参数资料
型号: NCP3065SOBSTGEVB
厂商: ON Semiconductor
文件页数: 9/18页
文件大小: 0K
描述: EVAL BOARD FOR NCP3065SOBSTG
设计资源: NCP3065 Boost Eval Board BOM
NCP3065SOBSTGEVB Gerber Files
NCP3065 Boost Eval Board Schematic
标准包装: 1
电流 - 输出 / 通道: 350mA
输出及类型: 1,非隔离
输出电压: 20V
输入电压: 12V
已供物品:
已用 IC / 零件: NCP3065
其它名称: NCP3065SOBSTGEVBOS
NCP3065, NCV3065
APPLICATIONS
Figures 16 through 24 show the simplicity and flexibility
of the NCP3065. Two main converter topologies are
demonstrated with actual test data shown below each of the
circuit diagrams.
Figure 16 gives the relevant design equations for the key
parameters. Additionally, a complete application design aid
for the NCP3065 can be found at www.onsemi.com.
(See Notes 8, 9, 10)
ton
toff
t on
Step ? Down
Vout ) VF
Vin * VSWCE * Vout
ton
toff
Step ? Up
Vout ) VF * Vin
Vin * VSWCE
ton
toff
CT + 381.6 @ 10
C T
f
ton
toff
) 1
fosc
* 6
* 343 @ 10 * 12
f
ton
toff
) 1
I L(avg)
Iout
Iout
ton
toff
) 1
I pk (Switch)
IL(avg) )
D IL
2
IL(avg) )
D IL
2
R SC
0.20
Ipk (Switch)
0.20
Ipk (Switch)
L
Vin * VSWCE * Vout
D IL
ton
Vin * VSWCE
D IL
ton
V ripple(pp)
D IL
1
8 f CO
2
) (ESR) 2
[
ton Iout
CO
) D IL @ ESR
V out
VTH
R2
R1
) 1
VTH
R2
R1
) 1
I out
V ref R sense
V ref R sense
8. V SWCE ? Darlington Switch Collector to Emitter Voltage Drop, refer to Figures 7, 8, 9 and 10.
9. V F ? Output rectifier forward voltage drop. Typical value for 1N5819 Schottky barrier rectifier is 0.4 V.
10. The calculated t on /t off must not exceed the minimum guaranteed oscillator charge to discharge ratio.
Figure 16. Design Equations
The Following Converter Characteristics Must Be Chosen:
V in ? Nominal operating input voltage.
V out ? Desired output voltage.
I out ? Desired output current.
D I L ? Desired peak ? to ? peak inductor ripple current. For maximum output current it is suggested that D I L be chosen to be
less than 10% of the average inductor current I L(avg) . This will help prevent I pk (Switch) from reaching the current limit threshold
set by R SC . If the design goal is to use a minimum inductance value, let D I L = 2(I L(avg) ). This will proportionally reduce
converter output current capability.
f ? Maximum output switch frequency.
V ripple(pp) ? Desired peak ? to ? peak output ripple voltage. For best performance the ripple voltage should be kept to a low
value since it will directly affect line and load regulation. Capacitor C O should be a low equivalent series resistance (ESR)
electrolytic designed for switching regulator applications.
http://onsemi.com
9
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