
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
AccuPoint Advanced Sanitation Verification System is accurate in detecting ATP.* *The first sanitation verification device to be approved by the AOAC Research Institute 01. To power on the reader, press and hold the center button on your AccuPoint Phoenix. Enter user name and password if required. 02. Select Standard Test (when using a site plan) or Quick Test for general sampling. Under standard testing, select the correct site to be tested. 04. Hold the sampler vertically and fully depress to activate. NOTE: the sampler must be held vertically. 05. Mix gently for two seconds. NOTE: do not shake. 03. Sample your site by “drawing” a 4” x 4” square. With a vertical and horizontal back- and-forth motion “fill” in the square. Consistency is critical. 08. The RLU score will display along with a symbol for pass, marginal or fail. English 06. With the instrument held upright, press the eject button and insert the sampler. 07. Depress the sampler all the way down and close the door. NOTE: keep instrument upright while the sample is being read. 09. On the results screen, users have the option to enter notes for that result, retest that site, or move to the next site in their plan. 2:15 PM8/1/20 RESULTPASS:0 USER<Guest> TIME2:14 PM 8/1/20 PLANTEST AREAPROCESSING GROUPLINE 1 SITECONVEYOR BELT 1 <Guest> Notes* Retest Next Site Sampling Quick Reference Guide (Phoenix Reader) - Surface Samplers 01. Presione y mantenga presionado el botón central en su AccuPoint Phoenix. Introduzca un nombre de usuario y contraseña si lo desea. 02. Seleccione Prueba estándar (cuando utilice un plan de sitio) o Prueba rápida de muestreo general. En las pruebas estándar, seleccione el sitio correcto que se va a analizar 04. Sostenga el muestreador de manera vertical y oprima hasta el fondo para activarlo. NOTA: el muestreador se debe sostener de manera vertical. 05. Mezcle suavemente durante dos segundos. NOTA: No agite 03. Obtenga la muestra del sitio “trazando” un cuadrado de 10 cm x 10 cm. “Llene” el cuadrado mediante un movimiento vertical y horizontal hacia adelante y hacia atrás. La uniformidad es crítica. Spanish 08. La puntuación en unidades RLU se mostrará junto con un símbolo de aprobado, marginal o no aprobado. 09. En la pantalla de resultados, los usuarios tienen la opción de introducir notas para dicho resultado, volver a analizar ese sitio o pasar al siguiente sitio del plan. 2:15 PM8/1/20 RESULTPASS:0 USER<Guest> TIME2:14 PM 8/1/20 PLANTEST AREAPROCESSING GROUPLINE 1 SITECONVEYOR BELT 1 <Guest> Notes* Retest Next Site Guía de referencia rápida de muestreo - Muestreador de superficie 06. Sosteniendo el instrumento en posición vertical, presione el botón de expulsión e inserte el muestreador. 07. Oprima el muestreador hasta el fondo y cierre la puerta. NOTA: sostenga el instrumento en posición vertical mientras se lee la muestra. 01. Mantenha o botão central em seu AccuPoint Phoenix pressionado. Se necessário, insira nome de usuário e senha 02. Selecione a amostragem geral de teste padrão (ao usar um plano de local) ou de teste rápido. Em teste padrão, selecione o local certo a ser testado 04. Segure o amostrador na posição vertical e pressione completamente para ativar. OBS.: é necessário segurar o amostrador na posição vertical. 05. Misture delicadamente por 2 segundos. OBS.: não agite 03. Amostre seu local “desenhando” um quadrado de 10x10 cm. Executando um movimento vertical e horizontal para frente e para trás, “preencha” o quadrado. É crucial executar uma operação consistente. Portuguese 06. Com o instrumento posicionado na posição vertical, pressione o botão de ejetar e insira o amostrador. 07. Pressione o amostrador até o fim e feche a porta. OBS.: mantenha o instrumento na posição vertical enquanto a amostra estiver sendo lida. 08. A pontuação em unidades relativas de luz (URL) será exibida juntamente com o símbolo de aprovado, alerta ou reprovado. 09. Na tela de resultados, os usuários têm a opção de adicionar observações para o respectivo resultado, retestar o local ou continuar para o próximo local no plano. 2:15 PM8/1/20 RESULTPASS:0 USER<Guest> TIME2:14 PM 8/1/20 PLANTEST AREAPROCESSING GROUPLINE 1 SITECONVEYOR BELT 1 <Guest> Notes* Retest Next Site Guia rápido de referência de amostragem - Amostrador de superfície
AccuPoint ® Advanced Next Generation User Guide Chapter 1 — Introduction 02 Introduction Chapter 2 — Operating Principles and Technology 03 System Components Chapter 3 — Operating Guidelines and Precautions 05 Electrical Warnings 05 Proper Use of the Sampler Cartridges 05 Proper Care of the Instrument 06 Cleaning the Instrument Chapter 4 — Preparing the Instrument for Use 07 Power 08 Home Page 09 Running Quick Tests 09 Results Screen 09 Add Notes 09 Retest 10 Sample Procedure Chapter 5 — User Access 12 Logging In 12 Logging Out Chapter 6 — Running Standard Tests 13 Select Plan 13 Select Area 14 Select Group 14 Select Site 15 Testing Screen 15 Results Screen 15 Add Notes 15 Retest 15 Next Site TABLE OF CONTENTS Chapter 7 — Menu Navigation 16 Sites 16 Results 16 Settings 16 Learn RFID 17 Wi-Fi 17 About Chapter 8 — RFID 18 Learn RFID 18 Use RFID Chapter 9 — Wi-Fi 19 Sync Results 19 Disconnect Wi-Fi 19 Connect Wi-Fi Chapter 10 — Additional Features 20 The AccuPoint Data Manager Software 20 Sampler Type: Surface, Liquid, or Alkaline Phosphatase 20 Setting the Pass, Marginal, and Fail Thresholds 21 Troubleshooting Chapter 11 — Technical Information 25 Electromagnetic Compatibility (EMC) 25 Specifications and Environmental Considerations 25 Operating Conditions 25 Storage Conditions 26 Electrical Requirements 26 Certificate of System Control 26 Replacement Parts and Accessories 26 Warranty 26 Customer Service and Contact Information NEOGEN.com 2 CHAPTER ONE Introduction NEOGEN ® ’s AccuPoint Advanced Next Generation (NG) sanitation monitoring system is a lightweight, handheld diagnostic tool used to validate and verify a sanitation program’s effectiveness by detecting organic residues remaining on surfaces and in liquids after cleaning when using the AccuPoint Advanced samplers. The system is composed of three primary components: an electronic luminometer; fully self-contained single-use samplers, and data manager software. When used with AccuPoint Advanced ATP samplers, the system will detect adenosine triphosphate (ATP) collected in the sample and report the measurement in relative light units (RLUs). RLU thresholds are established by a facility to reflect effective cleaning practices.The instrument compares the measured level of ATP to the established thresholds and reports the result as a pass, marginal, or fail. The system will record the time, date, specific test site location, site group, and area information in addition to the recorded RLU and result. The AccuPoint Advanced NG instrument also gives users the ability to enter notes on individual test results. This information can be uploaded to the data manager software for additional review and reporting. NEOGEN continually works to improve its product lines, and nowhere is that more evident than with the AccuPoint Advanced system. With the AccuPoint Advanced system, innovations allow for better functionality and service than ever before. These innovations include the advanced samplers, which feature a bioluminescent reaction in a liquid-stable solution. This allows for a more consistent reaction that provides a more consistent result. This chemistry also creates a more robust reaction that has the benefit of providing greater sensitivity through a clearer distinction between very low levels of ATP. The AccuPoint Advanced NG instrument offers enhanced navigation, touch screen, wireless data transfer capability, and robust design to take your sanitation monitoring program to the next level. NEOGEN’s AccuPoint Advanced system can also be used to test dairy products to ensure proper pasteurization when using high-temperature, short time (HTST) processing equipment. The AccuPoint Advanced Alkaline Phosphatase sampler is a chemiluminescence-based test that allows the user to determine whether a milk sample has been properly pasteurized or is contaminated with raw milk. A sample of milk to be tested is collected using the sampler and exposed to the substrate solution contained within the sampler body. After a brief incubation, the amount of light generated by the interaction of the substrate with alkaline phosphatase naturally present in raw milk is detected on the AccuPoint Advanced NG instrument and reported in mU/L. When used with the AccuPoint data manager version 4.0 software (or later), the AccuPoint Advanced NG instrument can be set up to record the testing results at user specified test sites, along with the date, time, and user. The test site information is entered into the data manager program and uploaded to the AccuPoint instrument. The user simply navigates to the correct site and takes the test. The AccuPoint Advanced NG instrument has built in RFID functionality that can be used to automatically identify test locations that are set up with RFID tags. The user simply brings the unit close to the RFID tag and the correct site is automatically identified for that test. Up to 3,000 unique testing sites can be tracked with each AccuPoint Advanced NG instrument. Up to 4,000 test results can be stored at any time and are not lost if the instrument loses power. An integrated, rechargeable lithium-ion battery provides power. NEOGEN.com 3 CHAPTER TWO Operating Principles and Technology Part No.Description 9904AccuPoint Advanced NG sanitation monitoring instrument 9617-USB2 USB thumb drive containing user guide and AccuPoint Advanced data manager software 9918USB data and power cable 1232-2Quick reference guide 9916Holster, with shoulder strap and sampler holder 9919Wall charger* 9919EWall charger faceplates — U.K., E.U. 9919AWall charger faceplates — U.S., Brazil 9919PWall charger faceplates — Australia, China, India, Japan The AccuPoint ® Advanced ATP samplers utilizes ATP bioluminescence to determine the cleanliness of test samples. ATP is a chemical compound found in all living cells, including bacteria, food debris, yeast, and mold. Bioluminescence is a chemical reaction that produces light. ATP bioluminescence occurs when ATP from a…
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AccuPoint “Phoenix” External Photos – 05/08/2020 Front 2 Right Side 3 Back 4 Left Side 5 To p 6 Bottom 7 Bottom Cover - Removed 8 Label 9
AccuPoint “Phoenix” Internal Photos – 05/08/2020 Bottom View – Cover Removed 2 Inside of Bottom Cover 3 Main Power Battery 4 Bottom View – Battery Removed 5 Bottom View – Battery Sleeve Removed 6 Interior of Removed Rear Cover (Angle) –RFID Antenna Shown 7 Interior of Removed Rear Cover (Head On)– RFID Antenna Shown 8 Rear View (Horiz) – Rear Cover Removed 9 Rear View (Vert) – Rear Cover Removed 10 Right Side – Rear Cover Removed 11 Bottom – Rear Cover Removed 12 Left Side – Rear Cover Removed 13 Left Side (Close Up) –Rear Cover Removed 14 Bottom (Close Up) – Rear Cover Removed 15 Mainboard to Optical board (white) and Hall Sensor magnets (green) wiring harness 16 Hall Sensor 1 – Door open/close 17 Hall Sensor 2 – Sampler Presence 18 Right Side – Optical tube with Sampler Funnel attached 19 Rear View –Mainboard attached to Front Cover 20 Right Side – Mainboard attached to Front Cover 21 Rear View –Top of Mainboard with LCD ribbon disconnected 22 Rear View –Interior of Front Cover with Mainboard and LCD removed – Silicone Control Pad shown in black 23 Front –Silicone Control Pad 24 Rear View –Interior of Front Cover with Mainboard and LCD removed – Silicone Control Pad removed 25 Front View –Mainboard with LCD removed 26 Right Side – Mainboard with LCD removed 27 Rear View –Mainboard 28 Left Side – Mainboard 29 Rear View –Rear of LCD Panel 30 Front View –Front of LCD Panel 31 To p V i e w – LCD Panel with Ribbon Connector highlighted 32 Front View –Interior of Lid 33 Left Side – Optical Tube and Sampler Funnel with Lid open 34 Front View–Optical Tube and Sampler Funnel with Lid open 35 Bottom – Optical Tube with cover over Optical Board 36 Bottom – Optical Tube with cover removed, showing Optical Board 37 To p V i e w – Optical Board shown with Sensor at center 38 Bottom View – Optical Tube Lensing shown with Optical Board removed 39
FCC – Simultaneous SAR Exclusion Per QOQ-WGM110: portable use. Maximum TX power = 40mW Maximum TX frequency = 2480 MHZ RFID module Maximum TX power = 0.0000456mW TX frequency = 13.56MHz Assuming worst case power addition: [(max. power of channel, including tune-up tolerance, mW)/(min. separation distance, mm)]*√f(GHz) ≤ 3 min. separation distance ≥ (40.0000456 mW / 3)*√2.48 ≥ 21 mm IC – Simultaneous SAR Exclusion Per 5123A-WGM110 Maximum TX power = 40mW Maximum TX frequency = 2480 MHZ RFID module Maximum TX power = 0.0000456mW TX frequency = 13.56MHz Per RSS-102 Table 1, for a separation distance of 25 mm: @2450MHz, exclusion limit is 52mW @3500MHz, exclusion limit is 55mW Linear interpolation to find limit @ 2480MHz = 52 mW + (2480MHz – 2450 MHz)*(55mW - 52mW)/(3500MHz – 2450MHz) = 52.09 mW Assuming worst case power addition Max TX power = 40.0000456 mW 40.0000456 < 52.09; device meets SAR exemption criteria
HEADQUARTERS: 914 WEST PATAPSCO AVENUE • BALTIMORE, MARYLAND 21230 • PHONE (410) 354-3300 • FAX (410) 354-3313 Maryland | California | Texas www.metlabs.com March 16, 2021 Neogen Corporation 620 Lesher Place Lansing, Michigan 48912 Dear Mike Wilcox, Enclosed is the EMC test report for compliance testing of the Neogen Corporation, AccuPoint Advanced 2 Sanitation Monitoring System, tested to the requirements of Title 47 of the CFR, Part 15.225, Subpart C for Certification as an Intentional Radiator. Thank you for using the services of Eurofins E&E North America. If you have any questions regarding these results or if MET can be of further service to you, please feel free to contact me. Sincerely yours, EUROFINS E&E NORTH AMERICA. Jennifer Warnell Documentation Department Reference: (\Neogen Corporation\WIR107592-FCC225 Rev. 2) Certificates and reports shall not be reproduced except in full, without the written permission of Eurofins E&E North America. While use of the A2LA logo in this report reflects MET accreditation under these programs, the report must not be used by the client to claim product certification, approval, or endorsement by A2LA or any agency of the Federal Government. This letter of transmittal is not a part of the attached report. Eurofins MET Laboratories Inc. (Eurofins E&E North America) is part of the Eurofins Electrical & Electronics (E&E) global compliance network. Electromagnetic Compatibility Neogen Corporation Cover Page AccuPoint Advanced 2 Sanitation Monitoring System CFR Title 47, Part 15.225 MET Report: WIR107592-FCC225 Rev. 2 © 2021, Eurofins E&E North America. Page ii of vii DOC-EMC702 6/18/2009 Electromagnetic Compatibility Criteria Test Report for the Neogen Corporation AccuPoint Advanced 2 Sanitation Monitoring System Tested under the FCC Certification Rules contained in 15.225 Subpart C for Intentional Radiators MET Report: WIR107592-FCC225 Rev. 2 March 16, 2021 Prepared For: Neogen Corporation 620 Lesher Place Lansing, Michigan 48912 Prepared By: Eurofins E&E North America. 914 W. Patapsco Ave. Baltimore, MD 21230 Electromagnetic Compatibility Neogen Corporation Cover Page AccuPoint Advanced 2 Sanitation Monitoring System CFR Title 47, Part 15.225 MET Report: WIR107592-FCC225 Rev. 2 © 2021, Eurofins E&E North America. Page iii of vii DOC-EMC702 6/18/2009 Electromagnetic Compatibility Criteria Test Report for the Neogen Corporation AccuPoint Advanced 2 Sanitation Monitoring System Tested under the FCC Certification Rules contained in 15.225 Subpart C for Intentional Radiators Donald Salguero, Project Engineer Electromagnetic Compatibility Lab Engineering Statement: The measurements shown in this report were made in accordance with the procedures indicated, and the emissions from this equipment were found to be within the limits applicable. I assume full responsibility for the accuracy and completeness of these measurements, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurements made, the equipment tested is capable of operation in accordance with the requirements of the FCC Rules Part 15.225 under normal use and maintenance. Steve Pitta, Operations Director Electromagnetic Compatibility Neogen Corporation Report Status AccuPoint Advanced 2 Sanitation Monitoring System CFR Title 47, Part 15.225 MET Report: WIR107592-FCC225 Rev. 2 © 2021, Eurofins E&E North America. Page iv of vii DOC-EMC702 6/18/2009 Report Status Sheet Revision Report Date Reason for Revision August 25, 2020 Initial Issue. 1 August 25, 2020 Changing recipient name on first page. 2 March 15, 2021 Updates per TCB Comments Electromagnetic Compatibility Neogen Corporation Table of Contents AccuPoint Advanced 2 Sanitation Monitoring System CFR Title 47, Part 15.225 MET Report: WIR107592-FCC225 Rev. 2 © 2021, Eurofins E&E North America. Page v of vii DOC-EMC702 6/18/2009 Table of Contents I. Executive Summary ................................................................................................................................................. 1 A. Purpose of Test ................................................................................................................................................... 1 B. Executive Summary ............................................................................................................................................ 1 II. Equipment Configuration ....................................................................................................................................... 2 A. Overview ............................................................................................................................................................. 2 B. References ........................................................................................................................................................... 2 C. Test Site .............................................................................................................................................................. 3 D. Measurement Uncertainty ................................................................................................................................... 3 E. Description of Test Sample ................................................................................................................................. 3 F. Equipment Configuration .................................................................................................................................... 4 G. Support Equipment ............................................................................................................................................. 4 H. Ports and Cabling Information ............................................................................................................................ 4 I. Mode of Operation During Testing ..................................................…
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Photograph 1. Radiated Emissions 9kHz - 30 MHz Parallel Test Setup Photograph 2. Radiated Emissions 9kHz - 30 MHz Parallel Test Setup Photograph 3. Radiated Emissions 30-1000 MHz Test Setup
1012 Copeland Oaks Drive · Morrisville, North Carolina · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 13.56 MHz - 13.56 MHz | - |