
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
USER GUIDE Warning This device is not waterproof or water resistant. Do not submerge. This device takes 2 AA batteries. Do not mix old and new batteries. Do not dispose of the device or its batteries in domestic waste. Operates on 2.4 GHz ISM Band. The Basics Please refer to www.iolab.science for the latest information and to download our software. Remove the battery pull tab to allow the device to operate. Remove the protective plastic film from the label on the top of the device to avoid the appearance of ripples. Your IOLab has two key components. The “remote” (the main body of the device) and the “dongle” (the removable drive that plugs into the USB port of your computer). The serial number for the remote is located in the cavity under the dongle. The serial number for the dongle is inside the plastic housing. To remove the dongle, simply press firmly with your thumb on the metal piece, thus releasing the dongle from the remote housing. (To replace the dongle when you are finished using it, simply angle it in to the cavity and press in back into place.) Quick Start Guide Go to www.iolab.science and download the driver (install once per computer if using Windows) and the IOLab application (Windows or Mac). The steps required for this (also described below) are shown in videos linked under “Getting Started” on the IOLab YouTube channel linked on the website. Plug in the dongle and press the power button on the remote (the right-hand button on the front). In order to use the system, your dongle and remote need to be paired. If remote is properly communicating with a paired dongle the LED’s on your remote will flash in sequence once per second – first the left LED immediately followed by the right LED. If the remote is not communicating with a paired and powered dongle, the left and right LED on the remote will flash simultaneously once per second. If this is the case please follow the instructions on paring the remote and dongle found in the “Getting Started “ YouTube videos. Start the application as indicated on www.iolab.science. Note that the process is slightly different for Mac and PC. When running the IOLab application for the first time on a given computer you should follow the calibration instructions shown in the “Getting Started” videos. Select the sensors you want to read; charts to display the data from the selected sensors will be created. Click on the Record button to start data acquisition, and click on the Stop button to stop. The Data Smoothing button selects how many points are included in the smoothing average. To take another set of data, click Reset once. To clear your sensor choices and start again, click Reset twice. For more usage information on Navigating the Plots, Calibrating Sensors, Saving Your Data, and other key features of our software, please refer to www.iolab.science for the most up to date information. System Overview • Wireless IOLab unit communicates with USB dongle using 2.4GHz ISM band. • Powered by 2xAA batteries. • TI-MSP430F5329 microcontroller, TI-CC2543 radio. • Dongle communicates with PC/Mac via simple virtual comport interface (i.e. no special USB programming required). • Individual sensors synchronized and read out in various predefined configurations. • Up to 4.8 kHz sensor sampling. • One dongle can synchronously read data from two IOLab remotes. • Wireless range up to 100 feet. RSSI included in data. • Size 30 mm x 75 mm x 130 mm, Weight: Remote 148 g (w/o batteries), Dongle 8 g. Sensor Parameters • 3D accelerometer (14 bit signed, 2/4/8g ranges, 1.56-800 Hz sample rate) • 3D magnetometer (16 bit signed, 1000 uT range, 0.63-80 Hz sample rate) • 3D gyroscope (16 bit signed, measures ωX, ωY, ωZ, 250/500/2000 deg/sec ranges, 95-760 Hz sample rate). • Rolls on 3 wheels along Y-axis; optical encoder measures displacement velocity & acceleration, 1 mm/count, 100 Hz sample rate. • Force probe (Range ± 10 N parallel to Y axis, 12 bit signed, up to 4.8 kHz sample rate) • Light intensity sensor (12 bit, up to 4.8 kHz Hz sample rate) • Atmospheric pressure sensor (0.15 kPa resolution, 1-100 Hz sample rate) • Temperature sensor (die temperature, w/ 400 Hz over-sampling). • Microphone (12 bit, 20-20kHz, up to 4.8 kHz Hz sample rate). • Speaker/Buzzer (programmable pitch & duty cycle, 35Hz – 8.4 kHz) • DC coupled high gain differential amplifier, up to 4.8 kHz sampling. • 6 analog input pins (sampled by 12 bit ADC at up to 4.8 kHz). • 6 digital I/O pins on header. • DAC output (8 bit resolution). • Two tri-color LED’s & two pushbuttons (software readable). • FTDI interface on header (standard configuration). • Over the air re-programming of all three system microcontrollers. FCC STATEMENT 1. This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) This device must accept any interference received, including interference that may cause undesired operation. 2. Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. NOTE: This equipment has been tested and found to comply with the limits for a Class B digital, pursuant to Part 15 or the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may casue harmful interference to radio communications, However, there is no guarantee that interference will not occur in a particular installation. If the equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: --- Reorient or relocate the receiving antenna. --- Increase the separat…
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SCS-F18: Project and Product Certification Representative Authorization Letter Page 1 of 2 Rev 5.0 775 Montague Expressway Milpitas, CA 95035 Tel: 408-526-1188 Fax: 408-526-1088 Email: [email protected] Project and Product Certification Representative Authorization Letter Revision History Reason for Amendment (current / obsolete) From To Approved Date Initial Release (obsolete) 1.0 1.0 Nov-14-2006 Revised wording (obsolete) 1.0 2.0 Sept–25-2007 Updated company template (obsolete) 2.0 3.0 Jan-31-2012 Updated letter information (obsolete) 3.0 4.0 May-23-2014 Added FCC ID field (current) 4.0 5.0 Sept 16 2014 SCS-F18: Project and Product Certification Representative Authorization Letter Page 2 of 2 Rev 5.0 Bedford, Freeman & Worth Publishing Group, LLC Oct 8, 2015 To: SIEMIC, INC. 775 Montague Expressway, Milpitas, CA 95035 USA Dear Sir/Madam, Re: Product Certification Representative Authorization Letter We, Bedford, Freeman & Worth Publishing Group, LLC hereby authorize SIEMIC, Inc. to act as a Certification Body for certifying for the following project(s): Product name: IOLab Remote Model No.: IOL15A FCC ID: 2AF5F-IOL15A Sincerely, Client’s signature: Client’s name / title: Kate Parker / Sales Manager Contact information / address: 175 Fifth Avenue New York, NY 10010 United States
SCS-F19: Confidentiality Request Letter Page 1 of 2 Rev 5.0 775 Montague Expressway Milpitas, CA 95035 Tel: 408-526-1188 Fax: 408-526-1088 Email: [email protected] Confidentiality Request Letter Revision History Reason for Amendment (current / obsolete) From To Approved Date Initial Release (obsolete) 1.0 1.0 Nov-14-2006 Adding CFR 2.459 (obsolete) 1.0 2.0 August – 11 - 2008 Updated company template & Added text box (obsolete) 2.0 3.0 Jan-31-2012 Added IC confidentiality letter form (obsolete) 3.0 4.0 March-26-2015 Corrections to STC form. Added reference to KDB (current) 4.0 5.0 Nov 19 2015 SCS-F19: Confidentiality Request Letter Page 2 of 2 Rev 5.0 Beford, Freeman & Forth Publishing Group, LLC Nov 8, 2015 To: Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD Subject: Permanent Confidentiality Request for FCC ID: 2AF5F-IOL15A Pursuant to sections 0.457 and 0.459 of CFR 47, we respectfully request permanent confidential treatment of the following Exhibits accompanying this application as: - Block Diagram - Schematics - Operational Description 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 disclosure of this application and all accompanying documentation will not be made before the date of the Grant for this application. Sincerely, Client’s signature : Client’s name & title : Kate Parker / Sales Manager Contact information / address: 175 Fifth Avenue New York, NY 10010 United States
External Photos
Label and label location FCC ID: 2AF5F-IOL15A
Internal Photos Antenna
Report No.: ATE20152068 Page 1 of 35 FCC ID: 2AF5F-IOL15A ACCURATE TECHNOLOGY CO., LTD APPLICATION CERTIFICATION On Behalf of Bedford, Freeman & Worth Publishing Group, LLC IOLab Remote Model No.: IOL15A FCC ID: 2AF5F-IOL15A Prepared for : Bedford, Freeman & Worth Publishing Group, LLC Address : 175 Fifth Avenue, New York, NY 10010 United States Prepared by : ACCURATE TECHNOLOGY CO., LTD Address : F1, Bldg. A, Changyuan New Material Port, Keyuan Rd. Science & Industry Park, Nanshan, Shenzhen, Guangdong P.R. China Tel: (0755) 26503290 Fax: (0755) 26503396 Report Number : ATE20152068 Date of Test : Sep 21-Oct 8, 2015 Date of Report : Oct 8, 2015 Report No.: ATE20152068 Page 2 of 35 FCC ID: 2AF5F-IOL15A ACCURATE TECHNOLOGY CO., LTD TABLE OF CONTENTS Description Page Test Report Certification 1. GENERAL INFORMATION .......................................................................................................... 4 1.1. Description of Device (EUT)....................................................................................................................4 1.2. Special Accessory and Auxiliary Equipment ...........................................................................................4 1.3. Description of Test Facility ......................................................................................................................5 1.4. Measurement Uncertainty.........................................................................................................................5 2. MEASURING DEVICE AND TEST EQUIPMENT ..................................................................... 6 3. OPERATION OF EUT DURING TESTING ................................................................................. 7 3.1. Operating Mode ........................................................................................................................................7 3.2. Configuration and peripherals ..................................................................................................................7 4. TEST PROCEDURES AND RESULTS ......................................................................................... 8 5. 20DB BANDWIDTH MEASUREMENT ........................................................................................ 9 5.1. Block Diagram of Test Setup....................................................................................................................9 5.2. The Requirement For Section 15.215(c)...................................................................................................9 5.3. Operating Condition of EUT ....................................................................................................................9 5.4. Test Procedure ..........................................................................................................................................9 5.5. Test Result ..............................................................................................................................................10 6. BAND EDGE COMPLIANCE TEST ........................................................................................... 12 6.1. Block Diagram of Test Setup..................................................................................................................12 6.2. The Requirement For Section 15.249 .....................................................................................................12 6.3. EUT Configuration on Measurement .....................................................................................................12 6.4. Operating Condition of EUT ..................................................................................................................12 6.5. Test Procedure ........................................................................................................................................12 6.6. Test Result ..............................................................................................................................................13 7. RADIATED SPURIOUS EMISSION TEST ................................................................................ 18 7.1. Block Diagram of Test Setup..................................................................................................................18 7.2. The Limit For Section 15.249.................................................................................................................19 7.3. Restricted bands of operation .................................................................................................................20 7.4. Configuration of EUT on Measurement .................................................................................................20 7.5. Operating Condition of EUT ..................................................................................................................20 7.6. Test Procedure ........................................................................................................................................21 7.7. The Field Strength of Radiation Emission Measurement Results ..........................................................22 8. ANTENNA REQUIREMENT........................................................................................................ 35 8.1. The Requirement ....................................................................................................................................35 8.2. Antenna Construction .............................................................................................................................35 Report No.: ATE20152068 Page 3 of 35 FCC ID: 2AF5F-IOL15A ACCURATE TECHNOLOGY CO., LTD Test Report Certification Applicant : Bedford, Freeman & Worth Publishing Group, LLC Manufacturer : Shenzhen C&D Electronics Co., Ltd EUT Description : IOLab Remote (A) MODEL NO.: IOL15A (B) TRADE NAME: N/A (C) POWER SUPPLY: …
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Test Photos
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | - |