016
14:25:55
Figure 11 — Peak scan for the BLACK lead with CIN_1 = 100µF,
COUT = 2000µF, 100% load
Rev 1.5
03/2020
MFM1714xD2KD2F4yzz
Typical Conducted Emissions (Cont.)
CE102 peak scans with MFM1714VD2KD2F4M00 and DCM3714VD2K26E0M01 or DCM3714VD2K31E0T01, –OUT connected to GND, –OUT is floating.
50Ω Termination
DCM3714 VIA™
DC +
Power
Supply –
LISN
Screen
Room/
Filters
+IN
CIN
+OUT
+IN
+OUT
-IN
-OUT
HV MFM
–IN
LISN
COUT
–OUT
Load
EMI GND
20dB
Attenuator
EMI
Reciever
Figure 12 — A typical test setup for conducted emissions CE102 is shown above. A 50Ω termination is used for LISN and voltage across
the RED and BLACK leads are measured at various load conditions.
Det
Att 10 dB
ResBW
INPUT 2
120
Meas T
100 kHz
MA Trd
10 kHz
20 ms Unit
1 MHz
CE102RED
Meas T
100 kHz
MA Trd
10 kHz
20 ms Unit
1 MHz
CE102BLK
dB V
10 MHz
110
SGL
100 CE102270
90
SGL
100 CE102270
90
1MA
80
80
70
70
60
60
50
50
40
40
30
30
20
20
10
1MA
10
19.Oct 2018 10:19
10 kHz
0
10 MHz
Title:
Peak
Comment B: ""
Date:
19.OCT.2018
10:19:10
Det
Att 10 dB
ResBW
INPUT 2
120
Meas T
100 kHz
19.Oct 2018 10:21
10 kHz
10 MHz
Title:
Peak
Comment B: ""
Date:
19.OCT.2018
Figure 13 — Peak scan for the RED lead with CIN = 11µF,
RIN_D = 3.3Ω COUT = 2200µF, 0% load, VIN = 160V
MA Trd
10 kHz
20 ms Unit
1 MHz
10:21:40
Figure 14 — Peak scan for the RED lead with CIN = 11µF,
RIN_D = 3.3Ω COUT = 2200µF, 100% load, VIN = 160V
CE102RED
Det
Att 10 dB
dB V
ResBW
INPUT 2
120
10 MHz
110
Meas T
100 kHz
MA Trd
10 kHz
20 ms Unit
1 MHz
CE102BLK
dB V
10 MHz
110
SGL
100 CE102270
90
SGL
100 CE102270
90
1MA
80
80
70
70
60
60
50
50
40
40
30
30
20
20
10
0
ResBW
INPUT 2
120
10 MHz
110
0
Det
Att 10 dB
dB V
1MA
10
19.Oct 2018 10:13
10 kHz
Title:
Peak
Comment B: ""
Date:
19.OCT.2018
0
10 MHz
10:13:39
Figure 15 — Peak scan for the BLACK lead with CIN = 11µF,
RIN_D = 3.3Ω COUT = 2200µF, 0% load, VIN = 160V
19.Oct 2018 10:25
10 kHz
Title:
Peak
Comment B: ""
Date:
19.OCT.2018
10 MHz
10:25:27
Figure 16 — Peak scan for the BLACK lead with CIN = 11µF,
RIN_D = 3.3Ω COUT = 2200µF, 100% load, VIN = 160V
Note: A minimum load of 10% is required to meet the conducted emissions CE102 for input voltages in the range of 270 – 420VDC. For EMI test report,
contact Vicor Applications.
HV MFM™ Filter
Page 9 of 16
Rev 1.5
03/2020
MFM1714xD2KD2F4yzz
Typical Conducted Emissions (Cont.)
CE102 peak scans with MFM1714VD2KD2F4M00 and DCM3714VD2K26E0M01 or DCM3714VD2K31E0T01, –OUT connected to GND, –OUT is floating.
Marker 1 [T1]
68.32 dB V
Att 10 dB
133.20000000 kHz
INPUT 2
120
Det
ResBW
Meas T
100 kHz
MA Trd
Marker 1 [T1]
CE102RED
Att 10 dB
10 kHz
20 ms Unit
1 MHz
1 [T1]
dB V
120
10 MHz
68.32 dB V
SGL
100 CE102270
MA Trd
ResBW
100 kHz
20 ms Unit
1 MHz
1 [T1]
dB V
10 MHz
47.38 dB V
718.00000000 kHz
2 [T1]
43.38 dB V
2.87000000 MHz SGL
100 CE102270
3 [T1]
39.64 dB V
5.02200000 MHz
1MA
1MA
80
80
70
1
70
60
60
1
50
50
2
40
40
3
30
30
20
20
10
10
0
18.Oct 2016 14:43
10 kHz
Date:
10 MHz
18.OCT.2016
14:43:36
Marker 1 [T1]
69.34 dB V
Att 10 dB
INPUT 2
120
132.80000000 kHz
100 kHz
10 MHz
Det
ResBW
Meas T
MA Trd
CE102BLK
14:51:53
Marker 1 [T1]
10 kHz
Att 10 dB
20 ms Unit
1 MHz
1 [T1]
18.OCT.2016
Figure 18 — Peak scan for the RED lead with CIN_1 = 100µF,
COUT = 2000µF, 100% load
dB V
INPUT 2
120
10 MHz
69.34 dB V
132.80000000 kHz
110
18.Oct 2016 14:51
10 kHz
Date:
Figure 17 — Peak scan for the RED lead with CIN_1 = 100µF,
COUT = 2000µF, 0% load
90
47.71 dB V
718.00000000 kHz
Det
MA Trd
ResBW
Meas T
100 kHz
dB V
10 MHz
47.71 dB V
2 [T1]
42.53 dB V
2.86600000 MHz SGL
3 [T1]
39.52 dB V
5.01800000 MHz
90
80
20 ms Unit
718.00000000 kHz
100 CE102270
1MA
CE102BLK
10 kHz
1 MHz
1 [T1]
110
SGL
100 CE102270
1MA
80
1
70
70
60
60
50
50
40
40
30
30
20
20
1
2
10
0
CE102RED
10 kHz
Meas T
90
90
0
Det
110
133.20000000 kHz
110
47.38 dB V
718.00000000 kHz
INPUT 2
3
10
18.Oct 2016 14:45
10 kHz
Date:
0
10 MHz
18.OCT.2016
14:45:22
Figure 19 — Peak scan for the BLACK lead with CIN_1 = 100µF,
COUT = 2000µF, 0% load
18.Oct 2016 14:54
10 kHz
Date:
10 MHz
18.OCT.2016
14:54:17
Figure 20 — Peak scan for the BLACK lead with CIN_1 = 100µF,
COUT = 2000µF, 100% load
Note: No minimum load is required to meet CE102 with CIN_1 = 100µF.
HV MFM™ Filter
Rev 1.5
Page 10 of 16 03/2020
MFM1714xD2KD2F4yzz
General Characteristics
Specifications apply over all line and load conditions, TINT = 25°C, unless otherwise noted; boldface specifications apply over the temperature range of the
specified product grade.
Attribute
Symbol
Conditions / Notes
Min
Typ
Max
Unit
Mechanical
Length
L
44.6 [1.76]
mm [in]
Width
W
35.5 [1.39]
mm [in]
Height
H
9.22 [0.36]
mm [in]
Volume
Vol
14.5 [0.88]
cm3 [in3]
Mass (Weight)
M
30 [1.06]
g [oz]
Pin Material
C145 copper, 1/2 hard
Underplate
Low-stress ductile Nickel
50
100
Palladium
0.8
6
Soft Gold
0.12
2
Pin Finish
Flatness
00@
HV MFM™ Filter
Rev 1.5
Page 13 of 16 03/2020
MFM1714xD2KD2F4yzz
Board-Mount Outline Drawing
1.76
44.60
.88
22.30
.11
2.892
1.17
29.720
1.40
35.50
TOP VIEW
(COMPONENT SIDE)
.37±.015
9.30±.381
SEATING PLANE
.080
2.032
(5) PL.
DIM 'L'±.015
(5) PL.
DIM 'L'
SHORT
LONG
1.396±.020
35.458±.508
.698±.020
17.729±.508
+IN
.474±.020
12.029±.508
(2) PL.
+OUT
EMI
GND
.947±.020
24.058±.508
-IN
.111±.020
2.825±.508
(2) PL.
-OUT
.15
3.86
(2) PL.
BOTTOM VIEW
1.396±.003
35.452±.076
.698±.003
17.726±.076
-IN
-OUT
EMI
GND
.474±.003
12.029±.076
(2) PL.
.947±.003
24.058±.076
+IN
+OUT
.120±.003
3.048±.076
PLATED THRU
.030 [.762]
ANNULAR RING
(5) PL.
.172±.003
4.369±.076
PLATED THRU
.064 [1.626]
ANNULAR RING
(2) PL.
.111±.003
2.831±.076
RECOMMENDED HOLE PATTERN
(COMPONENT SIDE)
81/(6627+(5:,6(63(&,),('',0(16,216$5(,1&+>00@
HV MFM™ Filter
Rev 1.5
Page 14 of 16 03/2020
1.170±.003
29.720±.076
.120 [3.026]
.199 [5.042]
MFM1714xD2KD2F4yzz
Revision History
Revision
Date
Description
1.0
02/13/17
Initial release
n/a
1.1
06/15/17
Updated product image
7, 8
1.2
07/26/17
Added fuse recommendation for typical application & remvoed MOV
Updated internal operting temperature
Updated note on CE scans for –OUT floating
Updated MTBF rating
2
4
7, 8
9
1.3
07/24/18
Updated mechanical drawings
11, 12
1.4
10/26/18
Updated typical application
Updated typical conducted emissions
2
7 – 10
1.5
03/31/20
Updated MIL-STD-461 to the latest revision
1, 2, 5
Note: pages added in Rev 1.4
HV MFM™ Filter
Rev 1.5
Page 15 of 16 03/2020
Page Number(s)
MFM1714xD2KD2F4yzz
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
makes no representations or warranties with respect to the accuracy or completeness of the contents of this publication. Vicor reserves
the right to make changes to any products, specifications, and product descriptions at any time without notice. Information published by
Vicor has been checked and is believed to be accurate at the time it was printed; however, Vicor assumes no responsibility for inaccuracies.
Testing and other quality controls are used to the extent Vicor deems necessary to support Vicor’s product warranty. Except where
mandated by government requirements, testing of all parameters of each product is not necessarily performed.
Specifications are subject to change without notice.
Visit http://www.vicorpower.com/mil-cots-dc-dc/mfm-filter-module for the latest product information.
Vicor’s Standard Terms and Conditions and Product Warranty
All sales are subject to Vicor’s Standard Terms and Conditions of Sale, and Product Warranty which are available on Vicor’s webpage
(http://www.vicorpower.com/termsconditionswarranty) or upon request.
Life Support Policy
VICOR’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE
EXPRESS PRIOR WRITTEN APPROVAL OF THE CHIEF EXECUTIVE OFFICER AND GENERAL COUNSEL OF VICOR CORPORATION. As used
herein, life support devices or systems are devices which (a) are intended for surgical implant into the body, or (b) support or sustain life and
whose failure to perform when properly used in accordance with instructions for use provided in the labeling can be reasonably expected to
result in a significant injury to the user. A critical component is any component in a life support device or system whose failure to perform
can be reasonably expected to cause the failure of the life support device or system or to affect its safety or effectiveness. Per Vicor Terms
and Conditions of Sale, the user of Vicor products and components in life support applications assumes all risks of such use and indemnifies
Vicor against all liability and damages.
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. No license, whether express, implied, or arising by estoppel or otherwise, to any intellectual property
rights is granted by this document. Interested parties should contact Vicor’s Intellectual Property Department.
The products described on this data sheet are protected by the following U.S. Patents Numbers:
Patents Pending.
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Vicor Corporation
25 Frontage Road
Andover, MA, USA 01810
Tel: 800-735-6200
Fax: 978-475-6715
www.vicorpower.com
email
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All other trademarks, product names, logos and brands are property of their respective owners.
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