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2ACDM-SNG2QX-008-427

Parker Hannifin Corporation
QX-008-427 - FCC ID 2ACDM-SNG2 - Parker Hannifin Corporation
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Nov 15, 2015
Application Purpose
Original Equipment
Date of Application
Nov 15, 2015
Equipment Note
QX-008-427
Frequency Range
2402.00000000 - 2480.00000000
Company
Parker Hannifin Corporation
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

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

LED Status FCC Disclaimer • Red then Green then Blue – Sensor starting up (If this repeats over and over, the battery is too low to start up the radio) • Blue (single brief flash) – Sensor advertising/broadcasting • Red (solid while button held), Orange (flash), Red (flash) – Powering off LED Status • Green (single brief flash) – Sensor measurement – Sensor reading between 0% and 25% of span • Yellow (single brief flash) – Sensor measurement – Sensor reading between 25% and 50% of span • Orange (single brief flash) – Sensor measurement – Sensor reading between 50% and 75% of span • Red (single brief flash) – Sensor measurement – Sensor reading between 75% and 100% of span (Connected Mode) www.parker.com/conditionmonitoring 763.544.7781 SensoNODE TM Blue Sensors Support Parker Hannifin Corporation Quick Coupling Division Minneapolis, MN www.parker.com/conditionmonitoring www.parker.com/conditionmonitoring 763.544.7781 ID: 2ACDM-SNG2 IC: 11983A-SNG2 This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of 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 cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. If this 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 separation between the equipment and receiver. • Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. • Consult the dealer or an experienced radio/TV technician for help. Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. End user must follow the specific operating instructions for satisfying RF exposure compliance. This transmitter must not be co-located or operating in conjunction with any other antenna or transmitter. The portable device is designed to meet the requirements for exposure to radio waves established by the Federal Communications Commission (USA). This device complies with Industry Canada license-exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. Le présent appareil est conforme aux CNR d’Industrie Canada applicables aux appareils radio exempts de licence. L’exploitation est autorisée aux deux conditions suivantes : (1) l’appareil ne doit pas produire de brouillage, et (2) l’utilisateur de l’appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d’en compromettre le fonctionnement. Package Contents • SensoNODE TM Sensor Components a. Cap b. Antenna c. Body d. T-15 Battery Cover Screw e. LED f. Power Button Install Battery 1. Unlock: Remove T-15 Torx drive screws. 2. Remove cap: Pull the cap away from the body. 3. Insert: Insert the battery (CR123A) in the proper orientation (symbols are molded in housing for easy identification). 4. Install cap: Push the cap onto the body. 5. Lock: Install the T-15 Torx drive screws. a d b c e f Broadcast vs Connect Mode Differences With Broadcast interval setting set to non-zero, the sensor goes into Broadcast Mode when SCOUT Mobile is disconnected. With Broadcast interval set at zero, the sensor will advertise for two minutes and then power off. Power On Press the power button. (Sensor will power up when battery is inserted.) Power Off Pushing and holding the power button down for more than 3 seconds will turn off the sensor. As the button is held down, you will see the red LED remains solid, then after 3 seconds the LED will then flash orange and then red again, and the sensor will turn off.

Cover Letter(s)

Parker Hannifin Corporation 8145 Lewis Road Minneapolis, MN 55427 Shawn Ellis Engineering Supervisor PHONE 763-525-4258 FAX 763-525-4283 E-mail: [email protected] DATE: 11/10/2015 REFERENCE: FCC application Dear Application Examiner: Parker Hannifin Corporation is submitting this application for the certification of Parker Hannifin Corporation’s Model “QX-008-427” radio module, FCC ID: 2ACDM-SNG2. Single modular approval is sought. The radio utilizes a u.FL antenna connector. This configuration satisfies the requirements of 47 CFR 15.203. The technical reports and exhibits demonstrate compliance with FCC rules 47 CFR 15.247 as a DTS transmitter. Your efforts in reviewing this application are greatly appreciated. Best regards, Shawn Ellis

External Photos

External photos Radio Solder Side of Radio Component side of Module Solder Side of Module

External Photos

QUICK COUPLING DIVISION 8145 LEWIS ROAD MINNEAPOLIS, MN 55427 Shawn Ellis Engineering Supervisor PHONE 763-525-4258 FAX 763-525-4283 E-mail: [email protected] DATE: 11/10/2015 REFERENCE: External Photos of sensor with QX-008-427 board installed inside Regards, Shawn Ellis Engineering Supervisor Parker QCD - BioCare 8145 Lewis Road Minneapolis, MN 55427 763.525.4258

External Photos

QUICK COUPLING DIVISION 8145 LEWIS ROAD MINNEAPOLIS, MN 55427 Shawn Ellis Engineering Supervisor PHONE 763-525-4258 FAX 763-525-4283 E-mail: [email protected] DATE: 11/10/2015 REFERENCE: External Photos of QX-008-427 radio board Regards, Shawn Ellis Engineering Supervisor Parker QCD - BioCare 8145 Lewis Road Minneapolis, MN 55427 763.525.4258

ID Label/Location Info

Part No.:Title: Rev No. QX-008-545 SENSOR LABEL D Modeled:Drawn:Checked: Approved: SHALL CONFORM TO ES1020 Date: BASIC TOLERANCES Wt: Title: Reference: Part No.: Rev./Ver. Scale:Sheet Of Material:Grade:Heat Treat:Finish: ECN Rev Revised by Revision Date 2-Place .XX±.013-Place .XXX±.0054-Place .XXXX±.0005 SQUARENESS (MAX IN/IN)RUNOUT(MAX F.I.M.)MAX AA MACHINED SURFACE ROUGHNESSCORNER BREAK AND FILLETS .001/.015 .005 .005 125 Fluid Connectors Quick Coupling Division THIS DOCUMENT CONTAINS INFORMATION THAT IS CONFIDENTIAL AND PROPRIETARY TO PARKER HANNIFIN ("PARKER"). THIS DOCUMENT IS FURNISHED ON THE UNDERSTANDING THAT THE DOCUMENTAND THE INFORMATION IT CONTAINS WILL NOT BE COPIED OR DISCLOSED TO OTHERS OR USED FOR ANY OTHER PURPOSE THAN CONDUCTING BUSINESS WITH PARKER, AND WILL BE RETURNED AND ALL FURTHER USE DISCONTINUED UPON REQUEST BY PARKER. COPYRIGHT PARKER YEAR OF COPYRIGHT IS FIRST YEAR INDICATED ON THIS DOCUMENT. ALL RIGHTS RESERVED. 0.0016 lbmass QX-008-545 SENSOR LABEL 1:1 1 1 D ADDED "CONTAINS" BEFORE FCC S.ELLIS D 0127047 S.ELLIS S.ELLIS M.GEHRMAN S.ELLIS SEE NOTES N/A N/A N/A 10/9/2015 7/2/2015 Angular X.X±0.5° 2.100 .550 R.125 NOTES:1. LABEL MATERIAL: .002 METALLIC SILVER VINYL WITH PERMAMENT ADHESIVE BACKING.2. LETTER COLOR: BLACK.3. NO CLEARCOAT REQUIRED.4. INFORMATION ON LABEL AS SHOWN & PER .ai FILE.5. FONT: ARIAL BOLD, 6 PT. SMALL TICK MARK REQUIRED (AIDSLABEL PLACEMENT ON FINISHED PRODUCT) Parker Hannifin Corporation 8145 Lewis Road Minneapolis, MN 55427 Shawn Ellis Engineering Supervisor PHONE 763-525-4258 FAX 763-525-4283 E-mail: [email protected] DATE: 11/10/2015 REFERENCE: Label installation location This picture shows where the label location is on the finish product. FCC ID and IC numbers will be clearly visible. Regards, Shawn Ellis

Operational Description

QX-008-55 Industrial antenna report 2014/04/15 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 2 Purpose: This report is to show the results of the Industrial antenna . Contents: 1.Overview & Antenna Information 2.Test Results 2.1 Return Loss 2.2 3D Gain table 2.3 2D Radiation Pattern 2.4 3D Radiation Pattern Revision Data Description of changes A 05 – Dec. - 2013 Using the chamber simulate the Industrial antenna performance . B 30 – Dec. - 2013 Using the chamber simulate the Industrial antenna performance . C 31 – Dec. - 2013 Using the chamber simulate the Industrial antenna performance . D 03 – Jan. - 2014 Using the chamber simulate the Industrial antenna performance . E 03 – Apr. - 2014 Using the chamber simulate the Industrial antenna performance . F 22 – Apr. - 2014 Change the Cable and length. Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 3 1. Overview& Antenna Information;YyͲϬϬΘͲρρƐĂŵƉůĞƐϭͲρͿ Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 4 2.Test Results 2.1 Return Loss Target antenna Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 5 SINBON Design (QX-008-55 samples 1-5) Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 6 Target antenna Freq. Gain (dBi) Efficiency (%) MHz Peak Gain(dBi) Average Gain(dBi) 2400 2.3 -0.7 84.2 2410 2.3 -0.7 84.8 2420 2.3 -0.7 86.0 2430 2.2 -0.7 85.7 2440 2.1 -0.6 86.5 2450 2.1 -0.7 85.9 2460 2.1 -0.7 85.3 2470 2.0 -0.7 84.9 2480 2.0 -0.7 84.9 2490 2.0 -0.7 85.2 2500 2.0 -0.7 84.9 2.2 3D Gain table Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 7 YyͲϬϬΘͲρρƐĂŵƉůĞϭ Freq. Gain (dBi) Efficiency (%) MHz Peak Gain(dBi) Average Gain(dBi) 2400 2.8 -1.5 70.3 2410 2.7 -1.5 70.3 2420 2.9 -1.4 71.6 2430 2.9 -1.4 72.7 2440 2.9 -1.4 71.9 2450 2.9 -1.4 71.8 2460 2.9 -1.5 71.1 2470 2.8 -1.5 71.3 2480 2.9 -1.5 71.5 2490 2.9 -1.5 70.3 2500 2.8 -1.5 70.2 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 8 YyͲϬϬΘͲρρƐĂŵƉůĞ2 Freq. Gain (dBi) Efficiency (%) MHz Peak Gain(dBi) Average Gain(dBi) 2400 2.9 -1.5 70.5 2410 2.8 -1.5 70.6 2420 3.0 -1.4 71.7 2430 3.0 -1.4 72.4 2440 3.0 -1.4 72.3 2450 3.0 -1.4 72.5 2460 2.9 -1.4 72.3 2470 2.9 -1.4 72.2 2480 2.9 -1.4 72.3 2490 2.9 -1.5 70.8 2500 2.8 -1.5 70.4 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 9 YyͲϬϬΘͲρρƐĂŵƉůĞϯ Freq. Gain (dBi) Efficiency (%) MHz Peak Gain(dBi) Average Gain(dBi) 2400 2.6 -1.4 72.4 2410 2.5 -1.5 71.0 2420 2.6 -1.4 73.2 2430 2.7 -1.3 73.9 2440 2.6 -1.4 73.0 2450 2.7 -1.4 72.7 2460 2.5 -1.4 71.8 2470 2.5 -1.5 71.5 2480 2.5 -1.5 71.6 2490 2.4 -1.5 70.2 2500 2.4 -1.5 70.2 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 10 YyͲϬϬΘͲρρƐĂŵƉůĞκ Freq. Gain (dBi) Efficiency (%) MHz Peak Gain(dBi) Average Gain(dBi) 2400 3.1 -1.5 70.6 2410 3.0 -1.5 70.8 2420 3.1 -1.4 71.5 2430 3.2 -1.4 72.2 2440 3.1 -1.4 72.3 2450 3.1 -1.4 72.4 2460 3.0 -1.4 72.4 2470 3.0 -1.4 72.0 2480 3.0 -1.4 72.1 2490 2.9 -1.5 70.9 2500 2.9 -1.5 70.5 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 11 YyͲϬϬΘͲρρƐĂŵƉůĞρ Freq. Gain (dBi) Efficiency (%) MHz Peak Gain(dBi) Average Gain(dBi) 2400 2.8 -1.5 70.6 2410 2.7 -1.5 70.7 2420 2.8 -1.5 71.5 2430 2.9 -1.4 72.3 2440 2.8 -1.5 71.5 2450 2.8 -1.5 71.3 2460 2.7 -1.5 70.5 2470 2.7 -1.5 70.3 2480 2.7 -1.5 70.5 2490 2.5 -1.5 70.4 2500 2.5 -1.5 70.2 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 12 ETS Chamber - AMS-8500 Theta - Axis Phi - Axis Chamber Size: 7.32m x 3.66m x 3.66m Test Distance: 4.9 meter Frequency: 700MHz – 6GHz Z X Y Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 13 2.3 2D Radiation Pattern Target antenna Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 14 QX-008-55 sample 1 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 15 QX-008-55 sample 2 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 16 QX-008-55 sample 3 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 17 QX-008-55 sample 4 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 18 QX-008-55 sample 5 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 19 2.4 3D Radiation Pattern Target antenna Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 20 QX-008-55 sample 1 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 21 QX-008-55 sample 2 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 22 QX-008-55 sample 3 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 23 QX-008-55 sample 4 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 24 QX-008-55 sample 5 Copyright © 2012 SINBON Electronics Co., Ltd. All rights reserved. 25

Operational Description

SECTION B-B Part No.: Title: Rev No. QX-008-55 ANTENNA (2.4GHZ) D Modeled: Drawn: Checked: Approved: SHALL CONFORM TO ES1020 Date: BASIC TOLERANCES Wt: Title: Reference: Part No.: Rev./Ver. Scale: Sheet Of Material: Grade: Heat Treat: Finish: ECN Rev Revised by Revision Date 2-Place .XX±.01 3-Place .XXX±.005 4-Place .XXXX±.0005 SQUARENESS (MAX IN/IN) RUNOUT(MAX F.I.M.)MAX AA MACHINED SURFACE ROUGHNESS CORNER BREAK AND FILLETS .001/.015 .005 .005 125 Fluid Connectors Quick Coupling Division THIS DOCUMENT CONTAINS INFORMATION THAT IS CONFIDENTIAL AND PROPRIETARY TO PARKER HANNIFIN ("PARKER"). THIS DOCUMENT IS FURNISHED ON THE UNDERSTANDING THAT THE DOCUMENTAND THE INFORMATION IT CONTAINS WILL NOT BE COPIED OR DISCLOSED TO OTHERS OR USED FOR ANY OTHER PURPOSE THAN CONDUCTING BUSINESS WITH PARKER, AND WILL BE RETURNED AND ALL FURTHER USE DISCONTINUED UPON REQUEST BY PARKER. COPYRIGHT PARKER YEAR OF COPYRIGHT IS FIRST YEAR INDICATED ON THIS DOCUMENT. ALL RIGHTS RESERVED. 0.0073 lbmass QX-008-55 ANTENNA (2.4GHZ) 1:1 1 1 D UPDATED PRINT S.ELLIS D 0098099 S.ELLIS S.ELLIS R.BRIESE S.ELLIS SEE NOTES N/A N/A N/A 3/4/2015 9/12/2013 Angular X.X±0.5° BB NOTES:1. FREQUENCY (GHz): 2.4 - 2.52. GAIN (dBi): 0±1.53. IMPEDANCE - NOMINAL (OHMS): 504. VSWR: 2.0 MAX.5. POLARIZATION: VERTICAL6. ELECTRICAL LENGTH: 1/4 DIPOLE7. RADIATION: OMNI8. MATERIAL: - LATCH: PC, SHORE D 118, UL94V-0, BLACK. - SEAL: RED SILICONE. - OVERMOLDING: BLACK TPE COMPOUND, UV & CHEMICAL RESISTANT, SHORE A 76, UL94V-HB. 9. ANTENNA MUST BE ROHS COMPLIANT.10. ANTENNA MUST MEET WATER INGRESS REQUIREMENTS OF IEC 60529 IP67. .307   .003 4.24 ( INCH) [107.67 MM] (1.81 INCH) [45.9 MM] FLEXIBLE AREA .397  .010 U.FL CONNECTOR MUST POINT IN THE DIRECTION AS SHOWN SEAL .279  .003 .279  .003 FULL RADIUS

RF Exposure Info

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 Parker Hannifin Corporation QX-008-427 FCC 2.1091:2015 Bluetooth Radio Report # PQCD0001.1 NVLAP Lab Code: 200881-0 CERTIFICATE OF EVALUATION 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. This report reflects only those tests from the referenced standards shown in the certificate of test. It does not include inspection or verification of labels, identification, marking or user information. Last Date of Test: September 22, 2015 Parker Hannifin Corporation Model: QX-008-427 Radio Equipment Testing Standards Specification Method FCC 2.1091:2015 KDB 447498 D01 General RF Exposure Guidance v05r02 Results Method Clause Test Description Applied Results Comments 7.1 Maximum Permissible Exposure Yes Pass Deviations From Test Standards None Approved By: Jeremiah Darden, Operations Manager Report No. PQCD0001.12/9 REVISION HISTORY REV 2014.10.14 Revision Number Description Date Page Number 00 None Report No. PQCD0001.13/9 ACCREDITATIONS AND AUTHORIZATIONS REV 2015.2.19 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 17065 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 OFCA – Recognized by OFCA 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/ http://gsi.nist.gov/global/docs/cabs/designations.html Report No. PQCD0001.14/9 FACILITIES REV 2015.2.19 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) 554-8214 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 Recognized Phase I CAB for ACMA, BSMI, IDA, KCC/RRA, MIC, MOC, NCC, OFCA US0158 US0175 N/A US0017 US0191 US0157 Report No. PQCD0001.15/9 PRODUCT DESCRIPTION 2014-12-10 Client and Equipment Under Evaluation (EUT) Information Company Name: Parker Hannifin Corporation Address: 8145 Lewis Road City, State, Zip: Minneapolis, MN 55427 Test Requested By: Shawn Ellis Model: QX-008-427 Evaluation Date: September 22, 2015 Information Provided by the Party Requesting the Test Functional Description of the EUT: Bluetooth Low Energy radio module. Evaluation Objective: To demonstrate compliance with FCC requirements for RF exposure for 2.1091 mobile devices. Report No. PQCD0001.16/9 MAXIMUM PERMISSIBLE EXPOSURE (MPE) WTD.2014.12.17 OVERVIEW Human exposure to RF emissions from mobile devices (47 CFR §2.1091) may be evaluated based on the MPE limits adopted by the FCC for electric and magnetic field strength and/or power density, as appropriate, since exposures are assumed to occur at distances of 20 cm or more from persons. ANSI C95.1:2005 + Amd 1:2010 specifies a minimum separation distance of 20 cm for performing reliable field measurements to determine adherence to MPE limits. If the minimum separation distance between a transmitter and nearby persons is more than 20 cm under normal operating conditions, compliance with MPE limits may be determined at such distance from the transmitter. When applicable, operation instructions and prominent warning labels may be used to alert the exposed persons to maintain a specified distance from the transmitter or to limit their exposure durations and usage conditions to ensure compliance. If the use of warning labels on a transmitter is not effective or desirable, the alternative of performing SAR evaluation with the device at its closest range to persons under normal operating conditions may be used. The field strength and power density limits adopted by the FCC are based on whole-body averaged exposure and the assumption of …

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Test Report

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 Parker Hannifin Corporation QX-008-427 FCC 15.207:2015 FCC 15.247:2015 Report # PQCD0003 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. This report reflects only those tests from the referenced standards shown in the certificate of test. It does not include inspection or verification of labels, identification, marking or user information. Last Date of Test: October 07, 2015 Parker Hannifin Corporation Model: QX-008-427 Radio Equipment Testing Standards Specification Method FCC 15.207:2015 ANSI C63.10:2013 FCC 15.247:2015 ANSI C63.10:2013 Results Method Clause Test Description Applied Results Comments 6.2 Powerline Conducted Emissions Yes Pass 6.5, 6.6, 11.12.1, 11.13.2 Spurious Radiated Emissions Yes Pass 6.10.4 Band Edge Compliance Yes Pass 11.6 Duty Cycle Yes Pass 11.8.2 Occupied Bandwidth Yes Pass 11.9 Output Power Yes Pass 11.10 Power Spectral Density Yes Pass 11.11 Spurious Conducted Emissions Yes Pass Deviations From Test Standards None Approved By: Tim O'Shea, Operations Manager Report No. PQCD00032/57 REVISION HISTORY REV 2014.10.14 Revision Number Description Date Page Number 00 None Report No. PQCD00033/57 ACCREDITATIONS AND AUTHORIZATIONS REV 2015.2.19 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 17065 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 OFCA – Recognized by OFCA 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/ http://gsi.nist.gov/global/docs/cabs/designations.html Report No. PQCD00034/57 MEASUREMENT UNCERTAINTY TMU.2015.07.10 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) 5.2 dB -5.2 dB AC Powerline Conducted Emissions (dB) 2.4 dB -2.4 dB Report No. PQCD00035/57 FACILITIES REV 2015.2.19 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) 554-8214 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 Recognized Phase I CAB for ACMA, BSMI, IDA, KCC/RRA, MIC,…

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Test Setup Photos

POWERLINE CONDUCTED EMISSIONS WTD.2015.09.03 PSA-ESCI 2015.07.01, EmiR5 2015.08.28 photo ACC 002.jpg ACC 003.jpg SPURIOUS RADIATED EMISSIONS PSA-ESCI 2015.03.03 Report No. PQCD00032/9 photo ACC 009.jpg ACC 013.jpg SPURIOUS RADIATED EMISSIONS PSA-ESCI 2015.03.03 Report No. PQCD00033/9 XMit 2015.01.14 DIRECT CONNECT 002.jpg BAND EDGE COMPLIANCE Report No. PQCD00034/9 XMit 2015.01.14 SRE 001.jpg SRE 002.jpg DUTY CYCLE Report No. PQCD00035/9 XMit 2015.01.14 DIRECT CONNECT 002.jpg OCCUPIED BANDWIDTH Report No. PQCD00036/9 XMit 2015.01.14 DIRECT CONNECT 002.jpg OUTPUT POWER Report No. PQCD00037/9 XMit 2015.01.14 DIRECT CONNECT 002.jpg POWER SPECTRAL DENSITY Report No. PQCD00038/9 XMit 2015.01.14 DIRECT CONNECT 002.jpg SPURIOUS CONDUCTED EMISSIONS Report No. PQCD00039/9

Contact Information

Applicant

Shawn Ellis(Engineering Supervisor)
[email protected]763-525-4258Fax: 763-544-3418

Test Firm

Northwest EMC, Inc.Greg Kiemel
[email protected]503-844-4066Fax: 503-844-3826

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz4.50 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Power listed is conducted. The antenna(s) used for this transmitter must not be collocated or operating in conjunction with any other antenna or transmitter within a host device, except in accordance with FCC multi-transmitter product procedures.

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