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10W Off-Line LED Driver for Dimmable Solid State Lighting, 1.5 Stage

Package Information

CAD Model:View CAD Model
Pkg. Type:SOIC-8-EP
Pkg. Code:
Lead Count (#):8
Pkg. Dimensions (mm):
Pitch (mm):1.27

Environmental & Export Classifications

Moisture Sensitivity Level (MSL)3
Pb (Lead) FreeYes
ECCN (US)EAR99
HTS (US)8542.39.0090

Product Attributes

Lead Count (#)8
Carrier TypeTape & Reel
Moisture Sensitivity Level (MSL)3
Pb (Lead) FreeYes
Advanced FeaturesPrimAccurate, Flickerless, EZ-EMI
ApplicationSolid State Lighting
Controller / IntegratedController
Dim Range (Max) (%)100
Dim Range (Min) (%)1
Dimmer Functions SupportedLeading Edge, Trailing Edge, No Dimmer Support
Dimming Frequency (Hz)900
FunctionDimmable
Key FeaturesPrimAccurate, Flickerless, EZ-EMI
LED Current Accuracy (%)5
No Load Power (mW)300
Optimal VIN (V)200 - 264
Output Power (Min) (W)3
Output Power Max (W)10
Parametric CategorySolid State Lighting Driver ICs
Pass DeviceFET
Peak Efficiency (%)85
Pitch (mm)1.27
Pkg. TypeSOIC-8-EP
Power Factor Correction>0.7
Protection FeaturesOVP, IOVP, UVLO, PCL/OCP, SRSC
PublishedYes
Qty. per Reel (#)2500
Stages1.5-Stage
Switching Frequency (KHz)200 - 200
Temp. Range (°C)-40 to +85°C

Description

Designed to operate from a broad input voltage range of 100VAC to 230VAC, the iW3602 provides an efficient solution for 3W to 10W LED luminaires. Incorporating Renesas' proprietary Flickerless™ technology, the iW3602 removes LED flicker and permits usage with the industry's broadest range of dimmers. Additionally, the iW3602 incorporates Renesas' proprietary PrimAccurate™ primary-side control technology, minimizing the external component count by removing the need for both the traditional optocoupler and external compensation components, reducing solution size and cost.

The iW3602 integrates an over-temperature protection circuit that works with an external NTC resistor to reduce the drive to the output LEDs when an over-temperature condition is detected, enabling continuous light output while protecting the entire LED driver circuit.