ETC DVMN28

DVMN28
HIGH RELIABILITY
EMI FILTER AND INPUT ATTENUATOR
DESCRIPTION
FEATURES
The DVMN28 is a combined EMI filter and voltage
spike protection module that is operable over a wide
temperature range (-55 °C to +100 °C) with no power
derating. The DVMN28 EMI filter works with
VPT/Delta’s DV200 series DC-DC converters to
meet the surge requirements of MIL-STD-704A, B,
C, and D with up to 250 watts of output power.
These devices also reduce the reflected noise of the
DC-DC converters to meet MIL-STD-461C CE03 and
MIL-STD-461D CE102 limits. The DVMN28 filter
also protects the DC-DC converters against the
voltage spikes specified in MIL-STD-461C CS06 and
conducted susceptibility in MIL-STD-461C CS01 and
CS02.
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These filters are designed and manufactured in a
facility qualified to ISO9001 and certified to MIL-PRF38534 and MIL-STD-883.
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High Reliability
250 Watt Output Power
50 dB Minimum Attenuation at 500 kHz
Soft Start
Under Voltage Lockout
Clamps Output Voltage to 58 Volts Maximum
Standard Quarter-Brick Size
Custom Versions Available
Additional Environmental Screening Available
Meets MIL-STD-704A, B, C, and D Surge Limits
Designed to meet MIL-STD-461C CE03 and
MIL-STD-461D CE102 and DEF STAN 59-41
and 61-5 EMC Requirements
Protects Against Conducted Susceptibility
Specified in MIL-STD-461C, CS01 and CS02
and Against Voltage Spikes Specified in MILSTD-461C CS06
Figure 1 – DVMN28 EMI Filter
(Not To Scale)
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11314 4th Avenue
West, Suite 206
Everett, WA 98204
http://www.vpt-inc.com
Sales Information:
Phone: (425) 353-3010
Fax: (425) 353-4030
E-mail: [email protected]
1
DVMN28
SPECIFICATIONS (TCASE = -55°C to +100°C, VIN = +28V ± 5%, Full Load, Unless Otherwise Specified)
ABSOLUTE MAXIMUM RATINGS
Input Voltage (Continuous)
Input Voltage (Transient, up to 10µs)
Output Current1
Weight (Maximum)
Parameter
50 VDC
600 Volts
14 Amps
75 Grams
Power Dissipation (Continuous)
Storage Temperature
Lead Solder Temperature (10 seconds)
12 Watts
-65°C to +135°C
300°C
DVMN28
Conditions
Units
Min
Typ
Max
With load
16
28
50
V
5 ms, RS = 0.5 Ω
-40
-
70
V
STATIC
Continuous
INPUT
2
Voltage
Transient
Transient
3
Transient
Current
OUTPUT
Voltage
-
-
110
V
-
-
600
V
No Load
-
-
12
mA
Inhibited
-
-
2.0
mA
Continuous
1,4
Power
Current
50 ms, RS = 0.5 Ω
10 µs, RS = 50 Ω
VOUT = VIN – (IIN x RDC)
Continuous
1,4
Continuous
250
W
14
A
16
V
Open Circuit
-
Inhibited
0
-
0.8
V
Inhibit Pin Voltage = 0 to 0.8 V
-
-
-300
µA
UNDERVOLTAGE
LOCKOUT
7
-
14
V
OUTPUT CLAMP
VOLTAGE
51
-
55
V
INHIBIT PIN VOLTAGE
2
INHIBIT PIN CURRENT
2
14
V
DC RESISTANCE
Continuous
60
mΩ
POWER DISSIPATION
Continuous
-
-
12
W
NOISE REJECTION
f = 500 kHz
50
60
-
dB
Pin to Case
-
85
-
nF
100
-
-
MΩ
-
2052
-
kHrs
CAPACITANCE
2
ISOLATION
Any Pin to Case, 500 VDC
MTBF (MIL-HDBK-217F)
GB @ TC = 55°C
Notes:
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1. Derate linearly to 0 at 110°C.
2. Verified by qualification testing.
3. Output inhibit used with load converters as in Figure 3.
4. Maximum rating applies at any voltage.
2
DVMN28
BLOCK DIAGRAM
PIN 1
PROTECTION
SWITCH
28V IN
PIN 6
28V OUT
PIN 2
INHIBIT
CONTROL
CIRCUIT
CASE
PIN 3
PIN 4
IN COM
OUT COM
PIN 5
INH OUT
Figure 2
CONNECTION DIAGRAM
DV200-2800S DC-DC CONVERTER
5
DVMN28 EMI FILTER
1
28 Vdc
+
-
2
2
28V IN
28V OUT
INH
INH OUT
3
+V OUT
4
+S
INH/SYNC IN
5
4
IN COM OUT COM
28V IN
6
7
2200pF
LO AD
-S
1
IN COM OUT COM
CASE
9
10
CASE
CASE GND
Figure 3 – DVMN28 EMI Filter Hookup with Single Converter
(Diode on pin 5 of DVMN28 is needed when synchronization function of the converter is used.)
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3
DVMN28
INHIBIT DRIVE CONNECTION DIAGRAM
28V IN 1
100K
6.8V
OPTOISOLATOR
INH
2
100K
OPTIONAL
CAPACITOR
IN COM
14V
3
Figure 4 – Isolated Inhibit Drive
(Shown with optional capacitor for turn-on delay)
EMI MEASUREMENT METHODS CONNECTION DIAGRAMS
TO 50 OHM INPUT
+V IN
+V OUT
10uF
CURRENT
TRANSFORMER
TO D.U.T.
10uF
-V IN
-V OUT
Figure 5 – MIL-STD-461C Measurement Method (Feedthrough Capacitor)
+V IN
50 uH
+V OUT
TO 50 OHM INPUT
-V IN
50 uH
-V OUT
Figure 6 – MIL-STD-461D Measurement Method (LISN)
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DVMN28
EMI PERFORMANCE CURVES
(TCASE = 25°C, VIN = +28V ± 5%, Full Load, Unless Otherwise Specified)
Figure 7 – MIL-STD-461C
DV200-2815D Without EMI Filter
Figure 8 – MIL-STD-461C
DV200-2805S With DVMN28 EMI Filter
Figure 9 – MIL-STD-461D
DV200-2805S With DVMN28 EMI Filter
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DVMN28
PACKAGE SPECIFICATIONS
TOP VIEW
PIN
FUNCTION
1
+Vin
2
INH
3
-Vin
4
-Vout
5
INH OUT
6
+V OUT
SIDE VIEW
Figure 10 - Package and Pinout
(Dimensional Limits are ±0.005” Unless Otherwise Stated)
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DVMN28
PACKAGE PIN DESCRIPTION
Pin
Function
Description
1
+Vin
28V Input: Positive Input Voltage Connection
2
INH
Logic Low = Disabled Output.
3
-Vin
Input Common Connection
4
-Vout
Output Common Connection
5
INH OUT
Output Inhibit. Open Collector Output. Connects to Load Converter INH Input.
6
+Vout
28V Output: Positive Output Voltage Connection
ENVIRONMENTAL SCREENING
Screening
MIL-STD-883
Standard
(No Suffix)
Military
/ML
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Pre-Cap Inspection
IPC-A-610 Class II
Temperature Cycling
-55°C, 100°C, 10 cycles
Burn-In
96 hours at +100°C
12 hours at +100°C
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Final Electrical
100% at -55°C, 25°C, 100°C1
100% at 25°C
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Final Inspection
Method 2009
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Note: 1. 100% R&R testing at –55°C, +25°C, and +100°C with all test data included in product
shipment.
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DVMN28
ORDERING INFORMATION
DVMN
28
/ML
1
2
3
-
XXX
4
(1)
(2)
(3)
(4)
Product Series
Nominal Input
Voltage
Screening Code
Additional
Screening Code
DVMN
28
28 Volts
None
/ML
Standard
Military
Contact Sales
Please contact your sales representative or the VPT Inc. Sales Department for more information
concerning additional environmental screening and testing, different input voltage, power requirement,
source inspection, and/or special element evaluation for space or other higher quality applications.
CONTACT INFORMATION
To request a quotation or place an order, please contact your sales representative or the VPT Inc.
Sales Department at:
Phone:
Fax:
E-mail:
(425) 353-3010
(425) 353-4030
[email protected]
All information contained in this datasheet is believed to be accurate, however, no responsibility is
assumed for possible errors or omissions. The products or specifications contained herein are subject
to change without notice.
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