Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Framery Oy Declaration of Authorization We Company Name: Framery Oy Address: Patamaenkatu 7 City: Tampere 33900 Country: Finland Declare that Name Representative of agent: William Chung / Senior Director Agent Company name: Eurofins E&E Wireless Taiwan Co., Ltd. Address: No. 140-1, Changan Street, Bade District, City: Taoyuan Country: Taiwan Is authorized to apply for Certification of the following product(s) Product Name: Core Unit FCC ID: 2AX4J9010673 IC: 26702-9010673 on our behalf This is valid until December 31, 2027, or until FCC and IC certification are completed, whichever comes sooner. Date: 2026/6/1 Contact Person / Title: Tomi Nokelainen / Head of Product Development & Quality Tel.: +358405921050 E-mail: [email protected] Signature:
Label Location Label-9013334 Label-9016208
MPE Evaluation Report for FCC Report No.: USSC256245003 Issued Date: Apr. 13, 2026 Eurofins E&E Wireless Taiwan Co., Ltd. Page 1 of 13 Template: v01.11 MPE Evaluation Report for FCC Applicant Name : Framery Oy Applicant Address : Patamaenkatu 7, Tampere 33900, Finland Product Name : Core Unit Brand Name : Framery Model Number : 9010673 FCC ID : 2AX4J9010673 Report Number : USSC256245003 Compliant Standards : FCC 47 CFR §2.1091 Sample Received Date : Jun. 18, 2025 Report Issued Date : Apr. 13, 2026 The above equipment has been tested by Eurofins E&E Wireless Taiwan Co., Ltd., and found compliance with the requirement of the above standards. The test record, data evaluation & Device Under Test (DUT) configurations represented herein are true and accurate accounts of the measurements of the sample’s characteristics under the conditions specified in this report. Note: 1. The test results are valid only for samples provided by customers and under the test conditions described in this report. 2. This report shall not be reproduced except in full, without the written approval of Eurofins E&E Wireless Taiwan Co., Ltd. 3. The relevant information is provided by customers in this test report. According to the correctness, appropriateness or completeness of the information provided by the customer, if there is any doubt or error in the information which affects the validity of the test results, the laboratory does not take the responsibility. Approved By: Roy Wu / SAR Technical Director MPE Evaluation Report for FCC Report No.: USSC256245003 Issued Date: Apr. 13, 2026 Eurofins E&E Wireless Taiwan Co., Ltd. Page 2 of 13 Template: v01.11 Table of Contents Revision History ........................................................................................................................................................................... 3 1. Test Regulations .................................................................................................................................................................... 4 1.1. Reference Standard and Guidance .............................................................................................................................. 4 1.2. RF Exposure Limits ...................................................................................................................................................... 4 2. Information of Testing Laboratory ....................................................................................................................................... 6 3. DUT (Device Under Test) Information .................................................................................................................................. 7 3.1. Device Overview .......................................................................................................................................................... 7 4. Maximum Permissible Exposure (MPE) Assessment ......................................................................................................... 8 4.1. Introduction .................................................................................................................................................................. 8 4.2. Determination of Exemption for Low Power Devices ................................................................................................... 8 4.3. Standalone Maximum Permissible Exposure Evaluation ........................................................................................... 11 4.4. Total Exposure Ratio Evaluation for Simultaneous Transmission............................................................................... 12 MPE Evaluation Report for FCC Report No.: USSC256245003 Issued Date: Apr. 13, 2026 Eurofins E&E Wireless Taiwan Co., Ltd. Page 3 of 13 Template: v01.11 Revision History Rev. Issued Date Description Revised by 00 Apr. 13, 2026 Initial Issue Rowan Hsieh MPE Evaluation Report for FCC Report No.: USSC256245003 Issued Date: Apr. 13, 2026 Eurofins E&E Wireless Taiwan Co., Ltd. Page 4 of 13 Template: v01.11 1. Test Regulations 1.1. Reference Standard and Guidance The Maximum Permissible Exposure (MPE) evaluation documented in this report were performed in accordance with following FCC published KDB guidance and standard: 47 CFR Part 1.1307 47 CFR Part 1.1310 47 CFR Part 2.1091 KDB Publication 447498 D01 – General RF Exposure Guidance v06 KDB Publication 447498 D04 – Interim General RF Exposure Guidance v01 1.2. RF Exposure Limits According to 47 CFR §1.1310, for operations within the frequency range of 300 kHz and 6 GHz (inclusive), the limits for maximum permissible exposure (MPE), derived from whole-body SAR limits and listed in below table, may be used instead of whole-body SAR limits to evaluate the environmental impact of human exposure to RF radiation as specified in §1.1307(b), except for portable devices as defined in §2.1093 of this chapter as these evaluations shall be performed according to the SAR provisions in §2.1093. At operating frequencies above 6 GHz, the MPE limits listed in below table shall be used in all cases to evaluate the environmental impact of human exposure to RF radiation as specified in §1.1307(b). Limits for Maximum Permissible Exposure (MPE) to Radiofrequency Electromagnetic Fields Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Averaging Time (minutes) (i) Limits for Occupational / Controlled Exposure 0.3 – 3.0 614 1.63 *(100) ≤ 6 3.0 – 30 1842 / f 4.89 / f *(900 / f 2 ) < 6 30 – 300 61.4 0.163 1.0 < 6 300 – 1500 N/A N/A f / 300 < 6 1500 – 100000 N/A N/A 5 < 6 (ii) Limits for General Population / Uncontrolled Exposure 0.3 – 1.34 614 1.63 *(100) < 30 1.34 – 30 824 / f 2.19 / f *(180 / f 2 ) < 30 30 – 300 27.5 0.073 0.2 < 30 300 – 1500 N/A N/A f / 1500 < 30 1500 – 100000 N/A N/A 1.0 < 30 Notes: 1. f = frequency in MHz. * = Plane-wave equivalent power density. MPE E…
Text truncated - open the document above for the full version.
IWR6843AOP Single-Chip 60- to 64-GHz mmWave Sensor Antennas-On-Package (AOP) 1 Features •FMCW transceiver –Integrated 4 receivers and 3 transmitters Antennas-On-Package (AOP) –Integrated PLL, transmitter, receiver, Baseband, and ADC –60- to 64-GHz coverage with 4-GHz continuous bandwidth –Supports 6-bit phase shifter for TX Beam forming –Ultra-accurate chirp engine based on fractional- N PLL •Built-in calibration and self-test –Arm ® Cortex ® -R4F-based radio control system –Built-in firmware (ROM) –Self-calibrating system across process and temperature –Embedded self-monitoring with no host processor involvement on Functional Safety- Compliant devices •C674x DSP for advanced signal processing •Memory compression •Hardware accelerator for FFT, filtering, and CFAR processing •Arm-R4F microcontroller for object detection, and interface control –Supports autonomous mode (loading user application from QSPI flash memory) •Internal memory with ECC –1.75 MB, divided into MSS program RAM (512 KB), MSS data RAM (192 KB), DSP L1 RAM (64KB) and L2 RAM (256 KB), and L3 radar data cube RAM (768 KB) –Technical reference manual includes allowed size modifications •Device Security (on select part numbers) –Secure authenticated and encrypted boot support –Customer programmable root keys, symmetric keys (256 bit), Asymmetric keys (up to RSA-2K) with Key revocation capability –Crypto software accelerators - PKA , AES (up to 256 bit), SHA (up to 256 bit), TRNG/DRGB •Other interfaces available to user application –Up to 6 ADC channels (low sample rate monitoring) –Up to 2 SPI ports –Up to 2 UARTs –1 CAN-FD interface –I2C –GPIOs –2 lane LVDS interface for raw ADC data and debug instrumentation •Functional Safety-Compliant –Developed for functional safety applications –Documentation available to aid IEC 61508 functional safety system design up to SIL 3 –Hardware integrity up to SIL-2 –Safety-related certification •IEC 61508 certified upto SIL 2 by TUV SUD •Power management –Built-in LDO network for enhanced PSRR –I/Os support dual voltage 3.3 V/1.8 V •Clock source –40.0 MHz crystal with internal oscillator –Supports external oscillator at 40 MHz –Supports externally driven clock (square/sine) at 40 MHz •Easy hardware design –0.8-mm pitch, 180-pin 15 mm × 15 mm FCBGA package (ALP) for easy assembly and low-cost PCB design –Small solution size •Operating conditions –Junction temp range: –40°C to 105°C IWR6843AOP SWRS237B – APRIL 2020 – REVISED JULY 2022 An IMPORTANT NOTICE at the end of this data sheet addresses availability, warranty, changes, use in safety-critical applications, intellectual property matters and other important disclaimers. PRODUCTION DATA. 2 Applications •Industrial sensor for measuring range, velocity, and angle •Building automation •Displacement sensing •Gesture •Robotics •Traffic monitoring •Proximity and position sensing •Security and surveillance •Factory automation safety guards •People counting •Motion detection •Occupancy detection 3 Description The IWR6843AOP is an Antenna-on-Package (AOP) device that is an evolution within the single-chip radar device family from Texas Instruments (TI). This device enables unprecedented levels of integration in an extremely small form factor and is an ideal solution for low power, self-monitored, ultra-accurate radar systems in the industrial space. Multiple variants are currently available including Functional Safety-Compliant devices (SIL2) and non-functional safety devices. It integrates a DSP subsystem, which contains TI's high-performance C674x DSP for the Radar Signal processing. The device includes a BIST processor subsystem, which is responsible for radio configuration, control, and calibration. Additionally, the device includes a user programmable Arm Cortex-R4F based for automotive interfacing. The Hardware Accelerator block (HWA) can perform radar processing and can offload the DSP in order to execute higher level algorithms. Simple programming model changes can enable a wide variety of sensor applications with the possibility of dynamic reconfiguration for implementing a multimode sensor. Additionally, the device is provided as a complete platform solution including reference hardware design, software drivers, sample configurations, API guide, and user documentation. Device Information PART NUMBER (2) PACKAGE (1) BODY SIZETRAY / TAPE AND REEL IWR6843ARQGALPFCBGA (180)15 mm × 15 mmTray IWR6843ARQGALPRFCBGA (180)15 mm × 15 mmTape and Reel IWR6843ARQSALPFCBGA (180)15 mm × 15 mmTray IWR6843ARQSALPRFCBGA (180)15 mm × 15 mmTape and Reel IWR6843ARBGALP (3) FCBGA (180)15 mm × 15 mmTray IWR6843ARBGALPR (3) FCBGA (180)15 mm × 15 mmTape and Reel (1)For more information, see Section 13, Mechanical, Packaging, and Orderable Information. (2)For more information, see Section 12.1, Device Nomenclature. (3)Functional Safety-Compliant, SIL-2 device orderable part number (OPN). IWR6843AOP SWRS237B – APRIL 2020 – REVISED JULY 2022 www.ti.com 2Submit Document Feedback Copyright © 2022 Texas Instruments Incorporated Product Folder Links: IWR6843AOP 4 Functional Block Diagram Figure 4-1 shows the functional block diagram of the device. IF ADC Digital Front-End (Decimation Filter Chain) LNA IF ADC LNA IF ADC LNA IF ADC LNA PA¥≈ PA¥≈ Synth (20 GHz) Ramp Generator x3 Osc. Radio (BIST) Processor (For RF Calibration & Self-Test ±TI Programmed) Prog RAM & ROM Data RAM GPADC Temp Cortex R4F @ 200MHz (User Programmable) Prog RAM (512kB) Data RAM (192kB) Boot ROM QSPI SPI SPI / I2C UARTs CAN-FD DMA Test/ Debug ADC Buffer LVDS RF/Analog Sub-System Radio Processor Sub-System (TI Programmed) Main Sub-System (Customer Programmed) Serial Flash Interface Optional External MCU Interface PMIC Control Primary Communication Interfaces (Automotive) JTAG For Debug/ Development High-Speed ADC Output Interface (For Recording) 6 DSP Sub-System (Customer Programmed) Mailbox Bus Matrix HIL High-Speed Input For Hardware-In-Loop Verification C674x DSP @ 600 MHz (AWR6843 only) L1P (32kB)…
Text truncated - open the document above for the full version.
RF Test Report Report No.: USRC256245001 Issued Date: Apr. 15, 2026 Eurofins E&E Wireless Taiwan Co., Ltd. Page 1 of 41 Template : v05.00 RF Test Report Applicant : Framery Oy Product Name : Core Unit Trade Name : Framery Model Number : 9010673 Applicable Standard : FCC 47 CFR PART 15 SUBPART C ANSI C63.10:2020 Received Date : Jun. 18, 2025 Test Period : Jul. 21, 2025 ~ Aug. 04, 2025 Issued Date : Apr. 15, 2026 Issued by Eurofins E&E Wireless Taiwan Co., Ltd. No. 140-1, Changan Street, Bade District, Taoyuan City, Taiwan (R.O.C.) Tel:+886-3-2710188 / Fax:+886-3-2710190 Taiwan Accreditation Foundation accreditation number: 1330 Frequency Range: 9 kHz to 325 GHz Bade test site: Test Firm Registration Number: 226252 Test Firm Designation Number: TW0010 Wugu test site: Test Firm Registration Number: 191812 Test Firm Designation Number: TW0034 Note: 1.The test results are valid only for samples provided by customers and under the test conditions described in this report. 2.This report shall not be reproduced except in full, without the written approval of Eurofins E&E Wireless Taiwan Co., Ltd. 3.The relevant information is provided by customers in this test report. According to the correctness, appropriateness or completeness of the information provided by the customer, if there is any doubt or error in the information which affects the validity of the test results, the laboratory does not take the responsibility. RF Test Report Report No.: USRC256245001 Issued Date: Apr. 15, 2026 Eurofins E&E Wireless Taiwan Co., Ltd. Page 2 of 41 Template : v05.00 Revision History Rev. Issued Date Description Revised by 00 Apr. 15, 2026 Initial Issue Snow Wang RF Test Report Report No.: USRC256245001 Issued Date: Apr. 15, 2026 Eurofins E&E Wireless Taiwan Co., Ltd. Page 3 of 41 Template : v05.00 Verification of Compliance Applicant : Framery Oy Product Name : Core Unit Trade Name : Framery Model Number : 9010673 FCC ID : 2AX4J9010673 Applicable Standard : FCC 47 CFR PART 15 SUBPART C ANSI C63.10:2020 Test Result : Complied Issued By : Eurofins E&E Wireless Taiwan Co., Ltd. No. 140-1, Changan Street, Bade District, Taoyuan City, Taiwan (R.O.C.) Tel:+886-3-2710188 / Fax:+886-3-2710190 Taiwan Accreditation Foundation accreditation number: 1330 Eurofins E&E Wireless Taiwan Co., Ltd. tested the above equipment in accordance with the requirements set forth in the above standards. All indications of Pass/Fail in this report are opinions expressed by Eurofins E&E Wireless Taiwan Co., Ltd. based on interpretations and/or observations of test results. The test results show that the equipment tested is capable of demonstrating compliance with the requirements as documented in this report. Approved By : RF Test Report Report No.: USRC256245001 Issued Date: Apr. 15, 2026 Eurofins E&E Wireless Taiwan Co., Ltd. Page 4 of 41 Template : v05.00 TABLE OF CONTENTS 1 General Information ........................................................................................................ 5 1.1. Summary of Test Result .......................................................................................... 5 1.2. Testing Location ...................................................................................................... 6 1.3. Measurement Uncertainty ....................................................................................... 6 1.4. Test Site Environment ............................................................................................. 6 2 EUT Description............................................................................................................... 7 3 Test Methodology ............................................................................................................ 8 3.1. Mode of Operation .................................................................................................. 8 3.2. EUT Test Step ......................................................................................................... 9 3.3. Configuration of Test System Details ...................................................................... 9 3.4. Test Instruments ................................................................................................... 10 4 Measurement Procedure ............................................................................................... 13 4.1. AC Power Line Conducted Emission Measurement ............................................. 13 4.2. Radiated Emission Measurement ......................................................................... 15 4.3. 99% Occupied Bandwidth Measurement .............................................................. 23 4.4. Frequency Stability Measurement ........................................................................ 24 4.5. Antenna Measurement ......................................................................................... 25 5 Test Results ................................................................................................................... 26 5.1. Conducted Emission ............................................................................................. 26 5.2. Radiated Emission Test Results ........................................................................... 28 5.3. Power density Test Results ................................................................................... 32 5.4. Output Power Test Results ................................................................................... 38 5.5. 20dB & 99 Occupied Bandwidth Test Results ....................................................... 40 5.6. Frequency Stability Test Results ........................................................................... 41 Appendix A. Test Setup Photographs RF Test Report Report No.: USRC256245001 Issued Date: Apr. 15, 2026 Eurofins E&E Wireless Taiwan Co., Ltd. Page 5 of 41 Template : v05.00 1 General Information 1.1. Summary of Test Result FCC Standard Item Result Rem…
Text truncated - open the document above for the full version.
1700 W Irving Park Rd Suite 209A · Chicago, Illinois, 60613 · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.255 | 60.00 GHz - 64.00 GHz | 3.05 mW |