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DV8TMX100TM XMTR Module

Fukuda Denshi Co Ltd
TM XMTR Module - FCC ID DV8TMX100 - Fukuda Denshi Co Ltd
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Application Details

Equipment Class
TNT - Licensed Non-Broadcast Transmitter Worn on Body
Date of Grant
Mar 22, 2021
Application Purpose
Original Equipment
Date of Application
Mar 22, 2021
Equipment Note
TM XMTR Module
Frequency Range
608.01250000 - 613.98750000
Company
Fukuda Denshi Co Ltd
Country
Japan

Documents & Files

Select a file to view

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

User Manual Since this module is not sold to general end users directly, there is no user manual of module. For the details about this module, please refer to the specification sheet of module. This module should be installed in the host device according to the interface specification (installation procedure). ・The following information must be indicated on the host device of this module; “Contains Transmitter Module FCC ID: DV8TMX100” or “Contains FCC ID: DV8TMX100” ・The following statements must be described on the user manual of the host device of this module; “This equipment complies with ISED radiation exposure limits set forth for an uncontrolled environment and meets RSS-102 of the ISED radio frequency (RF) Exposure rules as this equipment has very low levels of RF energy.” ・The following information must be indicated on the host device of this module*; “Operation of the embedded transmitter: TMX-100 requires the prior coordination with a frequency coordinator designated by the FCC for the Wireless Medical Telemetry Service” *If it is difficult to describe this statement on the host device due to the size, please be sure to describe it in the user's manual. ・The following statements must be described on the user manual of the host device of this module; “FCC CAUTION Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. This transmitter must not be co-located or operated in conjunction with any other antenna or transmitter. This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment and meets the FCC radio frequency (RF) Exposure Guidelines as this equipment has very low levels of RF energy.”

Cover Letter(s)

1 KDB996369 Check List FCC ID: DV8TMX100 Applicant: Fukuda Denshi Co Ltd This transmitter complies with KDB996369 D03 as indicated below: Modular approval requirement Applicable Not Applicable 2.2 List of applicable FCC rules List the FCC rules that are applicable to the modular transmitter. These are the rules that specifically establish the bands of operation, the power, spurious emissions, and operating fundamental frequencies. DO NOT list compliance to unintentional-radiator rules (Part 15 Subpart B) since that is not a condition of a module grant that is extended to a host manufacturer. See also Section 2.10 below concerning the need to notify host manufacturers that further testing is required. Please refer to Theory of Operation-Interface Specification. 2.3 Summarize the specific operational use conditions Describe use conditions that are applicable to the modular transmitter, including for example any limits on antennas, etc. For example, if point-to -point antennas are used that require reduction in power or compensation for cable loss, then this information must be in the instructions. If the use condition limitations extend to professional users, then instructions must state that this information also extends to the host manufacturer’s instruction manual. In addition, certain information may also be needed, such as peak gain per frequency band and minimum gain, specifically for master devices in 5 GHz DFS bands. 2.4 Limited module procedures If a modular transmitter is approved as a “limited module,” then the module manufacturer is responsible for approving the host environment that the limited module is used with. The manufacturer of a limited module must describe, both in the filing and in the installation instructions, the alternative means that the limited module manufacturer uses to verify that the host meets the necessary requirements to satisfy the module limiting conditions. A limited module manufacturer has the flexibility to define its alternative method to address the conditions that limit the initial approval, such as: shielding, minimum signaling amplitude, buffered modulation/data inputs, or power supply regulation. The alternative method could include that the limited module manufacturer reviews detailed test data or host designs prior to giving the host manufacturer approval. This limited module procedure is also applicable for RF exposure evaluation when it is necessary to demonstrate compliance in a specific host. The module manufacturer must state how control of the product into which the modular transmitter will be installed will be maintained such that full compliance of the product is always ensured. For additional hosts other than the specific host originally granted with a limited module, a Class II permissive change is required on the module grant to register the additional host as a specific host also approved with the module. 2 2.5 Trace antenna designs For a modular transmitter with trace antenna designs, see the guidance in Question 11 of KDB Publication 996369 D02 FAQ – Modules for Micro-Strip Antennas and traces. The integration information shall include for the TCB review th e integration instructions for the following aspects: layout of trace design, parts list (BOM), antenna, connectors, and isolation requirements. a) Information that includes permitted variances (e.g., trace boundary limits, thickness, length, width, shape(s), dielectric constant, and impedance as applicable for each type of antenna); b) Each design shall be considered a different type (e.g., antenna length in multiple(s) of frequency, the wavelength, and antenna shape (traces in phase) can affect antenna ga in and must be considered); c) The parameters shall be provided in a manner permitting host manufacturers to design the printed circuit (PC) board layout; d) Appropriate parts by manufacturer and specifications; e) Test procedures for design verification; and f) Production test procedures for ensuring compliance. The module grantee shall provide a notice that any deviation(s) from the defined parameters of the antenna trace, as described by the instructions, require that the host product manufacturer must notify the module grantee that they wish to change the antenna trace design. In this case, a Class II permissive change application is required to be filed by the grantee, or the host manufacturer can take responsibility through the change in FCC ID (new application) procedure followed by a Class II permissive change application. 2.6 RF exposure considerations It is essential for module grantees to clearly and explicitly state the RF exposure conditions that permit a host product manufacturer to use the module. Two types of instructions are required for RF exposure information: (1) to the host product manufacturer, to define the application conditions (mobile, portable – xx cm from a person’s body); and (2) additional text needed for the host product manufacturer to provide to end users in their end-product manuals. If RF exposure statements and use conditions are not provided, then the host product manufacturer is required to take responsibility of the module through a change in FCC ID (new application). Please refer to User Manual. 2.7 Antennas A list of antennas included in the application for certification must be provided in the instructions. For modular transmitters approved as limited modules, all applicable professio nal installer instructions must be included as part of the information to the host product manufacturer. The antenna list shall also identify the antenna types (monopole, PIFA, dipole, etc. (note that for example an “omni-directional antenna” is not considered to be a specific “antenna type”)). For situations where the host product manufacturer is responsible for an external connector, for example with an RF pin and antenna trace design, the integration instructions shall inform the installer that unique an tenna connector must be used on the Part 15…

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External Photos

FUKUDA DENSHI CO., LTD. ・External photo Front Rear Top Bottom FUKUDA DENSHI CO., LTD. Left Right Connect antenna ANTENNA

ID Label/Location Info

・Labeling ・Size Unit: mm

Internal Photos

FUKUDA DENSHI CO., LTD. ・Internal photo Front (with shield) Front (no shield) RF Block FUKUDA DENSHI CO., LTD. Rear Antenna connection RF Block Connect Antenna

RF Exposure Info

UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone: +81 463 50 6400 Facsimile: +81 463 50 6401 FCC ID: DV8TMX100 To whom it may concern, W e, UL Japan, Inc., hereby declare that TM XMTR Module, model : TMX-100 (FCC ID: DV8TMX100) of Fukuda Denshi Co., Ltd. is exempt from RF exposure SAR evaluation with RF Exposure Compliance requirements of the KDB 447498 D01 General RF Exposure Guidance. (It is necessary to comply of FCC section 2.1093 in reality, however, it is exempted by KDB 447498 D01.) KDB 447498D01 has the following exclusion for portable devices: The 1g and 10g SAR test exclusion thresholds for 100 MHz to 6 GHz at test separation distances < 50 mm are determined by: [(measured maximum average output power(mW ))/(Minimum separation distance(mm))]•[ √ f (GHz)] < 3.0 for 1g SAR and < 7.5 for 10g extremity SAR where • f (GHz) is the RF channel transmit frequency in GHz • P ower and distance are rounded to the nearest mW and mm before calculation • The result is rounded to one decimal place for comparison The test exclusions are applicable only when the minimum test separation distance is < 50 mm and for transmission frequencies between 100 MHz and 6 GHz. When the minimum test separation distance is < 5 mm, a distance of 5 mm is applied to determine SAR test exclusion. This device f = 0.6139875 GHz, distance = 5mm (minimum separation distance: 5 mm was used in the calculation) and the measured maximum average output power was 3.46 mW So for this device: 3.46 mW [measured maximum average output power] / 5 mm [minimum separation distance] * ( √ 0.6139875) = 0.5 *This is less than 3.0, so no SAR is required. Even taking into account the tolerance, this device can be satisfied with the limits. Thank you for your attention to this matter. Toyokazu Imamura Leader Consumer Technology Division UL Japan, Inc. 2020/10/30

Test Report

Test report No. : 13451718S-R1 Page: 1 of 37 Issued date: March 15, 2021 F CC ID: DV8TMX100 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401Report Cover Page - 13-EM-F0429 Issue # 17.0 CERTIFICATE 1266.03 RADIO TEST REPORT Test Report No. : 13451718S-R1 Applicant : Fukuda Denshi Co., Ltd. Type of EUT : TM XMTR Module Model Number of EUT : TMX-100 FCC ID : DV8TMX100 Test regulation : FCC Part 95 Subpart H: 2020 FCC Part 2 Subpart J: 2020 Test Result : Complied (Refer to SECTION 3.2) 1.This test report shall not be reproduced in full or partial, without the written approval of UL Japan, Inc. 2.The results in this report appl y only to the sample tested. 3.This sample tested is in compliance with the limits of the above re gulation. 4.The test results in this test report are traceable to the national or international standards. 5.This test report must not be used by the customer to claim product certification, approval, or endorsement by the A2LA accreditation bod y. 6. This test report covers Radio technical requirements. It does not cover administrative issues such as Manual or non-Radio test related Requirements. (if applicable) 7.The all test items in this test report are conducted b y UL Japan, Inc. Shonan EMC Lab. 8.The opinions and the interpretations to the result of the description in this report are outside scopes where UL Japan has been accredited. 9. The information provided from the customer for this report is identified in SECTION 1. 10.This report is a revised version of 13451718S. 13451718S is replaced with this report. Date of test: Sep tember 4 to 11, 2020 Representative test engineer: Kenichi Adachi Engineer Consumer Technology Division Approved by: T oyokazu Imamura Leader Consumer Technology Division The testing in which "Non-accreditation" is displayed is outside the accreditation scopes in UL Japan. There is no testing item of "Non-accreditation". Test report No. : 13451718S-R1 Page : 2 of 37 Issued date : March 15, 2021 FCC ID : DV8TMX100 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 REVISION HISTORY Original Test Report No.: 13451718S Revision Test report No. Date Page revised Contents - (Original) 13451718S October 30, 2020 - - 1 13451718S-R1 March 15, 2021 p.10 Added a supplementary explanation about the power supplied. (*1) The test was conducted by changing the voltage of the power supply supplied to the jig did, since the DC power supply line for EUT module is directly connected to the EUT module after entering the jig from the USB interface cable without going through IC etc..) Test report No. : 13451718S-R1 Page: 3 of 37 Issued date: March 15, 2021 F CC ID : DV8TMX100 UL Japan, Inc. Shonan EM C Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 Reference: Abbreviations (Including words undescribed in this report) A2LA The American Association for Laboratory Accreditation MCS Modulation and Coding Scheme AC Alternating Current MRA Mutual Recognition Arrangement AFH Adaptive Frequency Hopping N/A Not Applicable AM Amplitude Modulation NIST National Institute of Standards and Technology Amp, AMP Amplifier NS No signal detect. ANSI American National Standards Institute NSA Normalized Site Attenuation Ant, ANT Antenna NVLAP National Voluntary Laboratory Accreditation Program AP Access Point OBW Occupied Band Width ASK Amplitude Shift Keying OFDM Orthogonal Frequency Division Multiplexing Atten., ATT Attenuator P/M Power meter AV Average PCB Printed Circuit Board BPSK Binary Phase-Shift Keying PER Packet Error Rate BR Bluetooth Basic Rate PHY Physical Layer BTBl uetoo thPKPeak BT LE Bluetooth Low Energy PN Pseudo random Noise BWBand Wid thPRBS Pseudo-Random Bit Sequen ce Cal Int Calibration Interval PSD Power Spectral Density CCK Complementary Code Keying QAM Quadrature Amplitude Modulation Ch., CH Channel QP Quasi-Peak CISPR Comite International Special des Perturbations Radioelectriques QPSK Quadri-Phase Shift Keying CW Continuous Wave RBW Resolution Band Width DBPSK Differential BPSK RDS Radio Data System DC Dir ect Current RERadi o Equipmen t D-fac tor Distance factor RF Radio Frequency DFS Dynamic Frequency Selection RMS Root Mean Square DQPSKDif ferential QPSKRSS Radio Standards Specifications DSSS Direct Sequence Spread Spectrum Rx Receiving EDR Enhanced Data Rate SA, S/A Spectrum Analyzer EIRP, e.i.r.p. Equivalent Isotropically Radiated Power SG Signal Generator EM CE lectroMagnetic Compatibili ty SVSWR Site-Voltage Standing Wave Ratio EMI ElectroM agnetic Interference TR Te st Receiver EN Eu ropean NormTxTransmitting ERP, e.r.p. Effective Radiated Power VBW Video BandWidth EU Eu ropean UnionVert.Vertical EUT Equipment Under Test WLAN Wireless LAN Fac.Factor FCC Federal Communications Commission FHSS Frequency Hopping Spread Spectrum FMFrequ ency Modulati on Freq.Freque nc y FSK Frequency Shift Keying GF SKG aussian Frequency-Shift Key ing GN SS Global Navigation Satellite System GPS Global Positioning System Hori. Ho rizontal ICES Int erference-Causing Equipment Standard IE CIn ternational Electrotechnical Commission IEEEInstitute of Electric al and Electronics Engineers IFIn termediate Freque ncy IL AC International Laboratory Accreditation Conference ISED Innovation, Science and Economic Development Canada ISO International Organization for Standardization JAB Japan Accreditation Board L ANL ocal Area Netw ork LIMS Laboratory Information Management System Test report No. : 13451718S-R1 Page: 4 of 37 Issued date: March 15, 2021 F CC ID : DV8TMX100 UL Japan, Inc. Shonan EM C Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 CONTENTS PAGE SECTION 1: Customer information ......................................…

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Test Setup Photos

UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 APPENDIX 3: Photographs of test setup Conducted Emission Test Report No. 13451718S-R1 Page: 34 of 37 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 Radiated Spurious Emission Front below 30 MHz above 30 MHz Rear below 30 MHz, antenna: Vertical below 30 MHz, antenna: Horizontal below 1 GHz above 1 GHz Test Report No. 13451718S-R1 Page: 35 of 37 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 Pre-check of worst case position Module Antenna X-axis X-axis Y-axis Y-axis Z-axis Z-axis Test Report No. 13451718S-R1 Page: 36 of 37 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 Antenna terminal conducted tests End of Report Test Report No. 13451718S-R1 Page: 37 of 37

Contact Information

Applicant

Takashi Nomura(General Manager)
[email protected]81-3-5684-1540Fax: 81-3-5684-1875

Technical Contact

UL Japan, Inc.Toyokazu Imamura
[email protected]81-463-50-6400

1-22-3 Megumigaoka, Hiratsuka-shi · Kanagawa-ken · Japan

Test Firm

UL Japan, Inc. SHONAN EMC LABORATORYAkio Hayashi
[email protected]81-463-50-6400

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
195H608.0125 MHz - 613.9875 MHz800.00 µW8K50F1D2.5000000000 ppm
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Single Modular approval. Output power listed is EIRP with maximum antenna gain -6.1 dBi. This module shall be integrate to host product intended for the use of the Wireless Medical Telemetry Service per Part 95H. Compliance of this device in all final host configurations is the responsibility of the Grantee. The host integrator and end-users must be provided with specific operating instructions for satisfying RF exposure compliance. The host integrator must follow the integration instructions provided by the module manufacturer and ensure that the composite-system end product complies with the FCC requirements by a technical assessment or evaluation to the FCC rules and to KDB Publication 996369. The host integrator is instructed to ensure that the end user has no manual instructions to remove or install the device.

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