MAKE-PS 2115D24

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2100 series
Single, Dual, Triple Output
DC/DC Converter
FEATURES
•
•
•
•
•
•
•
6 sided Continuous Shielding
Synchronization and Output Trim
12.5W/In3 Power Density
Efficiency to 87%
UL 1950 Approved
CSA 22.2-950 Approved
VDE / EN 60950 Approved
DESCRIPTIONS
INPUT CHARACTERISTICS
The 2100 series 20 watts high performance DC/DC
converters are cost effective solution to the high reliability
and performance requirements of power distribution
systems in applications ranging from high speed data
communications equipment to industrial robotic systems.
The 2100 series operates over 2:1 input voltage ranges of
10 to 18, 18 to 36 or 36 to 72VDC; providing single, dual and
triple output combinations of 5, 12, 15, ±5, ±12, ±15, 5/±12 and
5/±15 VDC. All models are packaged in compact, low profile
2” X 2” X 0.4” metal cases.
Min Typ Max Unit/Comments
Input Voltage Range
12 VDC Input Models
VDC
10 12 18
24 VDC Input Models
VDC
18 24 36
48 VDC Input Models
VDC
36 48 72
Remote On / OFF Control
Supply ON
5.5 VDC or Open Circuit
Supply OFF
0 VDC to 0.8 VDC
Logic Referenced to Negative Input
Reverse Polarity Input Current
Amp
12
Input Filter
Internal Capacitor;
External 10-20 μF
cap recommended
across input pins
OUTPUT CHARACTERISTICS
Min Typ Max Unit/Comments
Output Voltage Accuracy
Single & Dual Outputs
Triple Outputs - Primary
- Auxiliaries
Output Voltage Trim Range
Voltage Balance:
Dual Outputs
Triple Outputs (Auxiliaries)
Minimum Load
Line Regulation
Single & Dual Outputs
Triple Outputs - Primary
- Auxiliaries
Load Regulation
Single Outputs
Dual Outputs
Triple Outputs - Primary
- Auxiliaries
Ripple/Noise
5V Outputs
12V and 15V Outputs
Short Circuit Protection
Transient Recovery Time
Temperature Coefficient
±1.0
±1.0
±7.0
±10
%1
%1
%1
%
±1.0 %; Equal Output Loads
±1.0 %; Equal Output Loads
10% Full Load
±0.5 % 2
±0.5 % 2
5.0 % 2
±0.3
±1.0
±0.5
±5.0
GENERAL CHARACTERISTICS
Switching Frequency
Isolation Voltage
Isolation Resistance
Isolation Capacitance
MTBF (MIL-HBK-217F)
%3
% 3 ; Equal Loads
%3
% 3 ; Equal Loads
100 mV; p-p, Nom.Line FL,
20Mhz B.W. using
1 μf bypass capacitor
1 % of Vout
Continuous, Automatic Recovery
200 μS to within1% error
band for 50% step
load change
±0.01 % per oC
1
2
3
Min Typ Max Unit/Comments
100
kHz
1400
VDC, 1 minute
1000
Mohm, 500VDC
60
pF, 100kHz, 1Volt
700
Thousand Hours,
+25oC, Ground
Benign
= Output voltage at nominal line & FL
= % Output voltage measured from min. input line to maximum
= Output voltage measured from FL to 10% Load
>> B-166
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E-mail:[email protected]
ENVIRONMENTAL SPECIFICATIONS
Min
-25
Operating Temp. Range
(Industrial)
Operating Temp. Range
(Extended, “-X” suffix)
Storage Temp. Range
Relative Humidity
PHYSICAL CHARACTERISTICS
Typ Max Unit/Comments
+71 oC; Ambient
Unit/Comments
2.0 X 2.0 X 0.4 inches
(51.0 X 51.0 X 10.2 mm)
Coated Metal with NonConductive Base
Case Size
-55
+85 oC; Ambient
Case Material
-55
+125 oC
95 % Humidity; noncondensing
Free-Air Convection
Shield Connection
12V and 24V Input Models
48V Input Models
Flammability
Weight
Cooling
Negative Input
Positive Input
UL94V-0
79 Grams
OUTLINE DRAWING
CASE A
2.00 (50.8)
8
0.10
(2.5)
0.40 0.40
(10.2) (10.2)
0.40
(10.2)
0.40
(10.2)
7
6
0.90
(22.9)
3
PIN OUT CHART; CASE A
5
BOTTOM
4
0.040±.005
(1.01)
DIA.
2
2.00
(50.8)
SIDE
Pin
1
2
3
4
5
6
7
8
Single
Dual
Triple
Remote On/Off Remote On/Off Remote On/Off
Sync
Sync
Sync
- Vin
- Vin
- Vin
+ Vin
+ Vin
+ Vin
Trim
Trim
- Vout (Aux)
- Vout
- Vout
Common
+ Vout
Common
+5V Vout
No Pin
+ Vout
+Vout (Aux)
1
0.10
(2.5)
.20 .20 .20
(5.1) (5.1) (5.1)
0.15MIN.
(3.8)
0.40
(10.2)
CASE A1
2.00 (50.8)
0.40
(10.2)
0.40
(10.2)
3
4
0.60
(15.2)
0.040±.005
(1.01)
DIA.
5
2.00
0.80
(50.8)
(20.3)
BOTTOM
1
0.20
(5.1)
PIN OUT CHART; CASE A1
2
SIDE
0.60
(15.2)
0.90
(22.9)
0.15MIN.
(3.8)
0.40
(10.2)
Pins
1
2
3
4
5
Single
+ Vin
- Vin
+ Vout
Trim
- Vout
Dual
+ Vin
- Vin
+ Vout
Common
- Vout
Notes:
1. Unless otherwise specified dimensions are in inches (mm).
Tolerances
Inches
mm
X.XX = ±0.02
X.X = ±0.5
X.XXX= ±0.010
X.XX = ±0.25
All specifications are typical at nominal input, nominal load and 25° C unless otherwise specified.
External, low ESR, 10 microfarad (minimum) capacitor across output is recommended for operation.
>> B-167
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E-mail:[email protected]
HOW TO ORDER
HOW TO ORDER
SINGLE AND DUAL OUTPUT
21 XX D XX - A1X - Y
Series
RoHS Compliant
Options:
-A1 = Optional Pin Config.
-X = Ext. Temp. Range
Nominal Input Voltage
Output Voltage
Output Configuration
(S=Single, D=Dual)
TRIPLE OUTPUT
21 XX /15 T XX - A1X - Y
Series
RoHS Compliant
Output Voltage
Options:
-A1 = Optional Pin Config.
-X = Ext. Temp. Range
Nominal Input Voltage
Aux Output
Voltage
Output Configuration
(T=Triple)
MODEL SELECTION CHART
Model
2105S12
2112S12
2115S12
2105D12
2112D12
2115D12
2105S24
2112S24
2115S24
2105D24
2112D24
2115D24
2105S48
2112S48
2115S48
2105D48
2112D48
2115D48
2105/12T12
2105/15T12
2105/12T24
2105/15T24
2105/12T48
2105/15T48
Nominal
Input
Voltage
(VDC)
Output
Voltage
(VDC)
Full Load
Output
Current
(mA)
No Load
Input
Current
(mA)
Full Load
Input
Current
(mA)
Output
Over
Voltage
(VDC)
Fuse
(A)
Efficiency
(%)
12
12
12
12
12
12
24
24
24
24
24
24
48
48
48
48
48
48
12
12
24
24
48
48
5
12
15
±5
±12
±15
5
12
15
±5
±12
±15
5
12
15
±5
±12
±15
5, ±12
5, ±15
5, ±12
5, ±15
5, ±12
5, ±15
4000
1660
1330
±2000
±830
±665
4000
1660
1330
±2000
±830
±665
4000
1660
1330
±2000
±830
±665
2000, ±416
2000, ±333
2000, ±416
2000, ±333
2000, ±416
2000, ±333
45
45
45
45
45
45
35
35
35
35
35
35
32
32
32
32
32
32
60
60
60
60
30
30
2100
2100
2057
2000
2000
1500
1000
990
990
1016
1000
1000
490
500
500
502
482
478
2081
2082
1015
1016
502
502
6.8
15.0
18.0
±6.8
±15.0
±18.0
6.8
15.0
18.0
±6.8
±15.0
±18.0
6.8
15.0
18.0
±6.8
±15.0
±18.0
6.8, ±15.0
6.8, ±18.0
6.8, ±15.0
6.8, ±18.0
6.8, ±15.0
6.8, ±18.0
4.0
4.0
4.0
4.0
4.0
4.0
2.0
2.0
2.0
2.0
2.0
2.0
1.5
1.5
1.5
1.5
1.5
1.5
4.0
4.0
2.0
2.0
1.5
1.5
80
80
80
81
83
83
83
84
84
82
83
83
85
83
83
83
86
87
80
80
82
82
83
83
>> B-168
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E-mail:[email protected]
OUTPUT VOLTAGE ADJUSTMENT (2100 SERIES - SINGLE OUTPUT)
The converter’s output voltage may be trimmed by up to ±10% of the nominal output voltage.
TRIM UP (Case A)
Trim output voltage up by connecting an external resistor between Pins 5 and 6. Use the following
equation, reference Table 1 for variables A.
Radj-up =
A
Δ%
- 24 (kΩ)
8
4
3
2
1
Example:
Trim both outputs 5% up for 12V Output units,
where A = 1.98, Δ % = 0.05
Radj-up =
1.98
0.05
+V1 OUT 7
-V1 OUT 6
TRIM 5
Radj-up
- 24 kΩ= 15.6 kΩ
Table 1.
Output Voltage
A
5V
12V
15V
1.24
1.98
2.07
TRIM DOWN (Case A)
Trim output voltage down by connecting an external resistor between Pins 7 and 5. Use the following
equation, reference Table 2 for variables C and D.
Radj-down =
C
Δ%
- D (kΩ)
+V1 OUT 7
Example:
Trim 4% down for 5V Output units,
where C =1.24, D = 26.5, Δ % = 0.04
Radj-down =
1.24
0.04
4
3
2
1
-V1 OUT 6
TRIM 5
Radj-down
- 26.5 kΩ = 4.5 kΩ
Table 2.
Output Voltage
C
D
5V
12V
15V
1.24
7.57
10.3
26.5
33.5
36.4
>> B-169
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E-mail:[email protected]
OUTPUT VOLTAGE ADJUSTMENT (2100 SERIES - DUAL OUTPUT)
The converter’s output voltage may be trimmed by up to ±10% of the nominal output voltage.
TRIM UP (Case A)
Trim output voltage up by connecting an external resistor between Pins 5 and 8. Use the following
equation, reference Table 1 for variables A.
Radj-up =
A
Δ%
- 24 (kΩ)
+ OUT 8
Example:
Trim both outputs 5% up for 12V Output units,
where A = 1.98, Δ % = 0.05
Radj-up =
2.23
0.05
4
3
2
1
COM 7
-OUT 6
TRIM 5
Radj-up
- 24 kΩ= 20.6 kΩ
Table 1.
Output Voltage
A
5V
12V
15V
1.87
2.23
2.28
TRIM DOWN (Case A)
Trim output voltage down by connecting an external resistor between Pins 5 and 8. Use the following
equation, reference Table 2 for variables C and D.
Radj-down =
C
Δ%
- D (kΩ)
+ OUT 8
Example:
Trim 5% down for 5V Output units,
where C =5.63, D = 31.5, Δ % = 0.05
Radj-down =
5.63
0.05
4
3
2
1
COM 7
-OUT 6
TRIM 5
Radj-down
- 31.5 kΩ = 81.1 kΩ
Table 2.
Output Voltage
C
D
5V
12V
15V
5.63
19.3
25.1
31.5
45.5
51.4
>> B-170
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DERATING CURVES
MODEL 2100 - 20W, 5VDC
Output Power (Watts)
25
0.57 Watt/ °C
20
15
10
5
0
-20
0
20
40
60
80
100
120
TEMPERATURE C
MODEL 2100 - All other models
Output Power (Watts)
25
0.45 Watt/ °C
20
15
10
5
0
-20
0
20
40
60
80
100
120
TEMPERATURE ° C
Notes:
1. The derating curves shown for the 2100 series represents ambient operating conditions. They assume that good thermal design
practices are being used, including sufficient space in the vicinity of the converter for good air circulation. There are cetain alternate
techniques that can be utilized when the ambient temperature reaches the upper limit of a particular model:
a. Using a heat sink.
b. Mounting the converter on a metal plate which acts as a heat sink.
c. Cooling by forced air.
Any of the above methods (or a combination of heat sinking and forced air) will increase the operating range of the converter up to
85oC maximum ambient temperature. However the baseplate (case) temperature must not exceed 115oC for more than one minute
under any conditions.
2. External Synchronizing - All models in the 2100 series (packaged in the standard “A” case) can be synchronized to an external clock
by driving the SYNC pin (pin 2) directly with open collector-open drain (1 TTL load). The driving signal frequency must be 220kHz, +/5% (20% low, 80% high duty cycle.
3. Although all models feature internal short circuit protection, it is recommended that their inputs be protected externally with a fuse.
The fuse used must be a Slow-Blow type. Recommended rates are shown in the far right column of the model selection guide.
>> B-171