background image

 

2/10

 

User

’s  Guide 

BD9E101FJ-EVK-001

 

© 2014 ROHM Co., Ltd.

 

No. 60UG012E Rev.003

 

APR.2017

 

Operation Procedures

 

1. Necessary equipments 

(1) DC power-supply of 7.2V to 36V/1A 

(2) Maximum 1A load 

(3) DC voltmeter 

2. Connecting the equipments 

(1) DC power-supply presets to 24V and then the power output turns off. 

(2) The maximum load should be set at 1A and over it will be disabled. 

(3) Check Jumper pin of SW1 is short, between intermediate-terminal and OFF-side terminal. 

(4) Connect positive-terminal of power-supply to VIN+ terminal and negative-terminal to GND-terminal with a pair of wires. 

(5) 

Connect load’s positive-terminal to VOUT+ terminal and negative-terminal to GND-terminal with a pair of wires. 

(6) Connect positive-terminal of DC voltmeter 1 to TP1 and negative-terminal to TP2 for input-voltage measurement. 

(7) Connect positive-terminal of DC voltmeter 2 to TP3 and negative-terminal to TP4 for output-voltage measurement. 

(8) DC power-supply output is turned ON. 

(9) IC is enable (EN) by shorting Jumper-pin of SW1 between intermediate-terminal and ON-side terminal. 

(10) Check DC voltmeter 2 displays 5.0V. 

(11) The load is enabled. 

(12) Check at DC voltmeter 1 whether the voltage-

drop (loss) is not caused by the wire’s resistance.   

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Figure 1. Connection Diagram 

Enable-Pin 

To minimize current consumption during standby-mode and normal operation, Enable-mode can be switched by controlling EN pin 

(3pin) of the IC. Standby-mode is enabled by shorting Jumper-pin of SW1 between intermediate-terminal and OFF-side terminal 

and normal-mode operation by shorting between intermediate-terminal and ON-side terminal. 

It also can be switched between standby-mode and normal-mode operation by removing Jumper-pin and controlling the voltage 

between EN and GND-terminal. Standby-mode is enabled when the voltage of EN is under 0.8V, and normal-mode operation 

when it is over 2.5V. 

 

DC

 

Voltmeter

 

DC

 

Voltmeter 2 

DC Power 

Load 

Downloaded from

Arrow.com.

Downloaded from

Arrow.com.

Summary of Contents for BD9E101FJ-EVK-001

Page 1: ...e 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...

Page 2: ...to TP4 for output voltage measurement 8 DC power supply output is turned ON 9 IC is enable EN by shorting Jumper pin of SW1 between intermediate terminal and ON side terminal 10 Check DC voltmeter 2...

Page 3: ...11H222KA01 MURATA 1608 1 C8 Ceramic Capacitor 100pF 50V CH 5 GRM1882C1H101JA01 MURATA 1608 1 L1 Inductor 4 7 H 30 DCR 26m max 4 1A CLF7045T 4R7N TDK 7269 1 R1 Resistor 12k 1 10W 50V 1 MCR03EZPFX1202 R...

Page 4: ...Ltd No 60UG012E Rev 003 APR 2017 Layout PCB size 50mm 50mm 1 6mm Figure 3 Top Silk Screen Top view Figure 4 Top Silk Screen and Layout Top view Downloaded from Arrow com Downloaded from Arrow com Dow...

Page 5: ...014 ROHM Co Ltd No 60UG012E Rev 003 APR 2017 Figure 5 Top Side Layout Top view Figure 6 L2 Layout Top view Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com Downloaded from...

Page 6: ...d No 60UG012E Rev 003 APR 2017 Figure 7 L3 Layout Top view Figure 8 Bottom Side Layout Top view Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com...

Page 7: ...0 4 0 5 0 6 0 7 0 8 0 9 1 Output Voltage Change Load Current A VIN 12V VIN 24V VO 5 0V Reference Application Data Figure 9 Efficiency vs Load Current Figure 10 Line Regulation Figure 11 Load Regulatio...

Page 8: ...e deg Phase Phase Gain Gain fC 28 2kHz Phase margin 78 6deg Gain margin 19 5dB fC 31 6kHz Phase margin 77 1deg Gain margin 18 9dB Figure 14 Loop Response VIN 24V VO 5 0V IO 1A Downloaded from Arrow co...

Page 9: ...s div Time scale 1 s div Time scale 1 s div Time scale 1 s div IO 0A IO 1A VO AC 50mV div VO AC 50mV div Figure 17 Output Voltage Ripple Wave VIN 12V VO 5 0V Figure 18 Output Voltage Ripple Wave VIN 2...

Page 10: ...VO 5 0V IO 0A VIN 10V div EN 10V div VO 5V div Time scale 5ms div Time scale 5ms div Figure 23 Start up by EN VIN 12V VO 5 0V IO 0A Figure 24 Power down by EN VIN 12V VO 5 0V IO 0A VIN 10V div EN 10V...

Page 11: ...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...

Reviews: