
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Preliminary Specification Number : SP-ZV1CD-E < Specification may be changed by Murata without notice > Murata Manufacturing Co., Ltd. WiFi Module Data Sheet Broadcom BCM43362 WiFi + ST Micro STM32F405 MCU Tentative P/N : LBWA1ZV1CD-716 Preliminary Specification Number : SP-ZV1CD-E 1 / 24 < Specification may be changed by Murata without notice > Murata Manufacturing Co., Ltd. The revision history of the product specification Issued Date Revision Code Revision Page Changed Items Change Reason Apr.11.2014 First issued May.23.2014 A P4 3. Block Diagram, 2MBit -> 4MBi Jun.3.2014B P10 P17 7. Absolute Maximum Rating 8. Operating Condition 9. Electric characteristics 14. Recommended Components Jul.1.2014 C P9 P11 P12 P18 5. LED Drive 6. Phototransistor Corrected reference paragraph 10. External clock source characteristics add 11. Power Up Sequence Changed "NRST" to "RESET_L" 15.4. Low Power Schematic -ABS07-120-32.768kHz-T add -Changed "ST3215SB32768B0HPWB1" to "ST3215SB32768B0HPWB3" Jul.31.2014 D P10 P18 7. SPI Flash Requirements Added SPI Flash Requirements 16. Recommended Components Added SPI Flash Oct.14.2014EP18 16. Recommended Components -Changed APT2012P3BT with KDT00030TR -Changed S24FLxxx with S25FLxxx Preliminary Specification Number : SP-ZV1CD-E 2 / 24 < Specification may be changed by Murata without notice > Murata Manufacturing Co., Ltd. TABLE OF CONTENTS 1. Scope ..................................................................................................................................................... 3 2. Part Number........................................................................................................................................... 3 3. Block Diagram........................................................................................................................................ 4 4. Dimensions, Marking and Terminal Configurations ............................................................................... 5 4.1. Dimensions...................................................................................................................................... 5 4.2. Terminal Configurations................................................................................................................... 6 4.3. Pin Mux Table .................................................................................................................................. 8 5. LED Drive ............................................................................................................................................... 9 6. Phototransistor ....................................................................................................................................... 9 7. SPI Flash Requirements ...................................................................................................................... 10 8. Absolute Maximum Rating ................................................................................................................... 10 9. Operating Condition ............................................................................................................................. 10 10. Electric characteristics.........................................................................................................................11 11. External clock source characteristics..................................................................................................11 11.1. Low-speed external user clock characteristics.............................................................................11 12. Power Up Sequence .......................................................................................................................... 12 12.1. Without RESET_L control............................................................................................................ 12 12.2. With RESET_L control................................................................................................................. 12 12.2.1. RESET_L Circuit................................................................................................................... 12 13. RF Characteristics.............................................................................................................................. 13 13.1. RF Characteristics for IEEE802.11b (11Mbps mode unless otherwise specified.)..................... 13 13.2. RF Characteristics for IEEE802.11g (54Mbps mode unless otherwise specified.)..................... 13 13.3. RF Characteristics for IEEE802.11n (65Mbps(MCS7) mode unless otherwise specified.)........ 14 14. Land Pattern (Top View)..................................................................................................................... 15 15. Reference Circuit................................................................................................................................ 16 15.1. Low Cost Schematic.................................................................................................................... 16 15.2. Low Power Schematic................................................................................................................. 17 16. Recommended Components ............................................................................................................. 18 16.1. Bi-color LED................................................................................................................................. 18 16.2. Phototransistor............................................................................................................................. 18 16.3. SPI Flash ..................................................................................................................................... 18 16.4. Low Cost Schematic.................................................................................................................... 18 16.5. Loโฆ
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FCC Compliance Opinion 2015-1-14 ELIM0007 Information about the Applicant Grantee (Company Name) Murata Manufacturing Co. Ltd. FCC Contact Person Karun Malhotra Address 10-1, Higashikotari 1 chome Nagaokakyo-shi, City, State, Zip Kyoto 617-8555, Japan Job Number ELIM0007 Model Model 1CD, P/N LBWA1ZV1CD-716 FCC ID VPYLB1CDIMP003 Agent Lolo Fong Approval Type Original Equipment Class DTS Digital Transmission System Rule Part 15.247 Overview Murata Manufacturing Co. Ltd. is submitting application for approval of their model 1CD, Part No. LBWA1ZV1CD-716, for full modular approval. The 1 CD is an 802.11 b/g/n IC without built-in antenna. The IC does not have enough physical room for placing the FCC ID on the device so it is contained in the manual. Installers are instructed to affix the FCC ID with proper verbiage on the host device. Confidentiality requested for allowed files. Request is properly addressed and referenced. Short term confidentiality requested. A letter listing the applicable modular requirements was submitted. Recommendation All items have been resolved and completed to my satisfaction; therefore I recommend this application for approval. Signature Dave Tolman, TCB Committee 2/10/2015
Cover&Letter&for&FCC&application& ! ! Electric!Imp!is!submitting!the!Murata!LBWA1ZV1CD=716!(also!known!as!1CD)! module!for!FCC!certification!on!behalf!of!Murata.!Electric!Imp!developed!the!SW!that! is!programmed!into!the!module,!while!Murata!built!the!physical!module.! ! The!LBWA1ZV1CD=716!module!contains!a!32=bit!Cortex!M4!processor!and!an! 802.11b/g/n!WiFi!IC.!It!does!not!have!a!built=in!antenna.!! ! We!are!seeking!FCC!modular!approval!using!two!types!of!external!antennas:!a!PIFA! and!an!off=the=shelf!chip!antenna.!The!FCC!ID!shall!be!VPYLB1CDIMP003.! ! ! ! Lolo!Fong,!Program!manager!at!Electric!Imp!
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! !! 5150$El$Camino$Real,$Suite$C31$$Los$Altos,$CA$94022$ $ www.electricimp.com$ ! ! Request for Confidentiality Letter-FCC December!10,!2014! ! Federal!Communications!Commission! Authorization!and!Evaluation!Division! 7435!Oakland!Mills!Road! Columbia,!Maryland!21046! ! To!whom!it!may!concern,! ! We!hereby!respectfully!request!that!under!the!provision!of!47!CFR!0.459!and! 0.457(d)!the!documents!listed!below!and!attached!with!this!application!for! certification!be!provided!with!confidential!status.! ! โข Schematics! ! We!hereby!respectfully!request!ShortQTerm!Confidentiality!on!the!following! documents! ! โข External!Photos! โข Internal!Photos! โข Test!Setup!Photos! ! Any!exhibit!/!information!for!which!we!have!requested!confidentiality,!but!which! may!not!be!accorded!such!treatment!by!the!FCC,!should!be!returned!to!us.! ! The!documents!listed!above!contain!trade!secrets!that!are!treated!as!confidential!by! us.!!Substantial!competitive!harm!to!us!could!result!should!they!be!made!available!to! the!public.! ! ! Sincerely,! ! ! ! Lolo!Fong,!Program!manager!
1CD ๏ผ Product Name SA2014013 ๏ผ The informa;on of Lot trace ๏ผ Name of manufacture(muRata Logo mark) โ ๏ผ Direc;on display M C Since there is no space which indicates FCC ID, FCC ID is indicated in a manual. Label Design to FCC mark is murata Logo mark. Please accept a logo mark as a manufacturer name. 2014/12/08 FCC ID:VPYLB1CDIMP003 Murata Mark ฮฆ 1.2mm 1CD Height Width Gap 0.8mm 0.4mm 0.1mm Lot trace info. Height Width Gap 0.8mm 0.4mm 0.1mm โmark ฮฆ 0.7mm electricimp Height Width Gap 0.9mm 0.5mm 0.1mm 2D Code 14 ร 14 cell 1cell = 0.2mm
Frequency (MHz) Integrated Spherical Total Isotropic Gain (dBi) Calculated Radiation Efficiency (%) 2200 โ 2.6 dBi 54.95 2205 โ 2.6 dBi 55.08 2210 โ 2.6 dBi 54.70 2215 โ 2.6 dBi 54.83 2220 โ 2.5 dBi 55.85 2225 โ 2.4 dBi 57.02 2230 โ 2.4 dBi 57.81 2235 โ 2.3 dBi 58.75 2240 โ 2.2 dBi 60.26 2245 โ 2.2 dBi 60.26 2250 โ 2.1 dBi 61.09 2255 โ 2.1 dBi 62.37 2260 โ 2.0 dBi 63.24 2265 โ 1.9 dBi 64.57 2270 โ 1.9 dBi 65.31 2275 โ 1.9 dBi 65.01 2280 โ 1.8 dBi 65.77 2285 โ 1.9 dBi 64.86 2290 โ 1.9 dBi 64.57 2295 โ 1.8 dBi 66.22 2300 โ 1.7 dBi 67.61 2305 โ 1.6 dBi 68.55 2310 โ 1.6 dBi 69.66 2315 โ 1.6 dBi 69.98 2320 โ 1.5 dBi 70.31 2325 โ 1.5 dBi 70.15 2330 โ 1.5 dBi 70.15 2335 โ 1.5 dBi 70.79 2340 โ 1.4 dBi 71.94 2345 โ 1.4 dBi 73.11 2350 โ 1.3 dBi 74.47 2355 โ 1.2 dBi 75.86 2360 โ 1.2 dBi 76.56 2365 โ 1.2 dBi 75.51 2370 โ 1.3 dBi 74.64 2375 โ 1.3 dBi 74.30 2380 โ 1.4 dBi 73.28 2385 โ 1.4 dBi 73.11 2390 โ 1.3 dBi 73.45 2395 โ 1.4 dBi 73.28 2400 โ 1.3 dBi 73.96 2405 โ 1.3 dBi 74.82 2410 โ 1.3 dBi 74.30 2415 โ 1.3 dBi 74.64 2420 โ 1.3 dBi 74.47 2425 โ 1.3 dBi 74.47 2430 โ 1.3 dBi 74.99 2435 โ 1.1 dBi 76.91 2440 โ 1.0 dBi 78.89 2445 โ 1.0 dBi 80.17 2450 โ 0.9 dBi 81.85 2455 โ 0.8 dBi 82.41 2460 โ 0.9 dBi 82.04 2465 โ 0.9 dBi 81.85 2470 โ 0.9 dBi 80.91 2475 โ 1.0 dBi 79.62 2480 โ 1.0 dBi 79.98 2485 โ 1.0 dBi 79.98 2490 โ 1.0 dBi 78.89 2495 โ 1.1 dBi 78.16 2500 โ 1.2 dBi 76.56 2505 โ 1.3 dBi 74.82 2510 โ 1.3 dBi 74.64 2515 โ 1.3 dBi 74.99 2520 โ 1.2 dBi 75.68 2525 โ 1.1 dBi 77.09 2530 โ 1.0 dBi 78.89 2535 โ 1.0 dBi 79.98 2540 โ 0.9 dBi 80.91 2545 โ 0.9 dBi 81.85 2550 โ 0.9 dBi 81.66 2555 โ 0.9 dBi 81.28 2560 โ 0.9 dBi 80.54 2565 โ 1.0 dBi 79.25 2570 โ 1.1 dBi 77.98 2575 โ 1.1 dBi 76.91 2580 โ 1.2 dBi 75.16 2585 โ 1.4 dBi 73.11 2590 โ 1.4 dBi 71.78 2595 โ 1.6 dBi 69.98 2600 โ 1.6 dBi 68.71 2605 โ 1.7 dBi 67.61 2610 โ 1.7 dBi 68.08 2615 โ 1.7 dBi 68.39 2620 โ 1.6 dBi 69.18 2625 โ 1.5 dBi 70.15 2630 โ 1.6 dBi 69.82 2635 โ 1.6 dBi 69.66 2640 โ 1.6 dBi 69.82 2645 โ 1.6 dBi 69.82 2650 โ 1.5 dBi 70.63 2655 โ 1.5 dBi 71.29 2660 โ 1.5 dBi 70.79 2665 โ 1.6 dBi 69.98 2670 โ 1.6 dBi 68.87 2675 โ 1.8 dBi 66.68 2680 โ 1.9 dBi 63.97 2685 โ 2.1 dBi 61.94 2690 โ 2.2 dBi 60.12 2695 โ 2.3 dBi 59.02 2700 โ 2.3 dBi 59.02 1CD PCBA PIFA, max gain 2.24dBi โ 5.0 dBi โ 4.0 dBi โ 3.0 dBi โ 2.0 dBi โ 1.0 dBi 0.0 dBi 2200 2250 2300 2350 2400 2450 2500 2550 2600 2650 2700 dBi MHz Total (Spherical) Isotropic Gain in dBi 0.00 10.0020.0030.0040.0050.0060.0070.0080.0090.00 100.00 2200 2250 2300 2350 2400 2450 2500 2550 2600 2650 2700 % Efficiency MHz Antenna Efficiency (in %) Calculated From Total (Spherical) Isotropic Gain Index Number Test Code Theta Phi 2200 MHz Total (dBi) 2205 MHz Total (dBi) 2210 MHz Total (dBi) 2215 MHz Total (dBi) 2220 MHz Total (dBi) 2225 MHz Total (dBi) 2230 MHz Total (dBi) 2235 MHz Total (dBi) 2240 MHz Total (dBi) 2245 MHz Total (dBi) 2250 MHz Total (dBi) 2255 MHz Total (dBi) 2260 MHz Total (dBi) 2265 MHz Total (dBi) 2270 MHz Total (dBi) 2275 MHz Total (dBi) 2280 MHz Total (dBi) 2285 MHz Total (dBi) 2290 MHz Total (dBi) 2295 MHz Total (dBi) 2300 MHz Total (dBi) 2305 MHz Total (dBi) 2310 MHz Total (dBi) 0 M 0 0 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 1 D0 0 15 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 2 D0 0 30 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 3 D0 0 45 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 4 D0 0 60 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 5 D0 0 75 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 6 D0 0 90 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 7 D0 0 105 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 8 D0 0 120 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 9 D0 0 135 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 10 D0 0 150 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 11 D0 0 165 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 12 D0 0 180 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 13 D0 0 195 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 14 D0 0 210 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 15 D0 0 225 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 16 D0 0 240 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 17 D0 0 255 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 18 D0 0 270 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 19 D0 0 285 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 20 D0 0 300 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 21 D0 0 315 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 22 D0 0 330 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.38 0.4 0.37 0.41 0.4 0.43 0.65 0.8 0.89 0.98 23 D0 0 345 0.08 0.09 0.03 0.05 0.12 0.17 0.18 0.19 0.24 0.19 0.2 0.3 0.32 0.3โฆ
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Antennas for Wireless M2M Applications 1 Product Specification AE020157-O Rufa 2.4 GHz SMD Antenna Part No. A5839 / A5887 Product Specification 1 Features โข Designed for 2.4 GHz applications: Bluetooth ยฎ , Wi-Fi ยฎ (802.11b/g), ZigBee ยฎ , etc. โข Easy to integrate โข Low profile design for use with no ground beneath the antenna โข High efficiency โข Light weight โข Intended for SMD mounting โข Supplied in tape on reel 2 Description Rufa is intended for use with all 2.4 GHz applications. The antenna uses a ground plane in order to radiate efficiently, but this ground plane must not extend underneath the antenna itself. The antenna is available in two versions with the feed locations on the right or left hand side of the antenna. 3 Applications โข Mobile phones โข PDAs โข PNDs โข Headsets โข PMPs / MP3s โข Laptops โข PC-Cards โข Sensors Rufa 2.4 GHz SMD Antenna Part No. A5839 / A5887 Antennas for Wireless M2M Applications 2 Product Specification AE020157-O 4 Part numbers Rufa Left: A5839 Rufa Right: A5887 150 5 General data 6 Electrical characteristics Typical performance Conditions Peak gain 2.1 dBi All data measured on Antenovaโs reference boards, part numbers A5839-U1 and A5887-U1 Data given for the 2.4 โ 2.5 GHz frequency range Average gain -1.2 dBi Average efficiency 75% Maximum Return Loss -11 dB Maximum VSWR 1.8:1 Product name Rufa 2.4 GHz Part Number A5839 (Left) A5887 (Right) Frequency 2.4 โ 2.5 GHz Polarization Linear Operating temperature -40 ยบC to +85 ยบC Impedance with matching 50 โฆ Weight 0.1 g Antenna type SMD Dimensions 12.8 x 3.9 x 1.1 [mm] Rufa 2.4 GHz SMD Antenna Part No. A5839 / A5887 Antennas for Wireless M2M Applications 3 Product Specification AE020157-O 7 Electrical performance 7- 1 Return Loss 2200 2300 2400 2500 2600 2700 -40 -30 -20 -10 0 โ โ [MHz] [dB] 7- 2 VSWR 2200 2300 2400 2500 2600 2700 1 2 3 4 5 โ โ [MHz] Rufa 2.4 GHz SMD Antenna Part No. A5839 / A5887 Antennas for Wireless M2M Applications 4 Product Specification AE020157-O 7- 3 Antenna patterns Z X Y XY plane ZY plane XZ plane Patterns show combined polarisations measured on reference board A5839-U1 Rufa 2.4 GHz SMD Antenna Part No. A5839 / A5887 Antennas for Wireless M2M Applications 5 Product Specification AE020157-O 8 Antenna dimensions Rufa Left Rufa Right L W H Length Width Height 12.8 ยฑ 0.2 3.9 ยฑ 0.2 1.1 ยฑ 0.2 Dimensions in mm 9 Antenna footprint Rufa Left (Part No: A5839) Rufa Right (Part No: A5887) * CAD files of the antenna footprint are available from Antenova M2M on request. Please contact [email protected] for further details. I S K J N L O 1.0 ยฑ 0.1 2.0 ยฑ 0.1 8.1 ยฑ 0.1 3.7 ยฑ 0.1 1.3 ยฑ 0.1 2.4 ยฑ 0.1 0.5 ยฑ 0.1 Dimensions in mm Rufa 2.4 GHz SMD Antenna Part No. A5839 / A5887 Antennas for Wireless M2M Applications 6 Product Specification AE020157-O 10 Electrical interface 10-1 Transmission lines โข All transmission lines should be designed to have a characteristic impedance of 50 โฆ โข The length of the transmission lines should be kept to a minimum โข Any other parts of the RF system like transceivers, power amplifiers, etc, should also be designed to have an impedance of 50 โฆ Once the material for the PCB has been chosen (PCB thickness and dielectric constant), a coplanar transmission line can easily be designed using any of the commercial software packages for transmission line design. For the chosen PCB thickness, copper thickness and substrate dielectric constant, the program will calculate the appropriate transmission line width and gaps on either side of the track so the characteristic impedance of the coplanar transmission line is 50 โฆ. 10-2 Matching circuit The antenna requires a matching circuit that must be optimized for each customerโs product. The matching circuit will require up to three components and the following pad layout should be designed into the device so the correct circuit can be installed: The antenna feed pad and the antenna ground pad are indicated in the drawing above. Additional pads are for mechanical attachment only and should not be grounded. Rufa 2.4 GHz SMD Antenna Part No. A5839 / A5887 Antennas for Wireless M2M Applications 7 Product Specification AE020157-O In addition to the matching circuit, a separate DC blocking capacitor will also be required between the radio and the antenna matching circuit. Note: The component values for the matching circuit will vary depending on the size of the PCB and surrounding components. The impedance of the antenna should be measured before selecting suitable matching components. Antenova M2M offers this service on request. Contact [email protected] for further information. 10-3 Antenna placement Antenova M2M strongly recommends placing the antenna near the edge of the board. Maximum antenna performance is achieved by placing the antenna towards one of the corners of the PCB and with the feed point of the antenna as close to same corner of the PCB as possible. Additional ground and components near the antenna should be at a distance of at least 2 mm. Where possible the antenna should be clear of ground from both sides, although the antenna can work well with a minimum clearance of D โฅ 2 mm as shown in the drawing above. Rufa 2.4 GHz SMD Antenna Part No. A5839 / A5887 Antennas for Wireless M2M Applications 8 Product Specification AE020157-O 10-4 Reference boards The reference boards have been designed for evaluation purposes of Rufa 2.4 GHz and they include a SMA female connector Rufa Left Rufa Right Dimensions in mm To order a reference board contact [email protected] . Rufa 2.4 GHz SMD Antenna Part No. A5839 / A5887 Antennas for Wireless M2M Applications 9 Product Specification AE020157-O 11 Soldering This antenna is suitable for lead free soldering. The reflow profile should be adjusted to suit the device, oven and solder paste, while observing the following conditions: - The maximum temperature should not exceed 240 ยบC - However for lead free soldering, a maximum temperature of 255 ยบC for no more than 20 seconds is permitted. -โฆ
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Preliminary Specification Number : SP-ZV1CD-E < Specification may be changed by Murata without notice > Murata Manufacturing Co., Ltd. WiFi Module Data Sheet Broadcom BCM43362 WiFi + ST Micro STM32F405 MCU Tentative P/N : LBWA1ZV1CD-716 Preliminary Specification Number : SP-ZV1CD-E 1 / 24 < Specification may be changed by Murata without notice > Murata Manufacturing Co., Ltd. The revision history of the product specification Issued Date Revision Code Revision Page Changed Items Change Reason Apr.11.2014 First issued May.23.2014 A P4 3. Block Diagram, 2MBit -> 4MBi Jun.3.2014B P10 P17 7. Absolute Maximum Rating 8. Operating Condition 9. Electric characteristics 14. Recommended Components Jul.1.2014 C P9 P11 P12 P18 5. LED Drive 6. Phototransistor Corrected reference paragraph 10. External clock source characteristics add 11. Power Up Sequence Changed "NRST" to "RESET_L" 15.4. Low Power Schematic -ABS07-120-32.768kHz-T add -Changed "ST3215SB32768B0HPWB1" to "ST3215SB32768B0HPWB3" Jul.31.2014 D P10 P18 7. SPI Flash Requirements Added SPI Flash Requirements 16. Recommended Components Added SPI Flash Oct.14.2014EP18 16. Recommended Components -Changed APT2012P3BT with KDT00030TR -Changed S24FLxxx with S25FLxxx Preliminary Specification Number : SP-ZV1CD-E 2 / 24 < Specification may be changed by Murata without notice > Murata Manufacturing Co., Ltd. TABLE OF CONTENTS 1. Scope ..................................................................................................................................................... 3 2. Part Number........................................................................................................................................... 3 3. Block Diagram........................................................................................................................................ 4 4. Dimensions, Marking and Terminal Configurations ............................................................................... 5 4.1. Dimensions...................................................................................................................................... 5 4.2. Terminal Configurations................................................................................................................... 6 4.3. Pin Mux Table .................................................................................................................................. 8 5. LED Drive ............................................................................................................................................... 9 6. Phototransistor ....................................................................................................................................... 9 7. SPI Flash Requirements ...................................................................................................................... 10 8. Absolute Maximum Rating ................................................................................................................... 10 9. Operating Condition ............................................................................................................................. 10 10. Electric characteristics.........................................................................................................................11 11. External clock source characteristics..................................................................................................11 11.1. Low-speed external user clock characteristics.............................................................................11 12. Power Up Sequence .......................................................................................................................... 12 12.1. Without RESET_L control............................................................................................................ 12 12.2. With RESET_L control................................................................................................................. 12 12.2.1. RESET_L Circuit................................................................................................................... 12 13. RF Characteristics.............................................................................................................................. 13 13.1. RF Characteristics for IEEE802.11b (11Mbps mode unless otherwise specified.)..................... 13 13.2. RF Characteristics for IEEE802.11g (54Mbps mode unless otherwise specified.)..................... 13 13.3. RF Characteristics for IEEE802.11n (65Mbps(MCS7) mode unless otherwise specified.)........ 14 14. Land Pattern (Top View)..................................................................................................................... 15 15. Reference Circuit................................................................................................................................ 16 15.1. Low Cost Schematic.................................................................................................................... 16 15.2. Low Power Schematic................................................................................................................. 17 16. Recommended Components ............................................................................................................. 18 16.1. Bi-color LED................................................................................................................................. 18 16.2. Phototransistor............................................................................................................................. 18 16.3. SPI Flash ..................................................................................................................................... 18 16.4. Low Cost Schematic.................................................................................................................... 18 16.5. Loโฆ
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1CD$Installa+on$Manual$ FCC#ID#of#this#product#is#as#follows:# #FCC#ID:#VPYLB1CDIMP003.# For#OEM#integraDon#only#โ#device#cannot#be#sold#to#the#general# public.#Therefore#we#will#ask#OEM#to#include#the#following# statements#required#by#FCC#on#the#product#and#in#the# installaDon#manual#noDce.# Contents:# 1. Land#PaMern#(Recommended)# 2. Chip#antenna#details# 3. Layout#Guidelines#โ#chip#antenna# 4. Antenna#circuit#schemaDc#โ#chip#antenna# 5. PIFA#antenna#details# 6. Layout#Guidelines#โ#PIFA#antenna# 7. Antenna#circuit#schemaDc#โ#PIFA#antenna# 8. 4Ylayer#PCB#stackup#details#โ#chip#antenna#&#PIFA#antenna# 9. Test#procedure#for#design#verificaDon# 10. ProducDon#test#procedure#to#ensure#compliance# 11. FCC#&#IC#statements# 2014/12/08 1.)Land)PaRern)(Recommended)) Layout Guidelines: Chip Antenna This section provides required guidelines for PCB designs incorporating the 1CD module. Figure 1 through Figure 4 show the four-layer 1CD wireless certification board. Refer to Figure 5 through Figure 7 for examples demonstrating good layout practices. Figure 1: Top Layer Figure 2: Ground Plane (Layer 2, Negative Image) Figure 3: Power Plane (Layer 3, Negative Image) Figure 4: Bottom Layer (Top View) Figure 5: RF_OUT Pad and Surrounding Ground Pads Figure 5 shows the RF_OUT pad on the 1CD footprint. The RF_OUT pad is surrounded by ground pads; these should be tied together to form a ground reference around the end of the RF trace. Tie together the ground pads surrounding the RF_OUT for ground reference Figure 6: RF Trace from Module to Antenna Figure 6 shows the entire RF trace, from the 1CD module to the PIFA antenna. The RF trace must be a 50ฮฉ ยฑ 2ฮฉ impedance controlled transmission line which is referenced to a solid, unbroken ground. The trace width and distance to the ground plane must be adjusted to achieve the target impedance. The trace must be shielded by applying stitching vias along the edge of the ground pour on both sides of the RF trace. RF traces should be shielded by via stitching on both sides RF traces must have constant impedance; the RF feed is a microstrip transmission line. RF trace must be kept as short as possible. Figure 7: Antenna and Stitching Vias Figure 7 shows the chip antenna. The antenna must be placed at the edge of the PCB, with a copper keep-out under the entire antenna on all PCB layers. No other traces or components may be placed in this region. A row of stitching vias is required along the edge of the ground pour below the antenna section. The moduโฆ
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 88.30 mW |
Communication Module
Equipment Class
NII - Unlicensed National Information Infrastructure TXCommunication Module
Equipment Class
DTS - Digital Transmission System
Wireless Vibration Sensor Unit
Equipment Class
DTS - Digital Transmission SystemCommunication Module
Equipment Class
DTS - Digital Transmission System
LoRa Module
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter