IRF M3L2805D Hybrid-high reliability radiation tolerant dc-dc converter Datasheet

PD-94519C
M3L-SERIES
+28V Input, Single/Dual Output
HYBRID-HIGH RELIABILITY
RADIATION TOLERANT
DC-DC CONVERTER
Description
The M3L-Series of DC-DC converters are radiation tolerant,
high reliability devices designed for moderate radiation
environments such as those encountered by low earth orbit
satellites and launch vehicles. For higher radiation environments,
the M3G-Series of DC-DC converters is recommended.
Features include small size, low weight and a high tolerance to
total ionizing dose, single event effects and environmental
stresses such as temperature extremes, mechanical shock,
and vibration. All components are fully de-rated to meet the
requirements of MIL-STD-975 and MIL-STD-1547 and
GSFC PPL-21 Appendix B. Extensive documentation including
Radiation Susceptibility, Thermal Analysis, Stress Analysis
and MTBF are available.
The converters incorporate a fixed frequency single forward
topology with magnetic feedback and an internal EMI filter.
These converters are capable of meeting the conducted
emissions and conducted susceptibility requirements of MIL
-STD-461C without any additional components. All models
include an external inhibit port and have an adjustable output
voltage. They are enclosed in a hermetic 1.5" x 2.3" x 0.425" steel
package and weigh less than 85 grams. The package utilizes
rugged ceramic feed-through copper core pins and is
sealed using parallel seam welding.
Manufactured in a facility fully qualified to MIL-PRF-38534,
these converters are fabricated utilizing DLA Land and
Maritime qualified processes. For available screening
options, refer to device screening table in the data sheet.
M3H
Features
















Total Dose > 25 kRads(Si)
SEE Hardened to LET up to 37 MeV.cm2/mg
Internal EMI filter; Converter Capable of
meeting MIL-STD-461C CE03 and CS01
Low Weight < 85 grams
Magnetically Coupled Feedback
16V to 50V Input Range
Up to 25W Output Power
Single and Dual Output Models Include
3.3, 5, 12, 15, ±5, ±12, ±15V
High Efficiency - to 82%
-55°C to +125°C Operating Temperature Range
100M @ 500VDC Isolation
Under-Voltage Lockout
Short Circuit and Overload Protection
Adjustable Output Voltage
External Inhibit
1,500,000 Hour MTBF
Applications


Low Earth Orbit Satellites (LEO)
Launch Vehicles
Non-flight versions of the M3L-Series converters are
available for system development purposes. Variations in
electrical specifications and screening to meet custom
requirements can be accommodated. Consult IR HiRel
San Jose for special requirements.
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2016-09-21
M3L-SERIES
(+28V Input, Single/Dual Output)
Circuit Description
The M3L-Series converters utilize a single-ended forward
topology with resonant reset. The nominal switching frequency is
500 kHz. Electrical isolation and tight output regulation are
achieved through the use of a magnetically coupled feedback.
Voltage feed-forward with duty factor limiting provides high
line rejection.
An internal EMI filter allows the converter to meet the
conducted emissions requirements of MIL-STD-461C on
the input power leads. A single-stage output filter reduces
the typical output ripple to less than 50mV peak-to-peak.
Output current is limited under any load fault condition to
approximately 125% of rated. An overload condition causes
the converter output to behave like a constant current
source with the output voltage dropping below nominal.
The converter will resume normal operation when the load
current is reduced below the current limit point. This
protects the converter from both overload and short circuit
conditions. The current limit point exhibits a slightly
negative temperature coefficient to reduce the possibility
of thermal runaway.
2
An external inhibit port is provided to control converter
operation. The converter’s operation is inhibited when
this pin is pulled low. It is intended to be driven by an
open collector logic device. The pin may be left open for
normal operation and has a nominal open circuit voltage
of 10.5V with respect to the input return (pin 2).
The output voltage of all models can be adjusted using a
single external resistor.
Design Methodology
The M3L-Series was developed using a proven conservative
design methodology which includes selecting radiation
tolerance and established reliability components and fully
de-rating to the requirements of MIL-STD-975 and MIL-STD1547. Heavy de-rating of the power MOSFET gate and
drain voltages minimize the possibility of SEGR and
SEB. A magnetic feedback circuit is utilized instead of
opto-couplers to minimize temperature, radiation and
aging sensitivity. PSPICE was used extensively to
predict and optimize circuit performance for both beginning and
end-of-life. Thorough design analyses include Radiation
Susceptibility (TREE), Stress, Thermal, and Reliability
(MTBF).
2016-09-21
M3L-SERIES
(+28V Input, Single/Dual Output)
Specifications
Absolute Maximum Ratings
Input voltage range
Output power
Lead temperature
Recommended Operating Conditions
-0.5VDC to +60VDC
Input voltage range
+16VDC to +60VDC
1
+16VDC to +38VDC
Internally limited
Input voltage range
+300°C for 10 seconds
Output power
0 to Max. Rated
2
Operating temperature
-55°C to +135°C
Operating temperature
-55°C to +125°C
Storage temperature
-55°C to +135°C
Operating temperature1
-55°C to +70°C
1
2
Meets de-rating per MIL-STD-1547
For operation at +125°C see table Note 13
Electrical Performance Characteristics
Parameter
Group A
Subgroup
Conditions
-55°C  TC +85°C
VIN = 28V DC ± 5%, CL = 0
unless otherwise specified
Input voltage
Output voltage (VOUT)
M3L2803R3S
M3L2805S
M3L2812S
M3L2815S
M3L2805D
M3L2812D
M3L2815D
M3L2803R3S
M3L2805S
M3L2812S
M3L2815S
M3L2805D
M3L2812D
M3L2815D
Output power (POUT)
M3L2803R3S
All Others
Output current (IOUT)
M3L2803R3S
M3L2805S
M3L2812S
M3L2815S
M3L2805D
M3L2812D
M3L2815D
Unit
Min
Nom
Max
18
28
50
3.27
4.95
11.88
14.85
±4.95
±11.88
±14.85
3.30
5.00
12.00
15.00
±5.00
±12.00
±15.00
3.33
5.05
12.12
15.15
±5.05
±12.12
±15.15
V
1
1
1
1
1
1
1
IOUT = 100% rated load
Note 4
2,3
2,3
2,3
2,3
2,3
2,3
2,3
IOUT = 100% rated load
Note 4
3.23
4.90
11.76
14.70
±4.90
±11.76
±14.70
3.37
5.10
12.24
15.30
±5.10
±12.24
±15.30
1,2,3
VIN = 16, 28, 50 Volts, Note 2
0
0
20
25
VIN = 16, 28, 50 Volts, Note 2
0
0
0
0
0
0
0
6.06
5.00
2.08
1.67
4.00
1.67
1.33
-0.5
0.5
%
-1.0
1.0
%
-5.0
-3.0
-3.0
5.0
3.0
3.0
%
1,2,3
Line regulation (VRLINE)
1,2,3
Load regulation (VRLOAD)
1,2,3
Either Output, Note 3
Either Output, Note 3
Either Output, Note 3
VIN = 16, 28, 50 Volts
IOUT = 0, 50%, 100% rated, Note 4
IOUT = 0, 50%, 100% rated, Note 4
VIN = 16, 28, 50 Volts
1,2,3
VIN = 16, 28, 50 Volts
Duals only, Note 5
Cross regulation (VRCROSS)
M3L2805D
M3L2812D
M3L2815D
Limits
V
W
A
For Notes to Electrical Performance Characteristics, refer to page 5
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2016-09-21
M3L-SERIES
(+28V Input, Single/Dual Output)
Electrical Performance Characteristics (continued)
Parameter
Input current, no load (IIN)
M3L2803R3S
M3L2805S
M3L2812S
M3L2815S
M3L2805D
M3L2812D
M3L2815D
Input current inhibited
Output ripple (VRIP)
M3L2803R3S
M3L2805S
M3L2812S
M3L2815S
M3L2805D
M3L2812D
M3L2815D
Switching frequency (FS)
Efficiency (EFF)
M3L2803R3S
M3L2805S
M3L2812S
M3L2815S
M3L2805D
M3L2812D
M3L2815D
Enable input (Inhibit function)
open circuit voltage
drive current (sink)
voltage range
Current limit point
Expressed as a percentage
of full rated load current
Group A
Subgroup
1,2,3
1,2,3
Conditions
-55°C  TC  +85°C
VIN = 28V DC ± 5%, CL = 0
unless otherwise specified
Limits
Min
Nom
IOUT = 0, Pin 4 open
Pin 4 shorted to pin 2
8.0
mA
35
50
70
80
80
80
80
mVp-p
575
kHz
VIN = 16, 28, 50 Volts
IOUT = 100% rated load
Notes 4, 6
1,2,3
Sync. Input (Pin 4) open
425
500
IOUT = 100% rated load
Note 4
68
75
75
75
75
75
75
75
79
80
81
79
79
80
Note 1
9.5
1,2,3
1,2,3
Unit
60
70
70
70
70
100
100
1,2,3
1,2,3
Max
VOUT = 90% of Nominal, Note 4
1,2,3
Output response to
step load changes (VTLD)
4,5,6
Half Load to/from Full Load,
Notes 4,9
Recovery time,
step load changes (TTLD)
4,5,6
Half Load to/from Full Load,
Note 4,9,10
Output response to
step line changes (VTLN)
4,5,6
16V to/from 50V
IOUT = 100% rated load,
Notes 1,4,11
Recovery time,
step line changes (TTLN)
4,5,6
16V to/from 50V
IOUT = 100% rated load,
Notes 1,4,10,11
%
-0.5
11.5
500
50
V
A
V
105
130
%
14
W
300
mVpk
200
s
300
mVpk
200
s
Short Circuit, Overload, Note 8
Power dissipation, load fault (PD)
mA
-300
-300
For Notes to Electrical Performance Characteristics, refer to page 5
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2016-09-21
M3L-SERIES
(+28V Input, Single/Dual Output)
Electrical Performance Characteristics (continued)
Parameter
Turn-on response
Overshoot (VOS)
Turn-on Delay (TDLY)
Capacitive load (CL)
M3L2803R3S
M3L2805S
M3L2812S
M3L2815S
M3L2805D
M3L2812D
M3L2815D
Group A
Subgroup
Conditions
-55°C  TC  +85°C
VIN = 28V DC ± 5%, CL = 0
unless otherwise specified
4,5,6
No Load, Full Load
Notes 4,12
1
Limits
Min
1
IOUT = 100% rated load
No effect on DC performance
Notes 1, 4, 7
Isolation
1
IOUT = 100% rated load
DC to 50 kHz, Notes 1, 4
Input to Output or Any Pin to Case
except pin 3, test @ 500VDC
Max
500
10
2.0
2200
1000
180
120
500
90
60
Each output on duals
Line rejection
40
50
1.5 x 106
mV
ms
µF
M
85
MIL-HDBK-217F2, SF, 35°C
Unit
dB
100
Device weight
MTBF
Nom
g
Hr
Notes: Electrical Performance Characteristics Table
1. Parameter is tested as part of design characterization or after design changes. Thereafter, parameter shall be guaranteed to the limits
specified.
2. Parameter verified during line and load regulation tests.
3. Output load current must be distributed such that at least 20% of the total load current is being provided by one of the outputs.
4. Load current split equally between outputs on dual output models.
5. Cross regulation is measured with 20% rated load on output under test while changing the load on the other output from
20% to 80% of rated.
6. Guaranteed for a D.C. to 20 MHz bandwidth. Tested using a 20 kHz to 10 MHz bandwidth using the circuit shown below.
7. Capacitive load may be any value from 0 to the maximum limit without compromising dc performance. A capacitive load in excess of the
maximum limit may interfere with the proper operation of the converter’s overload protection, causing erratic behavior during turn-on.
8. Overload power dissipation is defined as the device power dissipation with the load set such that VOUT = 90% of nominal.
9. Load step transition time  10 s.
10. Recovery time is measured from the initiation of the transient to where VOUT has returned to within ±1% of its steady state value
11. Line step transition time 100 s.
12. Turn-on delay time from either a step application of input power or a logic low to a logic high transition on the inhibit pin (pin 4)
to the point where VOUT = 90% of nominal.
13. For operation at temperatures between +85°C and +125°C, de-rate the maximum output power linearly from 100% to 75%.
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2016-09-21
M3L-SERIES
(+28V Input, Single/Dual Output)
Circuit for Measuring Output Ripple Voltage
50 
50  Coax
1 µF
Oscilliscope or Equivalent
with 10 MHz Bandwidth.
Multiply readings by 2.
0.1 µF
+ Vout
50 
Termination
DUT
Return
RL for IRATED
Radiation Performance Characteristics
Test
Highest
Level
Tested
Conditions
Min
Typ
Total Ionizing Dose (Gamma)
MIL-STD-883, Method 1019
Operating bias applied during exposure,
Full Rated Load, VIN = 28V
25
40
60
kRads(Si)
Single Event Effects
SEU, SEL, SEGR, SEB
Heavy ions (LET)
Operating bias applied during exposure,
Full Rated Load, VIN = 28V
37
82
82
MeVcm2/mg
Dose Rate (Gamma Dot)
Temporary Saturation
Survival
MIL-STD-883, Method 1023
Operating bias applied during exposure,
Full Rated Load, VIN = 28V
1E8
1E10
1.5E9
Rads
(Si)/sec
MIL-STD-883, Method 1017
3E12
8E12
Neutrons/cm2
Neutron Fluence
Unit
IR HiRel currently does not have does not have a DLA Land and Maritime certified Radiation Hardness Assurance Program.
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2016-09-21
M3L-SERIES
(+28V Input, Single/Dual Output)
Figure 1. Block Diagram - Single Output
Vin
EMI
FILTER
1
+10.5V
INHIBIT
4
RETURN
2
CASE
GROUND
3
7
+OUTPUT
6
OUTPUT
RETURN
5
OUTPUT
ADJUST
8
+OUTPUT
7
RETURN
6
-OUTPUT
5
OUTPUT
ADJUST
BIAS
SUPPLY
+
EA
-
RAMP
GEN.
PWM
CONTROLLER
SAMPLE
&
HOLD
FEEDBACK
TRIGGER
Figure 2. Block Diagram - Dual Output
Vin
1
EMI
FILTER
+10.5V
INHIBIT
4
RETURN
2
CASE
GROUND
3
BIAS
SUPPLY
+
EA
-
RAMP
GEN.
PWM
CONTROLLER
SAMPLE
&
HOLD
FEEDBACK
TRIGGER
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2016-09-21
M3L-SERIES
(+28V Input, Single/Dual Output)
Figure 3. Conducted Emissions, Common Mode
100
90
80
70
dB-uA
60
CEO3 LIMIT
50
40
30
20
10
0
1E3
1E4
1E5
1E6
1E7
1E8
1E7
1E8
Frequency ( Hz )
Figure 4. Conducted Emissions, Normal Mode
100
90
80
70
dB-uA
60
CEO3 LIMIT
50
40
30
20
10
0
1E3
1E4
1E5
1E6
Frequency ( Hz )
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2016-09-21
M3L-SERIES
(+28V Input, Single/Dual Output)
Figure 5. M3L2805S Line Rejection (CS01)
0
-10
-20
-30
dB
-40
-50
-60
-70
-80
-90
-100
1E2
1E3
1E4
1E5
Frequency ( Hz )
Figure 6. M3L2815D Line Rejection (CS01)
0
-10
-20
-30
dB
-40
-50
-60
-70
-80
-90
-100
1E2
1E3
1E4
1E5
Frequency ( Hz )
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M3L-SERIES
(+28V Input, Single/Dual Output)
Figure 7. M3L2815D Line Rejections (CS01)
0
-10
-20
-30
dB
-40
-50
-60
-70
-80
-90
-100
1E2
1E3
1E4
1E5
Frequency ( Hz )
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2016-09-21
M3L-SERIES
(+28V Input, Single/Dual Output)
Mechanical Outline
2.300
0.375
ø 0.128
4 Plcs
1.550
0.050
0.25 Typ.
0.270
8
0.470
1
0.400
7
0.400
1.000
Ref
1.500 1.750 2.000
3
6
4
5
2
2 Eq Spaces
@ 0.200
0.400
0.200
Pin ø
0.040
0.350
0.220
0.850
2.80
Ref
0.250
Tolerance: .XX = ±0.01
.XXX = ±0.005
0.425
Max
Pin Designation (Single/Dual)
11
Pin #
Designation (Single)
Pin #
Designation (Dual)
1
+ Input
1
+ Input
2
Input Return
2
Input Return
3
Case
3
Case
4
Inhibit
4
Inhibit
5
Output Adjust
5
Output Adjust
6
Output Return
6
- Vout
7
+ Vout
7
Output Return
8
NC
8
+ Vout
2016-09-21
M3L-SERIES
(+28V Input, Single/Dual Output)
Device Screening
Requirement
MIL-STD-883 Method
No Suffix
EM 
Temperature Range
—
-55°C to +85°C
-55°C to +85°C
Element Evaluation
MIL-PRF-38534
Class H w/SEM
N/A
Non-Destructive Bond Pull
Internal Visual
2023
2017
Yes
Yes
N/A

Temperature Cycle
1010
Cond C
Cond C
Constant Acceleration
2001, Y1 Axis
3000 Gs
3000 Gs
PIND
2020
N/A
N/A
Burn-In
1015
160 hrs @ 125°C
48 hrs @ 125°C
Final Electrical
(Group A)
MIL-PRF-38534
& Specification
-55°C, +25°C,
+85°C
-55°C, +25°C,
+85°C
PDA
MIL-PRF-38534
N/A
N/A
Seal, Fine and Gross
1014
A1, C
Cond A
Radiographic
2012
N/A
N/A
External Visual
2009
Yes

Notes:
 Best commercial practice.
 Any Engineering Model (EM) build with the “EM” Suffix shall only be form, fit and functional equivalent to its
Flight Model (FM) counterpart, and it may not meet the radiation performance. The EM Model shall not be expected
comply with MIL-PRF-38534 flight quality/workmanship standards, and configuration control. An EM build may use
electrical equivalent commercial grade components. IR HiRel will provide a list of non-compliance items upon request.
Part Numbering
IR HiRel Headquarters: 101 N. Sepulveda Blvd., El Segundo, California 90245, USA Tel: (310) 252-7105
IR HiRel Leominster: 205 Crawford St., Leominster, Massachusetts 01453, USA Tel: (978) 534-5776
IR HiRel San Jose: 2520 Junction Avenue, San Jose, California 95134, USA Tel: (408) 434-5000
Data and specifications subject to change without notice.
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M3L-SERIES
(+28V Input, Single/Dual Output)
IMPORTANT NOTICE
The information given in this document shall be in no event regarded as guarantee of conditions or characteristic. The
data contained herein is a characterization of the component based on internal standards and is intended to
demonstrate and provide guidance for typical part performance. It will require further evaluation, qualification and
analysis to determine suitability in the application environment to confirm compliance to your system requirements.
With respect to any example hints or any typical values stated herein and/or any information regarding the application of
the product, Infineon Technologies hereby disclaims any and all warranties and liabilities of any kind including without
limitation warranties on non- infringement of intellectual property rights and any third party.
In addition, any information given in this document is subject to customer’s compliance with its obligations stated in this
document and any applicable legal requirements, norms and standards concerning customer’s product and any use of
the product of Infineon Technologies in customer’s applications.
The data contained in this document is exclusively intended for technically trained staff. It is the responsibility of any
customer’s technical departments to evaluate the suitability of the product for the intended applications and the
completeness of the product information given in this document with respect to applications.
For further information on the product, technology, delivery terms and conditions and prices, please contact your local
sales representative or go to (www.infineon.com/hirel).
WARNING
Due to technical requirements products may contain dangerous substances. For information on the types in question,
please contact your nearest Infineon Technologies office.
13
2016-09-21
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