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APPLICATION NOTE

AN42

11

 

where:

V

IN 

= Input Voltage to the Converter

V

SW 

= Voltage Across the MOSFET = I

LOAD

 

x R

DS,ON

V

= Forward Voltage of the Schottky Diode

T = The Switching Period of the Converter = 1/f

S

Where f

S

 = Switching Frequency.

For an input voltage of 5V, an output voltage of 3.3V, an 
inductor value of 1.3

µ

H, and a switching frequency of 

650KHz (using C

EXT 

= 39pF), the inductor current can be 

calculated as follows:

 

Therefore, for a continued load current of 14.5A, the peak 
current through the inductor, I

pk

, is found to be:

For continuous operation at 14.5A, the short circuit detection 
threshold must be at least 15.5A. 

The next step is to determine the value of the sense resistor. 
Including tolerance, the sense resistor value can be approxi-
mated as follows:

where TF = Tolerance Factor for the sense resistor.

Several different types of sense resistors exist. Table 7 
describes tolerance, size, power capability, temperature 
coefficient and cost of various sense resistors.

I

pk

I

min

(

)

2

----------------------------

5.0

14.5

0.037

×

3.3

(

)

1.3

10

6

×

--------------------------------------------------------------

 

×

=

3.3

0.5

+

(

)

5.0

14.5

0.037

×

0.5

+

(

)

--------------------------------------------------------------

1

650

10

3

×

-----------------------

×

1.048A

=

R

SENSE

V

th,min

I

SC

----------------

1

TF

(

)

×

V

th,min

1.0

I

Load,max

+

-----------------------------------

1

TF

(

)

×

=

=

Table 7. Comparison of Sense Resistors

Refer to Appendix A for Directory of component suppliers

Description

Motherboard 

Trace Resistor

Discrete Iron 

Alloy

Resistor (IRC)

Discrete Metal 

Strip Surface 

Mount Resistor

(Dale)

Discrete MnCu 

Alloy Wire 

Resistor

Discrete 

CuNi Alloy 

Wire Resistor 

(Copel)

Tolerance 
Factor (TF)

±

29%

±

5% 

(

±

1% available)

±

1%

±

10%

±

10%

Size 
(L x W x H)

2" x 0.2" x 0.001"

(1 oz Cu trace)

0.45" x 0.065" x 

0.200"

0.25" x 0.125" x 

0.025"

0.200" x 0.04" x 

0.160"

0.200" x 0.04" x 

0.100"

Power capability

> 50A/in

1 watt

(3W and 5W 

available)

1 watt

1 watt

1 watt

Temperature 
Coefficient

+4,000 ppm

+30 ppm

±

75 ppm

±

30 ppm

±

20 ppm

Cost 
@10,000 piece

Low

included in

motherboard

$0.31

$0.47

$0.09

$0.09

I

SC

I

inductor

I

Load, max

I

PK

I

min

(

)

2

-----------------------------

+

14.5

1

+

15.5A

=

=

=

Based on the Tolerance in the above table, for embedded PC 
trace resistor and for I

load,max 

= 14.5A:

For a discrete resistor and I

load, max 

= 14.5A:

For user convenience, Table 8 lists the recommended values 
for sense resistor at various load currents using an embedded 
PC trace resistor or discrete resistor.

R

SENSE

V

th,min

1.0A

I

Load, max

+

-----------------------------------------

1

TF

(

)

×

 

=

=

 

100mV

1.0A

14.5A

+

---------------------------------

1

29%

(

)

×

4.6m

=

R

SENSE

V

th,min

1.0A

I

Load, max

+

-----------------------------------------

1

TF

(

)

×

 

=

=

 

100mV

1.0A

14.5A

+

---------------------------------

1

5%

(

)

×

6.1m

=

Содержание SEMICONDUCTOR RC5040

Страница 1: ...In a high volume production envi ronment such as with personal computers however a CPU voltage change requires a CPU board re design to accommo date the new voltage requirement The integrated 4 bit D...

Страница 2: ...r must be greater than 80 at high current draw and greater than 40 at low current draw Processor Voltage Identification The Pentium Pro package has four voltage identification pins VID3 VID0 that can...

Страница 3: ...cally thus opti mizing efficiency under all loads The key differences between the RC5040 and RC5042 are listed in Table 4 Table 4 RC5040 and RC5042 Differences Refer to the RC5040 Block Diagram illust...

Страница 4: ...0mV increments To guarantee stable operation under all loads a 10K pull up resistor and 0 1 F of decoupling capacitance should be connected to the VREF pin No load should be imposed on this pin Power...

Страница 5: ...ripple current flowing through the output inductor allowing the use of a larger inductor value Operation at lower fre quencies increases the amount of energy storage that the bulk output capacitors mu...

Страница 6: ...65 AP42 04 R7 10K C1 1000 F C2 C3 1000 F 1000 F C5 0 1 F DS2 1N5817 C12 1 F L1 1 3 H M1 2SK1388 M2 2SK1388 C8 C9 0 1 F 0 1 F RSENSE 8m 1500 F C13 L2 2 6 H M3 2SK1388 VREF C15 C14 1500 F 1500 F C4 0 1...

Страница 7: ...5 TO 220 JA 62 5 NDP606AL TJ 125 C 33 40 JC 1 5 Motorola VGS 5V ID 37 5A TJ 25 C 6 9 TO 263 JA 62 5 MTB75N03HDL TJ 125 C 9 3 14 D2 PAK JC 1 0 Int Rectifier VGS 5V ID 31A TJ 25 C 28 TO 220 JA 62 5 IRLZ...

Страница 8: ...re 7 illustrates how an external 12V source can be used to bias VCCQP A 47 resistor is used to limit the transient current into the VCCQP pin and a 1 F capacitor filter is used to filter the VCCQP sup...

Страница 9: ...gate charge and f is the switching frequency Efficiency POUT pIN IOUT VOUT IOUT VOUT PLOSS PLOSS PDMOSFET PDINDUCTOR PDRSENSE PDGATE PDDIODE PDTRAN PDCAP PDIC 1 PDMOSFET IOUT 2 RDS ON DutyCycle DutyCy...

Страница 10: ...rs This methodology limits the power delivered to the load during an overcurrent condition The voltage drop cre ated by the output current flowing across a sense resistor is presented to one terminal...

Страница 11: ...037 0 5 1 650 10 3 1 048A RSENSE Vth min ISC 1 TF Vth min 1 0 ILoad max 1 TF Table 7 Comparison of Sense Resistors Refer to Appendix A for Directory of component suppliers Description Motherboard Tra...

Страница 12: ...ue where R20 is the resistance at 20 C 20 0 00393 C T is the operating temperature andR is the desired value For temperature T 50 C the R change 12 Table 9 is a summary of tolerances for the Embedded...

Страница 13: ...he output voltage as the load regulation col lapses into the short circuit control mode The output voltage does not return to its nominal value until the output short cir cuit current is reduced to wi...

Страница 14: ...the Schottky diode is not being over stressed during a short circuit condition Schottky Diode Selection The application circuits of Figures 3 4 and 5 show two Schottky diodes DS1 and DS2 In synchronou...

Страница 15: ...ity output voltage ripple and load transient response The calcu lation is as follows where V is the maximum voltage deviation due to load transients T is the reaction time of the power source and IO i...

Страница 16: ...for the MOSFETs In general noisy switching lines should be kept away from the quiet analog section of the RC5040 That is traces that connect to pins 12 and 13 HIDRV and VCCQP should be kept far away...

Страница 17: ...le and Silk Screen are presented below The actual PCAD Gerber File can be obtained from Raytheon Electronics Semicon ductor Division s Marketing Department at 415 966 7819 Figure 16 Example of Proper...

Страница 18: ...AN42 APPLICATION NOTE 18...

Страница 19: ...d at 1A increments an active load HP6060B or equivalent is suggested 6 In case of poor regulation refer to the procedures in the Troubleshooting section Troubleshooting 1 If no voltage is registered a...

Страница 20: ...overshoots then the noise may cause the converter to function improperly 9 Next look at the HIDRV pin This pin directly drives the gate of the FET It should provide a gate drive Vgs of about 5V when t...

Страница 21: ...th the supply However with the input filter design the Input Rush Current will be well within specification VID Iload A Vout V 1010 0 5 2 505 1 0 2 504 2 0 2 501 3 0 2 496 4 0 2 493 5 0 2 493 6 0 2 49...

Страница 22: ...evice Description Case Temperature C Iload 9 9A Case Temperature C Iload 12 4A Case Temperature C Iload 13 9A Q3A MOSFET K1388 57 63 56 3 Q3B MOSFET K1388 58 64 66 6 L1 Inductor Unknown 53 56 61 2 Q2...

Страница 23: ...design considerationsn and component selec tions layout guidelines and considerations guidelines for debugging and performance evaluations RC5040 RC5042 Evaluation Board Raytheon Electronics provides...

Страница 24: ...00 Fax 852 2314 0061 National Semiconductor Japan Ltd Tel 81 3 5620 6175 Fax 81 3 5620 6179 Appendix A Directory of Component Suppliers Dale Electronics Inc E Hwy 50 PO Box 180 Yankton SD 57078 0180 P...

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