ZLED7020KIT-D1 Demo Kit Description

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ZLED7020KIT-D Demo Kit Description Important Notice Restrictions in Use IDT s ZLED7020KIT-D Demo Kit hardware is designed for ZLED7020 demonstration, evaluation, laboratory setup, and module development only. The ZLED7020KIT-D Demo Kit hardware must not be used for module production or production test setups. Disclaimer IDT shall not be liable for any damages arising out of defects resulting from (i) delivered hard- and software (ii) non-observance of instructions contained in this manual and in any other documentation provided to user, or (iii) misuse, abuse, use under abnormal conditions or alteration by anyone other than IDT. To the extent permitted by law, IDT hereby expressly disclaims and user expressly waives any and all warranties, whether express, implied or statutory, including, without limitation, implied warranties of merchantability and of fitness for a particular purpose, statutory warranty of non-infringement and any other warranty that may arise by reason of usage of trade, custom or course of dealing. Contents Kit Contents... 2 2 Kit Description... 2 2.. Overview... 2 2.2. Power Supply... 2 2.3. Interface... 3 2.4. Key Demo board features and benefits... 3 2.5. Circuit Operation... 5 2.6. Schematic Diagram... 5 3 Ordering Information... 6 4 Related Documents... 6 5 Glossary... 6 6 Document Revision History... 6 List of Figures Figure 2. ZLED7020KIT-D Demo Board (Top View)... 3 Figure 2.2 ZLED7020KIT-D Schematic Diagram... 5 List of Tables Table 2. DC Input Voltages... 4 206 Integrated Device Technology, Inc. May 0, 206

ZLED7020KIT-D Demo Kit Description Kit Contents The ZLED7020KIT-D Demo Kit consists of the following parts: ZLED7020-D Demo Board VX.x Five ZLED7020 samples, SOT89-5 package ZLED7020KIT-D Demo Kit Start-up Information Kit Disclaimer The ZLED7020KIT-D Demo Kit is fully assembled and ready for immediate operation. 2 Kit Description 2.. Overview The ZLED7020KIT-D Demo Kit provides a quick and easy method for evaluating the ZLED7020 within its basic application circuit. Reading the ZLED7020 Data Sheet before using the Demo Kit is recommended for understanding the operation of the ZLED7020 and the Demo Board. The ZLED7020 continuous-mode inductive step-down converter is one of ZLED family of high brightness, high current LED control ICs. It can efficiently drive a single LED or multiple series-connected LEDs from a voltage input higher than the LED voltage (Vin = 6 to 40 VDC). It provides an adjustable output current (.2A maximum), which is set via an external resistor and controlled by the ZLED7020 s integrated high-side output current-sensing circuit. An external control signal (DC voltage or a PWM waveform) on the ADJ pin can be used to linearly adjust the output for either continuous or gated-output current. The output can be turned off by applying a voltage lower than 0.2V to the ADJ pin, which puts the ZLED7020 in a low-current standby state. The ZLED7020 IC is designed for LED current drive applications of up to.2a. The main features of ZLED7020 driver are: Up to.2a output current. Wide input voltage range: 6V to 40V. Internal 40V.2A NDMOS switch. High efficiency ( > 90% possible). Up to MHz switching frequency. The Demo Board contains a standard 4-pin terminal connector to allow the user to easily connect and supply a LED s board. The Demo Board also has two LED power pads (LED+ and LED-) to provide more flexibility in supplying a power LED or LED string. A 33uH shielded inductor was chosen to set nominal frequency around 300kHz.The shielded inductor is selected to minimize radiated EMI. The layout with any switching regulator is crucial to minimize radiated EMI. This reference design keeps the critical track lengths to a minimum. Ground has been maximized around critical areas. Figure 2. shows the top view of the populated kit PCB. 2.2. Power Supply The board requires basically 2V, or above for LED strings, AC or DC power supply. Referring to circuit schematics at Figure 2.2, the shortcut solder joints could be used at R and R3, utilizing a zero ohm resistor in order to enable the pure DC operation. Care has to be taken in this case, since the system is not reverse polarity protected! 206 Integrated Device Technology, Inc. 2 May 0, 206

ZLED7020KIT-D Demo Kit Description The power supply is provided via a standard MR6 connector. In addition, there are two pads for an optional way of supplying the Demo Board. Figure 2. ZLED7020KIT-D Demo Board (Top View) Optiоnal power supply pads VAC R zero Ohm resistor R 2 - sense resistor mounting hole for an optional heat sink LED+ pad ZLED7020 MR6 connector CON4 4 pins 2.54mm connector header LED- pad mounting hole for an optional heat sink R 3 zero Ohm resistor 2.3. Interface MR6 Standard male connector for power supply with wide input voltage range 6V to 40V. VAC 3, 4 Pads for an optional way of power supply. CON4 Standard 2.54mm female header with the following pins:, 2 LED+ Positive pole of the ZLED7020 driver supply voltage. 3, 4 LED- Negative pole of the ZLED7020 driver supply voltage. ADJ puts the ZLED7020 driver in a low current stand-by state. 2.4. Key Demo Board Features and Benefits Wide input voltage range. Standard 4 pins 2.54mm header for attaching of LEDs and additional duplicate smd pads (LED-, LED+). Standard MR6 contact pins and additional duplicate smd pads for power supply. Coils footprint designed for various types of coils. 3.0mm holes for mounting of an optional heat sink. SMD pad for driving of the adjust terminal (ADJ). Solder jumpers for by-passing of the bridge rectifier (R and R3) in case of usage of an external DC supply. All devices SMD and on one side (TOP). Maximized power ground copper at top and bottom sides with thermal vias for good heat distribution. Easy heat sink attaching option (according to the exploitation conditions demands) at the bottom side. Bottom side without solder mask for better thermal contact with heat sink if attached. 206 Integrated Device Technology, Inc. 3 May 0, 206

ZLED7020KIT-D Demo Kit Description Track connecting R2 (current sense resistor) to ZLED7020 as short as possible (being sense tracks). The filter capacitor C is connected as close as possible to the LED output pins. The freewheeling current path is as short as possible to ensure system precision and efficiency. 2.5. Circuit Operation Circuit operation has been evaluated taking into account maximum output current. The reference current is set to a maximum.2a but can be adjusted to any lower value by changing the sense resistor R2 according to the formula: For R2 = 0.082 -> Iref =.2A Iref = 0. / R2, [A] For detailed calculations, please refer to the ZLED7020 datasheet. In Table 2. the data related to the system supplied with DC voltage ranges from 7 V to 30 V. For these tests the Schottky bridge was by-passed. Table 2. DC Input Voltages Uin [V] Iin [A] Uout [V] Iout [A] Pin [W] Pout[W] Efficiency [%] 7,00 0,824 4,7,84 5,768 4,938464 85,6 8,00 0,709 4,07,82 5,672 4,854474 85,6 9,00 0,632 4,02,82 5,688 4,848564 85,2 0,00 0,569 4,083,83 5,69 4,83089 84,9 2,00 0,473 4,046,82 5,676 4,782372 84,3 5,00 0,38 4,038,82 5,7 4,77296 83,7 20,00 0,289 4,033,85 5,78 4,77905 82,7 24,00 0,244 4,025,87 5,856 4,777675 8,6 30,00 0,98 4,09,9 5,94 4,786629 80,6 Note: with by-passed bridge rectifier 206 Integrated Device Technology, Inc. 4 May 0, 206

ZLED7020KIT-D Demo Kit Description 2.6. Schematic Diagram Figure 2.2 ZLED7020KIT-D Schematic Diagram VAC3 VAC4 D2 D5 D4 D3 C3 220uF C4 00nF ADJ 2 3 L 47uH D U LX Vin GND_Thermal Pad ADJ Isense ZLED7020 5 4 R2 0,082 C uf 4 3 2 LED- CON4 J LED+ + + VAC VAC2 R 0 R3 0 C2 220uF 206 Integrated Device Technology, Inc. 5 May 0, 206

ZLED7020KIT-D Demo Kit Description 3 Ordering Information Product Sales Code ZLED7020KIT-D Description ZLED7020KIT-D Demo Kit V.0 incl. 5 IC samples 4 Related Documents Document ZLED7020 Datasheet Visit IDT s website www.idt.com or contact your nearest sales office for the latest version of these documents. 5 Glossary Term LED MR6 NDMOS PCB PWM SOT89-5 Description Light Emitted Diode Multifaceted Reflector N-type Double-Diffused Metal Oxide Semiconductor Printed Circuit Board Pulse Width Modulation Small Outline Transistor 6 Document Revision History Revision Date Description.0 May 2, 200 Initial release May 0, 206 Changed to IDT branding. Corporate Headquarters 6024 Silver Creek Valley Road San Jose, CA 9538 www.idt.com Sales -800-345-705 or 408-284-8200 Fax: 408-284-2775 www.idt.com/go/sales Tech Support www.idt.com/go/support DISCLAIMER Integrated Device Technology, Inc. (IDT) reserves the right to modify the products and/or specifications described herein at any time, without notice, at IDT's sole discretion. Performance specifications and operating parameters of the described products are determined in an independent state and are not guaranteed to perform the same way when installed in customer products. The information contained herein is provided without representation or warranty of any kind, whether express or implied, including, but not limited to, the suitability of IDT's products for any particular purpose, an implied warranty of merchantability, or non-infringement of the intellectual property rights of others. This document is presented only as a guide and does not convey any license under intellectual property rights of IDT or any third parties. IDT's products are not intended for use in applications involving extreme environmental conditions or in life support systems or similar devices where the failure or malfunction of an IDT product can be reasonably expected to significantly affect the health or safety of users. Anyone using an IDT product in such a manner does so at their own risk, absent an express, written agreement by IDT. Integrated Device Technology, IDT and the IDT logo are trademarks or registered trademarks of IDT and its subsidiaries in the United States and other countries. Other trademarks used herein are the property of IDT or their respective third party owners. For datasheet type definitions and a glossary of common terms, visit www.idt.com/go/glossary. All contents of this document are copyright of Integrated Device Technology, Inc. All rights reserved. 206 Integrated Device Technology, Inc. 6 May 0, 206