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TNY277GN-TL

产品类别电源/电源管理    电源电路   
文件大小1023KB,共24页
制造商Power Integrations
官网地址https://www.powerint.cn
标准
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TNY277GN-TL规格参数

参数名称属性值
是否Rohs认证符合
零件包装代码SOIC
包装说明SOP, GWDIP7/8,.4
针数8/7
Reach Compliance Codecompliant
ECCN代码EAR99
模拟集成电路 - 其他类型SWITCHING REGULATOR
控制模式CURRENT-MODE
控制技术PULSE WIDTH MODULATION
最大输入电压2.6 V
最小输入电压1.8 V
标称输入电压2.2 V
JESD-30 代码R-PDSO-G7
JESD-609代码e3
长度9.575 mm
湿度敏感等级4
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0.491 A
封装主体材料PLASTIC/EPOXY
封装代码SOP
封装等效代码GWDIP7/8,.4
封装形状RECTANGULAR
封装形式SMALL OUTLINE
峰值回流温度(摄氏度)250
认证状态Not Qualified
座面最大高度3.98 mm
最大供电电流 (Isup)0.46 mA
表面贴装YES
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GULL WING
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40
宽度6.35 mm
Base Number Matches1

文档预览

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TNY274-280
TinySwitch-III
Family
®
Energy-Efficient, Off-Line Switcher With
Enhanced Flexibility and Extended Power Range
Product Highlights
Lowest System Cost with Enhanced Flexibility
Simple ON/OFF control, no loop compensation needed
Selectable current limit through BP/M capacitor value
Higher current limit extends peak power or, in open
frame applications, maximum continuous power
Lower current limit improves efficiency in enclosed
adapters/chargers
Allows optimum TinySwitch-III choice by swapping
devices with no other circuit redesign
Tight I
2
f parameter tolerance reduces system cost
Maximizes MOSFET and magnetics power delivery
Minimizes max overload power, reducing cost of
transformer, primary clamp & secondary components
ON-time extension – extends low line regulation range/hold-up
time to reduce input bulk capacitance
Self-biased: no bias winding or bias components
Frequency jittering reduces EMI filter costs
Pin-out simplifies heatsinking to the PCB
SOURCE pins are electrically quiet for low EMI
Enhanced Safety and Reliability Features
Accurate hysteretic thermal shutdown protection with
automatic recovery eliminates need for manual reset
Improved auto-restart delivers <3% of maximum power in short
circuit and open loop fault conditions
Output overvoltage shutdown with optional Zener
Line undervoltage detect threshold set using a single optional
resistor
Very low component count enhances reliability and enables
single-sided printed circuit board layout
High bandwidth provides fast turn on with no overshoot and
excellent transient load response
Extended creepage between DRAIN and all other pins improves
field reliability
EcoSmart – Extremely Energy Efficient
Easily meets all global energy efficiency regulations
No-load <150 mW at 265 VAC without bias winding, <50 mW
with bias winding
ON/OFF control provides constant efficiency down to very light
loads – ideal for mandatory CEC regulations and 1 W PC
standby requirements
Applications
Chargers/adapters for cell/cordless phones, PDAs, digital
cameras, MP3/portable audio, shavers, etc.
PC Standby and other auxiliary supplies
DVD/PVR and other low power set top decoders
Supplies for appliances, industrial systems, metering, etc.
®
+
+
DC
Output
-
Wide-Range
HV DC Input
TinySwitch-III
S
D
EN/UV
BP/M
-
PI-4095-082205
Figure 1.
Typical Standby Application.
Output Power Table
230 VAC ± 15%
Product
3
Adapter
1
6W
8.5 W
10 W
13 W
16 W
18 W
20 W
Peak or
Open
Frame
2
11 W
15 W
19 W
23.5 W
28 W
32 W
36.5 W
85-265 VAC
Adapter
1
5W
6W
7W
8W
10 W
12 W
14 W
Peak or
Open
Frame
2
8.5 W
11.5 W
15 W
18 W
21.5 W
25 W
28.5 W
TNY274P/G
TNY275P/G
TNY276P/G
TNY277P/G
TNY278P/G
TNY279P/G
TNY280P/G
Table 1. Output Power Table.
Notes:
1. Minimum continuous power in a typical non-ventilated enclosed adapter
measured at +50 °C ambient. Use of an external heatsink will increase power
capability.
2. Minimum peak power capability in any design or minimum continuous power in
an open frame design (see Key Applications Considerations).
3. Packages: P: DIP-8C, G: SMD-8C. See Part Ordering Information.
Description
TinySwitch-III incorporates a 700 V power MOSFET, oscillator,
high voltage switched current source, current limit (user
selectable) and thermal shutdown circuitry. The IC family uses an
ON/OFF control scheme and offers a design flexible solution with
a low system cost and extended power capability.
www.powerint.com
January 2009
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