MAXIM MR16 EVALUATION PLATFORM User Manual
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MAX16840DEMO1# (pdf) |
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MAXIM MR16 EVALUATION PLATFORM User Manual Abstract User Guide for the Maxim MR16 Evaluation Demo platforms, which allows users to quickly demonstrate the compatibility and flicker-free operation of a MAX16840 based MR16 LED bulb, and compare it with the performance of other bulbs. Table of Contents 1 Ordering Information 2 Package 2 Quick Start 2 2 Hardware Functional 3 Major 3 3 Contact Information 4 Maxim Integrated 1 Introduction The Maxim MR16 evaluation demo platform allows users to quickly demonstrate the compatibility and flicker-free operation of a MAX16840 based MR16 LED bulb and compare it with the performance of other bulbs. The demo platforms are available in a 110VAC version MAX16840DEMO1# and a 220VAC version MAX16840DEMO2# , depending on the region of the world where it will be used. The demo platforms are supplied with two bulbs an MR16 bulb with the MAX16840 driver and TBD bulb with a competitor driver. In addition, any available bulb can be used to test the performance. By selecting one of the four ETs and then using the dimmer, the demo platform compares the flicker-free performance of the MAX16840 based bulb against the competitor driver based bulb. Ordering Information PART MAX16840DEMO1# MAX16840 demo for dimmable MR16 110VAC MAX16840DEMO2# MAX16840 demo for dimmable MR16 220VAC #Denotes a RoHS-compliant device that can include lead that is exempt under the RoHS requirements. Package Contents The MAX16840DEMO_# kit includes the following • MAX16840DEMO1# or MAX16840DEMO2# • Quick Start Guide print copy Quick Start Instructions 1 Plug the demo board into AC outlet. Ensure that you have the correct demo for your local AC voltage. 2 Plug the two bulbs into the MR16 sockets. 3 Using the switches on the bottom end, select one of the four electronic transformers and one of the MR16 bulbs. 4 Use the dimmer to turn on the corresponding bulb. 5 Cycle through the four transformers and look for flicker. Maxim Integrated 2 Hardware Description This section provides more information on the hardware design of the board including the electronic transformers and the dimmers used. Functional Diagram The demo includes a set of four electronic transformers which convert the line voltage to the 12V required by the MR16 bulb. A trailing edge dimmer precedes the electronic transformers and is used to turn the bulbs on and off and to dim the bulbs. Major Components There are two versions of the demo, one for 110VAC line voltage and one for 220VAC line voltage. Line Voltage Transformer 1 Transformer 2 Transformer 3 Transformer 4 Dimmer Bulb 1 Bulb 2 MAX16840DEMO1# 110VAC Hatch RS12-60M LighTech LET60 B+L CV90001 xxxx Lutron SELV OSRAM Superstar MR16 35 24adv - 830 OSRAM Superstar MR16 35 24adv - 830 MAX16840DEMO2# 220VAC xxxx Siemens 5TC8 284 xxxx xxxx It is extremely important that the correct version is used with the local line voltage. Failure to do so will damage the board, the bulbs, or both. Maxim Integrated 3 Contact Information For more information about Maxim Integrated products, contact technical support at 4 Trademarks OSRAM is a registered trademark of Osram GmbH. Maxim Integrated cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim Integrated product. No circuit patent licenses are implied. Maxim Integrated reserves the right to change the circuitry and specifications without notice at any time. 2015 by Maxim Integrated Products, Inc. All rights reserved. Information in this publication concerning the devices, applications, or technology described is intended to suggest possible uses and may be superseded. MAXIM INTEGRATED PRODUCTS, INC. DOES NOT ASSUME LIABILITY FOR OR PROVIDE A REPRESENTATION OF ACCURACY OF THE INFORMATION, DEVICES, OR TECHNOLOGY DESCRIBED IN THIS DOCUMENT. MAXIM ALSO DOES NOT ASSUME LIABILITY FOR INTELLECTUAL PROPERTY INFRINGEMENT RELATED IN ANY MANNER TO USE OF INFORMATION, DEVICES, OR TECHNOLOGY DESCRIBED HEREIN OR OTHERWISE. The information contained within this document has been verified according to the general principles of electrical and mechanical engineering or registered trademarks of Maxim Integrated Products, Inc. All other product or service names are the property of their respective owners. Maxim Integrated |
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