switching regulator series step-down dc/dc converter ......1 sw1 pin header - 2.54mm × 3 contacts...

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1/10 © 2014 ROHM Co., Ltd. All rights reserved. www.rohm.com 9 December 2014 Rev.003 Switching Regulator Series Step-Down DC/DC Converter BD9E300EFJ Evaluation Board BD9E300EFJ-EVK-001 Description BD9E300EFJ-EVK-001 Evaluation board delivers an output 5.0 volts from an input 7.2 to 33 volts using BD9E300EFJ, a synchronous rectification step-down DC/DC converter integrated circuit, with output current rating of maximum 2.5A. The output voltage can be set by changing the external parts of circuit and the loop-response characteristics also can be adjusted by the phase compensation circuit. Performance specification (These are representative values, and it is not a guaranteed against the characteristics.) V IN = 24V, V OUT = 5.0V, Unless otherwise specified. Parameter Min Typ Max Units Conditions Input Voltage Range 7.0 36 V Output Voltage 5.0 V R1=12k, R2=3kOutput Voltage Setting Range V IN ×0.15 V IN ×0.7 V Output Current Range 0 2.5 A Loop Band Width 31.6 kHz Phase Margin 76.5 degrees Input Ripple Voltage 100 mVpp I O = 2.5A Output Ripple Voltage 30 mVpp I O = 2.5A Output Rising Time 3.5 ms Operating Frequency 1.0 MHz Maximum Efficiency 84.7 % I O = 0.9A (NOTE1) When the output voltage is 5.0V, it is 7.2V by limiting ratio of the maximum duty. (NOTE2) When the output voltage is 5.0V, it is 33V by limiting ratio of the minimum duty. (NOTE3) However, (V IN ×0.15) 1.0V (NOTE3) (NOTE2) (NOTE1)

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Page 1: Switching Regulator Series Step-Down DC/DC Converter ......1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN 1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8 2 J1,

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© 2014 ROHM Co., Ltd. All rights reserved. www.rohm.com 9 December 2014 Rev.003

Switching Regulator Series Step-Down DC/DC Converter BD9E300EFJ Evaluation Board BD9E300EFJ-EVK-001

Description

BD9E300EFJ-EVK-001 Evaluation board delivers an output 5.0 volts from an input 7.2 to 33 volts using BD9E300EFJ, a

synchronous rectification step-down DC/DC converter integrated circuit, with output current rating of maximum 2.5A. The

output voltage can be set by changing the external parts of circuit and the loop-response characteristics also can be adjusted

by the phase compensation circuit.

Performance specification (These are representative values, and it is not a guaranteed against the characteristics.)

VIN = 24V, VOUT = 5.0V, Unless otherwise specified.

Parameter Min Typ Max Units Conditions

Input Voltage Range 7.0 36 V

Output Voltage 5.0 V R1=12kΩ, R2=3kΩ

Output Voltage Setting Range VIN×0.15 VIN×0.7 V

Output Current Range 0 2.5 A

Loop Band Width 31.6 kHz

Phase Margin 76.5 degrees

Input Ripple Voltage 100 mVpp IO = 2.5A

Output Ripple Voltage 30 mVpp IO = 2.5A

Output Rising Time 3.5 ms

Operating Frequency 1.0 MHz

Maximum Efficiency 84.7 % IO = 0.9A

(NOTE1) When the output voltage is 5.0V, it is 7.2V by limiting ratio of the maximum duty.

(NOTE2) When the output voltage is 5.0V, it is 33V by limiting ratio of the minimum duty.

(NOTE3) However, (VIN×0.15) ≥ 1.0V

(NOTE3)

(NOTE2)(NOTE1)

Page 2: Switching Regulator Series Step-Down DC/DC Converter ......1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN 1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8 2 J1,

BD

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D9E300EF

2014 ROHM Coww.rohm.com

peration Pro

Necessary eq

(1) DC powe

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Connecting th

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r-supply prese load should bmper pin of Spositive-terminload’s positivepositive-terminpositive-terminr-supply outpuble (EN) by shDC voltmeter 2d is enabled. at DC voltmete

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01

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2/10

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between interm

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1. Connection

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9

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9 December

erminal with awith a pair of

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can be switcheen intermedON-side term

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r 2014 Rev.0

a pair of wires.wires.

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Page 3: Switching Regulator Series Step-Down DC/DC Converter ......1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN 1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8 2 J1,

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BD9E300EFJ-EVK-001

9 December 2014 Rev.003© 2014 ROHM Co., Ltd. All rights reserved. www.rohm.com

2 VIN

3 EN

1 BOOT

4 AGND

R3

C6S W1 O N

OFF

C2 C3 TP 1

V I N

GND

SW 8

C7

TP5L1

C4 C5

TP 3

VOUT

GND

FB 5

R2

R1

C8

U1

BD9E300EFJ-LB

COMP 6TP 2

C 1

R4

TP 4

9 E

P A

D

J 1

J 2

TP6

7 PGND

2 C1, C7 Ceramic Capacitor 0.1µF 50V, B, ±20% GRM188B31H104MA92 MURATA 1608

1 C2 Ceramic Capacitor 10µF 50V, B, ±10% GRM32EB31H106KA12 MURATA 3225

0 C3 Ceramic Capacitor - Not installed - - 3225

1 C4 Ceramic Capacitor 22µF 10V, B, ±10% GRM31CB31A226KE19 MURATA 3216

0 C5 Ceramic Capacitor - Not installed - - 3216

1 C6 Ceramic Capacitor 2200pF 50V, B, ±10% GRM188B11H222KA01 MURATA 1608

1 C8 Ceramic Capacitor 100pF 50V, CH, ±5% GRM1882C1H101JA01 MURATA 1608

1 L1 Inductor 4.7µH ±30%, DCR=26mΩmax, 4.1A CLF7045T-4R7N TDK 7269

1 R1 Resistor 12kΩ 1/10W, 50V, 1% MCR03ERPF1202 ROHM 1608

1 R2 Resistor 3kΩ 1/10W, 50V, 1% MCR03ERPF3001 ROHM 1608

1 R3 Resistor 15kΩ 1/10W, 50V, 1% MCR03ERPF1502 ROHM 1608

1 R4 Resistor 0Ω Jumper MCR03ERPJ000 ROHM 1608

1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN -

1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8

2 J1, J2 Terminal Block - 2 contacts, 15A, 14 to 22AWG TB111-2-2-U-1-1Alphaplus

Connectors & Cables

-

1 - Jumper - Jumper pin for SW1 MJ254-6BK USECONN -

ReferenceDesignator

CountManufacturerPart Number

ManufacturerConfiguration

(mm)Type Value Description

Cricuit Diagram

VIN = 7.2V to 33V, VOUT = 5.0V

Figure 2. BD9E300EFJ-EVK-001 Circuit Diagram Bill of Materials

Page 4: Switching Regulator Series Step-Down DC/DC Converter ......1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN 1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8 2 J1,

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BD9E300EFJ-EVK-001

9 December 2014 Rev.003© 2014 ROHM Co., Ltd. All rights reserved. www.rohm.com

Layout

Figure 3. Top Silk Screen (Top view)

Figure 4. Top Silk Screen and Layout (Top view)

Page 5: Switching Regulator Series Step-Down DC/DC Converter ......1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN 1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8 2 J1,

5/10

BD9E300EFJ-EVK-001

9 December 2014 Rev.003© 2014 ROHM Co., Ltd. All rights reserved. www.rohm.com

Figure 5. Top Side Layout (Top view)

Figure 6. L2 Layout (Top view)

Page 6: Switching Regulator Series Step-Down DC/DC Converter ......1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN 1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8 2 J1,

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BD9E300EFJ-EVK-001

9 December 2014 Rev.003© 2014 ROHM Co., Ltd. All rights reserved. www.rohm.com

Figure 7. L3 Layout (Top view)

Figure 8. Bottom Side Layout (Top view)

Page 7: Switching Regulator Series Step-Down DC/DC Converter ......1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN 1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8 2 J1,

BD

© 2ww

Effi

cien

cy(%

)O

utpu

tVol

tage

Cha

nge

(%)

D9E300EF

2014 ROHM Coww.rohm.com

0

10

20

30

40

50

60

70

80

90

100

0

Effi

cien

cy (

%)

-0.5

-0.4

-0.3

-0.2

-0.1

0

0.1

0.2

0.3

0.4

0.5

0

Out

put V

olta

ge C

hang

e (%

)

FJ-EVK-00

o., Ltd. All rights

0.5

Lo

0.5

Lo

Figure 9. Eff

Figure 11

01

reserved.

1 1.5

ad Current (A

VIN

VI

1 1.5

oad Current (A

fficiency vs Lo

1. Load Regula

2

A)

N=12V

N=24V

VO=5.0V

2

A)

VIN=12V

VIN=24V

VO=5.0V

ad Current

ation

7/10

2.5

Out

put V

olta

ge C

hang

e (%

)

2.5

-1

-0.8

-0.6

-0.4

-0.2

0

0.2

0.4

0.6

0.8

1

5

pg

g(

)

VO (AC) 100mV/div

IO: 1A/div

IO: 1A/div

VO (AC) 100mV/div

9

10 15

Inpu

Figure

Figure 12. Lo

VIN = 12V VO = 5.0V

VIN = 24V VO = 5.0V

I

I

9 December

20 2

ut Voltage (V)

10. Line Regu

oad Transient

Time

IO: 0A→2.5A→

IO: 0A→2.5A→

Time

r 2014 Rev.0

5 30

IO=1.0A

ulation

Characteristic

e scale 1ms/d

→0A

→0A

e scale 1ms/d

003

35

cs

div

div

Page 8: Switching Regulator Series Step-Down DC/DC Converter ......1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN 1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8 2 J1,

BD

© 2ww

D9E300EF

2014 ROHM Coww.rohm.com

Gai

n (d

B)

Gai

n (d

B)

FJ-EVK-00

o., Ltd. All rights

()

fC =PhaGa

()

fC =PhaGa

01

reserved.

Figu

Figu

= 25.1kHz ase margin = in margin = 21

= 31.6kHz ase margin = in margin = 20

ure 13. Loop R

ure 14. Loop R

82.0deg1.5dB

76.5deg0.5dB

8/10

Response VIN

Response VIN

Frequenc

Frequenc

= 12V, VO = 5

= 24V, VO = 5

cy (Hz)

Phase

Gain

cy (Hz)

Phase

Gain

9

.0V, IO = 2.5A

.0V, IO = 2.5A

e

9 Decemberr 2014 Rev.0

Pha

se (

deg

) P

hase

(d

eg)

003

Page 9: Switching Regulator Series Step-Down DC/DC Converter ......1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN 1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8 2 J1,

BD

© 2ww

VIN

50

VIN

50

VO

50

VO

50

D9E300EF

2014 ROHM Coww.rohm.com

F

F

N (AC) 0mV/div

N (AC) 0mV/div

O (AC) 0mV/div

O (AC) 0mV/div

FJ-EVK-00

o., Ltd. All rights

Figure 15. InpV

Figure 17. OutpVIN

01

reserved.

put Voltage RipVIN = 12V, VO =

put Voltage Ri

N = 12V, VO =

Time sc

Time sc

Time sc

Time sc

pple Wave= 5.0V

ipple Wave5.0V

cale 500ns/div

cale 500ns/div

IO = 0A

IO = 2.5A

cale 500ns/div

cale 500ns/div

IO = 0A

IO = 2.5A

9/10

v

v

V5

V5

v

v

V5

V5

F

VIN (AC) 50mV/div

VIN (AC) 50mV/div

VO (AC) 50mV/div

VO (AC) 50mV/div

9

Figure 16. InpV

Figure 18. OuV

9 December

put Voltage RipVIN = 12V, VO =

utput Voltage RVIN = 24V, VO =

Time s

Time

Time s

Time s

r 2014 Rev.0

pple Wave= 5.0V

Ripple Wave= 5.0V

IO = 0A

IO = 2.5A

scale 500ns/d

scale 500ns/d

scale 500ns/d

scale 500ns/d

IO = 0A

IO = 2.5A

003

div

div

div

div

Page 10: Switching Regulator Series Step-Down DC/DC Converter ......1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN 1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8 2 J1,

BD

© 2ww

D9E300EF

2014 ROHM Coww.rohm.com

VIN

5V/

EN5V/

VO

2V/

VIN

10V

EN10V

VO

2V/

VIN

5V/

EN5V/

VO

2V/

VIN

10V

EN10V

VO

2V/

FJ-EVK-00

o., Ltd. All rights

Figure

Figure

Figure

Figure

/div

/div

/div

V/div

V/div

/div

/div

/div

/div

V/div

V/div

/div

01

reserved.

19. Start-up EVIN = 12V

e 23. Start-up VIN = 12V

21. Start-up EVIN = 24V

e 25. Start-up VIN = 24V

EN = VIN V, VO = 5.0V, IO

by EN V, VO = 5.0V, IO

EN = VIN V, VO = 5.0V, IO

by EN V, VO = 5.0V, IO

Time scale

Time scale

Time scale

Time scale

10/10

O = 0A

O = 0A

O = 0A

O = 0A

1ms/div

1ms/div

1ms/div

1ms/div

Figure 20. PV

Figure 24. PV

Figure 22. PV

Figure 26. PV

9

ower-down ENIN = 12V, VO =

Power-down byIN = 12V, VO =

ower-down ENIN = 24V, VO =

Power-down byIN = 24V, VO =

Time

Time

Time s

Time s

9 December

N = VIN = 5.0V, IO = 0A

y EN = 5.0V, IO = 0A

N = VIN = 5.0V, IO = 0A

y EN = 5.0V, IO = 0A

e scale 1ms/

e scale 1ms/

scale 500ms/

scale 500ms/

r 2014 Rev.0

A

A

A

A

/div

/div

/div

/div

003

Page 11: Switching Regulator Series Step-Down DC/DC Converter ......1 SW1 Pin header - 2.54mm × 3 contacts PH-1x03SG USECONN 1 U1 IC - Buck DC/DC Converter BD9E300EFJ-LB ROHM HTSOP-J8 2 J1,

R1102Awww.rohm.com© 2014 ROHM Co., Ltd. All rights reserved.

Notice

ROHM Customer Support System http://www.rohm.com/contact/

Thank you for your accessing to ROHM product informations. More detail product informations and catalogs are available, please contact us.

N o t e s

The information contained herein is subject to change without notice.

Before you use our Products, please contact our sales representative and verify the latest specifica-tions :

Although ROHM is continuously working to improve product reliability and quality, semicon-ductors can break down and malfunction due to various factors.Therefore, in order to prevent personal injury or fire arising from failure, please take safety measures such as complying with the derating characteristics, implementing redundant and fire prevention designs, and utilizing backups and fail-safe procedures. ROHM shall have no responsibility for any damages arising out of the use of our Poducts beyond the rating specified by ROHM.

Examples of application circuits, circuit constants and any other information contained herein are provided only to illustrate the standard usage and operations of the Products. The peripheral conditions must be taken into account when designing circuits for mass production.

The technical information specified herein is intended only to show the typical functions of and examples of application circuits for the Products. ROHM does not grant you, explicitly or implicitly, any license to use or exercise intellectual property or other rights held by ROHM or any other parties. ROHM shall have no responsibility whatsoever for any dispute arising out of the use of such technical information.

The Products are intended for use in general electronic equipment (i.e. AV/OA devices, communi-cation, consumer systems, gaming/entertainment sets) as well as the applications indicated in this document.

The Products specified in this document are not designed to be radiation tolerant.

For use of our Products in applications requiring a high degree of reliability (as exemplified below), please contact and consult with a ROHM representative : transportation equipment (i.e. cars, ships, trains), primary communication equipment, traffic lights, fire/crime prevention, safety equipment, medical systems, servers, solar cells, and power transmission systems.

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ROHM shall have no responsibility for any damages or injury arising from non-compliance with the recommended usage conditions and specifications contained herein.

ROHM has used reasonable care to ensur the accuracy of the information contained in this document. However, ROHM does not warrants that such information is error-free, and ROHM shall have no responsibility for any damages arising from any inaccuracy or misprint of such information.

Please use the Products in accordance with any applicable environmental laws and regulations, such as the RoHS Directive. For more details, including RoHS compatibility, please contact a ROHM sales office. ROHM shall have no responsibility for any damages or losses resulting non-compliance with any applicable laws or regulations.

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