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MFLHP2805S

Part # MFLHP2805S
Description DC/DC CONVERTERS 28 VOLT12PIN 25°C Tc, 28 VDC Vin
Category CONVERTER
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

MODELS
VDC OUTPUT
B2-19
Size (max.): 3.005 x 1.505 x 0.400 inches (76.33 x 38.23 x 10.16 mm)
See Section B8, case U1, for dimensions.
Weight: 100 grams maximum
Screening: Standard or ES. See Section C2 for screening options,
see Section A5 for ordering information.
SINGLE
5
12
15
DUAL
±5
±12
±15
DESCRIPTION
The MFLHP Series™ 28 volt DC/DC converters are rated up to 100
watts output power over a –55° to +100°C temperature range with a
28 Vdc nominal input. On dual output models, up to 70% of the rated
output power can be drawn from either the positive or negative
outputs. Current sharing allows the units to be paralleled for total
power of up to 270 watts. The welded, hermetically sealed package
is only 3.005 x 1.505 x 0.400 inches, giving the series an overall
power density of up to 67 watts per cubic inch.
DESIGN FEATURES
The MFLHP Series converters are switching regulators that use a
quasi-square wave, single ended forward converter design with a
constant switching frequency of 600 kHz.
Isolation between input and output circuits is provided with a trans-
former in the forward path and wide bandwidth magnetic coupling in
the feedback control loop. The MFLHP Series uses a unique dual
loop feedback technique that controls output current with an inner
feedback loop and output voltage with a cascaded voltage mode
feedback loop.
The additional secondary current mode feedback loop improves
transient response in a manner similar to primary current mode
control and allows for ease of paralleling.
Tight load regulation is achieved through a wide-bandwidth
magnetic feedback circuit. The output voltage on single MFLHP
models can be easily trimmed by adding an external resistor. (See
Figure 1 for voltage changes with different resistor values.)
INHIBIT
The MFLHP Series converters have two TTL compatible inhibit
terminals (INH1 and INH2) that can be used to disable power
conversion, resulting in a very low quiescent input current. An open
collector TTL compatible low (<0.8 volts) is required between INH1
(pin 4) and Input Common (pin 2) to inhibit the converter. An open
collector TTL compatible low (<0.5 volts) is required between INH2
(pin 12) and Output Common (pin 8) to inhibit the converter. The
application of intermediate voltages to these pins (1.5 to 10.5 volts)
should be avoided.
CURRENT S
HARING AND PARALLEL OPERATION
Multiple MFLHP converters may be used in parallel to drive a
common load (see Figure 2). In this mode of operation the load
current is shared by two or three MFLHP converters. In current
sharing mode, one MFLHP converter is designated as a master. The
SLAVE pin (pin 11) of the master is left unconnected and the
MSTR/INH2 pin (pin 12) of the master is connected to the SLAVE
pin (pin 11) of the slave units. The units designated as slaves have
the MSTR/INH2 pin (pin 12) connected to the SNS RTN pin (pin 9).
Figure 2 shows the typical setup for two or three units in parallel.
Note that synchronizing the units together (though shown in the
figure) is not required for current sharing operation. A second slave
unit may be placed in parallel with a master and slave; this requires
the TRI pin (pin 3) of the master unit to be connected to the SNS
RTN pin (pin 9).
When paralleled, 76% of the total combined power ratings of the
MFLHP converters are available at the load. Overload and short
circuit performance are not adversely affected during parallel
operation.
DC/DC CONVERTERS
28 VOLT INPUT
MFLHP SERIES
100 WATT
FEATURES
–55° to +100°C operation
19 to 40 VDC input
Fully Isolated
Magnetic feedback
Fixed frequency, 600 kHz typical
Topology – Single Ended Forward
80 V for up to 50 ms transient protection
Inhibit function – input and output
Sync function – input and output
Output trim on single output models
Indefinite short circuit protection
Remote sense on single output models
Up to 87% efficiency
Parallelable up to 228 watts
TYPICAL CHARACTERISTICS
SYNC IN AND INHIBIT (INH1, INH2)
RECOMMENDED OPERATING CONDITIONS
ABSOLUTE MAXIMUM RATINGS
Input Voltage
19 to 40 VDC
Power Dissipation (Pd)
20 watts
Output Power
80 to 100 watts depending on model
Lead Soldering Temperature (10 sec per lead)
300°C
Storage Temperature Range (Case)
–65°C to +150°C
B2-20
MFLHP SERIES
100 WATT
DC/DC CONVERTERS
Output Voltage Temperature Coefficient
100 ppm/°C typical
Input to Output Capacitance
150 pF typical
Isolation
100 megohm minimum at 500 V
Audio Rejection
50 dB typical
Conversion Frequency
Free run mode 600 kHz typical
550 kHz min, 650 kHz. max
External sync range 525 to 675 kHz
Inhibit Pin Voltage (unit enabled)
INH1 = 9 to12 V, INH2 = 6 to 9 V
Input Voltage Range
19 to 40 VDC continuous
80 V for 50 msec transient
Case Operating Temperature (Tc)
–55 to +100°C full power
–55 to +135°C absolute
Derating Output Power/Current
Linearly from 100% at 100°C to 0% at 135°C
Electrical Characteristics: –50°C to +100°C Tc, 28 VDC Vin, 100% load, free run, unless otherwise specified.
Sync In (525 to 675 kHz)
Duty cycle 40% min, 60% max
Logic low 0.8 V max
Logic high 4.5 V min
Referenced to input common
If not used, connect to input common
Sync Out - Referenced to input common
Inhibit (INH1, INH2) TTL Open Collector
Logic low (output disabled)
Current –10 to –5 mA
INH1 referenced to input common
Logic low 0.8 V max
INH2 referenced to output common
Logic low 0.5 V max
Logic high (output enabled)
Open collector
Notes
1. Unit will shut down above approximately 45V but will be undamaged and
will restart when voltage drops into normal range.
2. Indefinite short circuit protection not guaranteed above 100°C case.
3. Recovery time is measured from application of the transient to point at
which Vout is within 1% of final value.
4. Transition time 10 µs.
SINGLE OUTPUT MODELS MFLHP2805S MFLHP2812S MFLHP2815S
PARAMETER CONDITION MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS
OUTPUT VOLTAGE 25°C 4.95 5.00 5.05 11.88 12.00 12.12 14.85 15.00 15.15 VDC
OUTPUT CURRENT V
IN
= 19 to 40 VDC 0 16 0 7.5 0 6.67 A
OUTPUT POWER V
IN
= 19 to 40 VDC 0 80 0 90 0 100 W
OUTPUT RIPPLE Tc = 25°C 15 35 30 75 30 85
VOLTAGE 10 k - 2 MHz Tc = –55°C to +100°C 30 75 45 125 45 150
mV p-p
LINE REGULATION V
IN
= 19 to 40 VDC 0 20 0 20 0 20 mV
LOAD REGULATION NO LOAD TO FULL 0 20 0 20 0 20 mV
INPUT VOLTAGE CONTINUOUS 19 28 40 19 28 40 19 28 40 VDC
NO LOAD TO FULL TRANSIENT
1
50 ms 80 80 80 V
INPUT CURRENT NO LOAD 70 120 50 80 50 80 mA
FULL LOAD 3.6 3.73 3.8 3.95 4.2 4.40 A
INHIBITED - INH1 9 14 9 14 9 14
mA
INHIBITED - INH2 35 70 35 70 35 70
INPUT RIPPLE
CURRENT 10 kHz - 10 MHz 15 50 15 50 15 50 mA pp
EFFICIENCY Tc = 25°C 77 80 83 86 84 87 %
LOAD FAULT
2
POWER DISSIPATION
Tc = 25°C SHORT CIRCUIT 15 20 15 20 15 20 W
RECOVERY 1.5 4 1.5 4 1.5 4 ms
STEP LOAD RESP. 50% – 100% – 50%
TRANSIENT 350 450 450 700 450 700 mV pk
RECOVERY
3
1.5 3.0 1.5 3.0 1.5 3.0 ms
STEP LINE RESP. 19 – 40 – 19 VDC
TRANSIENT
4
250 400 250 400 250 400 mV pk
RECOVERY
3
200 300 200 300 200 300 µs
START-UP DELAY 3.5 6 3.5 6 3.5 6 ms
OVERSHOOT 0 25 0 50 0 50 mV pk
PINS NOT USED
TR1, Master, and Slave
If not used, leave unconnected
B2-21
MFLHP SERIES
100 WATT
DC/DC CONVERTERS
Electrical Characteristics: –55°C to +100°C Tc, 28 VDC Vin, 100% load, free run, unless otherwise specified.
DUAL OUTPUT MODELS MFLHP2805D MFLHP2812D MFLHP2815D
PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS
OUTPUT VOLTAGE +V
OUT
4.95 5.00 5.05 11.88 12.00 12.12 14.85 15.00 15.15
VDC
Tc = 25°C –V
OUT
4.92 5.00 5.08 11.82 12.00 12.18 14.77 15.00 15.23
OUTPUT CURRENT
1
EACH OUTPUT 0 11.2 0 5.3 0 4.67
A
V
IN
= 19 TO 40 VDC TOTAL 0 16.0 0 7.5 0 6.67
OUTPUT POWER EACH OUTPUT 0 56 0 63 0 70
W
V
IN
= 19 TO 40 VDC TOTAL 0 80 0 90 0 100
OUTPUT RIPPLE 10 kHz - 2 MHz
VOLTAGE +V
OUT
25 125 50 150 50 200
mV p-p
–V
OUT
25 125 50 150 50 200
LINE REGULATION +V
OUT
0 50 0 50 0 50
mV
V
IN
= 19 TO 40 VDC –V
OUT
25 100 25 100 25 100
LOAD REGULATION +V
OUT
0 50 10 100 10 100
mV
NO LOAD TO FULL –V
OUT
25 100 50 200 50 200
CROSS REGULATION SEE NOTE 2 6 8 2 4 2 4
%
Tc = 25°C SEE NOTE 3 3 6 2 4 2 4
INPUT VOLTAGE CONTINUOUS 19 28 40 19 28 40 19 28 40 VDC
NO LOAD TO FULL TRANSIENT
4
50 ms 0 80 0 80 0 80 V
INPUT CURRENT NO LOAD 50 120 50 100 550 100 mA
Tc = 25°C FULL LOAD 3.6 3.8 4.2 A
INHIBITED - INH1 9 14 9 14 9 14
mA
INHIBITED - INH2 35 70 35 70 35 70
INPUT RIPPLE
CURRENT 10 kHz - 10 MHz 15 50 15 50 15 50 mA p-p
EFFICIENCY 25°C Tc BALANCED LOAD 77 80 83 86 84 87 %
LOAD FAULT
5
POWER DISSIPATION
Tc = 25°C SHORT CIRCUIT 15 20 15 20 15 20 W
RECOVERY 1.5 4.0 1.5 4.0 1.5 4.0 ms
STEP LOAD 50 %–100%– 50% LOAD
RESPONSE ± V
OUT
TRANSIENT 350 450 450 700 450 700 mV pk
RECOVERY
6
1.5 3.0 1.5 3.0 1.5 3.0 ms
STEP LINE 19 – 40 – 16 V
IN
RESPONSE ± V
OUT
TRANSIENT
7
250 400 250 400 250 400 mV pk
RECOVERY
6
200 300 200 300 200 300 µs
START–UP DELAY 3.5 6 3.5 6 3.5 6 ms
OVERSHOOT 0 25 0 50 0 50 mV p
Notes
1. Up to 70% of the total output power is available from either output providing
the opposite output is simultaneously carrying 30% of the total power.
2. Effect on the negative output under the following conditions:
+P
out
30% to 70%; –P
out
70% to 30%
3. Effect on the negative output under the following conditions:
+P
out
50%; –P
out
10% to 50%
4. Unit will shut down above approximately 45V but will be undamaged and
will restart when voltage drops into normal range.
5. Indefinite short circuit protection not guaranteed above 100°C case.
6. Recovery time is measured from application of the transient to point at
which Vout is within 1% of final value.
7. Transition time 10 µs.
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