The SVRFL Series of space qualified DC-DC converters is
specifically designed for the harsh radiation environment of
space applications and is designed in accordance with
Aerospace TOR requirements. Performance is guaranteed
through the use of hardened semiconductor components,
radiation lot acceptance testing (RLAT) of non-hardened
components, and analysis. The SVRFL Series has been
characterized for Total Ionizing Dose (TID) performance
including Enhanced Low Dose Rate Sensitivity (ELDRS) and for
Single Event Effects (SEE) according to VPT’s DLA-approved
Radiation Hardness Assurance (RHA) plan per MIL-PRF-38534,
Appendix G, Level R. Characterization is performed at both the
component level and at the SVRFL Series hybrid converter level.
The SVRFL Series of DC-DC converters is radiation hardened
and suited for use in low Earth orbit (LEO), medium Earth orbit
(MEO), geostationary orbit (GEO), deep space, and launch
vehicle programs.
1.2 SPACE LEVEL CHARACTERIZATIONS
•
•
•
Guaranteed TID performance to 100 krad(Si) including ELDRS
SEE performance to 85 MeV-cm
2
/mg. Transients are fully
characterized for cross section and magnitude
Worst-case analysis, stress, radiation, reliability reports available
1.3 MANUFACTURING AND COMPLIANCE
•
•
•
•
•
•
•
Qualified to MIL-PRF-38534 Class H and Class K,
DLA SMD #
5962-13234
Available compliant to MIL-HDBK-1547 and Aerospace TOR
component level element evaluation
MIL-PRF-38534 element evaluated components
MIL-STD-461 C/D/E/F when used with appropriate VPT EMI filter
Manufactured in a MIL-PRF-38534 Class H and Class K facility
MIL-STD-883
ISO-9001
1.4 PACKAGING
•
•
•
•
Low-profile: 3.005” x 1.505” x 0.400”
Max weight: 88 g
Industry standard pinout
Precision seam-welded hermetic metal case
1.1 FEATURES
•
•
•
•
•
•
•
•
•
•
Up to 100 W output power
Wide input voltage range: 18 V to 40 V plus 50 V transient
Continuous operation over full military temperature range of
-55 °C to +125 °C with no power derating
Very low output noise
Parallel up to 5 units with current sharing
Output voltage trim up +10% or down -20%
Radiation immune magnetic feedback circuit
No use of optoisolators
Undervoltage lockout
Current limit protection / short circuit protection
1.5 SIMILAR PRODUCTS AND ACCESSORIES
•
•
•
•
•
•
SVRFL
100 W single output DC-DC converter
SVFL
100 W space qualified DC-DC converter, 30 krad(Si)
Custom versions available
EMI filters
Non-isolated, space qualified
point of load converters
Use with Thermal Pad
TP-001
Products and reports described in this datasheet are subject to all export license restrictions and regulations which may inc lude but are not limited to ITAR
(International Traffic in Arms Regulations) and the Export Administration and Foreign Assets Control Regulations. Further restrictions may apply. Contact VPT
sales for details.
Sales Information
Phone:(425) 353-3010
E-mail:
vptsales@vptpower.com
Fax: (425) 353-4030
Web:
www. vpt power.com
SVRFL2800D - 8.0
Page 1
SVRFL2800D Series
2.0 DIAGRAMS
2.1 BLOCK DIAGRAM
+VOUT
OUTCOM
28VIN
-VOUT
INCOM
Q1
MAGNETIC
FEEDBACK
VOLTAGE AND
CURRENT
AMPLIFIERS
TRIM
UNDER
VOLTAGE
SHUTDOWN
SHARE
PRIMARY
HOUSEKEEPING
SUPPLY
PWM
CONTROL
INH2
INH1
SYNCIN
SYNCOUT
SECONDARY
HOUSEKEEPING
SUPPLY
2.2 CONNECTION DIAGRAM
SVRME28 EMI FILTER
1
2
3
28Vdc
28VIN
28VIN
28VIN
INCOM
INCOM
INCOM
28VOUT
28VOUT
28VOUT
OUTCOM
OUTCOM
OUTCOM
12
11
6
10
9
8
7
CASE
2
INCOM
OUTCOM
8
4
SYNCIN
INH2
INH1
12
LOAD
SVRFL2800D DC-DC CONVERTER
1
7
28VIN
+VOUT
- VOUT
9
+
-
4
5
6
3.0 SPECIFICATIONS
3.1 ABSOLUTE MAXIMUM RATINGS
Absolute Maximum Ratings
Input Voltage (Continuous):
Input Voltage (Transient, 1 second):
ESD Rating per MIL-PRF-38534:
-0.5 V to 40 V
-0.5 V to 50 V
3A
Operating Temperature (Full Load):
Storage Temperature:
Lead Solder Temperature (10 seconds):
-55 °C to +125 °C
-65 °C to +150 °C
270 °C
Sales Information
Phone:(425) 353-3010
E-mail:
vptsales@vptpower.com
Fax: (425) 353-4030
Web:
www. vpt power.com
SVRFL2800D - 8.0
Page 2
SVRFL2800D Series
3.2 PERFORMANCE SPECIFICATIONS
Tcase = -55 °C to +125 °C, Vin = +28 V ± 5%, Full Load
1
, Unless Otherwise Specified
SVRFL2805D
Parameter
INPUT
Voltage
Current
Continuous
Transient, 1 sec4
INH 1 < 1.5 V
INH 2 < 1 V
No Load
20 Hz to 10 MHz
Turn-On
Turn-Off4
OUTPUT STATIC
Voltage
1
+Vout, Tcase = 25 °C
+Vout, Tcase = -55 °C to +125 °C
-Vout, Tcase = 25 °C
-Vout, Tcase = -55 °C to +125 °C
Total
Either Output
Current2
Ripple Voltage
Line Regulation
Load Regulation
Cross Regulation, -Vout
Load Fault Power Dissipation
OUTPUT DYNAMIC
Load Step, Half to Full Load, Either Output
Line Step
4,
Vin = 18V to 40 V
Turn-On, Vin = 0 to 28 V
FUNCTION
INH 1 Pin Input4
INH 2 Pin Input4
INH 1 Pin Open Circuit Voltage
4
INH 2 Pin Open Circuit Voltage
4
Voltage Trim Range
SHARE Pin Voltage
4
SYNC Frequency Range
GENERAL
Efficiency
Capacitive Load
4
Switching Frequency
Isolation
Weight
MTBF (MIL-HDBK-217F)6
Output Inhibited
Output Inhibited
Output Enabled
Output Enabled
0
0
9
4
-20
2
500
75
-
500 V DC, Tcase = 25 °C
Standard package option
SF, Class K @ Tcase = 55 °C
450
100
-
-
-
-
-
-
-
-
-
80
-
525
-
-
2.47
1.5
1
15
12
10
4
600
-
500
550
-
88
-
0
0
9
4
-20
2
500
80
-
450
100
-
-
-
-
-
-
-
-
-
86
-
525
-
-
2.47
1.5
1
15
12
10
4
600
-
300
550
-
88
-
V
V
V
V
%
V
kHz
%
µF
kHz
MΩ
g
MHr
Output Transient
Recovery3
Output Transient
Recovery3
Delay
Overshoot
-
-
-
-
-
-
200
230
150
150
5
2
600
500
600
500
20
25
-
-
-
-
-
-
280
200
250
150
5
20
600
500
800
500
20
50
mVpk
µs
mVpk
µs
ms
mVpk
Total
Either Output
20 Hz to 10 MHz
+Vout, V
IN
= 18 V to 40 V
-Vout, V
IN
= 18 V to 40 V
+Vout, No Load to Full Load
-Vout, No Load to Full Load
+Vout: 40% load, -Vout: 60% load
+Vout: 60% load, -Vout: 40% load
Overload
4
Short Circuit
4.95
4.9
4.8
4.7
0
0
0
0
-
-
-
-
-
-
-
-
5
5
5
5
-
-
-
-
25
2
10
10
100
150
-
-
5.05
5.1
5.2
5.3
100
60
20
12
80
20
200
100
200
450
50
50
11.88
11.7
11.8
11.4
0
0
0
0
-
-
-
-
-
-
-
-
12
12
12
12
-
-
-
-
70
1
10
4
80
100
-
-
12.12
12.3
12.2
12.6
100
60
8.33
5
160
20
200
120
200
450
50
50
V
V
V
V
W
W
A
A
mVpp
mV
mV
mV
mV
mV
W
W
18
-
-
-
-
-
14.5
13
28
-
3.5
30
70
60
16
15
407
50
8
70
140
160
17.5
17
18
-
-
-
-
-
14.5
13
28
-
3.5
30
80
60
16
15
40
7
50
8
70
160
160
17.5
17
V
V
mA
mA
mA
mApp
V
V
Conditions
5
Min
Typ
Max
Min
SVRFL2812D
Typ
Max
Units
Ripple Current
Undervoltage Lockout
Power2
1. Half load at +Vout and half load at -Vout
2. Up to 60% of the total power or current can be drawn from either of the two
outputs
3. Time for output voltage to settle within 1% of steady-state value
4. Verified by qualification testing
5. End-of-Life performance includes aging and radiation degradation and is within
standard limits except where noted
6. Correction factor of 0.12 added to ceramic capacitors
7. 37.5 V Max continuous to be compliant to MIL-HDBK-1547 and Aerospace TOR
Sales Information
Phone:(425) 353-3010
E-mail:
vptsales@vptpower.com
Fax: (425) 353-4030
Web:
www. vpt power.com
SVRFL2800D - 8.0
Page 3
SVRFL2800D Series
3.2 PERFORMANCE SPECIFICATIONS (CONTINUED)
Tcase = -55 °C to +125 °C, Vin = +28 V ± 5%, Full Load
1
, Unless Otherwise Specified
SVRFL2815D
Parameter
INPUT
Voltage
Current
Conditions
5
Continuous
Transient, 1 sec4
INH 1 < 1.5 V
INH 2 < 1 V
No Load
20 Hz to 10 MHz
Turn-On
Turn-Off4
OUTPUT STATIC
Voltage
1
+Vout, Tcase = 25 °C
+Vout, Tcase = -55 °C to +125 °C
-Vout, Tcase = 25 °C
-Vout, Tcase = -55 °C to +125 °C
Total
Either Output
Current2
Ripple Voltage
Line Regulation
Load Regulation
Cross Regulation, -Vout
Load Fault Power Dissipation
OUTPUT DYNAMIC
Load Step, Half to Full Load, Either Output
Line Step
4,
Vin = 18V to 40 V
Turn-On, Vin = 0 to 28 V
FUNCTION
INH 1 Pin Input4
INH 2 Pin Input4
INH 1 Pin Open Circuit Voltage
4
INH 2 Pin Open Circuit Voltage
4
Voltage Trim Range
SHARE Pin Voltage
4
SYNC Frequency Range
GENERAL
Efficiency
Capacitive Load
4
Switching Frequency
Isolation
Weight
MTBF (MIL-HDBK-217F)6
500 V DC, Tcase = 25 °C
Standard package option
SF, Class K @ Tcase = 55 °C
Output Inhibited
Output Inhibited
Output Enabled
Output Enabled
0
0
9
4
-20
2
500
75
-
450
100
-
-
-
-
-
-
-
-
-
83
-
550
-
-
2.47
1.5
1
15
12
10
4
600
-
300
550
-
88
-
V
V
V
V
%
V
kHz
%
µF
kHz
MΩ
g
MHr
Total
Either Output
20 Hz to 10 MHz
+Vout, V
IN
= 18 V to 40 V
-Vout, V
IN
= 18 V to 40 V
+Vout, No Load to Full Load
-Vout, No Load to Full Load
+Vout: 40% load, -Vout: 60% load
+Vout: 60% load, -Vout: 40% load
Overload
4
Short Circuit
Output Transient
Recovery3
Output Transient
Recovery3
Delay
Overshoot
Min
18
-
-
-
-
-
14.5
13
14.85
14.625
14.7
14.275
0
0
0
0
-
-
-
-
-
-
-
-
-
-
-
-
-
-
Typ
28
-
3.5
30
100
50
16
15
15
15
15
15
-
-
-
-
80
1
15
5
50
80
-
-
250
150
500
200
5
20
Max
407
50
8
70
160
160
17.5
17
15.15
15.375
15.3
15.725
100
60
6.67
4
160
20
200
120
200
450
50
50
600
500
1200
500
20
50
Units
V
V
mA
mA
mA
mApp
V
V
V
V
V
V
W
W
A
A
mVpp
mV
mV
mV
mV
mV
W
W
mVpk
µs
mVpk
µs
ms
mVpk
Ripple Current
Undervoltage Lockout
Power2
1. Half load at +Vout and half load at -Vout
2. Up to 60% of the total power or current can be drawn from
either of the two outputs
3. Time for output voltage to settle within 1% of steady-state value
4. Verified by qualification testing
5. End-of-Life performance includes aging and radiation
degradation and is within standard limits except where noted
6. Correction factor of 0.12 added to ceramic capacitors
7. 37.5 V Max continuous to be compliant to MIL-HDBK-1547 and
The following is an episode of Analog Dialogue, which talks about the layout points of high-speed op amps in PCB design. I recorded the main points of the full text as a note. If any experts are inter...
The sound effect is pretty good for my initial experience. Thanks IN. Thanks eeworld :kiss::kiss::titter::titter: [[i] This post was last edited by Jueying_ on 2013-11-29 17:50[/i]]...
I want to surprise my wife with an electronic birthday gift on our 10th anniversary, such as a music box that can record and display text on an LCD screen. But I am troubled by the fact that my studie...
In vs2005, using GetAdaptersInfo to obtain the local IP and network card MAC always returns ERROR_NO_DATA IP_ADAPTER_INFO * pAdptInfo = NULL; IP_ADAPTER_INFO * pNextAd = NULL; ULONG ulLen = 0; DWORD d...
As the title says. Whether debugging in software (odd parity) or in hardware, RB8 is always zero. For example, if I send 9, RB8==0, and if I send 7 it is also 0. Please help me. Thank you void STR_int...
[size=4]There are two marking methods for SMD diodes: letter, number code or letter + number code marking method and color (code) marking method. For example, the electrical parameters of "A3" are as ...
PV DC fuses are safety devices used to protect PV panels, inverters, and DC loads. To ensure their safety and reliability, they must be UL248 certified.
Before applying for UL248 certifi...[Details]
A parallel inverter consists of two thyristors (T1 and T2), a capacitor, a center-tapped transformer, and an inductor. The thyristors provide a current path, while the inductor L maintains a consta...[Details]
Is electromagnetic radiation from electric vehicles harmful to the human body? Recently, the issue of electromagnetic radiation from electric vehicles has garnered widespread attention. However, pu...[Details]
Electric vehicles are currently gaining momentum, but this is just a facade. Fuel-powered vehicles remain unchallenged. While electric vehicles boast unique advantages in environmental emissions an...[Details]
In recent years, many people have switched to new energy vehicles, and this type of vehicle has indeed been highly sought after and is considered the future direction of automobile development, and...[Details]
1. Introduction
Electronic scales are gradually replacing traditional measuring tools like springs and balances in everyday life, such as electronic price computing scales and electronic weigh...[Details]
For healthcare professionals, accurate diagnosis and treatment are crucial for a clear picture of a person's health. However, healthcare professionals often rely on tests at medical facilities, cli...[Details]
With the rapid adoption of smart electric vehicles, automotive chips are evolving from auxiliary control units to the foundation of the entire vehicle's intelligence. Their applications extend from...[Details]
Gross profit margin jumped from 13.6% in the first half of last year to 25.9%, almost doubling year-on-year.
On August 21, RoboSense released its interim performance report, in which the...[Details]
With the rapid advancement of automation technology, collaboration between robots is no longer just science fiction. Imagine dozens of machines moving goods in a warehouse without interfering with ...[Details]
On August 22, South Korean media Nate reported on the 20th local time that Samsung Electronics is introducing Hyper Cell technology into its most advanced 2nm process technology, striving to improv...[Details]
1 Source of creativity
With the further development of electronic technology, electronic pets have gradually entered people's family life. At present, there are two main categories of relative...[Details]
With the development of science, the use of variable frequency technology is becoming more and more widespread, and it is used in both industrial equipment and household appliances. Inverter air co...[Details]
PowiGaN achieves 95% efficiency at both light and full loads, meeting critical operational and safety requirements.
DARWIN, Australia and SAN JOSE, Calif.,
August 22, 2025 – Powe...[Details]
According to Nikkei, Japan has performed poorly in responding to China's power semiconductor challenges.
There are five major companies in Japan's power chip market: Mitsubishi Electric,...[Details]