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FIAM72EK3

DC-DC Regulated Power Supply Module,

器件类别:电源/电源管理    电源电路   

厂商名称:VICOR

厂商官网:http://www.vicorpower.com/

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器件参数
参数名称
属性值
厂商名称
VICOR
包装说明
,
Reach Compliance Code
compliant
模拟集成电路 - 其他类型
DC-DC REGULATED POWER SUPPLY MODULE
Base Number Matches
1
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FIAM™
72V Input
Actual size:
2.28 x 2.2 x 0.5in
[57,9 x 55,9 x 12,7mm]
Filter Input Attenuator Module
Features & Benefits
RoHS Compliant (with F or G pin style)
EMI filtering – EN50121-3-2
[a]
Transient protection – EN50155,
EN50121-3-2
Low-profile mounting options
500W output power
60950-1 compliance
Mini-size package
Inrush current limiting
Absolute Maximum Rating
Parameter
+IN to –IN
+OUT to –OUT
Mounting torque
Operating temperature
Storage temperature
Pin soldering temperature
Rating
110
252
110
5 [0.57]
–55 to +100
–65 to +125
500 [260]
750 [390]
Unit
V
DC
V
V
DC
in.lbs [N.m]
°C
°C
°F [°C]
°F [°C]
Notes
Continuous
20ms
Continuous
6 each, #4-40 or M3
M-Grade
M-Grade
<5sec; wave solder
<7sec; hand solder
Product Highlights
The FIAM072 is a DC front-end module
designed for rail applications providing
transient protection, inrush current limiting
and EMI filtering (EN50121-3-2) in a Mini-size
package. The FIAM enables designers using
Vicor 72V
IN
Mini, Micro or Maxi or VI/VE-200
and VI/VE-J00 (4 input) DC-DC converters
to meet the transient immunity and EMI
requirements required for the rail industry
and protect system hardware from inrush
current. The FIAM072 accepts an input voltage
of 43 – 110V
DC
and provide up to 500W of
output power and remote on/off control.
The FIAM072 is housed in an industry-standard
“half brick” module measuring
2.28 x 2.2 x 0.5in and depending upon model
selected, may be mounted onboard or inboard
for height-critical applications.
Thermal Resistance
Parameter
Baseplate to sink
flat, greased surface
thermal pad (P/N 20264)
Baseplate to ambient
Free Convection
1000LFM
Min
Typ
0.16
0.14
8.0
1.9
Max
Unit
°C/Watt
°C/Watt
°C/Watt
°C/Watt
Part Numbering
FIAM
Product
072
72V
IN
Nominal
C
Product Grade Temperatures (°C)
Grade
Operating
Storage
E
= – 10 to +100 – 20 to 125
C
= – 20 to +100 – 40 to 125
T
= – 40 to +100 – 40 to 125
H
= – 40 to +100 – 55 to 125
M
= – 55 to +100 – 65 to 125
1
=
2
=
S
=
N
=
F
=
G
=
K
=
1
Pin Style
Short Pin
Long Pin
Short ModuMate
Long ModuMate
Short RoHS
Long RoHS
Extra Long RoHS
[b]
1
Baseplate
1
= Slotted
2
= Threaded
3
= Thru hole
Compatible Products
Mini, Micro, Maxi 72V Input
DC-DC converters
VI / VE-200™, VI / VE-J00™ (“4” input)
[a]
[b]
Not intended for socket or Surfmate mounting
EMI performance is subject to a wide variety of
external influences such as PCB construction,
circuit layout etc. As such, external components
in addition to those listed herein may be required
in specific instances to gain full compliance to the
standards specified.
Note:
Product images may not highlight current product markings.
FIAM™
Page 1 of 6
Rev 1.9
06/2019
72V Input
Specifications
(Typical at T
BP
= 25°C, nominal line and 75% load, unless otherwise specified.)
Input Specifications
Parameter
Input voltage
Inrush limiting
Transient immunity
Min
43
Typ
72
Max
110
0.05
115
112.5
252
Unit
V
DC
A/µF
V
DC
V
DC
V
DC
Consistent with 100ms per NF F 01-510
Consistent with 1s per RIA 12
Consistent with 20ms per RIA 12
Notes
Continuous
Output Specifications
Parameter
Output power
Efficiency
Internal Voltage Drop
External capacitance
98
1.5
150
Min
Typ
Max
500
Unit
W
%
V
µF
Notes
Output power derates linearly below 50V
IN
to 400W @ 43V
IN
500W at 25° baseplate
Control Pin Specifications
Parameter
ON / OFF control
Enable (ON)
Disable (OFF)
Min
0.0
3.5
Typ
Max
1.0
5.0
Unit
V
DC
V
DC
Notes
Referenced to –V
OUT
100kΩ internal pull-up resistor
EMI
Standard
EN50121-3-2
Notes
150kHz to 500kHz - 99dBµV quasi-peak
500kHz to 30MHz - 93dBµV quasi-peak
EMI performance is subject to a wide variety of external influences such as PCB construction, circuit layout etc. As such, external components in addition to
those listed herein may be required in specific instances to gain full compliance to the standards specified.
Immunity
Parameter
EN50121-3-2 (Table 7.3 Surges)
Typ. Value
±2,000
±1,000
Units
V
DC
V
DC
Notes
Waveform – 1.2 / 50µs, 42Ω, 0.5µF, line to ground
Waveform – 1.2 / 50µs, 42Ω, 0.5µF, line to line
Performance Criteria B - no damage to the product but a temporary change in
the intended DC voltage is acceptable as long as it self-recovers without user
intervention.
5/50ns, 5kHz
Performance Criteria A - no damage to the product and no change to the
intended DC voltage level for a duration greater than 1.0μsec.
0.15 to 80MHz, 10V
RMS
, 80% AM, 1kHz
Performance Criteria A - no damage to the product and no change to the
intended DC voltage level greater than +/-5%.
EN50121-3-2 (Table 7.2 Fast Transients)
±2,000
V
DC
EN50121-3-2 (Table 7.1 RF Common Mode)
Safety Specifications
Parameter
Dielectric withstand (I/O to baseplate)
Min
Typ
1,000
1,414
Max
Unit
V
RMS
V
DC
Notes
FIAM™
Page 2 of 6
Rev 1.9
06/2019
72V Input
Specifications (Cont.)
(Typical at T
BP
= 25°C, nominal line and 75% load, unless otherwise specified.)
Agency Approvals
Safety Standards
UL60950-1, CSA60950-1, EN60950-1, IEC60950-1
EN60950-1
Markings
cTÜVus
CE
Notes
Pending
Low Voltage Directive
General Specifications
Parameter
Weight
Warranty
Min
Typ
3.1
[88]
Max
4
[113]
2
Unit
ounces
[grams]
years
Remarks
Module Environmental Qualification
Altitude
MIL-STD-810F, Method 500.4, Procedure I & II, 40,000ft. and 70,000ft. Operational.
Explosive Atmosphere
MIL-STD-810F, Method 511.4, Procedure I, Operational.
Vibration
EN 61373, Random Vibration: Category <0.3Kg, Freq range: 5-150Hz @ 5grms, 5hrs per axis.
MIL-STD-810F, Method 514.5, Procedure I, Category 14, Sine and Random vibration per Table 514.5C for Helicopter AH-6J Main Rotor with overall level of
5.6Grms for 4 hours per axis. MIL-STD-810F, Method 514.5C, General Minimum Integrity Curve per Figure 514.5C-17 with overall level of 7.7Grms for 1
hour per axis.
Shock
EN 61373, Shock: Long. / Trans. / Vert. Axis, peak acceleration: 5g / 2g / 1g, Duration: 50ms/ 20ms.
MIL-STD-810F, Method 516.5, Procedure I, Functional Shock, 40g. MIL-S-901D, Lightweight Hammer Shock, 3 impacts/axis, 1,3,5 ft.
MIL-STD-202F, Method 213B, 60g, 9ms half sine. MIL-STD-202F, Method 213B, 75g, 11ms Saw Tooth Shock.
Acceleration
MIL-STD-810F, Method 513.5, Procedure II, table 513.5-II, Operational, 2-7g, 6 directions.
Humidity
MIL-STD-810F, Method 507.4.
Solder Test
MIL-STD-202G, Method 208H, 8 hour aging.
Module Environmental Stress Screening
Parameter
Operating temperature
Storage temperature
Temperature cycling*
Ambient test @ 25°C
Power cycling burn-in
Functional and parametric ATE tests
Hi-Pot test
Visual inspection
Test data
H-Grade
–40 to +100°C
–55 to +125°C
12 cycles
–65 to +100°C
Yes
12 hours, 29 cycles
–40 and +100°C
Yes
Yes
M-Grade
–55 to +100°C
–65 to +125°C
12 cycles
–65 to +100°C
Yes
24 hours, 58 cycles
–55 and +100°C
Yes
Yes
vicorpower.com
vicorpower.com
* Temperature cycled with power off, 17°C per minute rate of change.
FIAM™
Page 3 of 6
Rev 1.9
06/2019
72V Input
Conducted Noise
Figure 1 —
Conducted noise (EN50121-3-2); FIAM72M21 and
model V72A24C400BL DC-DC converter
operating at 72V
DC
, 375W
Figure 2 —
Conducted noise (EN50121-3-2); FIAM72M21 and
model VE-243-EU + VI-B43-CU DC-DC converters
operating at 72V
DC
, 375W
Insertion Loss
Transient Immunity
Figure 3 —
Insertion loss curve
Figure 4 —
Transient immunity: FIAM output response to an
input transient
Inrush Limiting
Transient and Surge Protection
Note:
The FIAM is shown in the on state. To disable,
open the connection between ON/OFF and –OUT
.
4,700pF
F1
+IN
NC
0.01µF
+IN
FIAM72
+OUT
NC
NC
ON
OFF
–OUT
Input
EMI
GND
–IN
C1
0.2µF
PC
PR
–IN
Mini, Maxi, Micro
72V
DC
Input
DC-DC Converter or
VI / VE-200 or VI / VE-J00
4 input DC-DC Converter
+OUT
+S
SC
–S
–OUT
C1=100µF
F1=15A Bussmann ABC — 15 or equivalent UL listed fuse.
4,700pF
0.01µF
Figure 5 —
Inrush current. (150µF external capacitance)
FIAM™
Page 4 of 6
Figure 6 —
Typical connection diagram
Rev 1.9
06/2019
72V Input
Storage
Vicor products, when not installed in customer units, should be stored in ESD safe packaging in accordance with ANSI/ESD S20.20,
“Protection of Electrical and Electronic Parts, Assemblies and Equipment” and should be maintained in a temperature controlled factory/
warehouse environment not exposed to outside elements controlled between the temperature ranges of 15°C and 38°C. Humidity shall not
be condensing, no minimum humidity when stored in an ESD compliant package.
0.50
±0.02
12,7
±0,5
Mechanical Diagram
THROUGH HOLE DIA
Converter Pins
No. Function Label
2
3
4
(9X) PLATED
0.23
(REF)
5,8
0.300
±0.015
7,62
±0,38
2.20
55,9
1.76
44,7
0.01
style 2 & 3
baseplates only
(4X)***
0.12* 0.20**
3,1 5,1
0.49
12,4
2.000
50,80
0.10
2,5
0.10
X 45˚
2,5
CHAMFER
FULL R (6X)
0.130
3,30
1
1
2
+IN
No
Connection
–IN
–OUT
*
+OUT
+
NC
0.300
±0.015
7,62
±0,38
1
(ALL MARKINGS
THIS SURFACE)
2
3
4
1.900
48,26
0.35 (2X)
8,8
Pin C
L
9
8
7
6
5
3
4
5
6
7
9
Ground EMI/GND
ALUMINUM
BASEPLATE
2.28 1.30
57,9 33,0
0.65
16,5
(6X)
9
8
7
6
5
0.150 DIA,(2X)
3,81
0.080 DIA,(7X)
2,03
0.700 *
17,78
1.000 *
25,40
1.400 *
35,56
ON/OFF ON/OFF
NC
NC
+
FULL R (6X)
Slotted
(6X)
0.13
3,3
0.400
10,16
0.43
10,9
R
*
7
DENOTES TOL=
±
0.003
*
±0,08
0.700
17,78
1.000
25,40
1.400
35,56
0.54
(9X)
Pin Style 1&S
13,7
(Short Pin)
0.62
(9X)
Pin Style 2&N
15,7
(Long Pin)
0.71
(9X)
Pin Style K
18,0
(Extra Long Pin)
0.06
(3X)
1,5
2.20
55,9
(REF.)
Use a 4-40 Screw (6X)
Torque to:
5 in-lbs
0.57 N-m
ations
* VI/VE-200/J00 modules only
connect to respective pins.
Otherwise, do not connect.
Threaded
4-40 UNC-2B (6X)
Thru Hole
#30 Drill Thru (6X)
(0.1285)
* Style 1 baseplate only
** Style 2 & 3 baseplates
*** Reserved for Vicor accessories
Not for mounting
C Pin center line
L
L
2. DIMENSIONS AND VALUES IN BRACKETS ARE METRIC
3. MANUFACTURING CONTROL IS IN PLACE TO ENSURE THAT THE SPACING
BETWEEN THE MODULES LABEL SURFACE TO THE PRINTED CIRCUIT BOARD
OF THE APPLICATION RANGES FROM DIRECT CONTACT (ZERO), TO THE
MAXIMUM GAP AS CALCULATED FROM THE TOLERANCE STACK-UP
AND IS NOT SUBJECT NEGATIVE TOLERANCE ACCUMULATION
NOTES:
1. MATERIAL:
BASE:
6000 SERIES ALUMINUM
COVER: LCP, ALUMINUM 3003 H14
PINS:
RoHS PINS GOLD PLATE 30 MICRO INCH MIN; NON-RoHS
PINS:
TIN/LEAD 90/10 BRIGHT
SLOTTED BASEPLATE
2. DIMENSIONS AND VALUES IN BRACKETS ARE METRIC
3. MANUFACTURING CONTROL IS IN PLACE TO ENSURE THAT THE SPACING
BETWEEN THE MODULES LABEL SURFACE TO THE PRINTED CIRCUIT BOARD
OF THE APPLICATION RANGES FROM DIRECT CONTACT (ZERO), TO THE
MAXIMUM GAP AS CALCULATED FROM THE TOLERANCE STACK-UP
AND IS NOT SUBJECT NEGATIVE TOLERANCE ACCUMULATION
PCB Mounting Specifications
INBOARD
SOLDER
MOUNT
0.062
±0.010
1,57
±0,25
1.790**
45,47
SHORT PIN STYLE
(7X)
PLATED
THROUGH HOLE
DIA
0.158
4,01
3
4
(2X)
0.094
±0.003
2,39
±0,08
0.164
±0.003
4,16
±0,08
ONBOARD
SOLDER
MOUNT
LONG PIN STYLE
0.094
±0.003
2,39
±0,08
0.164
±0.003
4,16
±0,08
INBOARD
ALL MARKINGS
SOCKET
THIS SURFACE
MOUNT
SOCKET
0.183
±0.003
4,65
±0,08
0.266
±0.003
6,76
±0,08
ONBOARD
SOCKET
SURFACE MOUNT
SURFACE MOUNT
N/A
N/A
PCB THICKNESS
R
0.06
(4X)
1,5
ALUMINUM
BASEPLATE
PINS STYLES
SOLDER:TIN / LEAD PLATED
MODUMATE: GOLD PLATED COPPER
RoHS: GOLD PLATED COPPER
1
2
1.900*
48,26
48.26
1.575**
40,00
9
8
7
6
5
0.400*
10,16
0.700*
17,78
1.000*
25,40
1.400*
35,56
* DENOTES TOL =
** PCB WINDOW
±0.003
±0,08
0 43
0.45
0.45
11,5
0.53
13,5
Consult Vicor Application Note:
0.46
Soldering methods and procedures for 1st
0.56
11,7
14,2
and 2nd Generation modules.
SOCKETS
0.080" DIA. PINS (7X)
P/N 13632 (100 pcs.)
0.150" DIA. PINS (2X)
P/N 13633 (100 pcs.)
P/N 16019 (9 pc. Kit)
0.195
4,95
SOCKET HEADERS
(SURFACE MOUNT)
KIT INCLUDES
INPUT & OUTPUT
P/N 16021
FIAM™
Page 5 of 6
Rev 1.9
06/2019
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参数对比
与FIAM72EK3相近的元器件有:FIAM72EK1、FIAM72MS3、FIAM72C12。描述及对比如下:
型号 FIAM72EK3 FIAM72EK1 FIAM72MS3 FIAM72C12
描述 DC-DC Regulated Power Supply Module, DC-DC Regulated Power Supply Module, DC-DC Regulated Power Supply Module, PACKAGE-9 DC-DC Regulated Power Supply Module, PACKAGE-9
Reach Compliance Code compliant compliant compliant compliant
模拟集成电路 - 其他类型 DC-DC REGULATED POWER SUPPLY MODULE DC-DC REGULATED POWER SUPPLY MODULE DC-DC REGULATED POWER SUPPLY MODULE DC-DC REGULATED POWER SUPPLY MODULE
厂商名称 VICOR VICOR VICOR -
ECCN代码 - EAR99 EAR99 EAR99
Date Of Intro - 2019-06-24 2019-06-24 2019-06-24
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