
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Data Sheet Printed : 1 August 2013 1/18 Data Sheet Ref : DS091201R12 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission ISP091201 Bluetooth Low Energy Module with Integrated Antenna Key Features • Single Mode Bluetooth Low Energy v4.0 Slave • Based on Nordic Semiconductor family of uBlue products • Includes transceiver, baseband and software stack • Ultra Low Power Consumption • Single 1.9 to 3.6 V supply • Temperature -40 to 85 °C • Fully integrated RF matching and Antenna • Integrated 16 MHz Crystal Clock • FCC Limited Modular Certification 15.212 FCC #2AAQS-ISP091201 • CE # xxxxxx • IC # 11306A-ISP091201 • TELEC # xxxxxx • Blue Tooth SIG certified # xxxxxx Applications • Space constrained Bluetooth Low Energy Slave Devices • Sport and fitness sensors • Health care sensors • Out of Range (OOR) sensors • Personal User Interface Devices (PUID) • Remote controls Description This module is based on Nordic Semiconductor nRF8001 uBlue Bluetooth Low Energy Platform. The nRF8001 is a single chip transceiver with an embedded baseband protocol engine, suitable for ultra low power wireless applications conforming to the Bluetooth Low Energy Specification contained within v4.0 of the overall Bluetooth specification. The nRF8001D, used in the current revision of ISP091201, is a production product using a RoM for the baseband protocol engine. * See Product Marking section for up to date module marking Data Sheet Printed : 1 August 2013 2/18 Data Sheet Ref : DS091201R12 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission The uBlue transceiver is specifically designed for both PC peripherals and ultra low power applications such as sports and wellness sensors. For sensor applications, the ultra low power consumption and advanced power management enables battery lifetimes up to several years on a coin cell battery. The ISP091201 module size measures 8 x 12 x 1.5 mm. The module integrates all the decoupling capacitors, the 16 MHz crystal and load capacitors plus the RF matching circuit and antenna in addition to the transceiver. As the module has several end applications, the antenna was designed to be compatible with several ground plane sizes including that of a USB dongle and a cell phone. The module can operate as a standalone Bluetooth sensor node with the addition of a transducer, a small external microprocessor to run application software, a 32 kHz crystal and a DC power source. Functional Block Diagram The module high level block diagram is shown in Figure 1 below. Figure 1 : Functional block of the ISP091201 16 MHz Xtal + caps Configurable I/O system 32 kHz XO 16 MHz XO Custom Low Power Micro- controller + Flash Memory Ultra low power 2.4 GHz Transceiver Advanced Power Management RF Matching Network Power Supply decoupling RF Antenna nRF8001 uBlue ISP091201 VCC 32 kHz Xtal BLE radio signal SPI Bus •MOSI •MISO •CSN •SCK Reset nRF8001 UART RF test mode •TXD •RXD Digital Handshake •ACTIVE •RDY •REQN Data Sheet Printed : 1 August 2013 3/18 Data Sheet Ref : DS091201R12 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Pin Assignment Pin Name Pin function Description 1 – 5 NC Not Connected Isolated pad on application PCB for mechanical stability 6 OUT_ANT Antenna In/Out This pin is connected to the internal antenna. It should be connected to Pin 7 OUT_MOD for normal operation. During certification the pin may be connected to an RF connector for antenna measurement 7 OUT_MOD Module In/Out This pin is the RF I/O pin of the BLE module. It should be connected to Pin 6 OUT_ANT for normal operation. During certification the pin may be connected via to an RF connector for module measurement using a Bluetooth test setup. 8 GND Ground Should be connected to ground plane on application PCB 9 NC Not Connected Isolated pad on application PCB for mechanical stability 10 MOSI Digital input ACI Master Out Slave In 11 DCC PWM driver PWM driver for the external LC filter if the DC/DC converter is enabled. If the DC/DC converter is disabled this pin shall be not connected 12 AVDD Power Analog power supply (1.9 – 3.6V DC) 13 VCC_nRF Power Power supply (1.9 – 3.6V) Supplies the DC/DC converter and GPIOs. VDD in nRF8001 doc. 14 GND Ground Should be connected to ground plane on application PCB 15 XL2 Analog output Connect to external 32.768kHz crystal oscillator (if internal RC oscillator is enabled then leave not connected) 16 XL1 Analog output Connect to external 32.768kHz crystal oscillator (if internal RC oscillator is enabled then leave not connected) 17 ACTIVE Digital output Device RF front end activity indicator 18 TXD Digital output UART (transmit) for Bluetooth low energy Direct Test Mode 19 SCK Digital input ACI clock input 20 RXD Digital output UART (receive) for Bluetooth low energy Direct Test Mode 21 REQN Digital input ACI request pin (handshaking, active low) 22 MISO Digital output ACI Master In Slave Out 23 GND Ground Should be connected to ground plane on application PCB 24 RDYN Digital output ACI device ready indication (handshaking) 25 RESET Digital Input Reset (Active Low) 26-36 NC Not Connected Isolated pad on PCB for mechanical stability Data Sheet Printed : 1 August 2013 4/18 Data Sheet Ref : DS091201R12 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party withou…
Text truncated - open the document above for the full version.
Data Sheet Printed : 18 June 2013 2/16 Data Sheet Ref : DS091201R9 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission The uBlue transceiver is specifically designed for both PC peripherals and ultra low power applications such as sports and wellness sensors. For sensor applications, the ultra low power consumption and advanced power management enables battery lifetimes up to several years on a coin cell battery. The ISP091201D module size measures 8 x 12 x 1.5 mm. The module integrates all the decoupling capacitors, the 16 MHz crystal and load capacitors plus the RF matching circuit and antenna in addition to the transceiver. As the module has several end applications, the antenna was designed to be compatible with several ground plane sizes including that of a USB dongle and a cell phone. The module can operate as a standalone Bluetooth sensor node with the addition of a transducer, a small external microprocessor to run application software, a 32 kHz crystal and a DC power source. Functional Block Diagram The module high level block diagram is shown in Figure 1 below. Figure 1 : Functional block of the ISP091201D စတ ႅ ဇဆ စတ !" #" $ ႅ % & ' " " ဆ(ဈ* + , -., . #" /% & 0" #" 1 . /% - /%ဒငငစ4 ငဓစဆငစ ဇဆ 1#4 •1 •1 •10 •15 //%ဒငငစ '-/+/%. •+6 •/6 6 .& •-+78 •/69 •/8:0
FCC, Request for non-disclosure Date: 16-Jul-10 RF_501, Issue 6 Page 1 of 1 Company Name: Insight SIP Address : 13 Chemin de la halte City: Grasse Country: France To: Telefication B.V., Dept. FCC TCB Edisonstraat 12A 6902 PK ZEVENAAR The Netherlands Subject: Request for confidentiality FCC ID: 2AAQS-ISP091201 Reference number: ###### Dear FCC TCB, 1. Long-Term Confidentiality Pursuant to 47 CFR Section 0.459(a) & (b), we hereby requests non-disclosure and confidential treatment of the following materials submitted in support of FCC certification application: Bill(s) of Material Block Diagrams Operational Description Schematic Diagrams Tune-up Procedure Above materials contain secrets, proprietary and technical information, which would customarily be guarded from competitors under 47 CFR, section 0.457(d)(2). Disclosure or publication or any portion of this company confidential material to other parties could cause substantial competitive harm and provide unjustified benefits for competitors. 2. Short-Term Confidentiality (STC) Pursuant to Public Notice DA 04-1705 of the Commission’s policy, in order to comply with the marketing regulations in 47 CFR §2.803 and the importation rules in 47 CFR §2.1204, a pplicant hereby requests Short-Term Confidential treatment of the following materials (note 1): Internal Photos User’s Manual Test Set-up Photos External Photos Justification: Release of this infomration prior to the release of this product would give an unfair competitive advantage to competitors. Planned Release Date STC: 180 (notes 2, 3, 4, 5) Date: 08/02/2012 Name and signature of applicant: Patrick Lomax Notes: 1) A document or type of document can only have ONE type of confidentiality! 2) Short-Term confidentiality is in principle for 45 days from date of grant; it can be extended max 3 times (total time 180 days max.)! 3) FCC must be informed when marketing begins earlier. 4) Release takes place automatically thus extension must be requested in time. Telefication does not remind you of this! 5) Request for extension or for release must be received by Telefication at least 7 days before date of actual marketing or before expiration of the STC period
RF_734_00, Issue 1 Modular Approval Request FCC (per DA 00-1407) FCC ID: 2AAQS-ISP091201 Items to be covered Answer from applicant 1. The modular transmitter must have its own RF shielding. No. Must be supplied by host. 2. The modular transmitter must have buffered modulation/data inputs (if such inputs are provided) to ensure that the module will comply with Part 15 requirements under conditions of excessive data rates or over-modulation. YES 3. The modular transmitter must have its own power supply regulation. YES 4. The modular transmitter must comply with the antenna requirements of Section 15.203 and 15.204(c). The antenna must either be permanently attached or employ a “unique” antenna coupler (at all connections between the module and the antenna, including the cable).. YES 5. The modular transmitter must be tested in a stand-alone configuration, i.e., the module must not be inside another device during testing. This is intended to demonstrate that the module is capable of complying with Part 15 emission limits regardless of the device into which it is eventually installed. YES 6. The modular transmitter must be labeled with its own FCC ID number, and, if the FCC ID is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. This exterior label can use wording such as the following: “Contains Transmitter Module FCC ID: XYZMODEL1” or “Contains FCC ID: XYZMODEL1.” Any similar wording that expresses the same meaning may be used. The Grantee may either provide such a label, an example of which must be included in the application for equipment authorization, or, must provide adequate instructions along with the module which explain this requirement. In the latter case, a copy of these instructions must be included in the application for equipment authorization. YES 7. The modular transmitter must comply with any specific rule or operating requirements applicable to the transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements. A copy of these instructions must be included in the application for equipment authorization. For example, there are very strict operational and timing requirements that must be met before a transmitter is authorized for operation under Section 15.231. For instance, data transmission is prohibited, except for operation under Section 15.231(e), in which case there are separate field strength level and timing requirements. Compliance with these requirements must be assured. YES 8. The modular transmitter must comply with any applicable RF exposure requirements. For example, FCC Rules in Sections 2.1091, 2.1093 and specific Sections of Part 15, including 15.319(i), 15.407(f), 15.253(f) and 15.255(g), require that Unlicensed PCS, UNII and millimeter wave devices perform routine environmental evaluation for RF Exposure to demonstrate compliance. In addition, spread spectrum transmitters operating under Section 15.247 are required to address RF Exposure compliance in accordance with Section 15.247(b)(4). Modular transmitters approved under other Sections of Part 15, when necessary, may also need to address certain RF Exposure concerns, typically by providing specific installation and operating instructions for users, installers and other interested parties to ensure compliance. YES Note: If compliance with one or more of the numbered requirements, listed above, cannot be demonstrated, it may be possible to obtain a “Limited Modular Approval” (LMA). Name and surname of applicant (or authorized representative): Patrick Lomax RF_734_00, Issue 1 Date: 08 \02\2012 Signature:
Telefication Edisonstr. 12a 6902 PK Zevenaar The Netherlands Patrick Lomax 02.08.2013 Phone +49 (0) 2102 749 331 Fax +49 (0) 2102 749 350 FCC ID: 2AAQS-ISP091201 SAR Exemption for “ISP091201“ Bluetooth Low Energy Module Dear Mr. Brandhorst, The Bluetooth device “ISP091201“ Bluetooth Low Energy Module by Insight SiP is exempted from SAR evaluation because the output power is below 10mW, as per “KDB 447498”. Best Regards, Patrick Lomax
Data Sheet Printed : 1 August 2013 17/18 Data Sheet Ref : DS091201R12 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Label location The labels are permanently laser marked following the figure bellow: DŽĚĞů͗/^WϬεϭϮϬϭ zztt &/͗ϮY^Ͳ/^WϬεϭϮϬϭ ϭŵŵ κŵŵ /͗ϭϭϯϬςͲ/^WϬεϭϮϬϭ Ϯŵŵ Ϯŵŵ Ϯŵŵ ϯŵŵ ϯŵŵ
Operational description The uBlue transceiver is specifically designed for both PC peripherals and ultra low power applications such as sports and wellness sensors. For sensor applications, the ultra low power consumption and advanced power management enables battery lifetimes up to several years on a coin cell battery. The ISP091201D module size measures 8 x 12 x 1.5 mm. The module integrates all the decoupling capacitors, the 16 MHz crystal and load capacitors plus the RF matching circuit and antenna in addition to the transceiver. As the module has several end applications, the antenna was designed to be compatible with several ground plane sizes including that of a USB dongle and a cell phone. The module can operate as a standalone Bluetooth sensor node with the addition of a transducer, a small external microprocessor to run application software, a 32 kHz crystal and a DC power source. Bluetooth low energy: Bluetooth low energy technology operates in the same spectrum range (the 2.400GHz- 2.4835GHz ISM band) as Classic Bluetooth technology, but uses a different set of channels. Instead of Bluetooth technology's 79 1-MHz wide channels, Bluetooth low energy technology has 40 2-MHz wide channels. Within the channel, data is transmitted using Gaussian frequency shift modulation, similar to Classic Bluetooth's Basic Rate scheme. The bit rate is 1Mbps, and the maximum transmit power is 10mW. Bluetooth low energy technology uses frequency hopping to counteract narrowband interference problems and is classified as a system using digital modulation techniques or a direct-sequence spread spectrum. The data rate over the air is 1 Mbit/s. Further details are given in the Bluetooth Core Specification V4.0.
ANNEX for SAR Excepmtion FCC ID: 2AAQS-ISP091201 IC: 11306A-ISP091201 Please find below the calculation for the EIRP value. Maximum peak output power (conducted): 1.94 dBm Antenna Gain: 1.2 dBi EIRP (calculated): 3.14 dBm = 2.060 mW
Mounier BLE Module Company: Insight SIP Customer: Internal Title: SCHEMATIC DRAWING MOUNIER BLE MODULE A0 Drawing no: SC091201C Rev: 4 Scale: NA Sheet 1/2 Approvals Date Drawn: Pascal CIAIS 06/23/11 Checked: Chakib EL HASSANI 06/23/11 Issued: Pascal CIAIS 06/23/11 Last Edit: 06/23/11 File name: SC091201C Revisions Rev Description Approved Date 0 Initial schematic PC 12/21/2009 A Version for Manufacture PC 12/22/2009 B Version for Manufacture PC 4/23/2010 CR0 Version R0 for Taiyo Yuden PC 5/24/2011 CR1 Version R1 for Taiyo Yuden PC 6/8/2011 CR2 Version R2 for Taiyo Yuden PC 6/9/2011 CR3 Version R3 for PCB supplier and assembly and packaging supplier PC 6/22/2011 CR4 Version R4 for PCB supplier and assembly and packaging supplier PC 6/23/2011 TOP VIEW AVDD GND GND RESET GND GND GND GND GND GND GND GND GND GND GND AVDD GND GND GND GND GND GND RXD SCK REQN VCC_nRF VCC_nRF OUT_MOD TXD ACTIVE XL2 XL1 GND GND GND MOSI MISO CSN RDYN AVDD DCC SCK MOSI RXD TXD CSN REQN ACTIVEXL1 MISO XL2 RDYNRESET DCC VCC_nRF OUT_MOD OUT_ANT OUT_ANT I / O SC091201CRev4_drawing A0 Drawing no: SC091201C Rev: 4 Scale: NA Sheet 2/2 Last Edit: 06/23/11 File name: SC091201C R0201_TR1R=22 kOhm 0201 L0201_TL3L=4.7 nH 0 2 0 1 L0201_TL2L=6.8 nH 0 2 0 1 L0201_TL1L=8.2 nH 0 2 0 1 C0201_TC12C=100 nF 0 2 0 1 C0201_TC11C=100 nF 0 2 0 1 C0201_TC9C=100 nF 0 2 0 1 C0201_TC8C=33 nF 0 2 0 1 C0201_TC7C=100 nF 0 2 0 1 C0201_TC6C=1.5 pF 0 2 0 1 C0201_TC5C=1.5 pF 0201 C0201_TC3C=2.2 nF 0 2 0 1 C0201_TC2C=15 pF 0 2 0 1 C0201_TC1C=15 pF 0 2 0 1 IO_PinTXD IO Pin IO_PinACTIVE IO Pin IO_PinXL1 IO Pin IO_PinXL2 IO Pin NX2520SA_TY1 NX2520SA 41 32 nRF8001_TU1 nRF8001 17 33 D C C 32 V S S 6 31 V S S 5 30 A V D D 3 29 X C 1 28 X C 2 27 A V D D 2 26 I R E F 25 AVDD1 24 VSS4 23 ANT2 22 ANT1 21 VDD_PA 20 RESET 19 VSS3 18 VSS2 R D Y N 16 N C 15 M I S O 14 M O S I 13 R E Q N 12 S C K 11 R X D 10 V D D 1 9 VSS1 8 TXD 7 ACTIVE 6 XL1 5 XL2 4 DEC2 3 DEC1 2 VDD 1 GND_EP IO_PinAVDD IO Pin IO_PinDCC IO Pin GND21 B GND24 T GND23 B GND22 B GND5 T GND6 T GND10 T GND13 T GND14 T GND25 T GND11 T GND3 T GND4 T GND1 T GND20 T GND15 T GND8 T GND19 T GND12 T GND9 T GND18 T GND17 T IO_PinVSS IO Pin IO_PinMOSI IO Pin IO_PinCSN IO Pin IO_PinRESET IO Pin IO_PinRDYN IO Pin IO_PinSCK IO Pin IO_PinVSS2 IO Pin IO_PinOUT_ANT IO Pin IO_PinOUT_MOD IO Pin NC_botNC41NC_botNC40NC_botNC39NC_botNC38NC_botNC37 IO_PinNC15 IO Pin IO_PinNC16 IO Pin IO_PinNC19 IO Pin IO_PinNC20 IO Pin IO_PinNC23 IO Pin NC_botNC53NC_botNC52NC_botNC51NC_botNC50 IO_PinRXD IO Pin IO_PinREQN IO Pin IO_PinMISO IO Pin IO_PinVSS1 IO Pin IO_PinNC4 IO Pin IO_PinNC7 IO Pin IO_PinNC8 IO Pin IO_PinNC11 IO Pin NC_botNC49 NC_botNC48 NC_botNC47 NC_botNC46 NC_botNC45 NC_botNC44 NC_botNC43 IO_PinNC24 IO Pin IO_PinNC27 IO Pin IO_PinNC28 IO Pin IO_PinNC31 IO Pin IO_PinNC32 IO Pin IO_PinNC35 IO Pin IO_PinNC36 IO Pin IO_PinVCC_nRF IO Pin antennaAnt1
Antenna specification
Final Report on ISP091201D MDE_INSIG_1301_FCCa according to Title 47 CFR chapter I part 15 subpart C Re port Reference: Au gust 01, 2013Date: Test Laboratory: 7Layers AG Borsigstr. 11 40880 Ratingen Germany No te : The following test results re late only to the devices spe cifie d in this document. This report shall not be reproduce d in parts without the wr itten approval of the test laboratory. 7Layers AG Aufsichtsratsvorsitzender Registergericht re gistere d in: Borsigstrasse 11 Cha irman of the Supervisory Board: D üs se ldorf , HRB 44 09 6 40880 Ratingen, Germany Ralf Mertens USt-IdNr VAT No.: Ph on e: +4 9 (0) 21 02 7 49 0Vorstand Board : D E 20 315 96 52 Fax : +49 (0 ) 21 02 74 9 35 0 Dr. H .-J . Me cke lburg T AX No. 1 47 /58 69 /03 85 www.7Layers.com FCC ID: 2AAQS-ISP091201D IC:11306A-ISP091201D Reference: MDE_INSIG_1301_FCCa according to Title 47 CFR chapter I part 15 subpart C 1Administrative Data 1.1Project Data Imad HjijePro ject Responsible: 2013/08/01Date Of Test Re port: 2013/04/23Date of first test: 2013/07/29Date of last test: 1.2Applicant Data Company Name:Insight SiP Green Side - NCI - Bât 7 Entrée 2 400, Avenue Roumanille - B.P 309 Street: 06906 Sophia - Antipolis Cedex City: FranceCountry: Contact Person:Chakib El Hassani 1.3Test Laboratory Data The following list shows all places and laboratories involved for test result generation: 7 layers DE Company Name :7 layers AG Street :Borsigstrasse 11 City :40880 Ratingen Country :Germany Contact Person :Mr. Michael Albert Phone :+49 2102 749 201 Fax :+49 2102 749 444 E Mail :[email protected] Laboratory Details Accreditation InfoLab IDIdentificationResponsible DAkkS-Registration no. D-PL-12140-01-01Conducted EmissionsLab 1Mr. Robert Machulec Mr. Andreas Petz DAkkS-Registration no. D-PL-12140-01-01Radiated EmissionsLab 2Mr. Robert Machulec Mr. Andreas Petz DAkkS-Registration no. D-PL-12140-01-01Regulatory Bluetooth RF Test Solution Lab 3Mr. Jimmy Chatheril Mr. Sören Berentzen 1.4Signature of the Testing Responsible Patrick Lomax responsible for tests performed in: Lab 1, Lab 2, Lab 3 Page 2 of 49 Reference: MDE_INSIG_1301_FCCa according to Title 47 CFR chapter I part 15 subpart C 2.2Detailed Description of OUT Samples Sample : b01 OUT IdentifierISP091201D Sample DescriptionSample#2 Serial No.D1844 HW StatusD SW StatusBuild code D Low VoltageLow Temp.1.9 V-40 °C High Temp.High Voltage3.6 V85 °C Normal Temp.Nominal Voltage3.3 V25 °C Sample : d01 OUT IdentifierISP091201D Sample DescriptionSample#2 Serial No.D1942 HW StatusD SW StatusBuild code D Low VoltageLow Temp.1.9 V-40 °C High Temp.High Voltage3.6 V85 °C Normal Temp.Nominal Voltage3.3 V25 °C 2.3OUT Features Features for OUT: ISP091201D Allowed ValuesDesignationDescriptionSupported Value(s) Features for scope: FCC_v2 ACThe OUT is powered by or connected to AC Mains BTEUT supports Bluetooth data rate of 1 Mbps with GFSK modulation in the band 2400 MHz - 2483.5 MHz DCThe OUT is powered by or connected to DC IantIntegral Antenna: permanent fixed antenna, which may be built-in, designed as an indispensable part of the equipment TantCtemporary antenna connector, which may be only built-in for testing, designed as an example part of the equipment Page 4 of 49 Reference: MDE_INSIG_1301_FCCa according to Title 47 CFR chapter I part 15 subpart C 2.4Setups used for Testing For each setup a relation is given to determine if and which samples and auxiliary equipment is used. The left side list all OUT samples and the right side lists all auxiliary equipment for the given setup. Sample No.Sample DescriptionAE No.AE Description Setup No.List of OUT samplesList of auxiliary equipment B01 b01Sample#2Sample: D01 d01Sample#2Sample: 3Results 3.1General Available at the test laboratory. The results of the inspection are described on the following pages, where 'Conformity' or 'Passed' means that the certification criteria were verified and that the tested device is conform to the applied standard. In cases where 'Declaration' is printed, the required documents are available in the manufacturers product documentation. In cases where 'not applicable' is printed, the test case requirements are not relevant to the specific equipment implementation. Documentation of tested devices: Interpretation of the test results: 1. The l aboratory environmental conditio ns are recorded and avai lable in the Interlab system for each performed test. 2. Lo cal Transmit and Receive mode is established via a specially menu interface which is not available to the end user. Note: 3.2List of the Applicable Body (Body for Scope: FCC_v2) DesignationDescription Subpart C - Intentional Radiators; 15.247 Operation within the bands 902-928 MHz, 2400-2483.5 MHz, and 5725-5850 MHz. FCC47CFRChIPART15c247RADIO FREQUENCY DEVICES 3.3List of Test Specification Test Specification:FCC part 2 and 15 Version10-1-11 Edition Title:PART 2 - GENERAL RULES AND REGULATIONS PART 15 - RADIO FREQUENCY DEVICES Page 5 of 49 Reference: MDE_INSIG_1301_FCCa according to Title 47 CFR chapter I part 15 subpart C 3.4Summary Test Case Identifier / Name SetupDate of TestResultTest (condition)Ref. Lab 15c.1 Conducted emissions (AC power line) §15.207 15c.1; Mode = transmit2013/06/22B01Lab 1Passed 15c.10 Power density §15.247 (e) 15c.10; Frequency = Highest2013/07/29D01Lab 3Passed 15c.10; Frequency = Lowest2013/07/29D01Lab 3Passed 15c.10; Frequency = Middle2013/07/29D01Lab 3Passed 15c.11 6dB Bandwidth §15.247 (a) (2) 15c.11; Frequency = Highest2013/07/29D01Lab 3Passed 15c.11; Frequency = Lowest2013/07/29D01Lab 3Passed 15c.11; Frequency = Middle2013/07/29D01Lab 3Passed 15c.2 Spurious radiated emissions §15.247 (d), §15.35 (b), §15.209 15c.2; Frequency = 2402, Mode = BT transmit using 1 Mbps with GFSK modulation, Channel = low 2013/04/23B01Lab 2Passed 15c.2; Frequency = 2441, Mode = BT transmit using 1 Mbps with GFSK modulation, Channel = mid 2013/04/23B01Lab 2Passed 15c.2; Frequency = 2480, Mode = BT transmit using 1 Mbps with GFSK modulati…
Text truncated - open the document above for the full version.
Test Laboratory: Borsigstr. 11 Germany 7Layers AG 40880 Ratingen Note: The following test results relate only to the devices specified in this document. This report shall not be reproduced in parts without the written approval of the test laboratory. 7 layers AG Aufsichtsratsvorsitzender Registergericht registered in: Borsigstrasse 11 Chairman of the Supervisory Board: Düsseldorf, HRB 44096 40880 Ratingen, Germany Ralf Mertens USt-IdNr VAT No.: Phone: +49 (0) 2102 749 0 Vorstand Board: DE 203159652 Fax: +49 (0) 2102 749 350 Dr. H.-J. Meckelburg TAX No. 147/5869/0385 www.7Layers.com Photo Report on Test Setups Report Reference: MDE_INSIG_1301_FCCa_Photo_Setups Test report Reference: MDE_INSIG_1301_FCCa_Photo_Setups Page 2 of 6 Photo 1: Test setup for radiated measurements (Enclosure, below 30 MHz, intentional radiator §15) Test report Reference: MDE_INSIG_1301_FCCa_Photo_Setups Page 3 of 6 Photo 2: Test setup for radiated measurements (Enclosure, semi-anechoic chamber, 30 MHz to 1 GHz, intentional radiator §15) Test report Reference: MDE_INSIG_1301_FCCa_Photo_Setups Page 4 of 6 Photo 3: Test setup for radiated measurements (Enclosure, fully-anechoic chamber, 1-18 GHz intentional radiator §15 / 30 MHz – 10/20 GHz §22/24/27) Test report Reference: MDE_INSIG_1301_FCCa_Photo_Setups Page 5 of 6 Photo 4: Test setup for radiated measurements (Enclosure, fully-anechoic chamber, 18-25 GHz, intentional radiator § 15) Test report Reference: MDE_INSIG_1301_FCCa_Photo_Setups Page 6 of 6 Photo 5: Test setup for conducted measurements (AC Port (power line), EUT supplied by AC/DC adapter, intentional / unintentional radiator §15)
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 1.60 mW |

Wi-Fi, BLE and Thread radio module
Equipment Class
NII - Unlicensed National Information Infrastructure TXBLuetooth 6.0 BLE Module
Equipment Class
DTS - Digital Transmission System
Built-in Antenna Bluetooth 5.1 Module
Equipment Class
DTS - Digital Transmission System
LoRa and BLE Module on small SiP package
Equipment Class
DTS - Digital Transmission System
Bluetooth Low Energy Module
Equipment Class
DTS - Digital Transmission System