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DS_S48SA1R812_06012006 

 
 
This power module is not internally fused. To achieve 
optimum safety and system protection, an input line 
fuse is highly recommended. The safety agencies 
require a normal-blow fuse with 3A maximum rating to 
be installed in the ungrounded lead. A lower rated fuse 
can be used based on the maximum inrush transient 
energy and maximum input current.

 

 
Soldering and Cleaning Considerations 

 
Post solder cleaning is usually the final board assembly 
process before the board or system undergoes 
electrical testing. Inadequate cleaning and/or drying 
may lower the reliability of a power module and 
severely affect the finished circuit board assembly test. 
Adequate cleaning and/or drying is especially important 
for un-encapsulated and/or open frame type power 
modules. For assistance on appropriate soldering and 
cleaning procedures, please contact Delta’s technical 
support team. 
 

DESIGN CONSIDERATION 

 
Input Source Impedance 

 
The impedance of the input source connecting to the 
DC/DC power modules will interact with the modules 
and affect the stability. A low ac-impedance input 
source is recommended. If the source inductance is 
more than a few 

µ

H, we advise adding a 10 to 100 

µ

electrolytic capacitor (ESR < 0.7 

 at 100 kHz) 

mounted close to the input of the module to improve the 
stability. 

 

 

Layout and EMC Considerations 

 
Delta’s DC/DC power modules are designed to operate 
in a wide variety of systems and applications. For 
design assistance with EMC compliance and related 
PWB layout issues, please contact Delta’s technical 
support team. An external input filter module is 
available for easier EMC compliance design. 

 

Application notes to assist designers in addressing 
these issues are pending release. 
 

Safety Considerations 

 
The power module must be installed in compliance with 
the spacing and separation requirements of the end-
user’s safety agency standard if the system in which the 
power module is to be used must meet safety agency 
requirements. 
 
When the input source is 60Vdc or below, the power 
module meets SELV (safety extra-low voltage) 
requirements. If the input source is a hazardous voltage 
which is greater than 60 Vdc and less than or equal to 
75 Vdc, for the module’s output to meet SELV 
requirements, all of the following must be met: 
 

 

The input source must be insulated from any 

hazardous voltages, including the ac mains, with 
reinforced insulation. 

 

 

One Vi pin and one Vo pin are grounded, or all the 

input and output pins are kept floating. 

 

 

The input terminals of the module are not operator 

accessible.  

 

 

A SELV reliability test is conducted on the system 

where the module is used to ensure that under a 
single fault, hazardous voltage does not appear at 
the module’s output. 

 
Do not ground one of the input pins without grounding 
one of the output pins. This connection may allow a 
non-SELV voltage to appear between the output pin 
and ground. 

 

  6 

Summary of Contents for 33W Family

Page 1: ...as extremely high reliability under highly stressful operating conditions All models are protected from abnormal input output voltage and current conditions APPLICATIONS Telecom DataCom Wireless Netw...

Page 2: ...and Noise 5Hz to 20MHz bandwidth Peak to Peak Full Load 1 F ceramic 10 F tantalum 30 75 mV RMS Full Load 1 F ceramic 10 F tantalum 5 20 mV Operating Output Current Range 0 12 A Output DC Current Limi...

Page 3: ...Efficiency vs load current for minimum nominal and maximum input voltage at 25 C Figure 2 Power dissipation vs load current for minimum nominal and maximum input voltage at 25 C 0 0 0 1 0 2 0 3 0 4 0...

Page 4: ...ceramic capacitor Top Trace Vout 50mV div Bottom Trace Iout 5A div Figure 7 Output voltage response to step change in load current 75 50 of Io max di dt 0 1A s Load cap 10 F 100 m ESR tantalum capacit...

Page 5: ...urement should be made using a BNC cable length shorter than 20 inches Position the load between 51 mm to 76 mm 2 inches to 3 inches from the module 0 0 0 3 0 6 0 9 1 2 1 5 1 8 2 1 0 0 2 0 4 0 6 0 8 0...

Page 6: ...elta s DC DC power modules are designed to operate in a wide variety of systems and applications For design assistance with EMC compliance and related PWB layout issues please contact Delta s technica...

Page 7: ...will automatically shut down hiccup mode The modules will try to restart after shutdown If the overload condition still exists the module will shut down again This restart trial will continue until th...

Page 8: ...n if this feature is not used Figure 15 Circuit configuration for trim down decrease output the external resistor is connected between the TRIM voltage If and Vo pins the output voltage set point decr...

Page 9: ...n the neighboring PWB and the top of the power module or a heat sink is 6 35mm 0 25 Thermal Derating Heat can be removed by increasing airflow over the module Figure 18 and 19 show maximum output is a...

Page 10: ...DS_S48SA1R812_06012006 10 PICK AND PLACE LOCATION SURFACE MOUNT TAPE REEL RECOMMENDED PAD LAYOUT SMD...

Page 11: ...the pin Vout joint 11 LEADED Sn Pb PROCESS RECOMMEND TEMP PROFILE Time sec Pre heat temp 140 180 C 60 120 sec Peak temp 210 230 C 5sec Ramp up temp 0 5 3 0 C sec Temperature C 50 100 150 200 250 300...

Page 12: ...ut Positive output voltage 2 Vout Negative output voltage 6 Trim Output voltage trim 8 ON OFF ON OFF logic 11 Vin Negative input voltage 12 Vin Positive input voltage Optional Pin Name Function 4 Sens...

Page 13: ...FA 36V 75V 1 3A 2 5V 10A 88 5 S48SA3R310NRFA 36V 75V 1 3A 3 3V 10A 90 5 S48SA05006NRFA 36V 75V 1 3A 5 0V 6 6A 90 5 S48SA12003NRFB 36V 75V 1 3A 12V 3 0A 90 0 CONTACT www delta com tw dcdc USA Telephone...

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