FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. A&D Co Ltd/
  3. KSN-52805ND06

KSN-52805ND06Digital Blood Pressure Monitor

A&D Co Ltd

Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Mar 25, 2026
Application Purpose
Original Equipment
Equipment Note
Digital Blood Pressure Monitor
Frequency Range
2402.00000000 - 2480.00000000
Company
A&D Co Ltd
Country
Japan

Documents & Files

Select a file to view

Attestation Statements

↗
↗
↗
↗

Cover Letter(s)

↗
↗

ID Label/Location Info

↗

RF Exposure Info

↗

Test Report

↗
↗

Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

ID Label/Location Info

Label format and ID location Label

RF Exposure Info

FCC ID: KSN-52805ND06 Test Report – Products Prüfbericht - Produkte RF Exposure Statement: JP269BXN 002 Page 1 of 1 Seite 1 von 1 Client: A&D Co Ltd 1-243 Asahi, Kitamoto-city, Saitama, 364-8585, Japan Test item: Digital Blood Pressure Monitor Identification: UA-8010BLEWM FCC Requirement According to §1.1307 (b)(1)(i)(A) and KDB 447498 D04 v01, transmitter device is qualified as exemption of RF human exposure, when the transmitter power is below a threshold calculated by its relevant formula defined in §1.1307 (b)(3)(i)(B): Transmitter Frequency [MHz] ERP20 cm [mW] Minimum Separation Distance d [cm] Threshold P th [mW] BLE 2450 3060 0.5 2.7 Measurement Result The maximum ERP from the transmitter (EUT) is given in the following table: Transmitter Freq. Range [MHz] Cond. Power [dBm] Antenna Gain [dBi] Maximum ERP [mW] BLE 2402-2480 -0.65 0.89 0.64 Note: The conducted power of BLE is cited from the test report JP26FG0V 002 by TUV Rheinland Japan. The ERP in mW is calculated in conjunction with the following formula: ERP [mW] = 10 (Conducted Power [dBm] + Antenna Gain [dBi] - 2.15)/10 Conclusion This transmitter is classified as Portable Devices by the client. As per the internal layout of the EUT, the shortest distance from the antenna to an outer surface of the enclosure can maintain more than 5 mm. Eventually, SAR evaluation is not required, since the ERP is below the FCC SAR exemption threshold P th at the separation distance of 5 mm between the body of a user and the transmitter. Hence, the device can be qualified as exemption from Routine Environmental Evaluation. TÜV Rheinland Japan Ltd. – Global Technology Assessment Center 4-25-2 Kita-Yamata, Tsuzuki-ku, Yokohama 224-0021, Japan

Test Report

Rev.1.01 1 FCC Part 15 Antenna Gain Test Report (UA-8010BLEWM) Rev.1.01 2 Table of Contents 1. Overview .............................................................................................................................................. 3 2. Test Objective ...................................................................................................................................... 4 3. Test Equipment ................................................................................................................................... 5 4. Test Method ......................................................................................................................................... 6 5. Test Information .................................................................................................................................. 8 6. Test Setup Photos ................................................................................................................................ 9 7. Test Result ......................................................................................................................................... 10 8. Antenna Photos or Drawings ........................................................................................................... 13 9. Revision History ................................................................................................................................ 14 Rev.1.01 3 1. Overview This test report presents the results of measuring the antenna gain for the Equipment Under Test (EUT) using the standard antenna method. Rev.1.01 4 2. Test Objective To measure the antenna gain of a specific EUT using the standard antenna method and evaluate its performance. This test report demonstrates compliance with the antenna gain reporting requirements of FCC 2.1033(b)(4), 15.203, 15.212. Rev.1.01 5 3. Test Equipment The equipment used for this test is shown below. ・Equipment Under Test (EUT): Model: UA-8010BLEWM Antenna Type: Pattern Antenna Antenna Manufacturer: A&D Company, Limited Operating frequency range: 2402-2480MHz (ISM) ・Antenna Measurement System: Fully anechoic chamber with Double-Ridged Horn Antenna, mechanical positioners of Phi axes. Horn Antenna: EMCO 3115 Calibration Date: 03/06/2024 ・Spectrum analyzer: Rohde & Schwarz FSW26 Calibration Date: 07/05/2024 ・Signal Generators Keysight Technology N1513B Calibration Date: 07/05/2024 ・Commercial Test Software: MATEOS.NET sold by Microwave Factory Co., Ltd. Rev.1.01 6 4. Test Method The standard antenna method, which is an industry standard measurement method, is used to measure the antenna gain and directivity of the EUT. Prepare a transmit antenna and a reference antenna, and install them in the anechoic chamber at a certain distance. Measuring the received power of reference antenna Prs [dBm] in this state. Fig.1 Measurement of Reference Antenna Install the test antenna (EUT) in place of the reference antenna, and measuring the received power of EUT Prt [dBm]. Fig.2 Measurement of EUT Network Analyzer Reference Antenna Transmit Antenna Anechoic chamber Prs Pt Gs Network Analyzer Transmit Antenna Anechoic chamber PrtPt Gt EUT Rotate :φ(deg) Rev.1.01 7 EUT gain Gt [dBi] is calculated from the reference antenna gain Gs [dBi] and received power of reference antenna Prs [dBm] using the following formula. Gt = Prt – Prs + Gs Also, measurement of antenna directivity by rotating the EUT in the Phi axes direction. Fig.3 Antenna directivity diagram Rev.1.01 8 5. Test Information Test Lab: Telecom Engineering Center Test Lab Address: 580-2, Takatsukashinden, Matsudo-city, Chiba, Japan Test Date: 9, Jun, 2026 Test Person: Hiroto Yamaguchi Rev.1.01 9 6. Test Setup Photos The device containing the integral antenna is placed on the styrofoam pylon. Definition of antenna measurement axis EUT Rev.1.01 10 7. Test Result The following is the result of the antenna test. (1)VSWR Rev.1.01 11 (2)Directivity XY-Plane ZY-Plane XZ-Plane Rev.1.01 12 (3)Antenna Efficiency & Maximum Gain 2400MHz 2450MHz 2500MHz Antenna Efficiency -3.27dB -3.15dB -3.15dB XY-Plane ZY-Plane XZ-Plane Maximum Gain +0.89dBi -1.35dBi -2.25dBi Rev.1.01 13 8. Antenna Photos or Drawings Antenna Dimension RF circuit Rev.1.01 14 9. Revision History Revision# Date Description of Change 1.00 13/01/2026 Original 1.01 16/03/2026 Corrected a sign error in the antenna gain table. END OF DOCUMENT A&D Company, Limited 1-243, Asahi, Kitamoto-shi, Saitama-ken, 364-8585 Japan TEL: 81-48-593-1627 FAX: 81-48-593-1684 WEB: www.aandd.jp

Test Report

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est Report – Products Prüfbericht – Produkte Test Report No.: Prüfbericht-Nr.: JP26FG0V 002 Page 2 of 69 Seite 2 von 69 Revisions Report No. Issue date Changes / Remarks JP26FG0V 001 2026-02-26 Original document JP26FG0V 002 2026-03-16 Corrected Antenna gain in section 3.2 Added a comment in Figure 1 Corrected typo in section 4.5 Remarks 1 The equipment used during the specified testing period was calibrated according to the test laboratory calibration program. The equipment fulfils the requirements included in the relevant standards. The traceability of the test equipment used is ensured by compliance with the regulations of the laboratory’s management system. 2 Unless otherwise specified by the applied standard(s), the decision rule used in this test report for statements of conformity based on numerical measurement results is the “Zero Guard Band”/“Simple Acceptance” rule in accordance with ILAC G8:2019 and IEC Guide 115:2021. When the “Zero Guard Band” rule is applied, measurement uncertainty is not taken in account. For additional information on the risk resulting from the application of the “Zero Guard Band” decision rule, refer to ILAC G8:2019. FCC ID: KSN-52805ND06 Test Report – Products Prüfbericht – Produkte Test Report No.: Prüfbericht-Nr.: JP26FG0V 002 Page 3 of 69 Seite 3 von 69 Contents 1. General Remarks ................................................................................................ 5 1.1 Test Specifications ...................................................................................................................... 5 1.2 Test Report Purpose ................................................................................................................... 6 1.3 Complementary Materials ............................................................................................................ 6 2. Test Sites ............................................................................................................. 7 2.1 Test Facilities .............................................................................................................................. 7 2.2 List of Test and Measurement Instruments .................................................................................. 7 2.3 Measurement Uncertainty ............................................................................................................ 9 3. General Product Information ........................................................................... 10 3.1 Product Function and Intended Use ........................................................................................... 10 3.2 Ratings and System Details ....................................................................................................... 10 3.3 Noise Generating and Noise Suppressing Parts......................................................................... 11 3.4 Submitted Documents and Information ...................................................................................... 11 4. Test Setup and Operation Modes .................................................................... 12 4.1 Principle of Test Configuration Selection .................................................................................... 12 4.2 Operation Modes ....................................................................................................................... 12 4.3 Physical Configuration for Testing.............................................................................................. 13 4.4 Test Software ............................................................................................................................ 14 4.5 Special Accessories…

Text truncated - open the document above for the full version.

Contact Information

Applicant

Seiji Haijima
[email protected]Fax: 048-593-1684

Technical Contact

A&D Engineering, Inc.Adam Huddle
[email protected]

4622 Runway Blvd · Ann Arbor,, Michigan, 48108 · United States

Test Firm

TUV Rheinland Japan Ltd., Global Technology AssessMinoru Yamanaka
[email protected]Fax: 81-45-914-3347

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz1.00 mW
Confidentiality
Long Term
Grant Notes
Power listed is peak conducted output power. Co-location of this transmitter with the other transmitters that operate simultaneously are required to be evaluated using the FCC multi-transmitter procedures.

Other Applications from A&D Co Ltd

KSN-52805ND05

Digital Blood Pressure Monitor

Mar 25, 2026

Equipment Class

DTS - Digital Transmission System
KSN-52805ND02

Digital Blood Pressure Monitor

Aug 18, 2024

Equipment Class

DTS - Digital Transmission System
Digital Blood Pressure Monitor - FCC ID KSN-UA662L - A&D Co Ltd
KSN-UA662L

Digital Blood Pressure Monitor

Sep 24, 2023

Equipment Class

DTS - Digital Transmission System
Bluetooth Low Energy (v4.2) module - FCC ID KSNPZ7128 - A&D Co Ltd
KSNPZ7128

Bluetooth Low Energy (v4.2) module

Jan 21, 2021

Equipment Class

DTS - Digital Transmission System
Wireless Module - FCC ID KSNAD1321-10MW - A&D Co Ltd
KSNAD1321-10MW

Wireless Module

Aug 08, 2013

Equipment Class

DTS - Digital Transmission System