TÜV Rheinland Test Report: IKEA LED Lamp (LED2410R5NA)
Test Report Number: CN25OZJN 001
Client: IKEA of Sweden AB
Test Item: Self-ballasted LED lamps
Model/Type Number: LED2410R5NA
Test Specification: FCC CFR47 Part 15, Subpart C Section 15.247, RSS-Gen Issue 5, RSS-247 Issue 3, ANSI C63.10:2013
Date of Report: 2025-02-12
Testing Period: 2025-04-11 to 2025-06-02
Testing Laboratory: TÜV Rheinland (Shanghai) Co., Ltd.
Test Result: Pass
Test Summary
- 5.1.1 Antenna Requirement: Pass
- 5.1.2 6dB & 99% Bandwidth: Pass
- 5.1.3 Output Power: Pass
- 5.1.4 Power Spectral Density: Pass
- 5.1.5 Conducted Band Edge and out-of Band Emissions: Pass
- 5.2.1 Conducted Emission: Pass
- 5.3.1 Radiated Band-Edge: Pass
- 5.3.2 Radiated Spurious Emission: Pass
General Product Information
The Equipment Under Test (EUT) is a LED lamp supporting Bluetooth, Zigbee, and Thread. This report focuses on evaluating the RF characteristics of the Zigbee functionality.
Technical Specifications of EUT
Description | Self-ballasted LED lamps |
---|---|
Product Name | LED2410R5NA |
Operation Voltage | AC 120V, 60Hz |
Test Voltage | DC 3.3V (for RF conducted and radiated tests), AC 120V, 60Hz (for conducted emission test) |
RF Technical | 1) BLE, 2) Zigbee, 3) Thread |
Zigbee RF IC | SiMG301 |
Frequency Range | 2405~2480MHz |
Modulation Type | OQPSK |
Antenna Type | Internal Slot Antenna |
Antenna Gain | -1.31 dBi (declared by client) |
Operation Channel List (Zigbee)
Channel | Frequency [MHz] | Channel | Frequency [MHz] | Channel | Frequency [MHz] | Channel | Frequency [MHz] |
---|---|---|---|---|---|---|---|
11 | 2405 | 15 | 2425 | 19 | 2445 | 23 | 2465 |
12 | 2410 | 16 | 2430 | 20 | 2450 | 24 | 2470 |
13 | 2415 | 17 | 2435 | 21 | 2455 | 25 | 2475 |
14 | 2420 | 18 | 2440 | 22 | 2460 | 26 | 2480 |
Independent Operation Modes
The basic operation modes tested were Zigbee transmitting mode and Radio operating mode. Test frequencies included the lowest channel (2405 MHz), middle channel (2445 MHz), and highest channel (2480 MHz).
Test Setup and Operation Modes
Testing was performed using standard procedures (ANSI C63.10:2013) and test software (sscom 5.13.1). The EUT was configured to measure its maximum power level.
Auxiliary Equipment
Equipment | Manufacturer | Model |
---|---|---|
Laptop | Lenovo | 21AJ-S57N0J |
Mobile phone | Apple | iPhone 15 |
Loudspeaker | Apple | HomePod mini |
Remote control | IKEA | E2489 |
Countermeasures to achieve EMC Compliance: None were specified or required.
Test Results
5.1 Conducted Testing at Antenna Port
5.1.1 Antenna Requirement
The EUT utilizes an internal slot antenna with a declared gain of -1.31 dBi. It is permanently attached and not replaceable. The EUT complies with FCC 15.203, 15.204, and RSS-Gen 6.4 requirements regarding antenna usage and external controls.
5.1.2 6dB & 99% Bandwidth
Tests were conducted on channels 2405 MHz, 2445 MHz, and 2480 MHz. The measured 6dB bandwidths were 1.700 MHz, 1.700 MHz, and 1.700 MHz respectively, all within the specified limits. The 99% occupied bandwidths were 2.250 MHz, 2.235 MHz, and 2.250 MHz respectively, also meeting the requirements.
Graphical data for bandwidth measurements is available in the original document.
5.1.3 Output Power
Peak conducted output power measurements were taken at 2405 MHz, 2445 MHz, and 2480 MHz. The results were 9.2 dBm, 9.1 dBm, and 9.2 dBm, respectively. All values are well below the limit of 30 dBm.
5.1.4 Power Spectral Density
Power Spectral Density (PSD) was measured at 2405 MHz, 2445 MHz, and 2480 MHz. The measured PSD values were -1.950 dBm, -1.995 dBm, and -2.022 dBm, respectively. These values are within the limit of 8.0 dBm.
Graphical data for PSD measurements is available in the original document.
5.1.5 Conducted Band Edge and out-of Band Emissions
Conducted band edge and out-of-band emissions were tested. The results indicate compliance with the specified limits, as shown in the graphical data within the original document.
5.2 Emission in the Frequency Range up to 30MHz
5.2.1 Conducted Emission
Conducted emissions were measured on the L (Line) and N (Neutral) conductors. The measurements were performed using AC 120V, 60Hz power. The results show that the emissions are within the specified limits for both Quasi-Peak and Average detectors.
Graphical data and detailed tables for conducted emissions are provided in the original document.
5.3 Emission in the Frequency Range above 30MHz
5.3.1 Radiated Band-Edge
Radiated band-edge emissions were tested at 2405 MHz and 2480 MHz for both Horizontal (H) and Vertical (V) polarizations. The measurements confirm that the emissions at the band edges are within the regulatory limits.
Graphical data for radiated band-edge measurements is available in the original document.
5.3.2 Radiated Spurious Emission
Radiated spurious emissions were tested across various frequency ranges (30MHz to 1GHz, 1GHz to 7GHz, 7GHz to 18GHz) for both Horizontal (H) and Vertical (V) polarizations at 2405 MHz, 2445 MHz, and 2480 MHz. The results indicate that all measured spurious emissions are below the specified limits. No emissions were found in the 18GHz to 25GHz range.
Graphical data and detailed tables for radiated spurious emissions are provided in the original document.
Test Facilities and Equipment
Testing was conducted at TÜV Rheinland (Shanghai) Co., Ltd. facilities, which are accredited and registered with the FCC (Registration Number 930979) and Innovation, Science and Economic Development Canada (Filing Number 33038).
List of Test and Measurement Instruments
Equip. | Description | Model | Manufacturer | Due Date |
---|---|---|---|---|
EMC-C-196 | Wireless connectivity tester | CMW270 | Rohde & Schwarz | 23.08.2025 |
EMC-C-302 | Signal generator | SMB100B (6 GHz) | Rohde & Schwarz | 10.12.2025 |
EMC-C-303 | Vector Signal generator | SMW200A | Rohde & Schwarz | 10.12.2025 |
EMC-C-304 | OSP | OSP-B157W8 | Rohde & Schwarz | 10.12.2025 |
EMC-C-161 | Spectrum analyser | FSV40 | Rohde&Schwarz | 15.07.2025 |
EMC-C-018 | Double ridged horn antenna | BBHA 9120 D | Schwarzbeck | 24.03.2026 |
EMC-C-066 | EMI test receiver | ESCI | Rohde&Schwarz | 27.10.2025 |
EMC-C-068 | Broadband horn antenna | BBHA 9170 | Schwarzbeck | 18.06.2028 |
EMC-C-155 | BiLog antenna | CBL 6112D | Teseq | 24.03.2026 |
EMC-C-175 | Preamplifier | EMC051845SE | EMCI Taiwan | 24.07.2025 |
EMC-C-176 | Preamplifier | EMC184045SE | EMCI Taiwan | 24.07.2025 |
EMC-C-001 | 3 m semi-anechoic chamber | SAC3 | Frankonia | 03.12.2026 |
EMC-C-141 | Shielded enclosure | 10.055x3.605x3.000 | Frankonia | 08.11.2028 |
EMC-C-195 | EMI test receiver | ESR3 | Rohde&Schwarz | 03.08.2025 |
EMC-C-190 | Artificial mains network | ENV432 | Rohde&Schwarz | 11.10.2025 |
EMC-S-036 | RF measurement software | WMS32-WB (11.40.00) | Rohde&Schwarz | NA |
EMC-S-032 | EMI measurement software | EMC32-E+ (10.60.20) | Rohde&Schwarz | NA |
EMC-S-028 | EMI measurement software | EMC32-MEB (10.60.20) | Rohde&Schwarz | NA |
Measurement Uncertainty
Measurement uncertainty values are provided for different measurement types, indicating the precision of the test results.
Measurement Type | Frequency | Uncertainty |
---|---|---|
Antenna Port Conducted Emission | < 1GHz | ±0.39dB |
> 1GHz | ±0.68dB | |
Conducted Emission | 150kHz - 30MHz | ±2.33dB |
9kHz - 30MHz | ±2.93dB | |
Radiated Emission | 30MHz - 1GHz | ±5.34dB |
> 1GHz | ±5.40dB |
General Remarks and Notes
All test equipment used was calibrated according to the laboratory's calibration program and meets relevant standards. Traceability is ensured via the management system.
The document was digitally signed. Verification of the digital signature is available via go.tuv.com/digital-signature.
The decision rule for conformity statements is based on the "Zero Guard Band Rule" and "Simple Acceptance" as per ILAC G8:2019 and IEC Guide 115:2021, meaning measurement uncertainty is not factored into the pass/fail determination.