Delta Electronics Delphi E36SR05015NRFA Скачать руководство пользователя страница 10

 

DS_E36SR05015_01042008 

 
 

10 

THERMAL CONSIDERATIONS 

 
Thermal management is an important part of the system 
design. To ensure proper, reliable operation, sufficient 
cooling of the power module is needed over the entire 
temperature range of the module. Convection cooling is 
usually the dominant mode of heat transfer. 
 
Hence, the choice of equipment to characterize the 
thermal performance of the power module is a wind 
tunnel.

 

 

Thermal Testing Setup 

 

Delta’s DC/DC power modules are characterized in 
heated vertical wind tunnels that simulate the thermal 
environments encountered in most electronics 
equipment. This type of equipment commonly uses 
vertically mounted circuit cards in cabinet racks in which 
the power modules are mounted. 
 
The following figure shows the wind tunnel 
characterization setup. The power module is mounted 
on a test PWB and is vertically positioned within the 
wind tunnel. The space between the neighboring PWB 
and the top of the power module is constantly kept at 
6.35mm (0.25’’). 

 

Note: Wind Tunnel Test Setup Figure Dimensions are in millimeters and (Inches)

12.7 (0.5”) 

MODULE 

AIR FLOW 

50.8 (2.0”) 

FACING 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 point temperature of the module is +122°C. To 
enhance system reliability; the power module should always 
be operated below the maximum operating temperature. If the 
temperature exceeds the maximum module temperature, 
reliability of the unit may be affected. 
 

THERMAL CURVES 

 

Figure 21: Hot spot temperature measured point. 

* 

The allowed maximum hot spot temperature is defined at 122

 

E36SR05015(Standard)  Output Current vs. Ambient Temperature and Air Velocity

@Vin = 24V (Transverse Orientation)

0

2

4

6

8

10

12

14

16

20

25

30

35

40

45

50

55

60

65

70

75

80

85

Ambient Temperature (

)

Output Current(A)

Natural

Convection

200LFM

400LFM

300LFM

100LFM

500LFM

600LFM

             

Figure 22: Output current vs. ambient temperature and air velocity @ 
V

in

=24V(Transverse Orientation) 

 

E36SR05015(Standard)  Output Current vs. Ambient Temperature and Air Velocity

@Vin = 48V (Transverse Orientation)

0

2

4

6

8

10

12

14

16

20

25

30

35

40

45

50

55

60

65

70

75

80

85

Ambient Temperature (

)

Output Current(A)

Natural

Convection

200LFM

400LFM

300LFM

100LFM

500LFM

600LFM

 

Figure 23: Output current vs. ambient temperature and air velocity @ 
V

in

=48V(Transverse Orientation)

 

 

Содержание Delphi E36SR05015NRFA

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

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

Страница 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...

Страница 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...

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

Страница 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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