MPD MA612SMRW-12RI5 En 60601 approved 2:1 input, dip, 6w dc/dc con vert er Datasheet

MA600MRWRI5
EN 60601 Approved
2:1 Input, DIP, 6W
DC/DC Converters
Key Features:
Electrical Specifications
Specifications typical @ +25°C, nominal input voltage & rated output current, unless otherwise noted. Specifications subject to change without notice.
• EN 60601 3RD Ed. Approved Input
Parameter
• 6W Output Power
• 5.0 kVrms Isolation
Input Start Voltage
• Reinforced Insulation
• 2 x MOPP per EN 60601-1 Under Voltage Shutdown
3RD Edition & ANSI/AAMI
Input Filter
ES 60601-1
Start Up Time
• 2 µA Leakage Current Max Output
Parameter
• Wide 2:1 Input Range
Output Voltage Accuracy
• Compact 24 Pin DIP Case Output Voltage Balance
Line Regulation
• Single & Dual Outputs
Load
Regulation, IOUT = 0% to 100%
• 4.667 MH MTBF
Cross Regulation, Dual Output
Ripple & Noise (20 MHz)
Output Power Protection
Transient Recovery Time, See Note 4
Transient Response Deviation
Temperature Coefficient
Output Short Circuit
Conditions
Min.
12 VDC Input
24 VDC Input
48 VDC Input
12 VDC Input
24 VDC Input
48 VDC Input
␲ (Pi) Filter
Nominal VIN, Constant, Resistive Load
Conditions
Min.
Dual Output , Balanced Loads
VIN = Min to Max
Single Output
Dual Output
See Note 2
See Note 3
Typ.
Max.
9.0
18.0
36.0
Units
VDC
8.0
16.0
34.0
Typ.
±0.5
150
300
±3.0
±0.01
Continuous (Autorecovery)
25% Load Step Change
VDC
30
mS
Max.
±1.0
±2.0
±0.5
±0.5
±1.0
±5.0
70
Units
%
%
%
%
%
mV P - P
%
µSec
%
%/ºC
±5.0
General
Parameter
Isolation Voltage
Reinforced Insulation Working Voltage
Leakage Current
Isolation Resistance
Isolation Capacitance
Switching Frequency
Conditions
Min.
60 Seconds 5,000
250 Vrms
240 VAC, 60 Hz
500 VDC
10
100 kHz, 1V
Typ.
Max.
Units
Vrms
2
µA
G⍀
pF
kHz
40
330
EMI Characteristics
Parameter
Standard
See Page 3
Criteria
Level
Environmental
Parameter
Conditions
Operating Temperature Range
Storage Temperature Range
Cooling
Humidity
Ambient
Case
Min.
-40
Typ.
+25
-50
Free Air Convection
RH, Non-condensing
Max.
+95
+105
+125
Units
95
%
°C
Physical
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Suite D
Stoughton, MA 02072
USA
T: (781) 344-8226
F: (781) 344-8481
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Case Size
Case Material
Weight
See Mechanical Diagram (Page 3)
Non-Conductive Black Plastic (UL94-V0)
0.55 Oz (15.5g)
Reliability Specifications
Parameter
MTBF
Conditions
Min.
Typ.
Max.
Units
MIL HDBK 217F, 25ºC, Gnd Benign 4.667
MHours
IEC/EN 60601-1, EN 60601-1 3RD Edition, 2xMOPP
ANSI/AAMI ES 60601-1 2xMOPP Recognition, (UL Certificate)
ANSI/AAMI ES 60601-1, CAN/CSA-C22.2 No.60601-1
Safety Standards
Absolute Maximum Ratings
Parameter
Input Voltage Surge (1.0 Sec)
Lead Temperature
Conditions
12 VDC Input
24 VDC Input
48 VDC Input
1.5 mm From Case For 10 Sec
Min.
Typ.
Max.
12.0
50.0
100.0
260
Caution: Exceeding Absolute Maximum Ratings may damage the module. These are not continuous operating ratings.
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Units
VDC
ºC
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Model Selection Guide
Input
Model
Number
Voltage (VDC)
Output
Current (mA)
Voltage
Full-Load No-Load
(VDC)
Current
Over
Voltage Efficiency Capacitive Fuse Rating
Load
Slow-Blow
Current Protection (%, Typ)
(µF Max)
(mA)
(mA, Max) (mA, Min)
(VDC)
Nominal
Range
MA612SMRW-05RI5
12
9.0 - 18.0
595
10
5.0
1,200
0.0
6.2
84
1,500
1,200
MA612SMRW-12RI5
12
9.0 - 18.0
575
10
12.0
500
0.0
15.0
87
260
1,200
MA612SMRW-15RI5
12
9.0 - 18.0
581
10
15.0
400
0.0
18.0
86
210
1,200
MA612DMRW-12RI5
12
9.0 - 18.0
575
10
±12.0
±250
0.0
±15.0
87
150
1,200
MA612DMRW-15RI5
12
9.0 - 18.0
575
10
±15.0
±200
0.0
±18.0
87
110
1,200
MA624SMRW-05RI5
24
18.0 - 36.0
298
8
5.0
1,200
0.0
6.2
84
1,500
600
MA624SMRW-12RI5
24
18.0 - 36.0
287
8
12.0
500
0.0
15.0
87
260
600
MA624SMRW-15RI5
24
18.0 - 36.0
287
8
15.0
400
0.0
18.0
87
210
600
MA624DMRW-12RI5
24
18.0 - 36.0
291
8
±12.0
±250
0.0
±15.0
86
150
600
MA624DMRW-15RI5
24
18.0 - 36.0
287
8
±15.0
±200
0.0
±18.0
87
110
600
MA648SMRW-05RI5
48
36.0 - 75.0
149
5
5.0
1,200
0.0
6.2
84
1,500
300
MA648SMRW-12RI5
48
36.0 - 75.0
144
5
12.0
500
0.0
15.0
87
260
300
MA648SMRW-15RI5
48
36.0 - 75.0
140
5
15.0
400
0.0
18.0
89
210
300
MA648DMRW-12RI5
48
36.0 - 75.0
144
5
±12.0
±250
0.0
±15.0
87
150
300
MA648DMRW-15RI5
48
36.0 - 75.0
142
5
±15.0
±200
0.0
±18.0
89
110
300
Notes:
1. The specified maximum capacitive load is for each output.
2. Cross regulation is measured with the +VOUT (pin 13) set to 50% load and the -VOUT (pin 12) varied
from 25% to 100% load.
3. Output ripple is measured with an external 1 µF/25V MLCC connected from the +VOUT pin to the
-VOUT pin for single output units and from each output to common for dual output units.
4. Transient recovery is measured to within a 1% error band for a load step change of 75% to 100%.
5. Dual output units may be connected to provide a 24 VDC or 30 VDC output. To do this, connect
the load across the positive (+VOUT) and negative (-VOUT) outputs and float the output common.
6. The converter should be connected to a low ac-impedance source. An input source with a highly
inductive impedance may affect the stability of the converter. In applications where the converter
output loading is high and input power is supplied over long lines, it may be necessary to use
a capacitor on the input to insure start-up. In this case, it is recommended that a low ESR (ESR
<1.0⍀ at 100 kHz) capacitor be mounted close to the converter. For 12V input units a 10.0 µF
is recommended, for 24V a 4.7 µF and for 48V units a 2.2 µF.
7. It is recommended that a fuse be used on the input of a power supply for protection. See the
table above for the correct rating.
Temperature Derating, 20 LFM (Ambient Air)
Temperature Derating, 100 LFM
Temperature Derating, 200 LFM
Temperature Derating, 400 LFM
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Typical Connection/ EMI Characteristics
These converters are specified for operation without external components.
EMI Characteristics
Parameter
Conducted Emissions
Radiated Emissions
Standard
EN 55011 4TH Edition
EN 55011 4TH Edition
Criteria
ESD
EN 61000-4-2
A
RS
EFT, See Note at right
Surge, See Note at right
CS
PFMF
EN 61000-4-3
EN 61000-4-4
EN 61000-4-5
EN 61000-4-6
EN 61000-4-8
A
A
A
A
A
Level
Class A
Class A
±15 kV Air
±8 kV Contact
10V/m
±2 kV
±2 kV
10 Vrms
30A/m
Mechanical Dimensions
However, in some applications the addition of input/output capacitors, as shown
in the typical connection diagram above, will enhance stability and reduce output
ripple. This simple connection includes a low ESR (<1ม at 100 kHz) capacitor
connected across the input (C1). It is recommended that a 22 µF be used
for 5V input models, a 10 µF for 12V input models, a 4.7 µF for 24V and
a 2.2 µF for 48V input units. To improve the output ripple performance,
a 4.7 µF is connected across the output. For dual output units, a 4.7 µF
capacitor should be connected from each output to common.
To meet the EN 61000-4-4
and EN 61000-4-5 limits, Input Component Values
C1
the components in the table Model
at right must be connected 12V Input
470 µF/100V
across the input pins of the 24V Input
330 µF/100V
module. These components
220 µF/100V
should be mounted as close to 48V Input
the module as possible.
Pin Connections
Pin
1
11
12
13
15
23
24
Single
+VIN
No Pin
-VOUT
+VOUT
No Pin
-VIN
-VIN
Dual
+VIN
Common
No Pin
-VOUT
+VOUT
-VIN
-VIN
Mechanical Notes:
• All dimensions are typical in inches (mm)
• Tolerance x.xx = ±0.01 (±0.25)
Medical Approved Power Products
Thousands of standard power products ranging from 0.5W to 500W are available from MPD in
a wide variety of packages and pin-outs. This includes many more DC/DC and AC/DC product
families with EN 60601 medical approval. Go to micropowerdirect.com for full information.
MicroPower Direct
We Power Your Success - For Less!
292 Page Street Ste D Stoughton, MA 02072
•
TEL: (781) 344-8226
•
FAX: (781) 344-8481
•
E-Mail: [email protected]
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