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2AEMI-PHOTONPHOTON

Particle Industries, Inc.
PHOTON - FCC ID 2AEMI-PHOTON - Particle Industries, Inc.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Jun 28, 2015
Application Purpose
Original Equipment
Date of Application
Jun 25, 2015
Equipment Note
PHOTON
Frequency Range
2412.00000000 - 2462.00000000
Company
Particle Industries, Inc.
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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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

Photon Datasheet Model number: PHOTONH void setup() { Spark.publish("my-event","The internet just got smarter!"); } 1 of 35 Photon Datasheet v011 Contents Photon Datasheet Contents 1. Functional description 1.1 Overview 1.2 Features 2. Interfaces 2.1 Power 2.2 RF 2.3 FCC Approved Antennas 2.4 Peripherals and GPIO 2.5 JTAG 2.6 External Coexistence Interface 3. Pin and button definition 3.1 Pin markings 3.2 Pin description 3.3 Pin out diagrams 4. Technical specification 4.1 Absolute maximum ratings 4.2 Recommended operating conditions 4.3 Wi-Fi Specifications 4.4 I/O Characteristics 5. Mechanical specifications 5.1 Dimensions and Weight 5.2 Mating connectors 5.3 Recommended pcb land pattern (Photon with headers) 5.4 Recommended pcb land pattern (Photon without headers) 6. Layout 6.1 Photon v1.0.0 Top Layer (GTL) 6.2 Photon v1.0.0 GND Layer (G2L) 6.3 Photon v1.0.0 3V3 Layer (G15L) 6.4 Photon v1.0.0 Bottom Layer (GBL) 7. Recommended solder reflow profile 8. Bill of Materials Build your own design based on the Photon! 9. Ordering information 2 of 35 10. Qualification and approvals 11. Product handling 11.1 Packaging 11.2 Moisture sensitivity levels 11.3 ESD Precautions 12. Default settings 13. Glossary 14. FCC IC CE Warnings and End Product Labeling Requirements 15. Revision history 16. Contact 3 of 35 Photon Datasheet v011 1. Functional description 1.1 Overview Particle’s Internet of Things hardware development kit, the Photon, provides everything you need to build a connected product. Particle combines a powerful ARM Cortex M3 micro-controller with a Broadcom Wi-Fi chip in a tiny thumbnail-sized module called the PØ (P-zero). To get you started quickly, Particle adds a rock solid 3.3VDC SMPS power supply, RF and user interface components to the PØ on a small single-sided PCB called the Photon. The design is open source, so when you’re ready to integrate the Photon into your product, you can. The Photon comes in two physical forms: with headers and without. Prototyping is easy with headers as the Photon plugs directly into standard breadboards and perfboards, and may also be mounted with 0.1” pitch female headers on a PCB. To minimize space required, the Photon form factor without headers has castellated edges. These make it possible to surface mount the Photon directly onto your PCB. 1.2 Features Particle PØ Wi-Fi module Broadcom BCM43362 Wi-Fi chip 802.11b/g/n Wi-Fi STM32F205 120Mhz ARM Cortex M3 1MB flash, 128KB RAM On-board RGB status LED (ext. drive provided) 18 Mixed-signal GPIO and advanced peripherals Open source design Real-time operating system (FreeRTOS) Soft AP setup FCC, CE and IC certified 4 of 35 Photon Datasheet v011 2. Interfaces 2.1 Power Power to the Photon is supplied via the on-board USB Micro B connector or directly via the VIN pin. If power is supplied directly to the VIN pin, the voltage should be regulated between 3.6VDC and 5.5VDC. When the Photon is powered via the USB port, VIN will output a voltage of approximately 4.8VDC due to a reverse polarity protection series schottky diode between V+ of USB and VIN. When used as an output, the max load on VIN is 1A. Typical current consumption is 80mA with a 5V input. Deep sleep quiescent current is 160uA. When powering the Photon from the USB connector, make sure to use a quality cable to minimize IR drops (current x resistance = voltage) in the wiring. If a high resistance cable (i.e., low current) is used, peak currents drawn from the Photon when transmitting and receiving will result in voltage sag at the input which may cause a system brown out or intermittent operation. Likewise, the power source should be sufficient enough to source 1A of current to be on the safe side. 2.2 RF The RF section of the Photon is a finely tuned impedance controlled network of components that optimize the efficiency and sensitivity of the Wi-Fi communications. An RF feed line runs from the PØ module into a SPDT RF-switch. Logic level control lines on the PØ module select which of the two ports of the RF-switch is connected to the RF feed line. A 100pF decoupling capacitor is located on each control line. One port is connected to a PCB ceramic chip antenna, and the other is connected to a u.FL connector for external antenna adaptation. The default port will be set to the chip antenna. Additionally, a user API is available to switch between internal, external and even an automatic mode which continuously switches between each antenna and selects the best signal. All three RF ports on the RF-switch have a 10pF RF quality DC-blocking capacitor in series with them. These effectively pass 2.4GHz frequencies freely while blocking unwanted DC voltages from damaging the RF-switch. All RF traces are considered as tiny transmission lines that have a controlled 50 ohm impedance. The chip antenna is impedance matched to the 50 ohm RF feed line via a Pi network comprised of three RF inductors (1 series, 2 shunt). These values are quite specific to the Photon due to the PCB construction and layout of the RF section. Even if the Photon’s layout design is copied exactly, to achieve the best performance it would be worth re- examining the Pi network values on actual samples of the PCB in question. 5 of 35 Photon Datasheet v011 2.3 FCC Approved Antennas Antenna T ypeManuf acturerMFG. Part #Gain Dipole antennaLumenRadio104-10012.15dBi Chip antennaAdvanced Ceramic XAT7020-E3R0HBA1.3dBi 2.4 Peripherals and GPIO The Photon has ton of capability in a small footprint, with analog, digital and communication interfaces. Peripheral T ypeQtyInput(I) / Output(O)FT / 3V3 Digital18I/OFT/3V3 Analog (ADC)8I3V3 Analog (DAC)2O3V3 SPI2I/O3V3 I2S1I/O3V3 I2C1I/OFT CAN1I/OFT USB1I/O3V3 PWM9O3V3 Notes: FT = 5.0V tolerant pins. All pins except A3 and DAC are 5V tolerant (when not in analog mode). If used as a 5V input the pull-up/pull-down resistor must be disabled. 3V3 = 3.3V max pins. PWM is available on D0, D1, D2, D3, A4, A5, WKP, RX, TX with a caveat: PWM timer peripheral is…

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Cover Letter(s)

RF_160, Issue 02 ! Declaration!of!Authorization! ! ! We! Name:!!!!!!!!Spark!Labs,!Inc.,! Address:!!!!320!Alabama!St!#2!San!Francisco,!CA!94110! City:!!!!!!!!!!!San!Francisco! State:!!!!!!!!California! Country:!!!!United!States! ! Declare!that:! ! Name!Representative!of!agent:!Ms.!Cathy!Wang!! Agent!Company!name:!BTL!Inc.! Address:!No.3!Jinshagang!1st!Road,!Shixia,!Dalang!Town! City:!!Dong!Guan! Country:!China! ! ! ! is!authorized!to!apply!for!Certification!and!signing!related!documents!of!the!following!product(s),! including!731!form(s):! ! Product!description:!PHOTON! Type!designation:!PHOTONH! ! ! ! on!our!behalf.! ! ! Date:!!!!!!!!!2015[05[22! ! City:!!!!!!!!!!!San!Francisco! ! Name:!!!!!!Zach!Supalla! ! Function:!!!CEO! ! ! Signature:!...............................! ! ! ! ! ! Notes:' (1):'Required'for'FCC'application' (2):'For'FCC'it'must'be'the'Grantee'Code'“owner”'or'the'authorized'agent.'

Cover Letter(s)

FCC,$Request$for$non/disclosure$$Date:$10/Aug/09$ RF_501,$Issue$5$$$$$$$$Page$1$of$1$$ $ Company$Name:$Spark&Labs,&Inc.,$ Address:$&320&Alabama&St&#2&San&Francisco,&CA&94110& City:$San&Francisco& Country:$United&States$ && To:&Telefication&B.V.,$Dept.&FCC&TCB$ &Edisonstraat&12A& &6902&PK&&ZEVENAAR& &The&Netherlands& & & Subject:&Request$for$confidentiality$FCC$ID:&2AEMIRPHOTON$ & Reference&number:&######$ & Dear$FCC$TCB,$ $ 1.&LongRTerm&Confidentiality& & Pursuant$to$47$CFR$Section$0.459(a)$&$(b),$we$hereby$requests$non/disclosure$and$confidential$treatment$ of$the$following$materials$submitted$in$support$of$FCC$certification$application:$$ $ $$Bill(s)$of$Material$$$$Block$Diagrams$$$ $ $$Operational$Description$$$Schematic$Diagrams$$$$Tune/up$Procedure$ $ Above$materials$contain$secrets,$proprietary$and$technical$information,$which$would$customarily$be$ guarded$from$competitors$under$47$CFR,$section$0.457(d)(2).$Disclosure$or$publication$or$any$portion$of$ this$company$confidential$material$to$other$parties$could$cause$substantial$competitive$harm$and$provide$ unjustified$benefits$for$competitors.$ $ $ $ $ 2.&ShortRTerm&Confidentiality&(STC)&$ $ Pursuant$to$Public$Notice$DA$04/1705$of$the$Commission’s$policy,$in$order$to$comply$with$the$marketing$ regulations$in$47$CFR$§2.803$and$the$importation$rules$in$47$CFR$§2.1204,$applicant$hereby$requests$ Short/Term$Confidential$treatment$of$the$following$materials$(note$1):$$ $ $$Internal$Photos$$$User’s$Manual$$$Test$Set/up$Photos$$$$External$Photos$ $& $ Justification:$$&&&&&&& & Planned$Release$Date$STC:$&&&&&&(notes$2,$3,$4,$5)$ $ $ $ $ Date:$2015R05R22&&Name$and$signature$of$applicant:$Zach&Supalla&&&&&&&&&&&& & & & Notes:' 1)'A'document'or'type'of'document'can'only'have'ONE'type'of'confidentiality!' 2)'Short>Term'confidentiality'is'in'principle'for'45'days'from'date'of'grantC'it'can'be'extended'max'3'times'(total'time'180'days'max.)!'' 3)'FCC'must'be'informed'when'marketing'begins'earlier.' 4)'Release'takes'place'automatically'thus'extension'must'be'requested'in'time.'Telefication'does'not'remind'you'of'this!' 5)'Request'for'extension'or'for'release'must'be'received'by'Telefication'at'least'7'days'before'date'of'actual'marketing'or'before' expiration'of'the'STC'period' $

Cover Letter(s)

CERTIFICATE OF COMPLIANCE Authorized under Declaration of Conformity according to 47 CFR, Part 2 and Part 15 of the FCC Rules. The product listed in follows was (were) tested in the BTL EMC Laboratory to comply with the criteria limits Class B of conducted and radiated emissions of the Technical Standards FCC Part 15, Subpart B, established by the FCC, USA. Equipment PHOTON Model Name PHOTONH Brand Name N/A Applicant Spark Labs, Inc., Address 320 Alabama St #2, San Francisco, CA 94110 Standard(s) FCC Part 15, Subpart B: 2014 ANSI C63.4 -2009 Report(s) BTL-FICE-1-1504C213 The test data, data evaluation, and equipment configuration contained in our test report(s) was (were) obtained utilizing the test procedures, test instruments, test sites that has been accredited by the Authority of TAF according to the ISO-17025 quality assessment standard and technical standard(s). The test data contained in the referenced test report relate only to the EUT sample and item(s) tested. Andy Chiu Authorized Signatory BTL INC. B1, No. 37, Lane 365, Yang-Guang St., Nei-Hu District, Taipei City 114, Taiwan. TEL:+886-2-2657-3299 FAX:+886-2-2657-3331

Cover Letter(s)

! Modular Approval Request FCC (per DA 00-1407)! Company!name:!Spark!Labs,!Inc.,! Address:!320!Alabama!St!#2!San!Francisco,!CA!94110,!San!Francisco,!California,!! !!!!!!!!!!!!!!!!!United!States! FCC!ID  2AEMIDPHOTON! Items to be covered Answer from applicant 1.!The modular transmitter must have its own RF shielding. YES, Please refer to External Photos. 2.!The modular transmitter must have buffered modulation/data inputs (if such inputs are provided) to ensure that the module will comply with Part 15 requirements under conditions of excessive data rates or over-modulation. YES, U1 STM32F205RGY6 is used for the function. 3.!The modular transmitter must have its own power supply regulation. YES, U2 RT8008-33GB is used for the power supply regulation. 4.!The modular transmitter must comply with the antenna requirements of Section 15.203 and 15.204(c). The antenna must either be permanently attached or employ a “unique” antenna coupler (at all connections between the module and the antenna, including the cable).. YES, it is Chip antenna. 5.!The modular transmitter must be tested in a stand-alone configuration, i.e., the module must not be inside another device during testing. This is intended to demonstrate that the module is capable of complying with Part 15 emission limits regardless of the device into which it is eventually installed. YES, The EUT is tested in a stand-alone configuration as the test photos show. 6.!The modular transmitter must be labeled with its own FCC ID number, and, if the FCC ID is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. This exterior label can use wording such as the following: “Contains Transmitter Module FCC ID: 2AEMI-PHOTON” or “Contains FCC ID: 2AEMI-PHOTON.” Any similar wording that expresses the same meaning may be used. The Grantee may either provide such a label, an example of which must be included in the application for equipment authorization, or, must provide adequate instructions along with the module which explain this requirement. In the latter case, a copy of these instructions must be included in the application for equipment authorization. YES, please refer to the exhibition label sample for this module. 7.!The modular transmitter must comply with any specific rule or operating requirements applicable to the transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements. A copy of these instructions must be included in the application for equipment authorization. For example, there are very strict operational and timing requirements that must be met before a transmitter is authorized for operation under Section 15.231. For instance, data transmission is prohibited, except for operation under Section 15.231(e), in which case there are separate field strength level and timing requirements. Compliance with these requirements must be assured. YES, please refer to the user manual. 8. The modular transmitter must comply with any applicable RF exposure requirements. For example, FCC Rules in Sections 2.1091, 2.1093 and specific Sections of Part 15, including 15.319(i), 15.407(f), 15.253(f) and 15.255(g), require that Unlicensed PCS, UNII and millimeter wave devices perform routine environmental evaluation for RF Exposure to demonstrate compliance. In addition, spread spectrum transmitters operating under Section 15.247 are required to address RF Exposure compliance in accordance with Section 15.247(b)(4). Modular transmitters approved under other Sections of Part 15, when necessary, may also need to address certain RF Exposure concerns, typically by providing specific installation and operating instructions for users, installers and other interested parties to ensure compliance. YES, RF exposure statement is attached in the user manual. Note: If compliance with one or more of the numbered requirements, listed above, cannot be demonstrated, it may be possible to obtain a “Limited Modular Approval” (LMA). (5-525::12 -5::2 1)   : )205:  

External Photos

Project No.: 1504C213 Page 2 of 5 Project No.: 1504C213 Page 3 of 5 Project No.: 1504C213 Page 4 of 5 Project No.: 1504C213 Page 5 of 5

Internal Photos

Project No.: 1504C213 Page 2 of 5 Project No.: 1504C213 Page 3 of 5 Project No.: 1504C213 Page 4 of 5 Project No.: 1504C213 Page 5 of 5

RF Exposure Info

FCC RF EXPOSURE REPORT FCC ID:2AEMI-PHOTON Project No. : 1504C213 Equipment : PHOTON Model : PHOTONH Applicant : Spark Labs, Inc., Address : 320 Alabama St #2 San Francisco, United States 94110 According: : FCC Guidelines for Human Exposure IEEE C95.1 BTL INC. No.3, Jinshagang 1st Road, Shixia, Dalang Town, Dongguan, China. TEL: +86-769-8318-3000 FAX: +86-769-8319-6000 MPE CALCULATION METHOD: Calculation Method of RF Safety Distance: 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 Table for Filed Antenna Ant. Brand Model Name Antenna Type Connector Gain(dBi) Note 1 ACX AT7020 -E3R0HBA Chip N/A -1.30 TX/RX 2 CRMX TM 104-1004 Dipole RP-TNC 2.15 TX/RX TEST RESULTS EUT: PHOTON Model Name : PHOTONH Temperature: 25 °C Relative Humidity: 55 % Test Voltage : AC 120V/60Hz Test Mode : TX B MODE /CH01, CH06, CH11_Chip antenna Antenna Gain (dBi) Antenna Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Te s t Result -1.30 0.7413 19.74 94.1890 0.013897941 Complies -1.30 0.7413 19.15 82.2243 0.012132501 Complies -1.30 0.7413 19.65 92.2571 0.013612891 Complies EUT: PHOTON Model Name : PHOTONH Temperature: 25 °C Relative Humidity: 55 % Test Voltage : AC 120V/60Hz Test Mode : TX G MODE /CH01, CH06, CH11_ Chip antenna Antenna Gain (dBi) Antenna Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Te s t Result -1.30 0.7413 22.63 183.2314 0.027036491 Complies -1.30 0.7413 22.6 181.9701 0.026850381 Complies -1.30 0.7413 22.38 172.9816 0.025524101 Complies EUT: PHOTON Model Name : PHOTONH Temperature: 25 °C Relative Humidity: 55 % Test Voltage : AC 120V/60Hz Test Mode : TX N-20M MODE /CH01, CH06, CH11_ Chip antenna Antenna Gain (dBi) Antenna Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Te s t Result -1.30 0.7413 22.86 193.1968 0.028506921 Complies -1.30 0.7413 22.67 184.9269 0.027286661 Complies -1.30 0.7413 22.76 188.7991 0.027858031 Complies EUT: PHOTON Model Name : PHOTONH Temperature: 25 °C Relative Humidity: 55 % Test Voltage : AC 120V/60Hz Test Mode : TX B MODE /CH01, CH06, CH11_ Dipole antenna Antenna Gain (dBi) Antenna Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Te s t Result 2.15 1.6406 19.43 87.7001 0.028638511 Complies 2.15 1.6406 19.18 82.7942 0.027036491 Complies 2.15 1.6406 19.91 97.9490 0.031985301 Complies EUT: PHOTON Model Name : PHOTONH Temperature: 25 °C Relative Humidity: 55 % Test Voltage : AC 120V/60Hz Test Mode : TX G MODE /CH01, CH06, CH11_ Dipole antenna Antenna Gain (dBi) Antenna Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Te s t Result 2.15 1.6406 22.02 159.2209 0.051993661 Complies 2.15 1.6406 22.38 172.9816 0.056487241 Complies 2.15 1.6406 22.74 187.9317 0.061369191 Complies EUT: PHOTON Model Name : PHOTONH Temperature: 25 °C Relative Humidity: 55 % Test Voltage : AC 120V/60Hz Test Mode : TX N-20M MODE /CH01, CH06, CH11_ Dipole antenna Antenna Gain (dBi) Antenna Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Te s t Result 2.15 1.6406 22.37 172.5838 0.056357321 Complies 2.15 1.6406 22.33 171.0015 0.055840641 Complies 2.15 1.6406 22.08 161.4359 0.052716961 Complies Note: the calculated distance is 20 cm.

Test Report

Report No.: BTL-FICP-1- 1504C213 Page 1 of 178 FCC&IC Radio Test Report FCC ID: 2AEMI-PHOTON IC: 20127-PHOTON This report concerns (check one): Original Grant Class II Change Project No. : 1504C213 Equipment : PHOTON Model Name : PHOTONH Applicant : Spark Labs, Inc., Address : 320 Alabama St #2, San Francisco, CA 94110 Date of Receipt : Apr. 22, 2015 Date of Test : Apr. 22, 2015 ~ May 21, 2015 Issued Date : May 22, 2015 Tested by : BTL Inc. Testing Engineer : (David Mao) Technical Manager : (Leo Hung) Authorized Signatory : (Steven Lu) BTL INC. No.3, Jinshagang 1st Road, Shixia, Dalang Town, Dongguan, Guangdong, China. TEL: +86-769-8318-3000 FAX: +86-769-8319-6000 Report No.: BTL-FICP-1- 1504C213 Page 2 of 178 Declaration BTL represents to the client that testing i s done in accordance with standard procedures as applicable and that test instruments used has been calibrated with the standards traceable to National Measurement Laboratory (NML) of R.O.C, or National Institute of Standards and Technology (NIST) of U.S.A. BTL's reports apply only to the specific samples tested under conditions. It is manufacture’s responsibility to ensure that additional production units of this model are manufactured with the identical electrical and mechanical components. BTL shall have no liability for any declarations, inferences or generalizations drawn by the client or others from BTL issued reports. BTL’s report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the Federal Government. This report is the confidential property of the client. As a mutual protection to the clients, the public and BTL-self, extracts from the test report shall not be reproduced except in full with BTL’s authorized written approval. BTL’s laboratory quality assurance procedures are in compliance with the ISO Guide 17025 requirements, and accredited by the conformity assessment authorities listed in this test report. Limitation For the use of the authority's logo is limited unl ess the Test Standard(s)/Scope(s)/Item(s) mentioned in this test report is (are) included in the conformity assessment authorities acceptance respective. Report No.: BTL-FICP-1- 1504C213 Page 3 of 178 Table of Contents Page 1 . CERTIFICATION 6 2 . SUMMARY OF TEST RESULTS 7 2.1 TEST FACILITY 8 2.2 MEASUREMENT UNCERTAINTY 8 3 . GENERAL INFORMATION 9 3.1 GENERAL DESCRIPTION OF EUT 9 3.2 DESCRIPTION OF TEST MODES 11 3.3 TABLE OF PARAMETERS OF TEXT SOFTWARE SETTING 12 3.4 BLOCK DIAGRAM SHOWING THE CONFIGURATION OF SYSTEM TESTED 13 3.5 DESCRIPTION OF SUPPORT UNITS 13 4 . EMC EMISSION TEST 14 4.1 CONDUCTED EMISSION MEASUREMENT 14 4.1.1 POWER LINE CONDUCTED EMISSION LIMITS 14 4.1.2 TEST PROCEDURE 14 4.1.3 DEVIATION FROM TEST STANDARD 14 4.1.4 TEST SETUP 15 4.1.5 EUT OPERATING CONDITIONS 15 4.1.6 EUT TEST CONDITIONS 15 4.1.7 TEST RESULTS 15 4.2 RADIATED EMISSION MEASUREMENT 16 4.2.1 RADIATED EMISSION LIMITS 16 4.2.2 TEST PROCEDURE 17 4.2.3 DEVIATION FROM TEST STANDARD 17 4.2.4 TEST SETUP 17 4.2.5 EUT OPERATING CONDITIONS 18 4.2.6 EUT TEST CONDITIONS 18 4.2.7 TEST RESULTS (9KHZ TO 30MHZ) 19 4.2.8 TEST RESULTS (BETWEEN 30MHZ TO 1000 MHZ) 19 4.2.9 TEST RESULTS (ABOVE 1000 MHZ) 19 5 . BANDWIDTH TEST 20 5.1 APPLIED PROCEDURES 20 5.1.1 TEST PROCEDURE 20 5.1.2 DEVIATION FROM STANDARD 20 5.1.3 TEST SETUP 20 5.1.4 EUT OPERATION CONDITIONS 20 5.1.5 EUT TEST CONDITIONS 20 5.1.6 TEST RESULTS 20 Report No.: BTL-FICP-1- 1504C213 Page 4 of 178 Table of Contents Page 6 . MAXIMUM PEAK CONDUCTED OUTPUT POWER TEST 21 6.1 APPLIED PROCEDURES / LIMIT 21 6.1.1 TEST PROCEDURE 21 6.1.2 DEVIATION FROM STANDARD 21 6.1.3 TEST SETUP 21 6.1.4 EUT OPERATION CONDITIONS 21 6.1.5 EUT TEST CONDITIONS 21 6.1.6 TEST RESULTS 21 7 . ANTENNA CONDUCTED SPURIOUS EMISSION 22 7.1 APPLIED PROCEDURES / LIMIT 22 7.1.1 TEST PROCEDURE 22 7.1.2 DEVIATION FROM STANDARD 22 7.1.3 TEST SETUP 22 7.1.4 EUT OPERATION CONDITIONS 22 7.1.5 EUT TEST CONDITIONS 22 7.1.6 TEST RESULTS 22 8 . POWER SPECTRAL DENSITY TEST 23 8.1 APPLIED PROCEDURES / LIMIT 23 8.1.1 TEST PROCEDURE 23 8.1.2 DEVIATION FROM STANDARD 23 8.1.3 TEST SETUP 23 8.1.4 EUT OPERATION CONDITIONS 23 8.1.5 EUT TEST CONDITIONS 23 8.1.6 TEST RESULTS 23 9 . MEASUREMENT INSTRUMENTS LIST 24 10 . EUT TEST PHOTO 26 ATTACHMENT A - CONDUCTED EMISSION 33 ATTACHMENT B - RADIATED EMISSION (9KHZ TO 30MHZ) 36 ATTACHMENT C - RADIATED EMISSION (30MHZ TO 1000MHZ) 39 ATTACHMENT D - RADIATED EMISSION (ABOVE 1000MHZ) 52 ATTACHMENT E - BANDWIDTH 125 ATTACHMENT F – MAXIMUM PEAK CONDUCTED OUTPUT POWER 138 ATTACHMENT G - ANTENNA CONDUCTED SPURIOUS EMISSION 141 ATTACHMENT H - POWER SPECTRAL DENSITY 166 Report No.: BTL-FICP-1- 1504C213 Page 5 of 178 REPORT ISSUED HISTORY Issued No. Description Issued Date BTL-FICP-1-1504C213 Original Issue. May 22, 2015 Report No.: BTL-FICP-1- 1504C213 Page 6 of 178 1. CERTIFICATION Equipment : PHOTON Brand Name : N/A Model Name : PHOTONH Applicant : Spark Labs, Inc., Date of Test : Apr. 22, 2015 ~ May 21, 2015 Test Sample : ENGINEERING SAMPLE Standard(s) : FCC Part15, Subpart C: 2014 (15.247) / ANSI C63.4-2009 Canada RSS-210: 2010 RSS-GEN Issue 4, Nov 2014 The above equipment has been tested and found compliance with the requirement of the relative standards by BTL Inc. The test data, data evaluation, and equipment configuration contained in our test report (Ref No. BTL-FICP-1-1504C213) were obtained utilizing the test procedures, test instruments, test sites that has been accredited by the Authority of TAF according to the ISO-17025 quality assessment standard and technical standard(s). Report No.: BTL-FICP-1- 1504C213 Page 7 of 178 2. SUMMARY OF TEST RESULTS Test procedures according to the technical standard(s): Applied Standard(s): FCC Part15 (15.247) , Subpart C: 2014 Canada RSS-210:2010; RSS-GEN Issue 4, Nov 2014 Standard(s) Section Test Item Judgment Remark FCC IC 15.207 RSS-GEN 8.8 Conducted Emission PASS 15.247(d) RSS-210 Annex 8 (A8.5) Antenna conducted Spurious Emission …

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Test Report

Report No.: BTL-FICP-1- 1504C213 Page 101 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2412MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 102 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2412MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 103 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2412MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 104 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2412MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 105 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2437MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 106 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2437MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 107 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2437MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 108 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2437MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 109 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2462MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 110 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2462MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 111 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2462MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 112 of 178 Orthogonal Axis : X Test Mode : TX G MODE 2462MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 113 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2412MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 114 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2412MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 115 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2412MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 116 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2412MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 117 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2437MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 118 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2437MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 119 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2437MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 120 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2437MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 121 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2462MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 122 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2462MHz Vertical Report No.: BTL-FICP-1- 1504C213 Page 123 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2462MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 124 of 178 Orthogonal Axis : X Test Mode : TX N-20M MODE 2462MHz Horizontal Report No.: BTL-FICP-1- 1504C213 Page 125 of 178 ATTACHMENT E - BANDWIDTH Report No.: BTL-FICP-1- 1504C213 Page 126 of 178 For Chip antenna Test Mode : TX B Mode_CH01/06/11 6dB Bandwidth99% Occupied BWMin. Limit (MHz)(MHz)(kHz) 24128.5013.12 500Complies 24378.5012.88 500Complies 24628.0212.28500Complies Frequency (MHz) Test Result TX CH01 Report No.: BTL-FICP-1- 1504C213 Page 127 of 178 TX CH06 TX CH11 Report No.: BTL-FICP-1- 1504C213 Page 128 of 178 Test Mode: TX G Mode_CH01/06/11 6dB Bandwidth99% Occupied BWMin. Limit (MHz)(MHz)(kHz) 241215.4416.40 500Complies 243715.0816.40 500Complies 246215.5016.40500Complies Frequency (MHz) Test Result TX CH01 Report No.: BTL-FICP-1- 1504C213 Page 129 of 178 TX CH06 TX CH11 Report No.: BTL-FICP-1- 1504C213 Page 130 of 178 Test Mode : TX N-20MHz Mode_CH01/06/11 6dB Bandwidth99% Occupied BWMin. Limit (MHz)(MHz)(kHz) 241216.3417.56 500Complies 243716.3817.56 500Complies 246216.3517.56 500Complies Frequency (MHz) Test Result TX CH01 Report No.: BTL-FICP-1- 1504C213 Page 131 of 178 TX CH06 TX CH11 Report No.: BTL-FICP-1- 1504C213 Page 132 of 178 For Dipole antenna Test Mode : TX B Mode_CH01/06/11 6dB Bandwidth99% Occupied BWMin. Limit (MHz)(MHz)(kHz) 24128.0613.00 500Complies 24379.0013.24 500Complies 24629.1213.32500Complies Test Result Frequency (MHz) TX CH01 Report No.: BTL-FICP-1- 1504C213 Page 133 of 178 TX CH06 TX CH11 Report No.: BTL-FICP-1- 1504C213 Page 134 of 178 Test Mode: TX G Mode_CH01/06/11 6dB Bandwidth99% Occupied BWMin. Limit (MHz)(MHz)(kHz) 241215.0816.40 500Complies 243715.1316.36 500Complies 246215.6716.36500Complies Test Result Frequency (MHz) TX CH01 Report No.: BTL-FICP-1- 1504C213 Page 135 of 178 TX CH06 TX CH11 Report No.: BTL-FICP-1- 1504C213 Page 136 of 178 Test Mode : TX N-20MHz Mode_CH01/06/11 6dB Bandwidth99% Occupied BWMin. Limit (MHz)(MHz)(kHz) 241216.3817.56 500Complies 243716.0817.60 500Complies 246216.2817.56 500Complies Test Result Frequency (MHz) TX CH01 Report No.: BTL-FICP-1- 1504C213 Page 137 of 178 TX CH06 TX CH11 Report No.: BTL-FICP-1- 1504C213 Page 138 of 178 ATTACHMENT F – MAXIMUM PEAK CONDUCTED OUTPUT POWER Report No.: BTL-FICP-1- 1504C213 Page 139 of 178 For Chip antenna Test Mode :TX B Mode_CH01/06/11 241219.740.0930.001.00Complies 243719.150.0830.001.00Complies 246219.650.0930.001.00Complies Frequency (MHz) Conducted Power (dBm) Conducted Power (W) Max. Limit (dBm) Max. Limit (W) Result Test Mode :TX G Mode_CH01/06/11 241222.630.1830.001.00Complies 243722.600.1830.001.00Complies 246222.380.1730.001.00Complies Frequency (MHz) Conducted Power (dBm) Conducted Power (W) Max. Limit (dBm) Max. Limit (W) Result Test Mode :TX N20 Mode_CH01/06/11 241222.860.1930.001.00Complies 243722.670.1830.001.00Complies 246222.760.1930.001.00Complies Frequency (MHz) Conducted Power (dBm) Conducted Po…

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Contact Information

Applicant

Zach Supalla(CEO)
[email protected]+1-415-316-1024Fax: +1-415-316-1024

Technical Contact

BTL Inc.Steven Lu
[email protected]86-769-83183000

No.3 Jinshagang 1st Rd, Shixia, Dalang · China

Non-Technical Contact

BTL Inc.Cathy Wang
[email protected]86-769-83183000

Test Firm

BTL Inc.Daisy Dai
[email protected]8676983183000Fax: +8676983196000

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz190.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Power output listed is conducted. This grant is valid only when the module is sold to OEM integrators and must be installed by the OEM or OEM integrators. The antennas used for this transmitter as shown in this filing 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 may not be provided with the module installation instructions.OEM integrators and end-users must be provided with transmitter operating conditions for satisfying RF exposure compliance. This device has 20 MHz bandwidth modes.

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