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TNY263_04 PDF预览

TNY263_04

更新时间: 2022-04-23 23:00:11
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 201K
描述
Enhanced, Energy Efficient, Low Power Off-line Switcher

TNY263_04 数据手册

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TNY263-268  
®
TinySwitch-II Family  
Enhanced, Energy Efficient,  
Low Power Off-line Switcher  
Product Highlights  
+
+
DC Output  
-
TinySwitch-II Features Reduce System Cost  
• Fully integrated auto-restart for short circuit and open  
loop fault protection–saves external component costs  
• Built-in circuitry practically eliminates audible noise with  
ordinary dip-varnished transformer  
Optional  
UV Resistor  
Wide-Range  
HV DC Input  
D
EN/UV  
• Programmable line under-voltage detect feature prevents  
power on/off glitches–saves external components  
• Frequency jittering dramatically reduces EMI (~10 dB)  
–minimizes EMI filter component costs  
• 132 kHz operation reduces transformer size–allows use of  
EF12.6 or EE13 cores for low cost and small size  
• Very tight tolerances and negligible temperature variation  
on key parameters eases design and lowers cost  
BP  
S
TinySwitch-II  
-
PI-2684-101700  
Figure 1. Typical Standby Application.  
• Lowest component count switcher solution  
• Expanded scalable device family for low system cost  
OUTPUT POWER TABLE  
230 VAC ±15%  
85-265 VAC  
PRODUCT(3)  
Better Cost/Performance over RCC & Linears  
• Lower system cost than RCC, discrete PWM and other  
integrated/hybrid solutions  
• Cost effective replacement for bulky regulated linears  
• Simple ON/OFF control–no loop compensation needed  
• No bias winding–simpler, lower cost transformer  
• Simple design practically eliminates rework in  
manufacturing  
Open  
Open  
Adapter(1)  
Adapter(1)  
Frame(2)  
Frame(2)  
7.5 W  
9 W  
TNY263P or G  
5 W  
3.7 W  
4 W  
4.7 W  
6 W  
TNY264P or G 5.5 W  
TNY265P or G 8.5 W  
TNY266P or G 10 W  
11 W  
15 W  
19 W  
23 W  
5.5 W  
6 W  
7.5 W  
9.5 W  
12 W  
15 W  
TNY267P or G  
TNY268P or G  
13 W  
16 W  
8 W  
EcoSmart®–Extremely Energy Efficient  
10 W  
• No load consumption < 50 mW with bias winding and  
< 250 mW without bias winding at 265 VAC input  
• Meets Blue Angel, Energy Star, and EC requirements  
• Ideal for cell-phone charger and PC standby applications  
Table 1. Notes: 1. Typical continuous power in a non-ventilated enclosed  
adapter measured at 50 °C ambient. 2. Maximum practical continuous  
power in an open frame design with adequate heat sinking, measured at  
50 °C ambient (See Key Applications Considerations). 3. Packages:  
P: DIP-8B, G: SMD-8B. See Part Ordering Information.  
High Performance at Low Cost  
• High voltage powered–ideal for charger applications  
• High bandwidth provides fast turn on with no overshoot  
• Current limit operation rejects line frequency ripple  
• Built-in current limit and thermal protection improves  
safety  
auto-restart, line under-voltage sense, and frequency jittering.  
An innovative design minimizes audio frequency components  
in the simple ON/OFF control scheme to practically eliminate  
audible noise with standard taped/varnished transformer  
construction. The fully integrated auto-restart circuit safely  
limits output power during fault conditions such as output short  
circuit or open loop, reducing component count and secondary  
feedbackcircuitrycost.Anoptionallinesenseresistorexternally  
programs a line under-voltage threshold, which eliminates  
power down glitches caused by the slow discharge of input  
storage capacitors present in applications such as standby  
supplies. The operating frequency of 132 kHz is jittered to  
significantly reduce both the quasi-peak and average EMI,  
minimizing filtering cost.  
Description  
TinySwitch-II integrates a 700 V power MOSFET, oscillator,  
high voltage switched current source, current limit and thermal  
shutdown circuitry onto a monolithic device. The start-up and  
operating power are derived directly from the voltage on the  
DRAINpin,eliminatingtheneedforabiaswindingandassociated  
circuitry. In addition, the TinySwitch-II devices incorporate  
April 2004  

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