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Test Report for EN 300 328 v2.1.1
Product name : BT OEM
Applicant : eldoLED B.V.
Test report No. : 171100201 01 Ver 1.00
Report number: 171100201 01 Ver 1.00
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Laboratory information
Accreditation Telefication complies with the accreditation criteria for test laboratories as laid down in ISO/IEC 17025:2005. The accreditation covers the quality system of the laboratory as well as the specific activities as described in the authorized annex bearing the accreditation number L021 and is granted on 30 November 1990 by the Dutch Council For Accreditation (RvA: Raad voor Accreditatie). Documentation The test report must always be reproduced in full; reproduction of an excerpt only is subject to written approval of the testing laboratory. The documentation of the testing performed on the tested devices is archived for 10 years at Telefication Netherland Testing Location
Test Site Telefication BV
Test Site location Edisonstraat 12a 6902 PK Zevenaar The Netherlands Tel. +31889983600 Fax. +31316583189
Report number: 171100201 01 Ver 1.00
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Revision History
Version Date Remarks By
v0.50 12-12-2017 First draft version RVB
v1.00 21-02-2018 Release version RVB
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Table of Contents Revision History ............................................................................................................................................... 2 Summary of Test results .................................................................................................................................. 6 1 General Description ................................................................................................................................. 7
1.1 Applicant ............................................................................................................................................... 7 1.2 Manufacturer ........................................................................................................................................ 7 1.3 Tested Equipment Under Test (EUT) ..................................................................................................... 7 1.4 Product specifications of Equipment under test ................................................................................... 8 1.5 Modification of the Equipment Under Test (EUT) ................................................................................ 8 1.6 Observations and remarks .................................................................................................................... 8 1.7 Environmental conditions ..................................................................................................................... 8 1.8 Measurement standards ....................................................................................................................... 8 1.9 Applicable standards ............................................................................................................................. 8 1.10 Conclusions ........................................................................................................................................... 9
2 Test configuration of the Equipment Under Test .................................................................................... 10 2.1 Test mode ........................................................................................................................................... 10 2.2 Tested channels and Data rates .......................................................................................................... 10 2.3 Conducted Test setups ........................................................................................................................ 10 2.4 Radiated Test setup............................................................................................................................. 11 2.5 Equipment used in the test configuration .......................................................................................... 12
3 Test results ............................................................................................................................................. 13 3.1 RF output power Measurement .......................................................................................................... 13
3.1.1 Limit ................................................................................................................................................ 13 3.1.2 Measurement instruments ............................................................................................................. 13 3.1.3 Test setup ....................................................................................................................................... 13 3.1.4 Test procedure ................................................................................................................................ 13 3.1.5 Test Results of the RF output power Measurement ....................................................................... 13
3.2 99% Occupied Bandwidth ................................................................................................................... 14 3.2.1 Limit ................................................................................................................................................ 14 3.2.2 Measurement instruments ............................................................................................................. 14 3.2.3 Test setup ....................................................................................................................................... 14 3.2.4 Test procedure ................................................................................................................................ 14 3.2.5 Test results of the 99% Occupied Bandwidth Measurement ......................................................... 14 Plots of the 99% Occupied Bandwidth Measurement .................................................................................. 15
3.3 Power Spectral Density ....................................................................................................................... 16 3.3.1 Limit ................................................................................................................................................ 16 3.3.2 Measurement instruments ............................................................................................................. 16 3.3.3 Test setup ....................................................................................................................................... 16
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3.3.4 Test procedure ................................................................................................................................ 16 3.3.5 Test results of Power Spectral Density Measurement.................................................................... 16
3.4 Out-of-Band Emissions ........................................................................................................................ 17 3.4.1 Limit ................................................................................................................................................ 17 3.4.2 Measurement instruments ............................................................................................................. 17 3.4.3 Test setup ....................................................................................................................................... 17 3.4.4 Test procedure ................................................................................................................................ 17 3.4.5 Test results of the OOB Measurements .......................................................................................... 17
3.5 TX Radiated Spurious Emissions Measurement .................................................................................. 18 3.5.1 Limit ................................................................................................................................................ 18 3.5.2 Measurement instruments ............................................................................................................. 18 3.5.3 Test setup ....................................................................................................................................... 18 3.5.4 Test procedure ................................................................................................................................ 18 3.5.5 Test results of TX Radiated Spurious Emissions Measurement ...................................................... 18 3.5.6 Plots of the TX Radiated Spurious Emissions Measurement .......................................................... 19 3.5.7 Measurement Uncertainty ............................................................................................................. 27
3.6 Radiated RX Spurious Emissions Measurement .................................................................................. 28 3.6.1 Limit ................................................................................................................................................ 28 3.6.2 Measurement instruments ............................................................................................................. 28 3.6.3 Test setup ....................................................................................................................................... 28 3.6.4 Test procedure ................................................................................................................................ 28 3.6.5 Test results of RX Radiated Spurious Emissions Measurement ...................................................... 28 3.6.6 Plots of the RX Radiated Spurious Emissions Measurement .......................................................... 29 3.6.7 Measurement Uncertainty ............................................................................................................. 37
3.7 Receiver blocking measurement ......................................................................................................... 38 3.7.1 Limit ................................................................................................................................................ 38 3.7.2 Measurement instruments ............................................................................................................. 38 3.7.3 Test setup ....................................................................................................................................... 38 3.7.4 Test procedure ................................................................................................................................ 38 3.7.5 Test results of the Receiver Blocking measurement....................................................................... 38
Photo Module ................................................................................................................................................ 39 1 External Photos ...................................................................................................................................... 40
1.1 Top view Linear ................................................................................................................................... 40 1.2 Bottom view Linear ............................................................................................................................. 40 1.3 Top view Stand Alone .......................................................................................................................... 41 1.4 Bottom view Stand Alone.................................................................................................................... 41
2 Internal Photos ...................................................................................................................................... 42 2.1 Bottom PCB view ................................................................................................................................. 42
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2.2 Top PCB view ....................................................................................................................................... 42 3 Test setup Photos ................................................................................................................................... 43
3.1 Radiated emission 30 - 1000 MHz ....................................................................................................... 43 3.2 Radiated emission 1 - 12.75 GHz ......................................................................................................... 43
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Summary of Test results
EN 300 328 v2.1.1 Description Section in report Verdict
4.3.2.1 RF output power 3.1 Pass
4.3.2.7 Occupied bandwidth 3.2 Pass
4.3.2.3 Power spectral density 3.3 Pass
4.3.2.8 Out- of-Band Spurious emissions 3.4 Pass
4.3.2.9 Tx spurious emissions 3.5 Pass
4.3.2.10 RX Spurious emissions 3.6 Pass
4.3.2.11 RX blocking 3.7 Pass
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1 General Description
1.1 Applicant
Client name: eldoLED B.V Address Science Park Eindhoven 5125 Son ,Eindhoven, The
Netherlands Contact name: Mr. R. Bremmert E-mail: Rob.bremmert@eldoled.com
1.2 Manufacturer
Manufacturer name: eldoLED B.V Address: Science Park Eindhoven 5125 Son ,Eindhoven, The
Netherlands
Contact name: Mr. R. Bremmert E-mail: Rob.bremmert@eldoled.com
1.3 Tested Equipment Under Test (EUT)
Product name: BT2 Brand name: eldoLEd Product type: Bluetooth Radio Module Model(s): Software version: V21.110 / 20.30 Hardware version: Rev10 Date of receipt 30-11-2017 Tests started: 30-11-2017 Testing ended: 30-11-2017
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1.4 Product specifications of Equipment under test
TX Frequency range (MHz): 2400 2483.5 RX frequency range (MHz): 2400 2483.5 Maximum output power to antenna (dBm): 4.2 Antenna type : Chip or an external Pifa Antenna gain (dBi): Chip: 0.5
External Pifa:2 Type of modulation: GFSK Receiver category: 2
1.5 Modification of the Equipment Under Test (EUT)
None.
1.6 Observations and remarks
Models:
Main/variant: Name: Trademark Software ver. Firmware: Antenna Enclosure Type:
Main BT OEM
EldoLED
V21.110
-- -- -- Variant BT-L1C1 Casambi Chip Linear Variant BT-L2C1 Casambi External pifa Linear Variant BT-S1C1 Casambi Chip Standalone Variant BT-L1A1 20.30 Atrius Chip Linear Variant BT-L2A1 20.30 Atrius External pifa Linear Variant BT-S1A1 20.30 Atrius Chip Standalone
1.7 Environmental conditions
Test date 30-11-2017 Ambient temperature 20 °C Humidity 47.1 %
1.8 Measurement standards
EN 300 328 v2.1.1
1.9 Applicable standards
According to the specifications of the manufacturer, the EUT must comply with the requirements of the following standards:
EN 300 328 v2.1.1
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1.10 Conclusions
The sample of the product showed NO NON-COMPLIANCES to the specifications stated in paragraph 1.9 of this report. The results of the test as stated in this report, are exclusively applicable to the product items as identified in this report. Telefication accepts no responsibility for any properties of product items in this test report, which are not supported by the tests as specified in paragraph 1.9 All tests are performed by: Name : ing. R. van Barneveld Review of test methods and report by: Name : ing P.A. Suringa The above conclusions have been verified by the following signatory: Date : 02-03-2018 Name : ing. K.A. Roes Function : Coordinator Radio Laboratory Signature :
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2 Test configuration of the Equipment Under Test
2.1 Test mode
The applicant provided test mode firmware for the EUT, in which it was possible to configure the EUT into different test channels.
2.2 Tested channels and Data rates
Technology Channels Data rate Frequency (MHz)
Bluetooth Low energy 1 (Low) 1 Mbps 2402
17 (Mid) 1 Mbps 2440 39 (High) 1 Mbps 2480
2.3 Conducted Test setups
Test setup for E.I.R.P under extreme conditions
Test Setup for receiver tests: Receiver Blocking
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2.4 Radiated Test setup
Radiated emissions test setup 30 MHz - 1 GHz
Radiated emissions test setup above 1 GHz
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2.5 Equipment used in the test configuration
Description Manufacturer Model ID Used at Par.
Spectrum Analyzer Rohde & Schwarz FSV40 TE 01269 3.2 -3.6 Signal Generator Rohde & Schwarz SMBV100a TE 01280 3.7
Power sensor DARE RPR3006W TE 11140 3.1 Horn Antenna EMCO The Electro
Mechanics Co 3115 TE 00531 3.5, 3.6
Climate chamber Votsch VT4002EMC TE 01288 3.1 High pass filter Wainwright instruments WHK3.0/18G-10EF TE 01140 3.5
Radimation software DARE 2016.2.8 -- 3.1 Pre amplifier Hewlett Packard 8449B TE 00092 3.3, 3.5, 3.6 Pre amplifier Rohde & Schwarz ESV-Z3 TE 00098 3.5, 3.6
Anechoic Room Euroshield RFB-F-100 TE 01064 3.4 3.6 Splitter/combiner Weinschel 1506a TE 01120 3.7
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3 Test results
3.1 RF output power Measurement
3.1.1 Limit The maximum RF output power = 20 dBm.
3.1.2 Measurement instruments The measurement instruments are listed in chapter 2.5 of this report.
3.1.3 Test setup The test setup is as shown in chapter 2.4 of this report.
3.1.4 Test procedure According to chapter 5.4.2 of EN 300 328 v2.1.1.
3.1.5 Test Results of the RF output power Measurement BLE (Chip Antenna )
Test conditions Frequency
(MHz) Data rate Output power
(dBm) chip antenna
Output power (dBm) PIFA
antenna Tnom 20°C
2402 1 Mbps 3.7 5.2
Tmin -20°C 2.9 4.4 Tmax 55°C 2.0 3.5
Uncertainty: ±1.5 dB Conducted
Test conditions Frequency
(MHz) Data rate Output power
(dBm) chip antenna
Output power (dBm) PIFA
antenna Tnom 20°C
2440 1 Mbps 3.8 5.3
Tmin -20°C 4.3 5.8 Tmax 55°C 3.5 5
Uncertainty: ±1.5 dB Conducted
Test conditions Frequency
(MHz) Data rate Output power
(dBm) chip antenna
Output power (dBm) PIFA
antenna Tnom 20°C
2480 1 Mbps 4.6 6.1
Tmin -20°C 5.2 6.7 Tmax 55°C 4.3 6
Uncertainty: ±1.5 dB Conducted Note: Output power (dBm)= Measured value(dBm) + Antenna gain (dBi).
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3.2 99% Occupied Bandwidth
3.2.1 Limit The occupied bandwidth shall completely inside the band 2400 2483.5 MHz.
3.2.2 Measurement instruments The measurement instruments are listed in chapter 2.5 of this report.
3.2.3 Test setup The test setup is as shown in chapter 2.4 of this report.
3.2.4 Test procedure According to chapter 5.4.7 of EN 300 328 v2.1.1.
3.2.5 Test results of the 99% Occupied Bandwidth Measurement
Technology Std. Channel Frequency (MHz) Data rate 99% OBW (MHz)
Bluetooth Low energy 1 (Low) 2402 1 Mbps 1.802
39 (High) 2480 1 Mbps 1.816 Uncertainty ± 56.6 kHz
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Plots of the 99% Occupied Bandwidth Measurement BLE 99% Occupied Bandwidth (Channel 1)
BLE 99% Occupied Bandwidth (Channel 39)
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3.3 Power Spectral Density
3.3.1 Limit 10 dBm per MHz.
3.3.2 Measurement instruments The measurement instruments are listed in chapter 2.5 of this report.
3.3.3 Test setup The test setup is as shown in chapter 2.4 of this report.
3.3.4 Test procedure According to chapter 5.4.3 of EN 300 328 V2.1.1.
3.3.5 Test results of Power Spectral Density Measurement
Technology Std. Channel Frequency (MHz) Data rate
PSD (dBm /MHz) Chip
antenna
PSD (dBm /MHz) PIFA
antenna
BLE 1(Low) 2402
1 Mbps 5.38 6.88
17(Mid) 2440 4.6 6.1 39 (High) 2480 2.87 4.37
Uncertainty ±1.5 dB Conducted Note: Power Spectral density (dBm)= Measured value(dBm) + Antenna gain (dBi).
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3.4 Out-of-Band Emissions
3.4.1 Limit
3.4.2 Measurement instruments The measurement instruments are listed in chapter 2.5 of this report.
3.4.3 Test setup The test setup is as shown in chapter 2.4 of this report.
3.4.4 Test procedure According to chapter 5.4.8 of EN 300 328 v2.1.1.
3.4.5 Test results of the OOB Measurements BLE Out-of-band emissions
Low channel High channel
Frequency (MHz) Level (dBm/MHz) Level (dBm/MHz) Limit (dBm/MHz) Frequency range = 2483.5 2485.5 MHz
2484 -36.69 -10 2485 -39.57 -10
Frequency range = 2485.5 2487.5MHz 2486 -41.77 -20 2487 -45.44 -20
Frequency range = 2396 2398 MHz 2397.5 -42.83 -20 2396.5 -44.12 -20
Frequency range = 2398 2400 MHz 2399.5 -29.91 -10 2398.5 -41.06 -10
Uncertainty: ± 1.4 dB
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3.5 TX Radiated Spurious Emissions Measurement
3.5.1 Limit
Frequency range Power 30 47 MHz -36 dBm 47 74 MHz -54 dBm
74 87.5 MHz -36 dBm 87.5 118 MHz -54 dBm 118 174 MHz -36 dBm 174 230 MHz -54 dBm 230 470 MHz -36 dBm 470 862 MHz -54 dBm
862 1000 MHz -36 dBm 1 12.75 GHz -30 dBm
3.5.2 Measurement instruments The measurement instruments are listed in chapter 2.5 of this report.
3.5.3 Test setup The test setup is as shown in chapter 2.4 of this report.
3.5.4 Test procedure According to chapter 5.4.9 of EN 300 328 v2.1.1.
3.5.5 Test results of TX Radiated Spurious Emissions Measurement See next page.
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3.5.6 Plots of the TX Radiated Spurious Emissions Measurement 30 MHz to 1 GHz
Vertical polarization(Chip antenna)
Low ch
High ch
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30 MHz to 1 GHz Horizontal polarization (Chip antenna)
Low ch
High ch
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30 MHz to 1 GHz Vertical polarization (External Pifa antenna)
Low ch
High ch
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30 MHz to 1 GHz Horizontal polarization (External Pifa antenna)
Low ch
High ch
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1 GHz to 12.75 GHz Vertical polarization (Chip antenna)
Low ch
High ch
Note: the peak seen in the plots is the fundamental frequency and is not subject to the limit.
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1 GHz to 12.75 GHz Horizontal polarization (Chip antenna)
Low ch
High ch
Note: the peak seen in the plots is the fundamental frequency and is not subject to the limit.
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1 GHz to 12.75 GHz Vertical polarization (External Pifa antenna)
Low ch
High ch
Note: the peak seen in the plots is the fundamental frequency and is not subject to the limit.
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1 GHz to 12.75 GHz Horizontal polarization (External Pifa antenna)
Low ch
High ch
Note: the peak seen in the plots is the fundamental frequency and is not subject to the limit.
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3.5.7 Measurement Uncertainty Measurement uncertainty Radiated emissions below 1 GHz
30 200 MHz ±3.6 dB 200 1000 MHz ±3.6 dB
Measurement uncertainty Radiated emissions above 1 GHz
1000- 10000 MHz ±3.5 dB 10- 18 GHz ±3.8 dB
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3.6 Radiated RX Spurious Emissions Measurement
3.6.1 Limit
Frequency range Power 30 1000 MHz -57 dBm 1 12.75 GHz -47 dBm
3.6.2 Measurement instruments The measurement instruments are listed in chapter 2.5 of this report.
3.6.3 Test setup The test setup is as shown in chapter 2.4 of this report.
3.6.4 Test procedure According to chapter 5.4.10 of EN 300 328 v2.1.1.
3.6.5 Test results of RX Radiated Spurious Emissions Measurement See next page.
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3.6.6 Plots of the RX Radiated Spurious Emissions Measurement 30 MHz to 1 GHz
Vertical polarization (Chip antenna)
Low ch
High ch
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30 MHz to 1 GHz Horizontal polarization (Chip antenna)
Low ch
High ch
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30 MHz to 1 GHz Vertical polarization (External Pifa antenna)
Low ch
High ch
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30 MHz to 1 GHz Horizontal polarization (External Pifa antenna)
Low ch
High ch
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1 GHz to 12.75 GHz Vertical polarization (Chip antenna)
Low ch
High ch
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1 GHz to 12.75 GHz Horizontal polarization (Chip antenna)
Low ch
High ch
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1 GHz to 12.75 GHz Vertical polarization (External Pifa antenna)
Low ch
High ch
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1 GHz to 12.75 GHz Horizontal polarization (External Pifa antenna)
Low ch
High ch
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3.6.7 Measurement Uncertainty Measurement uncertainty Radiated emissions below 1 GHz
30 200 MHz ±3.6 dB 200 1000 MHz ±3.6 dB
Measurement uncertainty Radiated emissions above 1 GHz
1000- 10000 MHz ±3.5 dB 10- 18 GHz ±3.8 dB
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3.7 Receiver blocking measurement
3.7.1 Limit 10% Packet Error Rate.at the blocking levels stated in EN 300 328 v2.1.1,chapter 4.3.2.11.
3.7.2 Measurement instruments The measurement instruments are listed in chapter 2.5 of this report.
3.7.3 Test setup The test setup is as shown in chapter 2.3 of this report.
3.7.4 Test procedure See EN 300 328, clause 5.4.11.
3.7.5 Test results of the Receiver Blocking measurement BLE Low channel
Receiver category Frequency of unwanted signal (MHz)
Blocking level (dBm) Per (%)
2
2380 -47 0 2503.5 -47 0 2300 -37 0
2583.5 -37 0 Uncertainty: + 2.509/ -2.480 dB
BLE High channel
Receiver category Frequency of unwanted signal (MHz)
Blocking level (dBm) Per (%)
2
2380 -47 0 2503.5 -47 0 2300 -37 0
2583.5 -37 0 Uncertainty: + 2.509/ -2.480 dB
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1 External Photos
1.1 Top view Linear
1.2 Bottom view Linear
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1.3 Top view Stand Alone
1.4 Bottom view Stand Alone
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2 Internal Photos
2.1 Bottom PCB view
2.2 Top PCB view
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3 Test setup Photos
3.1 Radiated emission 30 - 1000 MHz
3.2 Radiated emission 1 - 12.75 GHz
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