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© 2018 ROHM Co., Ltd.

 

No. 60UG092E Rev.001

JULY.2018

 

User’s Guide 

BM2P0161-EVK-003 

 

Table 10. Load Regulation : V

IN

=90Vac

 

 

 

 

 

 

 

 

 

 

 

 

Table 11. Load Regulation: V

IN

=115Vac 

 

 

 

 

Table 12. Load Regulation : V

IN

=132Vac

 

 

 

 

 

 

 

 

 

 

 

 

Table 13. Load Regulation: V

IN

=176Vac 

     

 

Table 14. Load Regulation : V

IN

=230Vac

 

 

 

 

 

 

 

 

 

 

 

 

Table 15. Load Regulation: V

IN

=264Vac 

     

 

V

IN

[Vac]

P

IN

[W]

V

OUT

[V]

I

OUT

[mA]

P

OUT

[W]

P

LOSS

[W]

Efficiency

[%]

90

0.04

12.110

0

0.00

0.042

0.00

90

0.12

12.110

5

0.06

0.057

51.31

90

0.20

12.110

10

0.12

0.077

61.16

90

0.36

12.110

20

0.24

0.115

67.84

90

0.51

12.110

30

0.36

0.150

70.82

90

0.82

12.110

50

0.61

0.211

74.20

90

1.10

12.109

70

0.85

0.249

77.27

90

1.52

12.109

100

1.21

0.305

79.87

90

2.91

12.108

200

2.42

0.486

83.27

90

7.11

12.105

500

6.05

1.058

85.13

90

9.89

12.103

700

8.47

1.418

85.66

90

14.11

12.100

1000

12.10

2.010

85.75

90

16.89

12.098

1200

14.52

2.372

85.95

90

21.20

12.096

1500

18.14

3.056

85.58

90

24.10

12.094

1700

20.56

3.540

85.31

90

28.53

12.090

2000

24.18

4.350

84.75

90

33.13

12.088

2300

27.80

5.328

83.92

90

OLP

0.000

2300

V

IN

[Vac]

P

IN

[W]

V

OUT

[V]

I

OUT

[mA]

P

OUT

[W]

P

LOSS

[W]

Efficiency

[%]

115

0.05

12.110

0

0.00

0.047

0.00

115

0.12

12.110

5

0.06

0.059

50.46

115

0.20

12.110

10

0.12

0.076

61.47

115

0.36

12.110

20

0.24

0.115

67.84

115

0.51

12.110

30

0.36

0.150

70.82

115

0.83

12.110

50

0.61

0.221

73.31

115

1.11

12.109

70

0.85

0.258

76.64

115

1.52

12.109

100

1.21

0.313

79.46

115

2.92

12.108

200

2.42

0.499

82.90

115

7.09

12.105

500

6.05

1.038

85.37

115

9.90

12.103

700

8.47

1.428

85.58

115

14.01

12.100

1000

12.10

1.910

86.37

115

16.85

12.098

1200

14.52

2.332

86.16

115

20.99

12.096

1500

18.14

2.846

86.44

115

23.85

12.094

1700

20.56

3.290

86.20

115

28.10

12.091

2000

24.18

3.918

86.06

115

35.37

12.085

2500

30.21

5.158

85.42

115

OLP

0.000

2500

V

IN

[Vac]

P

IN

[W]

V

OUT

[V]

I

OUT

[mA]

P

OUT

[W]

P

LOSS

[W]

Efficiency

[%]

132

0.04

12.110

0

0.00

0.043

0.00

132

0.12

12.110

5

0.06

0.063

48.83

132

0.20

12.110

10

0.12

0.074

62.10

132

0.36

12.110

20

0.24

0.116

67.65

132

0.51

12.110

30

0.36

0.151

70.68

132

0.83

12.110

50

0.61

0.225

72.95

132

1.12

12.109

70

0.85

0.270

75.82

132

1.54

12.109

100

1.21

0.326

78.78

132

2.94

12.108

200

2.42

0.518

82.37

132

7.12

12.105

500

6.05

1.068

85.01

132

9.85

12.103

700

8.47

1.378

86.01

132

14.06

12.100

1000

12.10

1.960

86.06

132

16.78

12.098

1200

14.52

2.262

86.52

132

20.88

12.096

1500

18.14

2.736

86.90

132

23.76

12.094

1700

20.56

3.200

86.53

132

27.99

12.090

2000

24.18

3.810

86.39

132

35.13

12.084

2500

30.21

4.920

85.99

132

OLP

0.000

2500

V

IN

[Vac]

P

IN

[W]

V

OUT

[V]

I

OUT

[mA]

P

OUT

[W]

P

LOSS

[W]

Efficiency

[%]

176

0.04

12.110

0

0.00

0.039

0.00

176

0.12

12.110

5

0.06

0.057

51.31

176

0.20

12.110

10

0.12

0.078

60.85

176

0.36

12.110

20

0.24

0.121

66.72

176

0.52

12.110

30

0.36

0.157

69.87

176

0.83

12.109

50

0.61

0.226

72.86

176

1.15

12.109

70

0.85

0.300

73.84

176

1.58

12.109

100

1.21

0.364

76.88

176

2.98

12.108

200

2.42

0.561

81.18

176

7.19

12.105

500

6.05

1.138

84.18

176

9.95

12.103

700

8.47

1.478

85.15

176

14.05

12.100

1000

12.10

1.950

86.12

176

16.89

12.098

1200

14.52

2.372

85.95

176

21.02

12.095

1500

18.14

2.878

86.31

176

23.67

12.093

1700

20.56

3.112

86.85

176

27.92

12.090

2000

24.18

3.740

86.60

176

34.94

12.085

2500

30.21

4.728

86.47

176

36.35

12.084

2600

31.42

4.932

86.43

176

OLP

0.000

2600

V

IN

[Vac]

P

IN

[W]

V

OUT

[V]

I

OUT

[mA]

P

OUT

[W]

P

LOSS

[W]

Efficiency

[%]

230

0.05 12.110

0

0.000

0.045

0.00

230

0.12 12.110

5

0.061

0.063

48.83

230

0.21 12.110

10

0.121

0.085

58.79

230

0.37 12.110

20

0.242

0.129

65.28

230

0.53 12.110

30

0.363

0.168

68.42

230

0.85 12.110

50

0.606

0.242

71.49

230

1.16 12.109

70

0.848

0.312

73.07

230

1.63 12.109

100

1.211

0.418

74.33

230

3.05 12.108

200

2.422

0.629

79.37

230

7.28 12.105

500

6.053

1.228

83.14

230

10.12 12.103

700

8.472

1.648

83.72

230

14.30 12.100

1000 12.100

2.200

84.62

230

17.01 12.098

1200 14.518

2.492

85.35

230

21.07 12.095

1500 18.143

2.928

86.11

230

23.95 12.093

1700 20.558

3.392

85.84

230

27.88 12.090

2000 24.180

3.700

86.73

230

35.02 12.085

2500 30.213

4.808

86.27

230

36.43 12.084

2600 31.418

5.012

86.24

OLP

0.000

2600

V

IN

[Vac]

P

IN

[W]

V

OUT

[V]

I

OUT

[mA]

P

OUT

[W]

P

LOSS

[W]

Efficiency

[%]

264

0.06 12.110

0

0.00

0.055

0.06

264

0.13 12.110

5

0.06

0.068

0.07

264

0.21 12.110

10

0.12

0.089

0.09

264

0.38 12.110

20

0.24

0.138

0.14

264

0.54 12.110

30

0.36

0.177

0.18

264

0.86 12.110

50

0.61

0.258

0.26

264

1.18 12.109

70

0.85

0.333

0.33

264

1.66 12.109

100

1.21

0.450

0.45

264

3.10 12.108

200

2.42

0.675

0.68

264

7.36 12.105

500

6.05

1.312

1.31

264

10.15 12.103

700

8.47

1.678

1.68

264

14.28 12.100

1000

12.10

2.180

2.18

264

17.06 12.098

1200

14.52

2.542

2.54

264

21.22 12.095

1500

18.14

3.078

3.08

264

24.02 12.093

1700

20.56

3.462

3.46

264

28.08 12.090

2000

24.18

3.900

3.90

264

35.19 12.084

2500

30.21

4.980

4.98

264

38.00 12.080

2700

32.62

5.384

5.38

264

OLP

0.000

2700

Summary of Contents for BM2P0161-EVK-003

Page 1: ...on has frequency decrease function for higher efficiency Switching frequency jitter function enables lower EMI operation Various functions are included for safety Soft start Frequency Burst Mode VCC O...

Page 2: ...nect to GND terminal 5 AC power meter connect between AC power supply and board 6 Output test equipment connects to output terminal 7 AC power supply switch ON 8 Check that output voltage is 12V 9 Ele...

Page 3: ...o Yuden 1608 0603 C10 1 Ceramic 10 F 35V 10 GMK316AB7106KL TR Taiyo Yuden 3216 1206 C11 1 Y1 Capacitor 2200pF Y1 capacitor DE1E3KX222MB4BP01F Murata C13 1 Electrolytic 1000uF 25V 20 25ZLJ1000M10X20 Ru...

Page 4: ...osaka http www alphatrans jp Product XE2145A AlphaTrans Corp Bobin EI 2506 10PIN Core EE25 20 JSF Figure 4 Connection Diagram Figure 5 Winding structure diagram Table 3 Alpha Trans XE2145A Winding Sp...

Page 5: ...5 20 2018 ROHM Co Ltd No 60UG092E Rev 001 JULY 2018 User s Guide BM2P0161 EVK 003 PCB Size 55 mm x 91 mm Figure 4 Top Silkscreen Top view Figure 5 Bottom Layout Top view...

Page 6: ...tage Range VCC 8 9 V 26 0 V DRAIN 650 V Max Circuit Current ON BM2P0161 0 90 mA Typ BM2P0361 0 65 mA Typ Circuit Current Burst mode 0 30 mA Typ Operating Temperature 40 C 105 C Maximum Junction Temper...

Page 7: ...along with Fly back voltage VOR VOR VO VOR 650V 1 3 max 1 3 Safety margin Please check yourself Duty VOR 650 1 3 380 120 Figure 10 MOSFET Drain Source Voltage Vds Confirmation of Np Ns and Duty max VO...

Page 8: ...wave form touch to GND at the same time primary coil current grow up from GND DCM Dis continuous Current Mode Primary MOSFET turn ON timing has some interval after secondary coil discharge Coil curre...

Page 9: ...s selected EE25 Table 5 Output Power vs transformer core size above table is one of reference please confirmation to transformer manufacturer 1 5 Calculate of primary wiring turn Np The maximum rating...

Page 10: ...e ratings and VCC OVP voltage Transformer parameter of this section result Table 6 Transformer parameter table Core PC47EE25 19 compatible Lp 830 H Np 77 turns Ns 14 turns Nd 18 turns 2 Selection of i...

Page 11: ...ent it maximum value is around 15mA When D2_Vf 1V reverse voltage applied to the VCC diode Vdr VCC max Vf VIN max X This IC has VCC OVP function VCC OVP max 29 0V Reverse voltage of the diode is set s...

Page 12: ...may occur during the instant when the MOSFET is switched from ON to OFF This surge voltage is applied between the MOSFET s Drain and Source so in the worst case damage to MOSFET might occur RCD snubb...

Page 13: ...ith consideration of margins 87 0 7 124V 150V Also diode loss approximate value becomes Pd Vf x Iout 1 0V x 2A 2 0W This board is used schottky barrier diode RB088BGE 150 150V 10A TO 252 package Using...

Page 14: ...ormal When Shunt regulator IC2 Vref 2 495V Vo u1 10 11 12 v Vref u1 33k 5 6k 109 v 2 495V 12 1257V 2 11 Parts for adjustment of control circuit R15 C16 R13 R14 R15 and C11 are parts for phase compensa...

Page 15: ...OUT vs PLOSS 10 8 11 2 11 6 12 0 12 4 12 8 13 2 0 1000 2000 3000 Output Voltage V Output Current mA VIN 90Vac VIN 115Vac VIN 230Vac VIN 264Vac 0 10 20 30 40 50 60 70 80 90 100 0 500 1000 1500 2000 Eff...

Page 16: ...2 132 20 88 12 096 1500 18 14 2 736 86 90 132 23 76 12 094 1700 20 56 3 200 86 53 132 27 99 12 090 2000 24 18 3 810 86 39 132 35 13 12 084 2500 30 21 4 920 85 99 132 OLP 0 000 2500 VIN Vac PIN W VOUT...

Page 17: ...T vs IpPEAK Figure 22 Primary Peak Current IOUT vs IsPEAK 0 10 20 30 40 50 60 70 0 500 1000 1500 2000 Switching Frequency kHz Output Current mA VIN 115Vac VIN 230Vac 0 0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0...

Page 18: ...A Figure 24 VIN 90Vac Output Short Figure 25 VIN 115Vac IOUT 2A Figure 26 VIN 115Vac Output Short Figure 27 VIN 230Vac IOUT 2A Figure 28 VIN 230Vac Output Short Figure 29 VIN 264Vac IOUT 2A Figure 30...

Page 19: ...T 10mA to 1500mA Figure 34 VIN 230Vac IOUT 10mA to 1500mA Output ripple Voltage Figure 35 VIN 115Vac IOUT 2A Figure 36 VIN 230Vac IOUT 2A CH4 Green AC Input Voltage CH1 Yellow VCC Voltage CH3 Purple O...

Page 20: ...c VIN 230Vac IOUT 1 5A IOUT 2A IOUT 1 5A IOUT 2A BM2P0161 65 3 C 82 3 C 68 1 C 71 5 C Transformer 58 1 C 72 3 C 66 6 C 73 4 C 2Nd Diode 68 7 C 80 6 C 68 6 C 78 4 C Diode bridge 62 3 C 70 4 C 44 5 C 48...

Page 21: ...ch technical information 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...

Page 22: ...and close to the board may result in discharge and lead to severe injury or death Therefore DO NOT touch the board with your bare hands or bring them too close to the board In addition as mentioned ab...

Page 23: ...ADP1714 3 3 EVALZ ADP1715 3 3 EVALZ ADP1716 2 5 EVALZ ADP1740 1 5 EVALZ ADP1752 1 5 EVALZ ADP1828LC EVALZ ADP1870 0 3 EVALZ ADP1871 0 6 EVALZ ADP1873 0 6 EVALZ ADP1874 0 3 EVALZ ADP1882 1 0 EVALZ ADP...

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