
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
α αα αα α α ....................................................................................................................α .....................................................................................................................................α α !" #................................................................................α α α $! % &%.....................................................................................α α α !&'.................................................................................α α α ( ) #...............................................................................α α α ) + !'......................................................................α α α , ! - # ./ '...............................................................................α α α 2 3 #+ '................................................................α α .................................................................................................α α α β’ 5 β’ 6 57 β’ 2+ . 5 5 8 ! + # 9 # + 5 + ! β’ / &αααα+ β’ :- / 5 5 & + / + # 3 &+ β’ / 3 + #;α α<% &αα<%=+ 5 & ααα ; β’ % # 5= / & !! & ! ! β’ : & ! ! 5= ++ β’ 2 5+ + 5 + ! #& # 5 β’ : & = ! + 55 ? & @ β’ 9 5 # 5 α 1. β’ Make sure the iControl-hub is powered up and connected to internet before device pairing. β’ Prepare the Door/Window Sensor but do not power up them before getting ready on below steps. α α β’ Access on the website: https://pdev.icontrol.com/sp/login.jsp β’ Login the iControl system with the account (Name: kairylei Password: ll99). α α β’ Select βSettingsβ,and click on the βDoor/Window Sensorsβ: α α β’ Click on button βADD DOOR/WINDOW SENSORβ β’ Click on βNEXTβ: β’ iControl Server enters to Pairing mode. β’ Till this step, the system gets ready for the Sensor joining to the network. Itβs waiting for any sensor to join its network. This waiting would be timed out after 5 minutes if there was no expected sensor found to join it. Then you have to redo upper steps again. α α α β’ Pulling out the insulation tape can energize the Door/Window SENSOR to scan netwrok and subsequently paired to the network successfully. The sensor will take below rules for its joining: (a). It will scan all channels every 5 seconds and will try to join any available network. For each scanning, the LED will blink for 3 times. (b). If no network found after 20 times of scan, the Sensor will stop the trying to join. (LED will be in constant off state.) (c). After stop of scanning, a single press on the tamper button or having a magnet triggering of the sensor, or re-powering up of the sensor, can has the sensor resume the scanning state again. α α β’ Once paired successfully with below page, click on βCONTINUE WITH PAIRED DEVICEβ; then input the name,clickβNEXTβ. β’ Itβs done with adding of a sensor now. α α α !" On the βHomeβ page, you can see all of your devices. Within the βSensorβ group, your sensors were listed there. For example, along with the Window sensor magnet part close/ apart, it will show the Closed/Open state on the list immediately, also with a historical log for the changes on right side. α α# $ 1) Redo a pairing for an already paired device: a) A normal way of this is to remove the device from the βsettingβ page while the device is online. If you did that with device offline, it would also take the leaving network process once itβs back. b) If your sensor was paired early to another iControl-hub, it would not take a pair process automatically. You have to force it to leave the network and join again. You need to hold the temper switch while the sensor was powering up by reinstalling the battery, the LED will be lit and you shall release the switch within the first 4 seconds. The the sensor will leave its past network and begin the pairing process as upper step 4.3, of cause, prior with ready on the web page and the hub. * With this operation, if the sensor was in fact in a same network early, the pairing will be failed. You have to find out it from the device list and remove it and do that again. 2) Resume of the lost link state: In case of lost link from network (can not find the parents node), the Sensor can try to rejoin the network every 5 minutes, or by 5 times of press on the button, with less then 1.5 seconds for each press. α α 2. Paramater Function Supporting profile HA 1.2 and above. iControl compatible. Supporting clusters Basic cluster Identify cluster Power configuration cluster Poll control cluster Temperature measurement cluster Commissioning cluster Diagnostics cluster OTA cluster IAS zone cluster EZ-Mβ¦
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Salus Limited. 9/F, Tower One, Lippo Centre, 89 Queensway, Hong Kong DATE :2015-08-6 Nemko Canada Inc 303 River Road Ottawa, Ontario, Canada K1V 1H2 Attn: Director of Certification Authority to Act as Agent On our behalf, I appoint Hank.Yan of Global United Technology Services Co., Ltd. 2nd Floor, Block No.2, Laodong Industrial Zone, Xixiang Road Baoan District Shenzhen Guangdong to act as our agent in the preparation of this application for equipment certification. I certify that submitted documents properly describe the device or system for which equipment certification is sought. I also certify that each unit manufactured, imported or marketed, as defined in the Federal Communications Commissionβs regulations will have affixed to it a label identical to that submitted for approval with this application. For instances where our authorized agent signs the application for certification on our behalf, I acknowledge that all responsibility for complying with the terms and conditions for certification, as specified by Nemko Canada Inc, still resides with Salus Limited. and 9/F, Tower One, Lippo Centre, 89 Queensway, Hong Kong Dated this / Day of 08/06/2015 / Agency agreement expiration date: 08/06/2016 By: Stanley Ye Signature Printed Title: Manager On behalf of : Salus Limited. Telephone: (86) 755 8473 6036
Salus Limited. 9/F, Tower One, Lippo Centre, 89 Queensway, Hong Kong 2015-08-06 Equipment Authorization Division Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 FCC ID: 2AAP7-SS881ZB Product Name: Embedded Door Sensor Request for Confidentiality Pursuant to Sections 0.457 and 0.459 of the commissions rules, we hereby request that the following documents be held confidential: ο· Schematics ο· Block diagram ο· Operational Description These materials contain trade secrets and proprietary information and are not customarily released to the public. The public disclosure of this information might be harmful to the company and provide unjustified benefits to our competitors. Dated this 08/06/2015 By: Stanley Ye Signature Printed Title: Manager On behalf of : Salus Limited. Telephone: (86) 755 8473 6036
Rating label ^SSS RF Frequency: 2.45GHzBatteries: 3V CR2 FCC ID: 2AAP7-SS881ZB IC:11934A-SS881ZB Made in China SS881ZB RF Frequency:2.405-2.480GHz
Label Location Label location
FCC ID: 2AAP7-SS881ZB RF Exposure Evaluation Limits The criteria listed in the following table shall be used to evaluate the environment impact of human exposure to radio frequency (RF) radiation as specified in 1.1307(b) Limits for Maximum Permissible Exposure (MPE) Frequency range (MHz) Electric field strength (V/m) Magnetic field strength (A/m) Power density (mW/cm 2 ) Averaging time (minutes) (A) Limits for Occupational/Controlled Exposures 0.3β3.0 614 1.63 *(100) 6 3.0β30 1842/f 4.89/f *(900/f 2 ) 6 30β300 61.4 0.163 1.0 6 300β1500 f/300 6 1500β100,000 5 6 (B) Limits for General Population/Uncontrolled Exposure 0.3β1.34 614 1.63 *(100) 30 1.34β30 824/f 2.19/f *(180/f 2 ) 30 30β300 27.5 0.073 0.2 30 300β1500 f/1500 30 1500β100,000 1.0 30 f = frequency in MHz Friis transmission formula: Pd = (Pout*G)/(4*pi*r 2 ) Where Pd = power density in mW/cm 2 , Pout = output power to antenna in mW; G = gain of antenna in linear scale, Pi = 3.1416; R = distance between observation point and center of the radiator in cm Pd id the limit of MPE, 1 mW/cm 2 . If we know the maximum gain of the antenna and the total power input to the antenna, through the calculation, we will know the distance r where the MPE limit is reached. Test Procedure Software provided by client enabled the EUT to transmit and receive data at lowest, middle and highest channel individually. Test Result of RF Exposure Evaluation Frequency Output power to antenna (mW) Power Density at R=20cm (mW/cm 2 ) Limit (mW/cm 2 ) Result 2405MHz 41.783 0.00937 1.0 PASS 2440MHz 38.194 0.00857 1.0 PASS 2475MHz 37.844 0.00849 1.0 PASS 2480MHz 0.234 0.00005 1.0 PASS Remark: antenna gain=0.52dBi
Global United Technology Services Co., Ltd. Report No.: GTSE15050070301 FCC REPORT Applicant: Salus Limited. Address of Applicant: 9/F, Tower One, Lippo Centre, 89 Queensway, Hong Kong Equipment Under Test (EUT) Product Name:Embedded Door Sensor Model No.:SS881ZB FCC ID:2AAP7-SS881ZB Applicable standards: FCC CFR Title 47 Part 15 Subpart C Section 15.247:2014 Date of sample receipt: July 30, 2015 Date of Test: August 03-06, 2015 Date of report issued: August 06, 2015 Test Result : PASS * * In the configuration tested, the EUT complied with the standards specified above. Authorized Signature: Robinson Lo Laboratory Manager This report details the results of the testing carried out on one sample. The results contained in this test report do not relate to other samples of the same product and does not permit the use of the GTS product certification mark. The manufacturer should ensure that all products in series production are in conformity with the product sample detailed in this report. This report may only be reproduced and distributed in full. If the product in this report is used in any configuration other than that detailed in the report, the manufacturer must ensure the new system complies with all relevant standards. Any mention of GTS or testing done by GTS in connection with, distribution or use of the product described in this report must be approved by GTS in writing. This document cannot be reproduced except in full, without prior written approval of the Company. Any unauthorized alteration, forgery or falsification of the content or appearance of this document is unlawful and offenders may be prosecuted to the fullest extent of the law. Unless otherwise stated the results shown in this test report refer only to the sample(s) tested and such sample(s) are retained for 90 days only. RbiL Report No.: GTSE15050070301 2Version Version No.DateDescription 00August 06, 2015Original Prepared By: Date: August 06, 2015 Project Engineer Check By:Date: August 06, 2015 Reviewer Global United Technology Services Co., Ltd.Project No.: GTSE150500703RF Room 301-309, 3th Floor, Block A, Huafeng Jinyuan Business Building, No. 300 Laodong Industrial Zone,Xixiang Road, Baoan District, Shenzhen 518102 Telephone: +86 (0) 755 2779 8480 Fax: +86 (0) 755 2779 8960Page 2 of 39 Report No.: GTSE15050070301 3Contents Page 1COVER PAGE ...........................................................................................................................................1 2 VERSION .................................................................................................................................................. 2 3 CONTENTS .............................................................................................................................................. 3 4 TEST SUMMARY ..................................................................................................................................... 4 4.1 MEASUREMENT UNCERTAINTY............................................................................................................ 4 5 GENERAL INFORMATION ...................................................................................................................... 5 5.1 CLIENT INFORMATION......................................................................................................................... 5 5.2 GENERAL DESCRIPTION OF EUT ......................................................................................................... 5 5.3 TEST MODE........................................................................................................................................ 6 5.4 DESCRIPTION OF SUPPORT UNITS....................................................................................................... 6 5.5 TEST FACILITY.................................................................................................................................... 7 5.6 TEST LOCATION................................................................................................................................. 7 6 TEST INSTRUMENTS LIST ..................................................................................................................... 8 7 TEST RESULTS AND MEASUREMENT DATA...................................................................................... 9 7.1 ANTENNA REQUIREMENT..................................................................................................................... 9 7.2 CONDUCTED PEAK OUTPUT POWER.................................................................................................. 10 7.3 CHANNEL BANDWIDTH...................................................................................................................... 13 7.4 POWER SPECTRAL DENSITY............................................................................................................. 16 7.5 BAND EDGES.................................................................................................................................... 19 7.5.1 Conducted Emission Method ..................................................................................................... 19 7.5.2 Radiated Emission Method ........................................................................................................21 7.6 SPURIOUS EMISSION......................................................................................................................... 24 7.6.1 Conducted Emission Method ..................................................................................................... 24 7.6.2 Radiated Emission Method ........................................................................................................27 8 TEST SETUP PHOTO ............................................................................................................................ 34 9 EUT CONSTRUCTIONAL DETAILS ................................β¦
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Radiated Emission
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 41.78 mW |

Optima 900MHz USA
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
OPTIMA US ZIGBEE THERMOSTAT
Equipment Class
DTS - Digital Transmission System