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TNY266GN-TL PDF预览

TNY266GN-TL

更新时间: 2024-01-27 12:07:12
品牌 Logo 应用领域
帕沃英蒂格盛 - POWERINT 开关
页数 文件大小 规格书
24页 1202K
描述
Enhanced, Energy Efficient, Low Power Off-line Switcher

TNY266GN-TL 技术参数

是否无铅: 不含铅是否Rohs认证: 符合
生命周期:Not Recommended零件包装代码:DIP
包装说明:0.300 INCH, LEAD FREE, PLASTIC, MS-001-AB, DIP-8针数:8
Reach Compliance Code:compliantECCN代码:EAR99
HTS代码:8542.39.00.01Factory Lead Time:14 weeks
风险等级:7.07其他特性:REQUIRES AN AC SUPPLY OF 85 TO 265 V
模拟集成电路 - 其他类型:SWITCHING REGULATOR控制模式:CURRENT-MODE
控制技术:PULSE WIDTH MODULATIONJESD-30 代码:R-PDIP-T7
JESD-609代码:e3长度:9.575 mm
功能数量:1端子数量:7
最高工作温度:125 °C最低工作温度:-40 °C
最大输出电流:0.56 A封装主体材料:PLASTIC/EPOXY
封装代码:DIP封装形状:RECTANGULAR
封装形式:IN-LINE峰值回流温度(摄氏度):NOT SPECIFIED
认证状态:Not Qualified表面贴装:NO
切换器配置:SINGLE最大切换频率:140 kHz
温度等级:AUTOMOTIVE端子面层:Matte Tin (Sn)
端子形式:THROUGH-HOLE端子节距:2.54 mm
端子位置:DUAL处于峰值回流温度下的最长时间:NOT SPECIFIED
宽度:7.62 mmBase Number Matches:1

TNY266GN-TL 数据手册

 浏览型号TNY266GN-TL的Datasheet PDF文件第1页浏览型号TNY266GN-TL的Datasheet PDF文件第2页浏览型号TNY266GN-TL的Datasheet PDF文件第3页浏览型号TNY266GN-TL的Datasheet PDF文件第5页浏览型号TNY266GN-TL的Datasheet PDF文件第6页浏览型号TNY266GN-TL的Datasheet PDF文件第7页 
TNY263-268  
70 °C (typical) is provided to prevent overheating of the PC  
Line Under-Voltage Sense Circuit  
board due to a continuous fault condition.  
TheDClinevoltagecanbemonitoredbyconnectinganexternal  
resistor from the DC line to the EN/UV pin. During power-up  
or when the switching of the power MOSFET is disabled in  
auto-restart, the current into the EN/UVpin must exceed 49 µA  
to initiate switching of the power MOSFET. During power-up,  
this is accomplished by holding the BYPASS pin to 4.8Vwhile  
the line under-voltage condition exists. The BYPASS pin then  
rises from 4.8 V to 5.8 V when the line under-voltage condition  
goes away. When the switching of the power MOSFET is  
disabledinauto-restartmodeandalineunder-voltagecondition  
exists, the auto-restart counter is stopped. This stretches the  
disable time beyond its normal 850 ms until the line under-  
voltage condition ends.  
Current Limit  
ThecurrentlimitcircuitsensesthecurrentinthepowerMOSFET.  
When this current exceeds the internal threshold (ILIMIT), the  
powerMOSFETisturnedofffortheremainderofthatcycle.The  
current limit state machine reduces the current limit threshold  
by discrete amounts under medium and light loads.  
The leading edge blanking circuit inhibits the current limit  
comparator for a short time (tLEB) after the power MOSFET is  
turned on. This leading edge blanking time has been set so that  
currentspikescausedbycapacitanceandsecondary-siderectifier  
reverse recovery time will not cause premature termination of  
the switching pulse.  
The line under-voltage circuit also detects when there is  
no external resistor connected to the EN/UV pin (less than  
~ 2 µAinto the pin). In this case the line under-voltage function  
is disabled.  
Auto-Restart  
In the event of a fault condition such as output overload, output  
short circuit, or an open loop condition, TinySwitch-II enters  
into auto-restart operation. An internal counter clocked by the  
oscillator gets reset every time the EN/UV pin is pulled low. If  
the EN/UVpin is not pulled low for 50 ms, the power MOSFET  
switching is normally disabled for 850 ms (except in the case of  
line under-voltage condition, in which case it is disabled until  
the condition is removed). The auto-restart alternately enables  
anddisablestheswitchingofthepowerMOSFETuntilthefault  
condition is removed. Figure 5 illustrates auto-restart circuit  
operation in the presence of an output short circuit.  
TinySwitch-II Operation  
TinySwitch-II devices operate in the current limit mode. When  
enabled, the oscillator turns the power MOSFET on at the  
beginning of each cycle. The MOSFET is turned off when the  
current ramps up to the current limit or when the DCMAX limit is  
reached. Since the highest current limit level and frequency of  
a TinySwitch-II design are constant, the power delivered to the  
loadisproportionaltotheprimaryinductanceofthetransformer  
and peak primary current squared. Hence, designing the supply  
involves calculating the primary inductance of the transformer  
for the maximum output power required. If the TinySwitch-II  
is appropriately chosen for the power level, the current in the  
calculated inductance will ramp up to current limit before the  
DCMAX limit is reached.  
In the event of a line under-voltage condition, the switching  
of the power MOSFET is disabled beyond its normal 850 ms  
time until the line under-voltage condition ends.  
Enable Function  
300  
TinySwitch-IIsensestheEN/UVpintodeterminewhetherornot  
to proceed with the next switching cycle as described earlier.  
The sequence of cycles is used to determine the current limit.  
Onceacycleisstarted,italwayscompletesthecycle(evenwhen  
the EN/UV pin changes state half way through the cycle). This  
operation results in a power supply in which the output voltage  
ripple is determined by the output capacitor, amount of energy  
per switch cycle and the delay of the feedback.  
200  
100  
0
10  
5
The EN/UV pin signal is generated on the secondary by  
comparing the power supply output voltage with a reference  
voltage. The EN/UV pin signal is high when the power supply  
output voltage is less than the reference voltage.  
0
1000  
2000  
0
Time (ms)  
In a typical implementation, the EN/UV pin is driven by an  
optocoupler. The collector of the optocoupler transistor is  
connected to the EN/UV pin and the emitter is connected to  
Figure 5. TinySwitch-II Auto-Restart Operation.  
G
4/05  
4

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