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TOP243Y 参数 Datasheet PDF下载

TOP243Y图片预览
型号: TOP243Y
PDF下载: 下载PDF文件 查看货源
内容描述: 家庭扩展的电源,设计灵活,集成离线式开关 [Family Extended Power, Design Flexible,Integrated Off-line Switcher]
分类和应用: 开关局域网
文件页数/大小: 48 页 / 768 K
品牌: POWERINT [ Power Integrations ]
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TOP242-249  
In addition to using a minimum number of components,  
TOPSwitch-GX provides many technical advantages in this  
type of application:  
sequence when it detects the first closure of the switch, and  
subsequentbouncingoftheswitchhasnoeffect. Ifnecessary,  
the microprocessor could implement the switch debouncing  
in software during turn-off, or a filter capacitor can be used  
at the switch status input.  
1. Extremely low power consumption in the off mode: 80 mW  
typical at 110 VAC and 160 mW typical at 230 VAC. This  
is because in the remote/off mode the TOPSwitch-GX  
consumes very little power, and the external circuitry does  
not consume any current (either M, L or X pin is open) from  
the high voltage DC input.  
4. No external current limiting circuitry is needed for the  
operation of the U4 optocoupler output due to internal  
limiting of M pin current.  
5. No high voltage resistors to the input DC voltage rail are  
requiredtopowertheexternalcircuitryintheprimary. Even  
the LED current for U3 can be derived from the CONTROL  
pin. This not only saves components and simplifies layout,  
but also eliminates the power loss associated with the high  
voltage resistors in both on and off states.  
2. A very low cost, low voltage/current, momentary contact  
switch can be used.  
3. Nodebouncingcircuitryforthemomentaryswitchisrequired.  
During turn-on, the start-up time of the power supply  
(typically 10 to 20 ms) plus the microprocessor initiation  
time act as a debouncing filter, allowing a turn-on only if the  
switch is depressed firmly for at least the above delay time.  
During turn-off, the microprocessor initiates the shutdown  
6. Robustdesign: Thereisnoon/offlatchthatcanbeaccidentally  
triggered by transients. Instead, the power supply is held in  
the on-state through the secondary side microprocessor.  
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