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NCP1012AP065G

产品描述Switching Controllers Low Standby Power Monolithic Switcher
产品类别电源/电源管理    电源电路   
文件大小354KB,共23页
制造商ON Semiconductor(安森美)
官网地址http://www.onsemi.cn
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NCP1012AP065G概述

Switching Controllers Low Standby Power Monolithic Switcher

NCP1012AP065G规格参数

参数名称属性值
Brand NameON Semiconductor
是否无铅不含铅
厂商名称ON Semiconductor(安森美)
零件包装代码DIP
包装说明DIP, DIP7/8,.3
针数7
制造商包装代码626A-01
Reach Compliance Codecompliant
ECCN代码EAR99
Factory Lead Time1 week
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
标称输入电压8 V
JESD-30 代码R-PDIP-T7
JESD-609代码e3
长度9.78 mm
功能数量1
端子数量7
最大输出电流1 A
封装主体材料PLASTIC/EPOXY
封装代码DIP
封装等效代码DIP7/8,.3
封装形状RECTANGULAR
封装形式IN-LINE
峰值回流温度(摄氏度)260
认证状态Not Qualified
座面最大高度4.45 mm
表面贴装NO
切换器配置SINGLE
最大切换频率71 kHz
端子面层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40
宽度7.62 mm

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NCP1010, NCP1011,
NCP1012, NCP1013,
NCP1014
Self-Supplied Monolithic
Switcher for Low Standby-
Power Offline SMPS
The NCP101X series integrates a fixed−frequency current−mode
controller and a 700 V MOSFET. Housed in a PDIP−7 or SOT−223
package, the NCP101X offers everything needed to build a rugged and
low−cost power supply, including soft−start, frequency jittering,
short−circuit protection, skip−cycle, a maximum peak current setpoint
and a Dynamic Self−Supply (no need for an auxiliary winding).
Unlike other monolithic solutions, the NCP101X is quiet by nature:
during nominal load operation, the part switches at one of the available
frequencies (65 − 100 − 130 kHz). When the current setpoint falls
below a given value, e.g. the output power demand diminishes, the IC
automatically enters the so−called skip−cycle mode and provides
excellent efficiency at light loads. Because this occurs at typically 1/4
of the maximum peak value, no acoustic noise takes place. As a result,
standby power is reduced to the minimum without acoustic noise
generation.
Short−circuit detection takes place when the feedback signal fades
away, e.g. in true short−circuit conditions or in broken Optocoupler
cases. External disabling is easily done either simply by pulling the
feedback pin down or latching it to ground through an inexpensive
SCR for complete latched−off. Finally soft−start and frequency
jittering further ease the designer task to quickly develop low−cost and
robust offline power supplies.
For improved standby performance, the connection of an auxiliary
winding stops the DSS operation and helps to consume less than
100 mW at high line. In this mode, a built−in latched overvoltage
protection prevents from lethal voltage runaways in case the
Optocoupler would brake. These devices are available in economical
8−pin dual−in−line and 4−pin SOT−223 packages.
Features
www.onsemi.com
MARKING
DIAGRAMS
4
4
1
SOT−223
CASE 318E
ST SUFFIX
1
AYW
101xy
G
G
8
1
x
y
PDIP−7
CASE 626A
AP SUFFIX
1
P101xAPyy
AWL
YYWWG
= Current Limit (0, 1, 2, 3, 4)
= Oscillator Frequency
A (65 kHz), B (100 kHz), C (130 kHz)
yy
= 06 (65 kHz), 10 (100 kHz), 13 (130 kHz)
A
= Assembly Location
WL
= Wafer Lot
YY, Y = Year
WW, W = Work Week
G
or G = Pb−Free Package
(Note: Microdot may be in either location)
ORDERING INFORMATION
See detailed ordering and shipping information in the package
dimensions section on page 21 of this data sheet.
Built−in 700 V MOSFET with Typical R
DSon
of 11
W
and 22
W
Large Creepage Distance Between High−Voltage Pins
Current−Mode Fixed Frequency Operation:
65 kHz – 100 kHz − 130 kHz
Skip−Cycle Operation at Low Peak Currents Only:
No Acoustic Noise!
Dynamic Self−Supply, No Need for an Auxiliary
Winding
Internal 1.0 ms Soft−Start
Latched Overvoltage Protection with Auxiliary
Winding Operation
Frequency Jittering for Better EMI Signature
Auto−Recovery Internal Output Short−Circuit
Protection
Below 100 mW Standby Power if Auxiliary Winding
is Used
Internal Temperature Shutdown
Direct Optocoupler Connection
SPICE Models Available for TRANsient Analysis
These are Pb−Free and Halide−Free Devices
Typical Applications
Low Power AC/DC Adapters for Chargers
Auxiliary Power Supplies (USB, Appliances,TVs, etc.)
©
Semiconductor Components Industries, LLC, 2014
1
October, 2016 − Rev. 24
Publication Order Number:
NCP1010/D

 
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