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  3. Z64-CC3200MODR1

Z64-CC3200MODR1Radio Module

Texas Instruments Incorporated
Radio Module - FCC ID Z64-CC3200MODR1 - Texas Instruments Incorporated
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Oct 08, 2014
Application Purpose
Original Equipment
Date of Application
Oct 08, 2014
Equipment Note
Radio Module
Frequency Range
2412.00000000 - 2462.00000000
Company
Texas Instruments Incorporated
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

EVM User’s Guide TI Confidential – Strictly Private 2 CC3200MOD Launchpad (Evaluation board) User Guide ECS Applications Table 1. Document Change Log Date (Version) Author Approved by Description Initial Release Contents 1 Getting Started ....................................................................................................................... 3 1.1 Introduction 3 1.2 Key Features 3 2 Hardware ............................................................................................................................ 4 2.1 Block Diagram 5 2.2 Hardware features of the CC3200MOD Launchpad (Evaluation board) 5 2.2.1 Power connections 6 2.2.2 2x20 pin connector assignment 6 2.3 Power 7 2.4 PCB Layout information 8 2.5 Schematics 10 2.6 Bill of materials 14 2.7 Antenna information 16 EVM User’s Guide TI Confidential – Strictly Private 3 Getting Started 1.1 Introduction The CC3200MOD LaunchPad is an easy-to-use evaluation module for the CC3200 WIFI microcontroller Module. It contains everything needed to start developing on a low-power Arm Cortex M4F MCU, including onboard emulation for programming and debugging as well as onboard buttons and LEDs for quick integration of a simple user interface. The CC3200 supports growing applications with increased CPU speed, memory, and 32- bit performance. Rapid prototyping is a snap thanks to the 40-pin headers and a wide variety of BoosterPack plug-in modules that enable technologies such as , graphical displays, Audio codec, Antenna diversity, environmental sensing, and much more. 1.2 Key Features • Low-Power ARM Cortex M4F CC3200MOD module with 802.11 bgn WIFI • 40-pin LaunchPad standard that leverages the BoosterPack ecosystem • FTDI based JTAG emulation with Serial port for flash programming. • Two buttons and three LEDs for user interaction • Backchannel UART through USB to PC. • On-board chip antenna with U.FL for conducted testing. • On-board Accelerometer and Temperature sensor for Out of Box demo. • Micro USB connector for power and debug connections. EVM User’s Guide TI Confidential – Strictly Private 4 2 Hardware U.FL CC3200 Chip Antenna User LEDs Push Button Push Button Reset JTAG Headers UART Signals 20 pin J1, J3 20 pin J2, J4 Sensor Area FTDI JTAG Emu Murata Conn EVM Overview EVM User’s Guide TI Confidential – Strictly Private 5 2.1 Block Diagram FTDI FT2232D + SWD circuit CC3200MOD USB Conn LDO 3.3V 2xAA BattConn Acc BMA222 Temp Sensor TMP006 Chip ant I 2 C LEDs GPIO9,10,11 Push buttons GPIO13, 22 2x20 Launchpad headers (Compatible with TI MCU Std*) M25PX80-VMN6TP W25Q80BLUXIG VCC JTAG/SWD UART (Flashing) U.FL Filter Reverse Protection INT(GPIO13) DC/DC 3.3V VDD_FLASH Block Diagram 2.2 Hardware features of the CC3200MOD Launchpad (Evaluation board) • CC3200MOD Module with CC3200 device with RF filter, serial flash and crystal. • Low-Power ARM Cortex M4 with 802.11 bgn WIFI • 40-pin LaunchPad standard that leverages the BoosterPack ecosystem • FTDI based JTAG emulation with Serial port for flash programming. • Supports both 4 wire JTAG and 2 wire SWD • Two buttons and three LEDs for user interaction • Virtual COM port UART through USB on PC • On-board chip antenna with U.FL for conducted testing. • On-board Accelerometer and Temperature sensor for Out of Box demo with option to isolate them from the I2C bus. • Micro USB connector for power and debug connections. EVM User’s Guide TI Confidential – Strictly Private 6 • Headers for current measurement and external JTAG connection. • Bus powered device with no external power required for WIFI. • Long range transmission with highly optimized antenna (200m Typical in open air with a 6dBi antenna AP) • Can be powered with external 2xAA or 2xAAA alkaline batteries working down to 2.3V typ. 2.2.1 Power connections The board can be powered by using the on-board micro USB connector. An on-board LDO provides 3.3V for the CC3200 and the rest of the board to operate. This supply can be isolated from the LDO using the jumpers on the board. J12 Current measurement Measure the current flowing into the CC3200 device. J13 Board power Short: Supply the board power from the on-board LDO. Open : Supply the board power from the J20 (battery connector) J19 5V power 5V output from the USB VBUS (has a diode drop of up to 0.4V) J20 3.3V power input Can be used to power the board from an external 2XAA battery pack. It has in-built reverse voltage protection to prevent the battery from being plugged in the reverse manner. Various powering options are discussed in subsequent sections. 2.2.2 2x20 pin connector assignment The signal assignment on the 2x20 pin connector is shown below. The convention of J1..J4 is replaced with P1...P4 to avoid confusion with the actual board reference. EVM User’s Guide TI Confidential – Strictly Private 7 CC3200 P1P3 RefSignal Dev Pin# Dev Pin#Signal 13.3V 5V 2ADC_CH158 GND 3UART0_RX 457ADC_CH0 4UART0_TX360 ADC_CH3 5GPIO 6158*ADC_CH1 6ADC_CH25959*ADC_CH2 7SPI_CLK563AUD_SYNC 8GPIO6253AUD_CLK 9I2C_SCL164AUD_DOUT 10I2C_SDA250AUD_DIN P4P2 Signal Dev Pin# Dev Pin#SignalRef PWM 2*GND1 PWM1*18GPIO2 PWM 17*8SPI_CS3 PWM64*45GPIO4 CCAP/GPIO21*RESET_OUT5 CCAP/GPIO18*7SPI_DOUT6 GPIO62*6SPI_DIN7 GPIO60*21GPIO8 GPIO1655GPIO9 GPIO1715GPIO10 The signal mappings are as per the table above. All the signals are referred by the pin-no in the SDK and the table above shows the default mappings. Note that some of the pins are repeated across the connector. For e.g. pin 62 is available on P1 and P4, but only P1 is connected by default. The signal on P4 is marked with a *(star) to signify that is not connected by default. It can be routed to the pin by using a 0 Ohm resistor in the path. Please refer to the schematics and placement diagram for the exact resistor placement. 2.3 Power The Launchpad is designed to work from the USB provided power supply as it enumerates as a bus-powered device. Care has been taken in the design to ensure that the board does not violate the in-rush limits of the USB bus.…

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ID Label/Location Info

Position

Operational Description

The CC3200MODR1 is the second-generation series of modules in the SimpleLink family and consists of an applications microcontroller unit (MCU), Wi-Fi network processor, and a power management subsystem. The module comes integrated with all required components including on-board flash, clocks, and RF filter for easy hardware integration and quick time-to-market. The applications MCU subsystem contains an industry-standard ARM Cortex-M4 core running at 80 MHz. The CC3200MOD module supports a wide variety of rich peripherals, including fast parallel camera interface, I2S, SD and MMC, UART, SPI, I2C, and 4-channel ADC. The series of devices include a variety of embedded RAM memory options, with peripheral drivers in ROM memory. The series also includes a secure device with on-chip 128-bit secret key supporting secure boot as well as applications and user data encryption. The CC3200MOD module also features a Wi-Fi network processor subsystem which contains a dedicated ARM Cortex-M3 MCU to completely offload the applications MCU. This subsystem includes 802.11 b/g/n radio, baseband, and medium access control with a powerful crypto engine for fast secured WLAN and Internet connections with 256-bit encryption. The CC3200MOD module supports station, access point, and Wi-Fi Direct modes. The CC3200MOD module also supports WPA2 personal and enterprise security and WPS 2.0. The Wi-Fi network processor includes an embedded IPv4 TCP/IP stack. The power-management subsystem includes an integrated DC-DC converter with support for a wide range of supply voltages. This subsystem enables low-power consumption modes such as the hibernate with RTC mode which requires less than 18 μA of current. The antenna is external to the module and it is a Taiyo Yuden 2.4GHz Multilayer RadiEdge antenna (MN: AH 316M245001) with a peak gain of 1.9dBi.

RF Exposure Info

Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at device output terminal:14.64dBm Cable and Jumper loss:0.0dB Maximum peak output power at antenna input terminal:14.64dBm 29.10717118mW Single Antenna gain (typical):1.9dBi Number of Antennae:1 Total Antenna gain (typical):1.9dBi 1.548816619(numeric) Prediction distance:20cm Prediction frequency:2437MHz MPE limit for uncontrolled exposure at prediction frequency:1mW/cm 2 Power density at prediction frequency:0.008969 mW/cm 2 0.089687W/m 2 Tx On time:1.000000ms Tx period time:1.000000ms Average Factor:100.000000% Average Power density at prediction frequency:0.089687W/m 2 Maximum allowable antenna gain:22.37269855dBi Margin of Compliance:20.47269855 dB 2 4R PG S π =

Test Report

www.nemko.com Nemko Canada Inc., a testing laboratory, is accredited by the Standards Council of Canada. The tests included in this report are within the scope of this accreditation FCC 15.247 and RSS-210 A8.docx; Date: May 2013 SCC Accredited LAB LAB Accrédité CCN TM ONE WORLDOURAPPROVAL Test report 264561-1TRFWL Date of issue: September 25, 2014 Applicant: Texas Instruments Inc. Product: CC3200 LaunchPad Model: CC3200MODR1M2AMOB FCC ID: IC Registration number: Z64-CC3200MODR1 451I-CC3200MODR1 Specifications:  FCC 47 CFR Part 15 Subpart C, §15.247 Operation in the 902–928 MHz, 2400–2483.5 MHz, 5725–5850 MHz  RSS-210, Issue 8, December 2010, Annex 8 Frequency Hopping and Digital Modulation Systems Operating in the 902–928 MHz, 2400–2483.5 MHz, and 5725–5850 MHz Bands Report reference ID: 264561-1TRFWL Page 2 of 33 Test location Company name: Nemko Canada Inc. Address: 303 River Road City: Ottawa Province: Ontario Postal code: K1V 1H2 Country: Canada Telephone: +1 613 737 9680 Facsimile: +1 613 737 9691 Toll free: +1 800 563 6336 Website: www.nemko.com Site number: FCC: 176392; IC: 2040A-4 (3 m semi anechoic chamber) Tested by: Kevin Rose, Wireless/EMC Specialist Reviewed by: Andrey Adelberg, Senior Wireless/EMC Specialist Date: September 25, 2014 Signature: Limits of responsibility Note that the results contained in this report relate only to the items tested and were obtained in the period between the date of initial receipt of samples and the date of issue of the report. This test report has been completed in accordance with the requirements of ISO/IEC 17025. All results contain in this report are within Nemko Canada’s ISO/IEC 17025 accreditation. Copyright notification Nemko Canada Inc. authorizes the applicant to reproduce this report provided it is reproduced in its entirety and for use by the company’s employees only. Any use which a third party makes of this report, or any reliance on or decisions to be made based on it, are the responsibility of such third parties. Nemko Canada Inc. accepts no responsibility for damages, if any, suffered by any third party as a result of decisions made or actions based on this report. © Nemko Canada Inc. Report reference ID: 264561-1TRFWL Page 3 of 33 Table of contents Table of contents .......................................................................................................................................................................................................... 3 Section 1. Report summary ................................................................................................................................................................................. 4 1.1 Applicant and manufacturer .................................................................................................................................................................................... 4 1.2 Test specifications .................................................................................................................................................................................................... 4 1.3 Test methods ............................................................................................................................................................................................................ 4 1.4 Statement of compliance ......................................................................................................................................................................................... 4 1.5 Exclusions ................................................................................................................................................................................................................. 4 1.6 Test report revision history ...................................................................................................................................................................................... 4 Section 2. Summary of test results ....................................................................................................................................................................... 5 2.1 FCC Part 15 Subpart C, general requirements test results ........................................................................................................................................ 5 2.2 FCC Part 15 Subpart C, intentional radiators test results.......................................................................................................................................... 5 2.3 IC RSS-GEN, Issue 3, test results ............................................................................................................................................................................... 5 2.4 IC RSS-210, Issue 8, test results ................................................................................................................................................................................ 6 Section 3. Equipment under test (EUT) details ..................................................................................................................................................... 7 3.1 Sample information .................................................................................................................................................................................................. 7 3.2 EUT information ....................................................................................................................................................................................................... 7 3.3 Technical information .............................................................................................................................................................................................. 7 3.4 Product description and theory of operation ..................................................…

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Test Setup Photos

www.nemko.com Nemko Canada Inc., a testing laboratory, is accredited by the Standards Council of Canada. The tests included in this report are within the scope of this accreditation setup photos.docx; Date: May 2013 SCC Accredited LAB LAB Accrédité CCN TM ONE WORLDOURAPPROVAL Setup photos 264561-3RADWL Date of issue: September 25, 2014 Applicant: Texas Instruments Inc. Product: CC3200 LaunchPad Model: Model: CC3200MODR1M2AMOB CC3200MODR1M2AMOB FCC ID: FCC ID: Z64-CC3200MODR1 Z64-CC3100MODR1 Z64-CC3200MODR1 Z64-CC3100MODR1 Section 1: Internal photos Report reference ID: 264561-2RADWL Page 2 of 2 Section 1. Internal photos 1.1 Top general view

Contact Information

Applicant

Marian Kost(Product Line Manager, Connectivity)
[email protected]214-567-2462Fax: 214-479-5605

Test Firm

Nemko Canada Inc. (Ottawa)Charles Neal
[email protected]613-737-9680Fax: 613-737-9691

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz29.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Power listed is conducted. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. End-users and installers must be provided with antenna installation and transmitter operating conditions for satisfying RF exposure compliance.

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