
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
APPROVAL產品編號MODEL# : R9P503 & R9P805 Series 共用說明書 包裝形式 (Package Type) : Clam Shell 修改版本 Ver sion#Revision : 1/1 應用軟體Application : Illustr at or CS 3 印刷方式 (Proc es s/Spot Color s) 特別色 (Pant one) 印刷紙張(Paper Type) : 80 P 銅版紙 裱浪方式 (Paper Form) : 上光 (Paper Coating) : 印刷方式 : 正1反1 加工方式 : 騎馬釘 印刷尺寸 : 210X148.5mm 完成尺寸:105X148.5mm 設計部門 : 產品外觀設計部 設計者 : 鄭汀晴 設計日期 : 98 / 12 / 16 修改日期 : 發稿日期 : 99 / 03 / 02 勝德國際研發股份有限公司 Powertech Industrial Co., Ltd 10F, No. 407, Chung Shan Rd., Sec2, Chung Ho City 235 , 23588 Taipei County, Taiwan T : +886-2-8221-5588 F : +886-2-8221-5680 E : sales@power-t ech.com.tw CYANMAGENTA PANTONE YELLOWBLACK 註解 NOTES : 刀模圖為1 :1尺寸請勿印刷 Die Line are 100% do not print. User Manual All Versions USB SMART SURGE PROTECTOR © Copyright 2010 The information contained herein is subject to change without notice. This document contains proprietary information, which is protected by copyright. No part of this document may be photocopied, reproduced, or translated into another language without the prior written consent. January 2010 R9P-503 R9P-805 TABLE OF CONTENTS INTRODUCTION------------------------------------------------------------- 2 FEATURES------------------------------------------------------------------3 INSTALLATION------------------------------------------------------------- 4 USB TRANSMITTER WIRELESS RANGE------------------------------------- 4 WALL MOUNTING---------------------------------------------------------- 4 HOOKUP INSTRUCTION---------------------------------------------------- 4 OPERATION---------------------------------------------------------------- 8 USE USB TRANSMITTER TO CONTROL ENERGY SAVER OUTLETS---------- 8 SURGE PROTECTOR MANUAL ON/OFF AND LEARNING BUTTON----------- 9 SPECIFICATIONS------------------------------------------------------------11 INTRODUCTION Thank you for purchasing the USB Smart Surge Protector, an innovative product which is designed to reduce both stand-by power waste & energy cost. Stand-by power has always been around us. Many consumers often think their appliance is off. In fact, it is still standing by and still consuming power. Inspired by Green, the USB Smart Surge System provides easy & efficient way to manage power outlets and stop stand-by power waste. The System consists of two parts, USB Transmitter and Surge Protector. When USB Transmitter is connected to device’s USB port, it detects power in the USB port and wirelessly controls the “ENERGY SAVER outlets” on the Surge Protector accordingly. These conditions are when you turn on the device; USB Transmitter will wirelessly turn on the “ENERGY SAVER outlets” on the Surge Protector. When you turn off the device; USB Transmitter will wirelessly turn off the “ENERGY SAVER outlets” on the Surge Protector. As a result, the stand-by power waste is efficiently reduced. The Surge Protector also provides advanced surge protection & power filtration to protect your electronic equipments from power surges & voltage spikes. And power filtration cleans the AC contamination and improves the performance of connected electronic equipments. The USB Smart Surge Protector makes a great companion for everyday energy conservation and surge protection USB Smart Surge Manual All Versions V1.0 1 USB Smart Surge Manual All Versions V1.0 2 FEATURES USB TRANSMITTER � Bypass USB Transmitter Design - Unique Bypass USB Port design frees up the USB port for other USB devices. - Great feature if your main device does not have enough USB ports. Learning and Grouping capability - One USB Transmitter can group with multi Surge Protectors by learning capability. - Enjoy the convenience that one USB Transmitter can control multi Surge Protectors within its wireless range. SURGE PROTECTOR Controlled by the USB Transmitter, the ENERGY SAVER outlets on the Surge Protector automatically switch On or Off to eliminate unnecessary energy waste. Advanced Surge Protection protects your electronic equipments from surges and voltage spikes. EMI/RFI Noise Filtration eliminates the interference and improves the performance of your electronic equipments. INSTALLATION USB TRANSMITTER WIRELESS RANGE In open space, the USB Transmitter has a wireless range up to 25 feet* to control the Surge Protector. * Actual range may vary depending on environment condition, interference and building materials. WALL MOUNTING Mounting the Surge Protector Note: Wall Mounting is available only on Strip and the Block type Surge Protector. 1. There are mounting holes on the back of the Surge Protector for wall or base board mounting. 2. Install screws (not included) on wall or baseboard surface (leaving at least 1/4 inch of the screw exposed). 3. Place and secure the Surge Protector on mounted screws. CONNECTING INSTRUCTION Before you start, take a few minutes to understand the conditions for the USB Transmitter to work correctly. Few devices will always have power in its USB port regardless the on/off status of the devices. This is due to convenience reason that the user can still use the USB port with other handheld devices. In this case, the devices usually have higher stand-by power since the USB port always draws power from the devices. USB Smart Surge Manual All Versions V1.0 3 USB Smart Surge Manual All Versions V1.0 4 Since the USB Transmitter detects the power on/off status in device USB port to correctly control the ENERGY SAVER outlets on the Surge Protector, the USB Transmitter will not work with device that always has power in its USB port when it is completely turned off. The USB Transmitter is a great tool to check if your device USB port continues to draw power while it’s turned off. While your device is off, connect the USB Transmitter to one of its USB port. If the blue LED light illuminates, this indicates there is still power in the USB port when the device is off. Locate and use another USB port that does not have power in it for the USB Transmitter to correctly function. Step 1 Connect electronic devices to the “ENERGY SAVER” outlets …
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Sep. 21, 2010 To: SIEMIC, INC. 2206 Ringwood Avenue, San Jose, CA 95131 USA Dear Sir/Madam, Re: Project and Product Certification Representative Authorization Letter We, Powertech Industrial Co Ltd hereby authorize SIEMIC, INC. to act as a Certification Body for certifying for the following project(s): Product Name: USB Smart Surge Transmitter Model Name: R9P013 We affirm that between SIEMIC and Powertech Industrial Co Ltd any difference in understanding, including test plan, measurement methods, applicable standards and relevant procedures and processes have been resolved prior to commencement of testing activities. Sincerely, George Lee / Director Powertech Industrial Co Ltd 10F, No. 407, Chung Shan Rd., Sec 2 Chung Ho City Taipei Hsien, 235 Taiwan
SCS-F19: Confidentiality Request Letter Rev 1.0 Nov 14, 2006 Confidentiality Request Letter Revision History Reason for Amendment (current / obsolete) From To Approved Date Initial Release (current) 1.0 1.0 Nov-14-2006 SCS-F19: Confidentiality Request Letter Rev 1.0 Nov 14, 2006 Sep. 21, 2010 To: Federal Communications Commission Authorization and Evaluation Division Confidentiality Request regarding application for certification of FCC ID: NHS-R9P013 We hereby request confidential treatment of information accompanying this application as outlined below: - Block Diagram - Operational Description - Schematic Diagram The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. The applicant understands that pursuant to Section 0.457 of the Rules, disclosure of this application and all accompanying documentation will not be made before the date of the Grant for this application. Sincerely, Daniel Wu / Section Chief of Safety Department Powertech Industrial Co Ltd 10F, No. 407, Chung Shan Rd., Sec 2 Chung Ho City Taipei Hsien, 235 Taiwan
Powertech Industrial Co Ltd USB Smart Surge Transmitter FCC ID : NHS-R9P013 EUT External Photos Photo 1 General Appearance (Front & Side View) Photo 2 General Appearance (Back & Side View)
Powertech Industrial Co Ltd USB Smart Surge Transmitter FCC ID : NHS-R9P013 ID Label Location z Label Placement Location (Bottom Side of EUT) z ID Label Format FCC ID NHS-R9P013 ID Label Placement Location
Powertech Industrial Co Ltd USB Smart Surge Transmitter FCC ID : NHS-R9P013 EUT Internal Photos Photo 3 Internal View (Cover Removed) Photo 4 PCB View (Front Side) Powertech Industrial Co Ltd USB Smart Surge Transmitter FCC ID : NHS-R9P013 Photo 5 PCB View (Back Side) Photo 6 PCB View (Front Side) Powertech Industrial Co Ltd USB Smart Surge Transmitter FCC ID : NHS-R9P013 Photo 7 PCB View (Back Side)
FCC ID. NHS-R9P013 Page 1 of 30 AUDIX Technology Corporation Report No.: EM-F990690 TEST REPORT FOR CERTIFICATION On Behalf of Powertech Industrial Co Ltd USB Smart Surge Transmitter Model No.: R9P013 FCC ID: NHS-R9P013 Prepared for: Powertech Industrial Co Ltd 10F, No. 407, Chung Shan Rd., Sec 2 Chung Ho City, Taipei Hsien, 235 Taiwan Prepared By : AUDIX Technology Corporation EMC Department No. 53-11, Tin-Fu Tsun, Lin-Kou Hsiang, Taipei Hsian, Taiwan Tel : (02) 2609-9301, 2609-2133 Fax : (02) 2609-9303 File Number C1M1004069 Report Number EM-F990690 Date of Test Jun. 24 ~ Jul. 06, 2010 Date of Report Jul. 08, 2010 FCC ID. NHS-R9P013 Page 2 of 30 AUDIX Technology Corporation Report No.: EM-F990690 TABLE OF CONTENTS Description Page TEST REPORT CERTIFICATION........................................................................................................3 1. GENERAL INFORMATION ..........................................................................................................4 1.1. Description of Device (EUT) .................................................................................................................. 4 1.2. Tested Supporting System Details .......................................................................................................... 5 1.3. Description of Test Facility..................................................................................................................... 5 1.4. Measurement Uncertainty ....................................................................................................................... 5 2. CONDUCTED EMISSION MEASUREMENT .............................................................................6 2.1. Test Equipment ....................................................................................................................................... 6 2.2. Block Diagram of Test Setup .................................................................................................................. 6 2.3. Powerline Conducted Emission Limit (§15.207) ....................................................................................6 2.4. Operating Condition of EUT................................................................................................................... 7 2.5. Test Procedure......................................................................................................................................... 7 2.6. Powerline Conducted Emission Measurement Results ........................................................................... 7 3. RADIATED EMISSION MEASUREMENT ...............................................................................10 3.1. Test Equipment ..................................................................................................................................... 10 3.2. Test Setup.............................................................................................................................................. 10 3.3. Radiation Emission Limits (§15.209 & 15.231) ...................................................................................12 3.4. Operating Condition of EUT................................................................................................................. 13 3.5. Test Procedure....................................................................................................................................... 13 3.6. Radiated Emission Noise Measurement Results ................................................................................... 14 4. EMISSION BANDWIDTH MEASUREMENT ...........................................................................21 4.1. Test Equipment ..................................................................................................................................... 21 4.2. Block Diagram of Test Setup ................................................................................................................ 21 4.3. Specification Limits (§15.231-(c))........................................................................................................ 21 4.4. Emission Bandwidth Measurement Results..........................................................................................21 5. PERIODIC OPERATED MEASUREMENT ..............................................................................23 5.1. Test Equipment ..................................................................................................................................... 23 5.2. Block Diagram of Test Setup ................................................................................................................ 23 5.3. Specification Limits [§15.231-(a)-(3)].................................................................................................. 23 5.4. Periodic Operated Measurement Results .............................................................................................. 23 6. DEVIATION TO TEST SPECIFICATIONS...............................................................................26 7. PHOTOGRAPHS............................................................................................................................27 7.1. Photos of Conducted Measurement.......................................................................................................... 27 7.2. Photos of Radiated Measurement at Semi-Anechoic Chamber (30-1000MHz)........................................... 28 7.3. Photos of Radiated Measurement at Semi-Anechoic Chamber (Above 1GHz) ........................................ 29 7.4. Photo of Emission Bandwidth Measurement ........................................................................................30 7.5. Photo of Periodic Operated Measurement ............................................................................................ 30 FCC ID. NHS-R9P013 Page 3 of 30 AUDIX Technology Corporation …
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FCC ID. NHS-R9P013 Page 27 of 30 AUDIX Technology Corporation Report No.: EM-F990690 7. PHOTOGRAPHS 7.1. Photos of Conducted Measurement FRONT VIEW OF CONDUCTED MEASUREMENT SIDE VIEW OF CONDUCTED MEASUREMENT FCC ID. NHS-R9P013 Page 28 of 30 AUDIX Technology Corporation Report No.: EM-F990690 7.2. Photos of Radiated Measurement at Semi-Anechoic Chamber (30-1000MHz) FRONT VIEW OF RADIATED MEASUREMENT BACK VIEW OF RADIATED MEASUREMENT FCC ID. NHS-R9P013 Page 29 of 30 AUDIX Technology Corporation Report No.: EM-F990690 7.3. Photos of Radiated Measurement at Semi-Anechoic Chamber (Above 1GHz) FRONT VIEW OF RADIATED MEASUREMENT BACK VIEW OF RADIATED MEASUREMENT FCC ID. NHS-R9P013 Page 30 of 30 AUDIX Technology Corporation Report No.: EM-F990690 7.4. Photo of Emission Bandwidth Measurement 7.5. Photo of Periodic Operated Measurement
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231 | 433.92 MHz - 433.92 MHz | - |

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