
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
SPZB260C-PRO SPZB260A-PRO ZigBee® MODULE June 2009 FEATURES • Integrated 2.4 GHz, IEEE 802.15.4 compliant transceiver (PHY and MAC) • + 3 dBm nominal TX output power (at UFL connector level) • + 5 dBm in boost mode • -95 dBm typ RX sensitivity • RX filtering for co-existence with IEEE 802.11g and Bluetooth devices • Integrated VCO and loop filter • Enabled access to EZSP over synchronous serial interface (SPI) or to EZSP over asynchronous serial (UART) • Integrated EmberZNet network stack version 3.1.1 for SPI access • Embedded flash and integrated RAM for program and data storage • On board 24 MHz stable Xtal • Integrated RC oscillator ( typ 10KHz) for low power operation • Operation over the industrial temperature range of -40°C to +85°C • 1 uA power consumption in deep sleep mode • Watchdog timer and power on reset • Pins available for Non-Intrusive debug interface (SIF) • Single supply voltage (2.1V to 3.6V) • Available Link and Activity outputs for external Indication / monitor • Integrated RF UFL connector for external antenna (SPZB260C-PRO) or integrated antenna (SPZB260A-PRO ) • CE compliant • FCC compliant (FCC ID: S9NZB260B) APPLICATIONS • Industrial controls • Sensor Networking • Monitoring of remote systems • Home applications • Security systems • Lighting controls DESCRIPTION SPZB260C-PRO /SPZB260A-PRO is a low power consumption ZigBee ® module optimized for embedded applications. It enables OEMs to easily add wireless capability to electronic devices. The module is based on the SN260 ZigBee ® Network Processor which integrates a 2.4GHz, IEEE 802.15.4- compliant RF and MAC. A single supply voltage is requested to power the module. The voltage supply also determines the I/O port level allowing an easy interface with the host system . SPZB260C-PRO integrates a RF UFL connector allowing the use of an external antenna. SPZB260A-PRO has a specific 2.4GHz Murata integrated antenna aboard. The module allows a great flexibility in its integration with an host processor as it allows connection with the external controller via SPI or UART interfaces. For other information and details, please refer to SN260 datasheet available at www.st.com ) SPZB260C-PRO / SPZB260A-PRO 2/10 Contents 1 Block diagram ........................................................................................ 3 2 Pin Setting.......... ....................................................................................3 2.1 Pin connection .......................................................................................................... 3 2.2 Pin description ...........................................................................................................4 3 Maximum rating.................................................................................... 4 3.1 Absolute Maximum Ratings ..................................................................... 4 3.2 Recommended Operating Conditions ........................................................... 5 4 Electrical characteristics .......................................................................... 4 4.1 DC Electrical characteristics ..................................................................... 5 4.2 Digital I/O Specifications ....................................................................... 5 4.3 RF Electrical characteristics ..................................................................... 5 5 Package Mechanical Dimensions ................................................................. 6 6 Soldering ............................................................................................. 7 Appendix A FCC Statement ........................................................................... 8 A .1 Label Instruction .................................................................................8 A.2 Special requirement for Modular application ......................................................9 SPZB260C-PRO / SPZB260A-PRO 3/10 1 - BLOCK DIAGRAM 2 - PIN SETTING 2.1 PIN CONFIGURATION Figure 3. Pin Configuration Figure 1. SPZB260C-PRO block diagram 24 MHz XTAL SN 260 Tranceiver Balun Filter Vdd SIF SPI / UART CONTR SIGN RF antenna 24 MHz XTAL SN 260 Tranceiver Balun Filter Vdd SIF SPI / UART CONTR SIGN RF antenna Figure 2. SPZB260A-PRO block diagram SPZB260C-PRO / SPZB260A-PRO 4/10 2.2 – PIN DESCRIPTION The SPZB260C-PRO/ SPZB260A-PRO allows the use of EZSP application from SPI or UART. The pin description is given in table1 for both the configurations. Note that the SPZB260C-PRO / SPZB260A-PRO is shipped with the SPI EZSP application installed. Table1. Pin Description Pin # PIN Name Direction Description SPI Mode UART Mode 1 RTS O Not used RTS signal ( 10kΩ pull-up to VDD ) 2 RSTB I Active low reset ( a pull-up of 10 kohm typ is provided with 10nF to GND ) 3 HOST_INT / RXD O /I Host Interrupt Signal ( from ZB Module to Host) (SPI Mode) RXD signal 4 SPI_SSEL / CTS I SPI Slave Select ( from Host to ZB Module) CTS signal 5 SPI MOSI I SPI Data , Master Out / Slave In ( from host to ZB Module) Not used 6 SPI MISO O SPI Data , Master In / Slave Out ( from ZB Module to host) Not used 7 SPI_CLK I SPI clock Not used 8 GND --- Ground 9 V DD --- Input power supply 10 TXD O Not used TXD signal ( 10kΩ pull-up to VDD ) 11 SIF_CLK I Non-intrusive debug Interface Serial interface Clock Signal ( internal pull-down) 12 SIF_MISO O Non-intrusive debug Interface Serial interface Master IN/ Slave Out 13 SIF_MOSI I Non-intrusive debug Interface Serial interface Master Out/ Slave In To guarantee a proper signal level when in deep sleep mode a 10kΩ resistor to GND is provided 14 SIF_LOADB I/O Non-intrusive debug Interface Serial interface Load strobe ( Open collector with internal pull-up). To improve noise immunity a 10kΩ resistor to Vdd is provided 15 PTI_EN O Frame Signal of Packet Trace Interface (PTI) 16 PTI_DATA O Data Signal of Packet Trace Interface (PTI) 17 WAKE I Wake Interrupt Signal from Host to ZB Module 18 ACTIVITY O Activ…
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S9NZB260B ZigBee Module ZigBee RF MODULE BLOCK DIAGRAM
NOTICE: The results of tests and checks reported in this Test Report refer exclusively to the samples tested and described in the Report itself. This report shall not be reproduced partially or in its entirety without the written approval of IMQ S.p.A. IMQ S.p.A. - Via Quintiliano, 43 – I-20138 MILANO T E L E C O M M U N I C A T I O N S & T E L E M A T I C S F O R T R A N S P O R T S L A B O R A T O R Y Telecommunications & Telematics for Transports Lab. TEST REPORT Ref. No. ARSJ00227/1 Date: 2009-07-03 According with: FCC Rules: Code of Federal Regulations (CFR) no. 47 - PART 15 – UNLICENSED MODULAR TRANSMITTER APPROVAL PUBLIC NOTICE: DA 00-1407 PRODUCT :ZigBee module general purpose TESTED MODEL : SPZB260C-PRO SPZB260A-PRO FCC ID :S9NZB260B APPLICANT : STMicroelectronics – Centro Direzionale Colleoni – Palazzo Andromeda 3 – I-20044 Agrate Brianza (MI) - ITALY MANUFACTURER: STMicroelectronics – Centro Direzionale Colleoni – Palazzo Andromeda 3 – I-20044 Agrate Brianza (MI) - ITALY TRADEMARK : STMicroelectronics OTHER INFORMATION Testing dates : 2007-07-19 ÷ 2007-07-20 Tested samples No.:1 Testing Laboratory : IMQ S.p.A. Via Quintiliano, 43 I-20138 MILANO Prepared by: R. Colombo (EMC and R&TTE Lab deputy) Signature: Revision Sheet Release No. Date Revision Description Rev. 0 2009-07-03 First emission TT&T Laboratory Test Report No. ARSJ00227/1 Date: 2009-07-03 page 2 of 3 T E L E C O M M U N I C A T I O N S & T E L E M A T I C S F O R T R A N S P O R T S L A B O R A T O R Y REFERENCE STANDARDS According to : PUBLIC NOTICE : DA 00-1407 Part 15 Unlicensed Modular Transmitter Approval Released : June 26, 2000 MODULE-TYPE DEVICE APPROVAL OPTIONS: Modular Approval (MA) Limited Modular Approval (LMA) REQUIREMENTS The following requirements are fulfilled: 1) The modular transmitter must have its own RF shielding: The RF module fulfils the emission requirements of the FCC rules without additional shielding. 2) The modular transmitter must have buffered modulation/data inputs: The module has a memory management unit inside of the IC. The processor interfacing with the external application by means general purpose I/O ( GPIO) , Uart, SPI. The processor interfaces also the RF part of the module exchanging data and command with it. Inside the processor a flash memory is available to download the customer application and the ZigBee profiles. 3) The modular transmitter must have its own power supply regulation: The IC contains an own voltage regulation. In case of changes in the supply voltage VCC (for example caused by temperature changes or other effects), the internal voltage will be stabilized. 4) The modular transmitter must comply with the antenna requirements of Section 15.203 and 15.204: The end-user product will be installed in such a manner that only the authorized antenna is used. 5) The modular transmitter must be tested in a stand-alone configuration: The RF module was tested in a stand-alone configuration. TT&T Laboratory Test Report No. ARSJ00227/1 Date: 2009-07-03 page 3 of 3 T E L E C O M M U N I C A T I O N S & T E L E M A T I C S F O R T R A N S P O R T S L A B O R A T O R Y 6) The modular transmitter must be labelled with its own FCC ID number: The RF module will be labelled with its own FCC ID number. When the module is installed inside the end-product, the label is not visible. The end- user/integrator is instructed how to apply the exterior label. 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: The EUT is compliant with all applicable FCC rules. Detail instructions are given in the product Users Guide. 8) The modular transmitter must comply with any applicable RF exposure requirements. •Maximum measured power output: 3,71 mW (5,01 dBm) •Maximum antenna gain: 2,2 dBi = numeric gain 1,660 (see also FCC test report) Maximum permissible exposure defined in 47 CFR 1.1310: 1 mW/cm². The distance from the EUT's transmitting antenna where the exposure level reaches the maximum permitted level is calculated using the general equation: S = P*G / 4JR² S max = 1 mW/cm² P= 5,01 mW G= 2,2 dBi = 1,660 (numeric gain) R= distance in cm Solving for R, the 1 mW/cm² limit is reached in a distance of 0,835 cm to the transmitting antenna. The RF module operates at low power level so it does not exceed the Commission’s RF exposure guidelines limits; furthermore, Spread spectrum transmitters operate according to the Section 15.247 are categorically excluded from routine environmental evaluation.
FCC ID: S9NZB260B PHOTHOGRAPHS Module: SPZB260C-PRO Module: SPZB260A-PRO / /
FCC ID: S9NZB260B PHOTHOGRAPHS Module: SPZB260C-PRO Module: SPZB260A-PRO
ANTENNA MURATA ANCV12G44SAA127 PAG. 1 of 3 OBJECT : Real gain of the antenna for STMicroelectronics ZigBee module ZigBee modules SPZB260C-PRO and SPZB260A-PRO are complete modules with its own antenna included ; that means the user has not to calculate or adapt the antenna to the module ; adaptation is done on the module with the appropriate LC components. Antenna type: -Murata ANCV12G44SAA127 Real antenna gain are the following: ANTENNA MURATA ANCV12G44SAA127 PAG. 2 of 3 ANTENNA MURATA ANCV12G44SAA127 PAG. 3 of 3
SPZB260C-PRO SPZB260A-PRO ZigBee Module ZigBee RF MODULE OPERATIONAL DESCRIPTION SPZB260C-PRO /SPZB260A-PRO is a low power consumption ZigBee ® module optimized for embedded applications. It enables OEMs to easily add wireless capability to electronic devices. The module is based on the SN260 ZigBee® Network Processor which integrates a 2.4GHz, IEEE 802.15.4-compliant RF and MAC. A single supply voltage is requested to power the module. The voltage supply also determines the I/O port level allowing an easy interface with the host system . •SPZB260C-PRO integrates a RF UFL connector allowing the use of an external antenna. •SPZB260A-PRO has a specific 2.4GHz Murata integrated antenna aboard. The module allows a great flexibility in its integration with an host processor as it allows connection with the external controller via SPI or UART interfaces. APPLICATIONS ••Industrial controls •• Sensor Networking •• Monitoring of remote systems •• Home applications •• Security systems •• Lighting controls FEATURES •Integrated 2.4 GHz, IEEE 802.15.4 compliant transceiver (PHY and MAC) + 3 dBm nominal TX output power (at UFL connector level) + 5 dBm in boost mode -95 dBm typ RX sensitivity RX filtering for co-existence with IEEE 802.11g and Bluetooth devices Integrated VCO and loop filter ••Enabled access to EZSP over synchronous serial interface (SPI) or to EZSP over asynchronous serial (UART) •Integrated EmberZNet network stack version 3.1.1 for SPI access •Embedded flash and integrated RAM for program and data storage •On board 24 MHz stable Xtal •Integrated RC oscillator ( typ 10KHz) for low power operation •Operation over the industrial temperature range of -40°C to +85°C •1 uA power consumption in deep sleep mode •Watchdog timer and power on reset •Pins available for Non-Intrusive debug interface (SIF) •Single supply voltage (2.1V to 3.6V) •Available Link and Activity outputs for external Indication / monitor •Integrated RF UFL connector for external antenna •(SPZB260C-PRO) or integrated antenna (SPZB260A-PRO ) •CE compliant •FCC compliant (FCC ID: S9NZB260B)
Titanis 2.4 GHz Swivel SMA Antenna Titanis Reverse thread SMA - male: 2010B6090-01 1 Features • Designed for 2.4 GHz applications: Bluetooth®, Wi-Fi® (802.11b/g), ZigBee® , etc. • Antenna with a SMA reverse thread to meet FCC regulations, part 15 • High efficiency • Supplied in bulk 2 Description Titanis is intended for use with all 2.4 GHz applications. The antenna is fitted with a SMA reverse thread connector and a blade made of flexible material that can be rotated 360 degree. 3 Applications • Development tools • Test equipment • Access points, routers, etc • Printers 5 General data Product name Titanis 2.4 GHz Part Number 2010B6090-01 (Reverse thread SMA – male) Frequency 2.4 – 2.5 GHz Polarization Linear Operating temperature -40 ºC to +85 ºC Impedance 50 Ω Weight 7.1 g Antenna type Swivel external Dimensions 20 x 19.5 x 62.5 [mm] 6 Electrical characteristics Typical performance Conditions Peak gain 2.2 dBi Average gain -1.0 dBi Average efficiency 80% Maximum Return Loss -13 dB Maximum VSWR 1.6:1 Data given for the 2.4 – 2.5 GHz frequency range
page 2 of 66 CONTENTS 1 General Description of Equipment under Test ........................ 1-3 1.1 APPLICANT............................................................................... 1-3 1.2 MANUFACTURER..................................................................... 1-3 1.3 EQUIPMENT CLASSIFICATION ............................................... 1-3 1.4 BASIC DESCRIPTION OF EQUIPMENT UNDER TEST .......... 1-4 1.5 FEATURE OF EQUIPMENT UNDER TEST.............................. 1-5 2 Test Configuration of Equipment under Test .......................... 2-7 2.1 ENVIRONMENTAL CONDITIONS ............................................ 2-7 2.2 DESCRIPTION OF SUPPORT EQUIPMENT............................ 2-7 2.3 INTERFACE IDENTIFICATION AND CONNECTION DIAGRAM OF TEST SYSTEM.......................................................................... 2-8 3 Operation of Equipment under Test ......................................... 3-9 3.1 OPERATING TEST CONDITIONS ............................................ 3-9 4 Tests Identification and Results ............................................. 4-10 4.1 METHODS OF MEASUREMENT ............................................ 4-12 4.2 FREQUENCY RANGE INVESTIGATED ................................. 4-12 5 Measurements and Tests Data................................................ 5-13 6 Additional Technical Information............................................ 6-59 6.1 ELECTROMAGNETICALLY RELEVANT COMPONENTS: .... 6-59 6.2 RFI SUPPRESSION DEVICES: .............................................. 6-59 6.3 EMI PROTECTION DEVICES: ................................................ 6-59 7 Technical Documentation........................................................ 7-60 8 Photographic Documentation ................................................. 8-61 8.1 EUT IDENTIFICATION ............................................................ 8-61 8.2 TEST SET-UP ......................................................................... 8-64 9 Measurement and Test Equipment Instrumentation............. 9-66 page 3 of 66 1 GENERAL DESCRIPTION OF EQUIPMENT UNDER TEST 1.1 APPLICANT NAME STMicroelectronics ADDRESS Via C. Olivetti, 2 – I-20041 Agrate Brianza (MI) COUNTRY ITALY 1.2 MANUFACTURER NAME STMicroelectronics ADDRESS Via C. Olivetti, 2 – I-20041 Agrate Brianza (MI) COUNTRY ITALY 1.3 EQUIPMENT CLASSIFICATION According to the definition 15.3 (o) EUT is a Intentional Radiator operating within the bands 2400-2483,5 MHz so it shall fulfil provisions of 47CFR Part 15 Subpart C – Intentional radiators – and Section 15.247. page 4 of 66 1.4 BASIC DESCRIPTION OF EQUIPMENT UNDER TEST Parameters Value Type of equipment : ZigBee module general purpose Model: SPZB260C-PRO SPZB260A-PRO FCC ID. : S9NZB260B Trade Name: STMicroelectronics Data cable : / Telecom cable : / Power supply type : DC 3.3V, 41,5mA max. AC power input cable : / DC power input cable : / Model Description SPZB260C-PRO Provided with external ANTENOVA Antenna connected with RF reverse SMA connector SPZB260A-PRO provided with integrated MURATA Antenna Remark: Between the two models no changes to the basic frequency determining and stabilizing circuitry (including clock and data rates), frequency multiplication stages, basic modulator circuit or maximum conducted output power. No simultaneous transmission is possible. page 5 of 66 1.5 FEATURE OF EQUIPMENT UNDER TEST Power specification 3.3 V dc Operating frequency: 2405 ÷ 2480 MHz (16 Channels) Maximum RF output power: 5.39 dBm Modulation: O-QPSK Channel Spacing: >1 MHz Antenna: Dedicated antenna (0,4 dBi gain) Murata mod. ANCV12G44SAA127 Dedicated antenna (2,2 dBi gain) Antenova mod. Titanic 2.4GHz Part No. 2010B6090-01 RX sensitivity: -92 dBm Main SW identification / Main HW Board identification / Peripherals included (for system application) None Interfaces : None Integrated interfaces : None AC adapter: None page 6 of 66 CHANNEL CONFIGURATION Channel (No.) Frequency (MHz) 11 2405.00 12 2410.00 13 2415.00 14 2420.00 15 2425.00 16 2430.00 17 2435.00 18 2440.00 19 2445.00 20 2450.00 21 2455.00 22 2460.00 23 2465.00 24 2470.00 25 2475.00 26 2480.00 page 7 of 66 2 TEST CONFIGURATION OF EQUIPMENT UNDER TEST 2.1 ENVIRONMENTAL CONDITIONS TEST CONDITIONSMEASURED Ambient Temperature 20 ÷ 25 °C Relative Humidity 50 ÷ 60 % Atmospheric Pressure 900 ÷ 1000 mbar 2.2 DESCRIPTION OF SUPPORT EQUIPMENT …
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FCC ID: S9NZB260B PHOTHOGRAPHS Test Set-Up Radiated Test Set-Up Test jig interface for testing
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 2.00 mW |
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