
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Beacon User Guide Ver. 1.0 Proprietary and Confidential General Description The Remote Insights Beacon is a battery powered wireless sensing device that broadcasts information using the 908.5Mhz frequency band. Technical Specifications Operating frequency: 908.5MHz ISM Certifications: Complies with Part 15 of FCC Rules Battery type: AAA 1.5V battery Battery life: 3 years at 10% motion duty cycle Temperature range: -30°C to +75°C Warning: 1. Per FCC 15.19(a)(3) and (a)(4) 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. Change or modification to the Beacon not expressly approved by Remote Insights is expressly forbidden and will void the warranty. Remote Insights 5129 Bryant Ave. South Minneapolis, MN 55419 Remote
FCC Compliance Opinion 2015-1-14 NGRF0005 Information about the Applicant Grantee (Company Name) Remote Insights, Inc. FCC Contact Person Jim Cairns Address 5129 Bryant Ave. South City, State, Zip Minneapolis, MN 56419 Job Number NGRF0005 Model Beacon FCC ID 2AD3V-BA1 Agent Approval Type Original Equipment Class DSR Part 15, Remote Control/Security Device Transceiver Rule Part 15.231 Overview Beacon is an ISM transmitter operating at 908.5 MHz under FCC Rule part 15.231. The device is a battery powered wireless sensing device. Confidentiality requested for allowed files. Request is properly addressed and referenced. No short term confidentiality requested. Recommendation All items have been resolved and completed to my satisfaction; therefore I recommend this application for approval. Signature Dave Tolman, TCB Committee 1/26/2015
January26,2015 RemoteInsights,Inc. 5129BryantAve,South Minneapolis,MN55419 Inre:RemoteInsightsInc.applicationforcertificationFCCID:2AD3VͲBA1 Towhomitmayconcern: RemoteInsightsissubmittingthisapplicationforcertificationoftheirproductcalledtheBeacon.The BeaconisanISMtransmitter thatoperatesat908.5MHz.Thisdevicetransmitsadatapacketusinga 2GFSKsignalwitha40kbpsdatarateanda20kHzdeviation.Weareseekingoriginalcertificationfor thisdeviceunderFCCRulePart15.231. Sincerely, JimCairns Founder
!Proprietary & Confidential Request for Confidentiality!!!!! ! ! January!23,!2015! ! Federal!Communications!Commission! Authorization!and!Evaluation!Division! 7435!Oakland!Mills!Road! Columbia,!Maryland!21046! ! ! To!whom!it!may!concern,! ! We!hereby!respectfully!request!that!under!the!provision!of!47!CFR!0.459!and! 0.457(d)!the!documents!listed!below!and!attached!with!this!application!for! certification!be!provided!with!confidential!status.! ! • Schematics.pdf! • Operational!Description.pdf! • Frequency!Block!Diagrams.pdf! ! ! Any!exhibit!/!information!for!which!we!have!requested!confidentiality,!but!which! may!not!be!accorded!such!treatment!by!the!FCC,!should!be!returned!to!us.! ! The!documents!listed!above!contain!trade!secrets!that!are!treated!as!confidential!by! us.!!Substantial!competitive!harm!to!us!could!result!should!they!be!made!available!to! the!public.! ! ! Sincerely,! ! ! Jim!Cairns! CEO,!Remote!Insights,!Inc.! !
Figure 1: Top and long side Figure 2: Top and Short Side Figure 3: Bottom and Long Side Figure 4: Bottom and Short Side
Figure 1: Beacon Label with FCC ID
Figure 1: Internal Top Figure 2: Internal Bottom
W3012 Datasheet version 1.2. ISM 900 MHz Ceramic Antenna. (01/08). © 2008. All Rights Reserved. ISM 900 MHz Ceramic Antenna Ground cleared under antenna, clearance area 10.80 mm x 8.25 mm. Pulse Part Number: W3012 Pulse Finland Oy Takatie 6 90440 Kempele, Finland Tel: +358 207 935 500 Fax: +358 207 935 501 www.pulseeng.com/antennas Features - Omni directional radiation - Low profile - Compact size W x L x H (10 x 3.2 x 4 mm) - Low weight (600 mg) - Lead free materials - Fully SMD compatible - Lead free soldering compatible - Tape and reel packing - RoHS Compliant Product Applications - ISM 900 Band Electrical specifications @ +25 °C Note: Electrical characteristics depend on test board (GP) size and antenna positioning on GP and Ground Clearance area size. ISM 902 – 928 MHz Typical performance (test board size 100 x 37 mm, PWB ground clearance area 10.80 mm x 8.25) Frequency Range [MHz] 902 – 928 RHCP Gain [dBic] 0.85 (Peak) 0.5 (Band edges) Max Gain [dBi] 2 (peak) 0.5 (band edges) Efficiency [%] / [dB] 70 / -1,55 (peak) 50 / -3 (band edges) Return loss min. [dB] -6 Operating Temperature [°C] -40 to +85 Impedance [Ω] 50 W3012 Datasheet version 1.2. ISM 900 MHz Ceramic Antenna. (01/08). © 2008. All Rights Reserved. ISM 900 MHz Ceramic Antenna Ground cleared under antenna, clearance area 10.80 mm x 8.25 mm. Pulse Part Number: W3012 Pulse Finland Oy Takatie 6 90440 Kempele, Finland Tel: +358 207 935 500 Fax: +358 207 935 501 www.pulseeng.com/antennas Terminal Configuration Antenna features No. 1 2 Terminal name Feed / GND Feed / GND Terminal Dimensions 1.5 x 2.75 mm 1.5 x 2.75 mm PWB features No. 1 2 3 Terminal name Feed GND GND Terminal Dimensions 1,7 x 1,45 mm 1,7 x 1,45 mm 1,7 x 3,20 mm Antenna is symmetrical. Either of terminals 1 or 2 can be feed / GND CWjY^_d]9ecfed[djefj_edWbi^kdj <[[ZYedjWYj =hekdZYedjWYj =hekdZWh[W =hekdZl_W^eb[ =hekdZWh[Wi^ekbZX[ikhhekdZ[Zm_j^=hekdZ l_W^eb[i <[[Zb_d[+&E^c 7d oj of[e\+&E^c\[[Zb_d[YWdX[ki[Z$?dd[h bW o[hied\[[Zb_d[Wh[Wd[[ZjeZ[i_]d[Zje]_l[+& E^cY^WhWYj[h_ij_Yije\[[Zb_d[$ =hekdZYb[WhWdY[Wh[W '&$.&n.$(+cc Wbb c[jWbb_pWj_edi^ekbZX[ h[cel[Z\he c WbbFM8bWo[h i 7] c[jWbb_pWj_ed YedjWYjfWZ Wh[W(n '$+& ($-+ &$(& '&$&& '( W3012 Datasheet version 1.2. ISM 900 MHz Ceramic Antenna. (01/08). © 2008. All Rights Reserved. ISM 900 MHz Ceramic Antenna Ground cleared under antenna, clearance area 10.80 mm x 8.25 mm. Pulse Part Number: W3012 Pulse Finland Oy Takatie 6 90440 Kempele, Finland Tel: +358 207 935 500 Fax: +358 207 935 501 www.pulseeng.com/antennas Typical Electrical Characteristics (T=25 °C) Measured on the 100 x 37mm test board Typical Return Loss S11/ impedance 9;DJ;H/'*$&&&&&&C>pIF7D(&&$&&&&&&C>p 9eh FHc :[b 8=&BVg `Zgh '$#,$*(,.Z8 /&($&&&C>p ($#'+$(+-Z8 /'*$&&&C>p )$#,$.(&,Z8 /(.$&&&C>p &)?jc'%%,%./**/*. >HB.%%B=o +Z8%H;<&Z89>'I''BE= 9;DJ;H/'*$&&&&&&C>pIF7D(&&$&&&&&&C>p FHc :[b 9eh &)?jc'%%,%./*,/'' >HB.%%B=o 9>'I''C'K<I '$*-$-''² +'$-&)² /&($&&&C>p ($,+$())² #'&$'('² '-$(&+f< /'*$&&&&&&C>p )$ ('$()(² #'*$./+² /(.$&&&C>p B_d[WhCWn=W_dQZ8_S 7l[hW][=W_dQZ8_S <h[gQC>pS >HB.%%B=o CWn=W_d 7l]$=W_d ' ) ( ' ) ( HWZ;\\QS HWZ;\\QZ8S >HB.%%B=o .& -& ,& +& *& )& (& &$&& #'$&& #($&& #)$&& #*$&& #+$&& #,$&& HWZ;\\QS HWZ;\\QZ8S <h[gQC>pS ($+& ($&& '$+& '$&& &$+& &$&& #($&& #($+& #)$&& #)$+& #*$&& #*$+& #+$&& #+$+& #,$&& ./& /&( /&* /&, /&. /'& /'( /'* /', /'. /(& /(( /(* /(, /(. /*& ./& /&( /&* /&, /&. /'& /'( /'* /', /'. /(& /(( /(* /(, /(. /*& 9;DJ;H/'*$&&&&&&C>pIF7D(&&$&&&&&&C>p 9eh FHc :[b 8=&BVg `Zgh '$#,$*(,.Z8 /&($&&&C>p ($#'+$(+-Z8 /'*$&&&C>p )$#,$.(&,Z8 /(.$&&&C>p &)?jc'%%,%./**/*. >HB.%%B=o +Z8%H;<&Z89>'I''BE= 9;DJ;H/'*$&&&&&&C>pIF7D(&&$&&&&&&C>p FHc :[b 9eh &)?jc'%%,%./*,/'' >HB.%%B=o 9>'I''C'K<I '$*-$-''² +'$-&)² /&($&&&C>p ($,+$())² #'&$'('² '-$(&+f< /'*$&&&&&&C>p )$ ('$()(² #'*$./+² /(.$&&&C>p B_d[WhCWn=W_dQZ8_S 7l[hW][=W_dQZ8_S <h[gQC>pS >HB.%%B=o CWn=W_d 7l]$=W_d ' ) ( ' ) ( HWZ;\\QS HWZ;\\QZ8S >HB.%%B=o .& -& ,& +& *& )& (& &$&& #'$&& #($&& #)$&& #*$&& #+$&& #,$&& HWZ;\\QS HWZ;\\QZ8S <h[gQC>pS ($+& ($&& '$+& '$&& &$+& &$&& #($&& #($+& #)$&& #)$+& #*$&& #*$+& #+$&& #+$+& #,$&& ./& /&( /&* /&, /&. /'& /'( /'* /', /'. /(& /(( /(* /(, /(. /*& ./& /&( /&* /&, /&. /'& /'( /'* /', /'. /(& /(( /(* /(, /(. /*& 9;DJ;H/'*$&&&&&&C>pIF7D(&&$&&&&&&C>p 9eh FHc :[b 8=&BVg `Zgh '$#,$*(,.Z8 /&($&&&C>p ($#'+$(+-Z8 /'*$&&&C>p )$#,$.(&,Z8 /(.$&&&C>p &)?jc'%%,%./**/*. >HB.%%B=o +Z8%H;<&Z89>'I''BE= 9;DJ;H/'*$&&&&&&C>pIF7D(&&$&&&&&&C>p FHc :[b 9eh &)?jc'%%,%./*,/'' >HB.%%B=o 9>'I''C'K<I '$*-$-''² +'$-&)² /&($&&&C>p ($,+$())² #'&$'('² '-$(&+f< /'*$&&&&&&C>p )$ ('$()(² #'*$./+² /(.$&&&C>p B_d[WhCWn=W_dQZ8_S 7l[hW][=W_dQZ8_S <h[gQC>pS >HB.%%B=o CWn=W_d 7l]$=W_d ' ) ( ' ) ( HWZ;\\QS HWZ;\\QZ8S >HB.%%B=o .& -& ,& +& *& )& (& &$&& #'$&& #($&& #)$&& #*$&& #+$&& #,$&& HWZ;\\QS HWZ;\\QZ8S <h[gQC>pS ($+& ($&& '$+& '$&& &$+& &$&& #($&& #($+& #)$&& #)$+& #*$&& #*$+& #+$&& #+$+& #,$&& ./& /&( /&* /&, /&. /'& /'( /'* /', /'. /(& /(( /(* /(, /(. /*& ./& /&( /&* /&, /&. /'& /'( /'* /', /'. /(& /(( /(* /(, /(. /*& 9;DJ;H/'*$&&&&&&C>pIF7D(&&$&&&&&&C>p 9eh FHc :[b 8=&BVg `Zgh '$#,$*(,.Z8 /&($&&&C>p ($#'+$(+-Z8 /'*$&&&C>p )$#,$.(&,Z8 /(.$&&&C>p &)?jc'%%,%./**/*. >HB.%%B=o +Z8%H;<&Z89>'I''BE= 9;DJ;H/'*$&&&&&&C>pIF7D(&&$&&&&&&C>p FHc :[b 9eh &)?jc'%%,%./*,/'' >HB.%%B=o 9>'I''C'K<I '$*-$-''² +'$-&)² /&($&&&C>p ($,+$())² #'&$'('² '-$(&+f< /'*$&&&&&&C>p )$ ('$()(² #'*$./+² /(.$&&&C>p B_d[WhCWn=W_dQZ8_S 7l[hW][=W_dQZ8_S <h[gQC>pS >HB.%%B=o CWn=W_d 7l]$=W_d ' ) ( ' ) ( HWZ;\\QS HWZ;\\QZ8S >HB.%%B=o .& -& ,& +& *& )&…
Text truncated - open the document above for the full version.
This report must not be used to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the federal government of the United States of America. This Report may only be duplicated in its entirety Remote Insights, Inc. Beacon FCC 15.231:2014 Report # NGRF0005 NVLAP Lab Code: 200881-0 CERTIFICATE OF TEST 2014-12-10 Product compliance is the responsibility of the client; therefore, the tests and equipment modes of operation represented in this report were agreed upon by the client, prior to testing. The results of this test pertain only to the sample(s) tested. The specific description is noted in each of the individual sections of the test report supporting this certificate of test. Last Date of Test: December 31, 2014 Remote Insights, Inc. Model: Beacon Radio Equipment Testing Standards Specification Method FCC 15.231:2014 ANSI C63.10:2009 Results Method Clause Test Description Applied Results Comments 6.2 Powerline Conducted Emissions No N/A Not required for battery powered devices. 6.5, 6.6 Field Strength of Fundamental Yes Pass 6.5, 6.6 Spurious Radiated Emissions Yes Pass 6.9.1 Occupied Bandwidth Yes Pass 7.5 Duty Cycle Yes Pass Deviations From Test Standards None Approved By: Tim O'Shea, Operations Manager Report No. NGRF00052/20 REVISION HISTORY REV 2014.10.14 Revision Number Description Date Page Number 00 None Report No. NGRF00053/20 ACCREDITATIONS AND AUTHORIZATIONS REV 2014.10.08 United States FCC - Designated by the FCC as a Telecommunications Certification Body (TCB). Certification chambers, Open Area Test Sites, and conducted measurement facilities are listed with the FCC. A2LA - Accredited by A2LA to ISO / IEC Guide 65 as a product certifier. This allows Northwest EMC to certify transmitters to FCC and IC specifications. NVLAP - Each laboratory is accredited by NVLAP to ISO 17025 Canada IC - Recognized by Industry Canada as a Certification Body (CB). Certification chambers and Open Area Test Sites are filed with IC. European Union European Commission – Validated by the European Commission as a Conformity Assessment Body (CAB) under the EMC directive and as a Notified Body under the R&TTE Directive. Australia/New Zealand ACMA - Recognized by ACMA as a CAB for the acceptance of test data. Korea MSIP / RRA - Recognized by KCC’s RRA as a CAB for the acceptance of test data. Japan VCCI - Associate Member of the VCCI. Conducted and radiated measurement facilities are registered. Taiwan BSMI – Recognized by BSMI as a CAB for the acceptance of test data. NCC - Recognized by NCC as a CAB for the acceptance of test data. Singapore IDA – Recognized by IDA as a CAB for the acceptance of test data. Israel MOC – Recognized by MOC as a CAB for the acceptance of test data. Hong Kong OFTA – Recognized by OFTA as a CAB for the acceptance of test data. Vietnam MIC – Recognized by MIC as a CAB for the acceptance of test data. SCOPE For details on the Scopes of our Accreditations, please visit: http://www.nwemc.com/accreditations/ Report No. NGRF00054/20 MEASUREMENT UNCERTAINTY TMU.2014.12.03 Measurement Uncertainty When a measurement is made, the result will be different from the true or theoretically correct value. The difference is the result of tolerances in the measurement system that cannot be completely eliminated. To the extent that technology allows us, it has been our aim to minimize this error. Measurement uncertainty is a statistical expression of measurement error qualified by a probability distribution. A measurement uncertainty estimation has been performed for each test per our internal quality document WP 342. The estimation is used to compare the measured result with its "true" or theoretically correct value. The expanded measurement uncertainty (K=2) for each test is on each data sheet. Our measurement data meets or exceeds the measurement uncertainty requirements of the applicable specification; therefore, the test data can be compared directly to the specification limit to determine compliance. The calculations for estimating measurement uncertainty are based upon ETSI TR 100 028 (or CISPR 16-4-2 as applicable), and are available upon request. The following table represents the Measurement Uncertainty (MU) budgets for each of the tests that may be contained in this report. Test + MU - MU Frequency Accuracy (Hz) 0.0007% -0.0007% Amplitude Accuracy (dB) 1.2 dB -1.2 dB Conducted Power (dB) 0.3 dB -0.3 dB Radiated Power via Substitution (dB) 0.7 dB -0.7 dB Temperature (degrees C) 0.7°C -0.7°C Humidity (% RH) 2.5% RH -2.5% RH Voltage (AC) 1.0% -1.0% Voltage (DC) 0.7% -0.7% Field Strength (dB) 4.7 dB -4.7 dB AC Powerline Conducted Emissions (dB) 2.9 dB -2.9 dB Report No. NGRF00055/20 FACILITIES REV 2015.1.05 California Labs OC01-13 41 Tesla Irvine, CA 92618 (949) 861-8918 Minnesota Labs MN01-08, MN10 9349 W Broadway Ave. Brooklyn Park, MN 55445 (612)-638-5136 New York Labs NY01-04 4939 Jordan Rd. Elbridge, NY 13060 (315) 685-0796 Oregon Labs EV01-12 22975 NW Evergreen Pkwy Hillsboro, OR 97124 (503) 844-4066 Texas Labs TX01-09 3801 E Plano Pkwy Plano, TX 75074 (469) 304-5255 Washington Labs NC01-05 19201 120 th Ave NE Bothell, WA 9801 (425)984-6600 NVLAP NVLAP Lab Code: 200676-0 NVLAP Lab Code: 200881-0 NVLAP Lab Code: 200761-0 NVLAP Lab Code: 200630-0 NVLAP Lab Code:201049-0 NVLAP Lab Code: 200629-0 Industry Canada 2834B-1, 2834B-3 2834E-1 N/A 2834D-1, 2834D-2 2834G-1 2834F-1 BSMI SL2-IN-E-1154R SL2-IN-E-1152R N/A SL2-IN-E-1017 SL2-IN-E-1158R SL2-IN-E-1153R VCCI A-0029 A-0109 N/A A-0108 A-0201 A-0110 Report No. NGRF00056/20 PRODUCT DESCRIPTION 2014-12-10 Client and Equipment Under Test (EUT) Information Company Name: Remote Insights, Inc. Address: 5129 Bryant Ave South City, State, Zip: Minneapolis, MN 55419 Test Requested By: Lucas Anderson Model: Beacon First Date of Test: December 31, 2014 Last Date of Test: January 06, 2015 Receipt Date of Samples: December 31, 2014 Equipment Design Stage: Production Equipment Condition: No Damage Information Prov…
Text truncated - open the document above for the full version.
photo SE 001.jpg SE 002.jpg FIELD STRENGTH OF FUNDAMENTAL PSA-ESCI 2014.09.10 photo SE 003.jpg SE 004.jpg FIELD STRENGTH OF FUNDAMENTAL PSA-ESCI 2014.09.10 photo SE 001.jpg SE 002.jpg SPURIOUS RADIATED EMISSIONS PSA-ESCI 2014.09.10 Report No. NGRF00052/6 photo SE 003.jpg SE 004.jpg SPURIOUS RADIATED EMISSIONS PSA-ESCI 2014.09.10 Report No. NGRF00053/6 OCCUPIED BANDW IDTH XMit 2014.02.07 NORTHWEST OCCUPIED BANDWIDTH EMC SE 004.jpg OCCUPIED BANDWIDTH Report No. NGRF00054/6 DUTY CYCLE XMit 2014.02.07 NORTHWEST DUTY CYCLE EMC SE 004.jpg DUTY CYCLE Report No. NGRF00055/6
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231 | 908.5 MHz - 908.5 MHz | - |