跳转到主要内容
瑞萨电子 (Renesas Electronics Corporation)
PrimAccurate™ Zero No-Load Power Off-Line Digital PWM Controller in a SOT-23 Package

封装信息

CAD 模型:View CAD Model
Pkg. Type:SOT23-6L
Pkg. Code:
Lead Count (#):6
Pkg. Dimensions (mm):
Pitch (mm):0.95

环境和出口类别

Moisture Sensitivity Level (MSL)1
Pb (Lead) FreeYes
ECCN (US)EAR99
HTS (US)8542.39.0090

产品属性

Lead Count (#)6
Carrier TypeTape & Reel
Moisture Sensitivity Level (MSL)1
Pb (Lead) FreeYes
Temp. Range (°C)-40 to +125°C
Advanced FeaturesEZ-EMI, PrimAccurate
ApplicationAdapters, Chargers, Home Appliances
Control ModePrimary-Side Regulation Peak Current Mode DCM
Controller / IntegratedController
MOQ3000
No Load Power (mW)5
Output Power (Min) (W)1
Output Power Max (W)10
PWMs (#)1
Parametric CategoryFlyback & Forward Controllers
Pass DeviceBJT
Pitch (mm)0.95
Pkg. TypeSOT23-6L
Protection FeaturesOVP, IUVP, PCL/OCP, SRSC
Qty. per Reel (#)3000
Qualification LevelStandard
Switching Frequency (KHz)72 - 72
Topology CharacteristicFlyback
UVLO Falling (V)4
UVLO Rising (V)11
VBIAS (Max) (V)16
已发布Yes

描述

The iW1700 is a high-performance AC/DC controller designed to drive an external power bipolar junction transistor (BJT) for peak current mode PWM flyback power supplies. The iW1700 is a zero no-load power product, having less than 5mW of power consumption at no load, easily meeting the US DoE’s external power supply standard and the EU’s Code of Conduct, Version 5, Tier 2, external power supply standard. The virtually zero no-load power consumption makes it ideal for adapters in portable electronics and power supplies for consumer electronics.

As a PrimAccurate™ controller, which uses primary-side control algorithms, the iW1700 does not need any direct secondary-side feedback components, eliminating the need for optocouplers, and reducing component count and solution cost. Additional features include Renesas' proprietary EZ-EMI™ technology, quasi-resonant control for optimal efficiency at heavy loads, cable and connector voltage drop compensation options, full protection from fault conditions, and tiny packaging.