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Электронный компонент: MIW1235

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Dual Output
+Vo
PFM
Isolation
Ref.Amp
LC
Filter
+Vin
-Vin
Com.
-Vo
Single Output
PFM
Isolation
Ref.Amp
LC
Filter
+Vin
-Vin
-Vo
+Vo
Block Diagram
Wide Range
2:1
EN55022
EMI
I/O Isolation
1500
VDC
Low Cost
$
Minmax's MIW1200-Series power modules operate over input
voltage ranges of 9-18VDC, 18-36VDC and 36-75VDC which
provide precisely regulated output voltages of 3.3V, 5V, 12V, 15V,
{5V, {12V and {15VDC.
The -40] to +71] operating temperature range makes it ideal
for data communication equipments, mobile battery driven
equipments, distributed power systems, telecommunication
equipments, mixed analog/digital subsystems, process/machine
control equipments, computer peripheral systems and industrial robot
systems.
The modules have a maximum power rating of 3W and a typical
full-load efficiency of 86%, continuous short circuit, 25mA output
ripple, EN55022 Class A conducted noise compliance minimize
design-in time, cost and eliminate the need for external filtering.
Internal SMD Construction
UL 94V-0 Package Material
Industry Standard Pinout
Temperature Performance -40] to +71]
Complies with EN55022 Class A
Short Circuit Protection
2:1 Wide Input Range
MTBF > 1,000,000 Hours
1500VDC Isolation
Efficiency up to 86%
Key Features
2-3W, Wide Input Range DIP, Single & Dual Output DC/DC Converters
MIW1200 Series
REV:0 2005/04
MINMAX
1
83
75
{10
{100
{15
MIW1247
84
74
{12.5
{125
{12
MIW1246
80
65
{25
{250
{5
MIW1245
86
73
20
200
15
MIW1244
85
74
25
250
12
MIW1243
82
64
50
500
5
MIW1242
78
15
4
53
60
600
3.3
48
( 36 ~ 75 )
MIW1241
82
152
{10
{100
{15
MIW1237
82
152
{12.5
{125
{12
MIW1236
78
134
{25
{250
{5
MIW1235
84
149
20
200
15
MIW1234
83
150
25
250
12
MIW1233
80
130
50
500
5
MIW1232
76
15
8
109
60
600
3.3
24
( 18 ~ 36 )
MIW1231
78
321
{10
{100
{15
MIW1227
80
313
{12.5
{125
{12
MIW1226
76
274
{25
{250
{5
MIW1225
81
309
20
200
15
MIW1224
82
305
25
250
12
MIW1223
78
267
50
500
5
MIW1222
75
15
30
220
60
600
3.3
12
( 9 ~ 18 )
MIW1221
% (Typ.)
mA (Typ.)
mA (Typ.)
mA (Typ.)
mA
mA
VDC
VDC
@Max. Load
@No Load
@Max. Load
Min.
Max.
Efficiency
Reflected
Ripple
Current
Input Current
Output Current
Output
Voltage
Input
Voltage
Model
Number
Model Selection Guide
EN55022 Class A
Conducted EMI
Free-Air Convection
Cooling
%
95
---
Humidity
]
+125
-40
Storage Temperature
]
+90
-40
Case
Operating Temperature
]
+71
-40
Ambient
Operating Temperature
Unit
Max.
Min.
Conditions
Parameter
Environmental Specifications
Exceeding the absolute maximum ratings of the unit could cause damage.
These are not continuous operating ratings.
mW
2,500
---
Internal Power Dissipation
]
260
---
Lead Temperature (1.5mm from case for 10 Sec.)
VDC
100
-0.7
48VDC Input Models
VDC
50
-0.7
24VDC Input Models
VDC
25
-0.7
12VDC Input Models
Input Surge Voltage
( 1000 mS )
Unit
Max.
Min.
Parameter
Notes :
1. Specifications typical at Ta=+25], resistive load,
nominal input voltage, rated output current unless
otherwise noted.
2. Transient recovery time is measured to within 1%
error band for a step change in output load of 50%
to 100%.
3. Ripple & Noise measurement bandwidth is 0-20
MHz.
4. These power converters require a minimum
output loading to maintain specified regulation.
5. Operation under no-load conditions will not
damage these modules; however, they may not
meet all specifications listed.
6. All DC/DC converters should be externally fused at
the front end for protection.
7. Other input and output voltage may be available,
please contact factory.
8. Specifications subject to change without notice.
Absolute Maximum Ratings
MIW1200 Series
2
MINMAX
REV:0 2005/04
K Hours
---
---
1000
MIL-HDBK-217F @ 25], Ground Benign
MTBF
KHz
450
300
200
Switching Frequency
pF
500
350
---
100KHz,1V
Isolation Capacitance
M[
---
---
1000
500VDC
Isolation Resistance
VDC
---
---
1650
Flash Tested for 1 Second
Isolation Voltage Test
VDC
---
---
1500
60 Seconds
Isolation Voltage Rated
Unit
Max.
Typ.
Min.
Conditions
Parameter
General Specifications
Continuous
Output Short Circuit
%/]
{0.02
{0.01
---
Temperature Coefficient
%
{6
{3
---
Transient Response Deviation
uS
500
300
---
50% Load Step Change
Transient Recovery Time
%
---
---
120
Over Power Protection
mV rms
15
---
---
Ripple & Noise (20MHz)
mV P-P
75
---
---
Over Line, Load & Temp.
Ripple & Noise (20MHz)
mV P-P
50
25
---
Ripple & Noise (20MHz)
%
{0.5
{0.2
---
Io=10% to 100%
Load Regulation
%
{0.5
{0.2
---
Vin=Min. to Max.
Line Regulation
%
{2.0
{0.5
---
Dual Output, Balanced Loads
Output Voltage Balance
%
{1.0
{0.5
---
Output Voltage Accuracy
Unit
Max.
Typ.
Min.
Conditions
Parameter
Output Specifications
Pi Filter
Input Filter
mW
2000
1000
---
Short Circuit Input Power
A
1
---
---
All Models
Reverse Polarity Input Current
34
22
---
48V Input Models
17
11
---
24V Input Models
8.5
6.5
---
12V Input Models
Under Voltage Shutdown
36
24
16
48V Input Models
18
12
8
24V Input Models
VDC
9
7
4.5
12V Input Models
Start Voltage
Unit
Max.
Typ.
Min.
Model
Parameter
Input Specifications
# For each output
uF
1000
1000
1000
4000
4000
4000
4000
Maximum Capacitive Load
Unit
{15V #
{12V #
{5V #
15V
12V
5V
3.3V
Models by Vout
Capacitive Load
MIW1200 Series
REV:0 2005/04
MINMAX
3
135mA Slow - Blow Type
350mA Slow - Blow Type
700mA Slow - Blow Type
48V Input Models
24V Input Models
12V Input Models
Input Fuse Selection Guide
Vin ( VDC )
10uS
150
140
130
120
110
100
90
80
70
60
100uS
1mS
10mS
100mS
50
40
30
20
10
0
48VDC Input Models
24VDC Input Models
12VDC Input Models
Input Voltage Transient Rating
MIW1200 Series
4
MINMAX
REV:0 2005/04
Derating Curve
]
Ambient Temperature
Output Power (%)
0
20
40
60
80
100
-40
50
60
80
100
110
90
70
400LFM
200LFM
100LFM
Natural
convection
Efficiency vs Output Load ( Dual Output )
Efficiency vs Output Load ( Single Output )
20
30
40
50
60
70
80
90
Load Current (%)
Efficiency (%)
100
60
40
20
10
80
20
30
40
50
60
70
80
90
Load Current (%)
Efficiency (%)
100
60
40
20
10
80
Efficiency vs Input Voltage ( Dual Output )
Efficiency vs Input Voltage ( Single Output )
50
60
70
80
90
100
Efficiency (%)
Input Voltage (V)
Nom
Low
High
50
60
70
80
90
100
Efficiency (%)
Input Voltage (V)
Nom
Low
High
MIW1200 Series
REV:0 2005/04
MINMAX
5
Test Configurations
Input Reflected-Ripple Current Test Setup
Input reflected-ripple current is measured with a inductor
Lin (4.7uH) and Cin (220uF, ESR < 1.0[ at 100 KHz) to
simulate source impedance.
Capacitor Cin, offsets possible battery impedance.
Current ripple is measured at the input terminals of the
module, measurement bandwidth is 0-500 KHz.
Peak-to-Peak Output Noise Measurement Test
Use a Cout 0.47uF ceramic capacitor.
Scope measurement should be made by using a BNC
socket, measurement bandwidth is 0-20 MHz. Position the
load between 50 mm and 75 mm from the DC/DC Converter.
Design & Feature Considerations
Maximum Capacitive Load
The MIW1200 series has limitation of maximum connected
capacitance at the output.
The power module may be operated in current limiting
mode during start-up, affecting the ramp-up and the startup
time.
For optimum performance we recommend 1000uF
maximum capacitive load
for dual outputs and 4000
u
F
capacitive load
for single outputs.
The maximum capacitance can be found in the data sheet.
Overcurrent Protection
To provide protection in a fault (output overload) condition,
the unit is equipped with internal current limiting circuitry and
can endure current limiting for an unlimited duration. At the
point of current-limit inception, the unit shifts from voltage
control to current control. The unit operates normally once the
output current is brought back into its specified range.
Input Source Impedance
The power module should be connected to a low
ac-impedance input source. Highly inductive source
impedances can affect the stability of the power module.
In applications where power is supplied over long lines and
output loading is high, it may be necessary to use a capacitor
at the input to ensure startup.
Capacitor mounted close to the power module helps
ensure stability of the unit, it is recommended to use a good
quality low Equivalent Series Resistance (ESR < 1.0[ at 100
KHz) capacitor of a 3.3uF for the 12V input devices and a
1.5uF for the 24V and 48V devices.
Output Ripple Reduction
A good quality low ESR capacitor placed as close as
practicable across the load will give the best ripple and noise
performance.
To reduce output ripple, it is recommended to use 3.3uF
capacitors at the output.
MIW1200 Series
6
MINMAX
REV:0 2005/04
+Out
-Out
+Vin
-Vin
DC / DC
Converter
Load
Battery
+
Lin
+
Cin
To Oscilloscope
Current
Probe
+Out
-Out
+Vin
-Vin
Dual Output
DC / DC
Converter
Resistive
Load
Scope
Copper Strip
Cout
Com.
Scope
Cout
+Out
-Out
+Vin
-Vin
Single Output
DC / DC
Converter
Resistive
Load
Scope
Copper Strip
Cout
+
+Out
-Out
+Vin
-Vin
DC / DC
Converter
Load
DC Power
Source
+
-
Cin
+Out
-Out
+Vin
-Vin
Load
DC Power
Source
+
-
Cout
Com.
Dual Output
DC / DC
Converter
+Out
-Out
+Vin
-Vin
Load
DC Power
Source
+
-
Cout
Single Output
DC / DC
Converter
Thermal Considerations
Many conditions affect the thermal performance of the
power module, such as orientation, airflow over the module
and board spacing. To avoid exceeding the maximum
temperature rating of the components inside the power
module, the case temperature must be kept below 90C.
The derating curves are determined from measurements
obtained in an experimental apparatus.
MIW1200 Series
REV:0 2005/04
MINMAX
7
DUT
Position of air velocity
probe and thermocouple
50mm / 2in
Air Flow
15mm / 0.6in
The MIW1200 converter is encapsulated in a low thermal resistance molding compound that has excellent resistance/electrical
characteristics over a wide temperature range or in high humidity environments.
The encapsulant and unit case are both rated to UL 94V-0 flammability specifications.
Leads are tin plated for improved solderability.
NC: No Connection
+Vin
+Vin
23
UL94V-0
:
Flammability
+Vin
+Vin
22
Common
-Vout
16
12.2g
:
Weight
+Vout
+Vout
14
-Vout
NC
11
Non-Conductive Black Plastic
:
Case Material
Common
No Pin
9
-Vin
-Vin
3
1.25*0.80*0.40 inches
-Vin
-Vin
2
31.8*20.3*10.2 mm
:
Case Size
Dual Output
Single Output
Pin
Physical Characteristics
Pin Connections
{0.002
{0.05
Pin
X.XXX{0.005
X.XX{0.13
X.XX{0.01
X.X{0.25
Inches
Millimeters
Tolerance
Dual Output
Single Output
31.8 [1.25]
10
.2 [0
.4
0
]
20
.3 [0
.8
0
]
Bottom
4.5
[0.
1
8]
Side
2 3
11
14
22
23
16
9
0.50 [0.020]
2.54 [0.100]
15
.22
[0.6
0
0
]
2.5
[0.
1
0]
4.5 [0.18]
Connecting Pin Patterns
Top View ( 2.54 mm / 0.1 inch grids )
Mechanical Dimensions
MIW1200 Series
8
MINMAX
REV:0 2005/04