Delta Electronics Delphi E36SR05015NRFA Datasheet Download Page 8

 

DS_E36SR05015_01042008 

 
 

FEATURES DESCRIPTIONS 

 
Over-Current Protection 

 
The modules include an internal output over-current 
protection circuit, which will endure current limiting for 
an unlimited duration during output overload. If the 
output current exceeds the OCP set point, the modules 
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 the overload 
condition is corrected. 

 

Over-Voltage Protection 

 
The modules include an internal output over-voltage 
protection circuit, which monitors the voltage on the 
output terminals. If this voltage exceeds the over-voltage 
set point, the module will shut down and latch off. The 
over-voltage latch is reset by either cycling the input 
power or by toggling the on/off signal for one second.   
 

Over-Temperature Protection 

 
The over-temperature protection consists of circuitry 
that provides protection from thermal damage. If the 
temperature exceeds the over-temperature threshold 
the module will shut down.   
 
The module will try to restart after shutdown. If the 
over-temperature condition still exists during restart, the 
module will shut down again. This restart trial will 
continue until the temperature is within specification. 
 

Remote On/Off 

 
The remote on/off feature on the module can be either 
negative or positive logic. Negative logic turns the 
module on during a logic low and off during a logic high. 
Positive logic turns the modules on during a logic high 
and off during a logic low.   
 
Remote on/off can be controlled by an external switch 
between the on/off terminal and the Vi(-) terminal. The 
switch can be an open collector or open drain. 
 
For negative logic if the remote on/off feature is not 
used, please short the on/off pin to Vi(-). For positive 
logic if the remote on/off feature is not used, please 
leave the on/off pin to floating. 

Vo(+)

Vi(+)

Vo(-)

Sense(-)

Sense(+)

Vi(-)

ON/OFF

 

 

Figure 16: Remote on/off implementation

 

 

Remote Sense 

 
Remote sense compensates for voltage drops on the 
output by sensing the actual output voltage at the point 
of load. The voltage between the remote sense pins 
and the output terminals must not exceed the output 
voltage sense range given here: 
 

[Vo(+) – Vo(–)] – [SENSE(+) – SENSE(–)] 

 10% 

×

 Vout 

 
This limit includes any increase in voltage due to 
remote sense compensation and output voltage set 
point adjustment (trim). 
 

Vi(-)

Vi(+)

Vo(-)

Vo(+)

Sense(+)

Sense(-)

Resistance

Contact

Contact and Distribution

Losses

 

 

Figure 17: Effective circuit configuration for remote sense 
operation 

 
If the remote sense feature is not used to regulate the 
output at the point of load, please connect SENSE(+) to 
Vo(+) and SENSE(–) to Vo(–) at the module. 
 
The output voltage can be increased by both the 
remote sense and the trim; however, the maximum 
increase is the larger of either the remote sense or the 
trim, not the sum of both. 
 
When using remote sense and trim, the output voltage 
of the module is usually increased, which increases the 
power output of the module with the same output 
current.  
 
Care should be taken to ensure that the maximum 
output power does not exceed the maximum rated 
power. 
 

 

Summary of Contents for Delphi E36SR05015NRFA

Page 1: ...t single output isolated DC DC converter is the latest offering from a world leader in power systems technology and manufacturing Delta Electronics Inc This product family operates from an extremely w...

Page 2: ...put Current Range 0 15 A Output DC Current Limit Inception Output Voltage 10 Low 110 140 DYNAMIC CHARACTERISTICS Output Voltage Current Transient 48V 10 F Tan 1 F Ceramic load cap 0 1A s Positive Step...

Page 3: ...load current for minimum nominal and maximum input voltage at 25 C DS_E36SR05015_01042008 3 Figure 2 Power dissipation vs load current for minimum nominal and maximum input voltage at 25 C Figure 3 Ty...

Page 4: ...transient at zero load current 5ms div Vin 48V Top Trace Vout 2V div Bottom Trace ON OFF input 5V div Figure 6 Turn on transient at full rated load current CC mode 5ms div Vin 48V Top Trace Vout 2V d...

Page 5: ...utput voltage response to step change in load current 25 50 of Io max di dt 0 1A s Load cap 10 F tantalum capacitor and 1 F ceramic capacitor Top Trace Vout 100mV div 200us div Bottom Trace I out 5A d...

Page 6: ...PE RESISTIVE LOAD Figure 13 Output voltage noise and ripple measurement test setup Figure 14 Output voltage ripple at 48Vin and rated load current Io 15A 20 mV div 2us div Load capacitance 1 F ceramic...

Page 7: ...l support team DESIGN CONSIDERATIONS 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 imp...

Page 8: ...nd off during a logic high Positive logic turns the modules on during a logic high and off during a logic low Remote on off can be controlled by an external switch between the on off terminal and the...

Page 9: ...it configuration for trim up increase output voltage If the external resistor is connected between the TRIM and SENSE the output voltage set point increases Fig 19 The external resistor value required...

Page 10: ...ACING PWB PWB AIR VELOCITY AND AMBIENT TEMPERATURE MEASURED BELOW THE MODULE Figure 20 Wind tunnel test setup Thermal Derating Heat can be removed by increasing airflow over the module The hottest poi...

Page 11: ...PICK AND PLACE LOCATION SURFACE MOUNT TAPE REEL RECOMMENDED PAD LAYOUT SMD DS_E36SR05015_01042008 11...

Page 12: ...C sec Over 200 C 40 50sec Cooling down rate 3 C sec Note The temperature refers to the pin of E36SR measured on the pin Vout joint LEAD FREE SAC PROCESS RECOMMEND TEMP PROFILE Temp Time 150 200 100 1...

Page 13: ...ame Function 1 2 3 4 5 6 7 8 Vin ON OFF Vin Vout SENSE TRIM SENSE Vout Positive input voltage Remote ON OFF Negative input voltage Negative output voltage Negative remote sense Output voltage trim Pos...

Page 14: ...MECHANICAL DRAWING WITH HEATSPREADER THROUGH HOLE MODULE DS_E36SR05015_01042008 14...

Page 15: ...ce CONTACT www delta com tw dcdc USA Telephone East Coast 888 335 8201 West Coast 888 335 8208 Fax 978 656 3964 Email DCDC delta corp com Europe Telephone 41 31 998 53 11 Fax 41 31 998 53 53 Email DCD...

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