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ZBR001SATELLITE TRANSMITTER

Sypes Canyon Communications, Inc.
SATELLITE TRANSMITTER - FCC ID ZBR001 - Sypes Canyon Communications, Inc.
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Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Jun 14, 2011
Application Purpose
Original Equipment
Date of Application
Jun 14, 2011
Equipment Note
SATELLITE TRANSMITTER
Frequency Range
1618.75000000 - 1618.75000000
Company
Sypes Canyon Communications, Inc.
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Parts List/Tune Up Info

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

Sypes Canyon Communications Proprietary Sypes Canyon Communications y 910 Technology Blvd., Suite A y Bozeman, Montana 59718 ZeMo Satellite Transmitter User’s Manual 1.1 Prepared By Sypes Canyon Communications June 2011 2 Confidential and Proprietary Sypes Canyon Communications y 910 Technology Blvd., Suite A y Bozeman, Montana 59718 Date Rev Description Name 6 May 11 1.0 First Production Release GAN 12 June 11 1.1 Modular cert additions GAN REVISION HISTORY 3 Confidential and Proprietary Sypes Canyon Communications y 910 Technology Blvd., Suite A y Bozeman, Montana 59718 1. Description ............................................................................................................................................ 4 1.1. Definitions ......................................................................................................................................... 4 2. ZeMo Device Theory of Operation ........................................................................................................ 4 3. Satellite Messaging Method ................................................................................................................. 6 4. I2C Serial Host Interface ........................................................................................................................ 6 5. On‐Air Interface .................................................................................................................................... 8 5.1. RF Modulation ................................................................................................................................... 8 5.1.1. EMI/EMC Conformance .............................................................................................................. 10 6. Electrical and Mechanical Specifications ............................................................................................ 13 6.1. RF Transmit Design Guidelines........................................................................................................ 13 6.2. Electrical Supply Guidelines ............................................................................................................ 14 6.3. Mechanical Interface ...................................................................................................................... 15 7. Integration Guidelines ........................................................................................................................ 16 7.1. Regulatory Certifications and ZeMo Labeling ................................................................................. 16 7.2. Globalstar Certifications ................................................................................................................. 18 7.3. Antenna Guidelines ......................................................................................................................... 18 7.4. Production Compliance Guidelines ................................................................................................. 18 Table of Contents 4 Confidential and Proprietary Sypes Canyon Communications y 910 Technology Blvd., Suite A y Bozeman, Montana 59718 1. Description The ZeMo device is a radio transmitter module that creates the radio frequency (RF) signals to relay small packets of data to the Globalstar Simplex Data Service satellite network. The ZeMo serves as a communication gateway in an embedded application to send transmit‐only (simplex) data. Data packets are in small, 9‐byte segments. The ZeMo supports 9, 18, 27 or 36 byte data payloads. The Globalstar Simplex Data Service comprises a set of low‐earth‐orbit (LEO) satellites operating as bent‐pipe data relay devices to ground earth data collection points. This user’s manual provides an overview of the operational and physical requirements for the ZeMo transmitter device that is compatible with this satellite network system. The ZeMo device is the radio transmitter only. This user’s manual does not stipulate application requirements nor the radiating (antenna) requirements of an application. The ZeMo must be fully integrated into a larger application device to provide application utility. 1.1. Definitions The following definitions used herein shall have the meanings as defined below: Globalstar a) Globalstar. The term “Globalstar” means Globalstar, Inc., a Delaware USA Corporation having offices at 461 South Milpitas Blvd, Milpitas, California 95035 b) Globalstar Simplex Data Service. The term “Globalstar Simplex Data Service” refers to communications from simplex transmitters relayed over Globalstar’s network of low earth orbit satellites to Globalstar gateways for distribution to end customers. c) LEO. The term LEO is an acronym meaning low earth orbit. d) GPS. The term GPS is an acronym meaning global positioning system. 2. ZeMo Device Theory of Operation The ZeMo device is a radio transmitter module that contains the functionality to accept configuration and data from a host application and convey data to the Globalstar Simplex Data Service satellite system. The block diagram below depicts the integral components of the ZeMo device to fulfill this functionality. The ZeM o managem power to The ZeM o applicatio transmit s The ZeM o the host a power sta Sypes o module co ment and con create the vo o module is a on via a 6 pin signal. o module de application pr ate drawing m Canyon Com ntains a micr ntrols the RF oltages neces a two layer b connector. T picted below rocessor via t mere microAm munications roprocessor t transmitter sary to perfo board assemb The connecto w performs th the I2C serial mps. y 910 Techno that controls functions. T rm the functi bly measuring or provides po he transmit f interface. W ology Blvd., Su the transmit The ZeMo mo ion g ½” x ½” squ ower, I2C ser unctions des When idle, the Confident uite A y Bozem tter function odule condit uare and inte rial communic cribed when e ZeMo modu ial and Propr ma…

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Cover Letter(s)

910 Technology Blvd., Suite A Bozeman, Montana 59718 Tel: 406-599-0719 & 406-581-0370 Sypes Canyon Communications, Inc. Bozeman Montana Modular Approval Request Sypes Canyon Communications 11 May 2011 Dear Application Examiner Sypes Canyon Communications respectfully requests the grant of a modular approval certification with FCC ID allocation for the SCC-001 mobile earth-station transmitter. The SCC-001 radio transmitter will be integrated into a variety of mobile satellite service (“MSS”) devices for remote telemetry applications, including domestic and international tracking. The SCC- 001 will be operated at 30 cm or more from persons’ bodies, transmitting in Globalstar, Inc.’s MSS service link at 1610- 1618.725 MHz. As described in the FCC Office of Engineering and Technology’s February 3, 2011 publication “Equipment Authorization Guidance for Part 25 Transmitters,” certification of this mobile earth-station transmitter under Part 2 of the Commission’s rules is optional and therefore permitted. See 273109 D01 Equip Auth Guide Part 25 TXReceiver v02r02 at 1. In addition to the FCC modular approval being sought, Sypes Canyon is simultaneously securing international regulatory certifications. The FCC Part 25 modular approval will be followed by a filing with the ITU GMPCS MoU registry to permit freedom of use of this mobile earth-station transmitter in those countries that are signatories to the GPMCS MoU. To that end, pre-approval of the SCC-001 transmitter from a recognized regulatory body such as the FCC will help facilitate ITU approval in the various applications that will incorporate the SCC-001 for international use. A number of the signatory countries use the FCC reports and the FCCID as proof that the product is acceptable for use in their own country. The FCCID makes it possible for the other regulators to review the test reports directly online via the FCC website, fully confident that they are reviewing unaltered results. The requirements of Public Notice DA00-1407 and 996369 D01 Module Equip Auth Guide v01 have been met and shown on the following statements. 1. “The final device is designed for mobile or fixed operation (Portable is not permitted – Reference TCB Exclusion List (17 July 2002)II(g)).” The SCC-001 is to be used as a mobile module embedded in mobile applications. 2. “The maximum antenna gain to allow compliance with RF exposure requirements is listed on the Grant of Certification for the module.” The “SCC-001 module has been tested and to be used with a 5 dBi (or lower) patch antenna. The SCC-001 with this antenna fulfills the requirements of the FCC CFR 47 part 25, IC RSS170, FCC §1.1310, §1.1310 for a mobile device, and IC RS102. 3. “The licensed module must have an FCC ID label on the module itself. That FCC ID label must be visible through a window on the final device or it must be visible when an access panel, door or cover is easily removed. If not, a second label must be placed on the outside of the final device that contains the following text: “Contains FCC ID:xxxyyyzzz”.” 2 of 2 Sypes Canyon Communications, Inc. 910 Technology Blvd., Suite A Bozeman, Montana 59718 Tel: 406-599-0719 & 406-581-0370 The SCC-001 module will be labeled with the FCC/IC ID numbers. All devices that use this device will be labeled with Contains FCCID: xxx-yyyzzz; IC:aaaabbbb. Additionally, the SCC-001 radio transmitter complies with the requirements of Section 15.212(a)(1) as summarized below: i. Shielded radio frequency assembly: The SCC-001 contains a metal shield that completely encloses all radio frequency components. ii. Buffered modulation/data inputs: The SCC-001 uses industry standard I2C serial communications with the prescribed signal termination networks to minimize unintentional radiation compliant with Part 15 use. iii. Power regulation: The SCC-001 incorporates internal supply regulation as well as output radio power management networks to ensure repeatability of design. iv. Unique antenna connector: The SCC-001 incorporates a specific RF output connector (pad) that is specified out in the user’s manual to operate with a specific antenna (Advanced Specialties Products antenna part number PA25- 1615-025SA or PA451615-1575SA). The specified antenna gain and antenna gain pattern has been validated by verification testing. The antenna must meet operational and maximum gain limits of +5 dBi and remain compliant with the network operator strict antenna performance guidelines for envelope shape. v. Compliance in stand-alone configuration: The SCC-001 is designed as a slave radio module, but has been tested as compliant in stand-alone use using internal test-modes enabled by firmware command. Testing was performed on a bare-board test bed, exposing the transmitter to radiated environment (no secondary enclosure). vi. Permanent FCC ID labeling: The SCC-001 contains a permanent label containing the FCC ID with model number and network serial number. The label is shown and described in the user’s manual. vii. Specific use rules: The SCC-001 user’s manual describes all the use-rules for integrators, including applicable regulatory and network operator rules. viii. RF Exposure requirements: The SCC-001 complies with all applicable RF exposure requirements. SAR compliance is not required for this modular device and so noted in the user’s manual. Sypes Canyon Communications believes it has fully met the intent and letter of the requirements for modular approval and respectfully requests the grant of a modular approval for the SCC-001 mobile earth-station transmitter. ______________________________________ Gary Naden CTO, Sypes Canyon Communications

Cover Letter(s)

910 Technology Blvd., Suite A Bozeman, Montana 59718 Tel: 406‐599‐0719 & 406‐581‐0370 Sypes Canyon Communications, Inc. Bozeman Montana Federal Communications Commission June 12, 2011 Laboratory Division 7435 Oakland Mills Road Columbia MD, 21046 RE: FCC ID ZBR‐001 731 Confirmation Number TC875206 Dear Mr. Neumann Thank you for your thorough review of the modular certification documentation and User’s Manual submitted for the Satellite Transmitter ZBR‐001. This letter and accompanying revised User’s Manual addresses the comments provided in your June 8, 2011 dismissal letter. All comments were addressed in the User’s Manual with summary or further explanation to your comments provided herein. We respectfully request modular certification approval for the ZBR‐001 transmitter to enter immediate application development. Comments contained in the Dismissal letter: Examiner objected to the phrase “This user’s manual does not stipulate application requirements nor the radiating (antenna) requirements of an application. “ This phrase has been removed from the User’s Manual, as it was confusing in meaning. The requirements not stipulated were product utility features that cannot be foreseen by the radio manufacturer. The User’s Manual must be sufficient to correctly integrate the radio transmitter into a product (application) but not to foresee every possible use of the data being transmitted. This theme has been propagated throughout the User’s Manual alerting the application developer that they must comply with the use requirements of all modular certifications as well as the RTU certification processes imposed by the network operator (Globalstar). In the detailed list of objections: Examiner states: “The ZeMo must be identified as approved for mobile devices only. Installation in portable devices is not permissible.” Additionally, the examiner noted the User’s Manual did not stipulate the 20 cm separation notice required for mobile devices. This has been added in Section 7: The ZeMo is approved for use in mobile devices only. Installation in human‐worn devices is not permissible. Applications must be installed in such a way as to prevent approach within 20 cm of the transmitting antenna. This warning and notice must be provided by product integrator that utilizes the ZeMo device. 2 of 5 Sypes Canyon Communications, Inc. 910 Technology Blvd., Suite A Bozeman, Montana 59718 Tel: 406‐599‐0719 & 406‐581‐0370 Examiner states: “Test data must be submitted for all PCB trace designs from the module to the antenna specified to the OEM”. The User’s Manual does specify a recommended trace design in Section 6.1. Specifically, Section 6.1 states: The ZeMo sends the RF transmit signal through one of the pins on the connector. In order to avoid signal loss, the signal should be routed through a 50 Ohm coplanar RF signal path in the application design. For 0.062” FR4 circuit assemblies as depicted below, this is typically a 63 mil RF trace (s) with a 15 mil gap(w) to stitched ground skirt on top of ground on opposite side of the board (h). The geometries described in this Section 6.1 result in a nominal 50 Ohm stripline trace that delivers the RF signal to the antenna specified in section 7.3. The User’s Manual is intended to provide adequate instruction to a professional of reasonable skill to implement a producible and repeatable product that complies with all certification requirements. The added diagram (also shown above herein) has been added to the User’s Manual that depicts the geometries specified. The spectral mask tables and diagrams of 5.1.1 serve as test data for the application developer to ascertain proper integration of the ZeMo device. Beyond this, it is unclear to us what additional test data the Examiner is requesting for the PCB trace beyond what is provided in public domain circuit trace impedance literature. In an attempt to facilitate the Examiner’s “test data” comment, a link to a public domain impedance calculator has been added to the User’s Manual. The Examiner also states that the antenna design must be specified in the transmitter User’s Manual. There are a number of different commercially available antennas that comply with all regulations, many not known by the transmitter manufacturer, and new antennas are being released with some regularity. It is impossible to predict all the potential application uses of the ZeMo transmitter, or to know which antennas will be used or developed for use, so in an effort to convey the intent of the Examiner’s noted comments, the following comment is added to the User’s Manual. It is the responsibility of the application developer to ensure that the antenna design and RF trace path loss deliver the RF energy to the antenna to ensure compliance with the radiation performance parameters of the modular and end‐product RTU certifications (FCC ID ZBR001 and 3 of 5 Sypes Canyon Communications, Inc. 910 Technology Blvd., Suite A Bozeman, Montana 59718 Tel: 406‐599‐0719 & 406‐581‐0370 IC: 9540A‐001 and the Globalstar certification processes then in place). Specifically, minimum and maximum EIRP values must be met and demonstrated by the application designer as part of the product certification process required by Globalstar. Additionally, the maximum antenna gain and unintended radiation limits set by the federal regulatory certifications must also be met. The Examiner states “the instructions should also provide a list of appropriate parts by manufacturer and specifications, the test procedures for design verification, and production test procedures for ensuring compliance.” Section 7.2 stipulates that any integration of the ZeMo transmitter must be approved for use by Globalstar, using the process specified in Globalstar document GS‐07‐1248. Section 7.3 specifies the approved antennas and manufacturer. Both companies are independent of the ZeMo manufacturer, and as such the User’s Manual refers the integrators to these parties for the latest versions …

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Cover Letter(s)

Confidentiality Request May 5, 2011 Timco Engineering PO Box 370 Newberry, FL 32669 RE : FCC ID: ZBR001 Dear Application Examiner: 1. With regards to the exhibits submitted in support of the application for FCC ID: ZBR001, please classify the following as confidential pursuant to Sections 0.457 & 0.49 of the Commission’s Rules: -Schematics (file name 11-0091.Sypes Canyon.Zemo.CONFIDENTIAL Schematics.pdf) -Block diagram (file name 11-0091.Sypes Canyon.Zemo.CONFIDENTIAL. Block Diagram.pdf) -Theory of Operation (file name 11-0091.Sypes Canyon.Zemo.CONFIDENTIAL Theory of Operation.pdf) These exhibits contain technical information that Sypes Canyon deems to be sensitive and proprietary. Therefore this information cannot be published. If this information were to be made public it could be used to the disadvantage of the applicant in the marketplace. Sincerely, Sandi McEnery US Tech (Authorized Agent for Sypes Canyon) 3505 Francis Circle Alpharetta, GA 30004 PH: 770-740-0717 Fax: 770-740-1508 www.ustech-lab.com

External Photos

US Tech 11-0091 Client Sypes Canyon Issue Date 05-05-2011 Model: SCC-001 FCC ID: ZBR001 IC: 9540A-001 Page 1 of 2 Annex - External Photographs Photo 1 Top US Tech 11-0091 Client Sypes Canyon Issue Date 05-05-2011 Model: SCC-001 FCC ID: ZBR001 IC: 9540A-001 Page 2 of 2 Photo 2 Bottom

ID Label/Location Info

23 Confidential and Proprietary Sypes Canyon Communications  910 Technology Blvd., Suite A  Bozeman, Montana 59718 6. Integration Guidelines Integrating the SCC-001 into an application requires compliance with the network operation guidelines as set forth by Globalstar. This section highlights the primary guidelines and restrictions, however users must consult with Globalstar for any updates or changes to operation that govern use of the Simplex Satellite service. 6.1. Regulatory Certifications The application that incorporates the SCC-001 device must be properly certified for the region of operation. SCC-001 will carry modular certifications for FCC, IC and EU, but the integrator must confirm operation of the final integrated unit in compliance with the modular use and regional regulatory restrictions including the required marking of the end device. The SCC-001 transmitter carries a label on the top of the shield containing the FCC ID and IC ID and network serial number with MicroQR barcode as shown below: SCC-001 Transmitter Label Due to the size limitations of the SCC-001 transmitter, the label information does not carry the disclaimer for FCC Part 15 non-interference testing required for integration and use of the device in a product. When incorporated into a device, the end product must carry the following label denoting the regulatory IDs contained: 24 Confidential and Proprietary Sypes Canyon Communications  910 Technology Blvd., Suite A  Bozeman, Montana 59718 Product Label In addition to proper labeling, application and product developers must adhere to the regulatory requirements for Part 25 radio operation and Part 15 interference restrictions. If size permits, the product should also be labeled with the following note: THIS DEVICE COMPLIES WITH PART 15 OF THE FCC RULES. OPERATION IS SUBJECT TO THE FOLLOWING TWO CONDITIONS. (1) THIS DEVICE MAY NOT CAUSE HARMFUL INTERFERENCE, AND (2) THIS DEVICE MUST ACCEPT ANY INTERFERENCE RECEIVED, INCLUDING INTERFERENCE THAT MAY CAUSE UNDESIRED OPERATION. Where size does not permit, the above note must be included in the user’s manual and/or specifications for the product. Refer to guidelines for proper marking as specified by the appropriate regulatory bodies for product distribution. 6.2. Globalstar Certifications The application that incorporates the SCC-001 device must be properly certified by Globalstar before use over their network. This will include proper channelization for regional use and other radio telemetry requirements. Contact Globalstar for RTU certification procedures. Special attention must be given to channelization of use as specified in Globalstar document GS-07-1248. 6.3. Antenna Guidelines The SCC-001 may be integrated with an antenna with a maximum directivity gain of +5dBi, such as the Spectrum Advanced Specialties Products antenna part number PA25-1615-025SA.

Internal Photos

US Tech 11-0091 Client Sypes Canyon Issue Date 05-05-2011 Model: SCC-001 FCC ID: ZBR001 IC: 9540A-001 9540A-001 Page 1 of 5 Annex - Internal Photographs Photo 1 Top US Tech 11-0091 Client Sypes Canyon Issue Date 05-05-2011 Model: SCC-001 FCC ID: ZBR001 IC: 9540A-001 9540A-001 Page 2 of 5 Photo 2 Bottom US Tech 11-0091 Client Sypes Canyon Issue Date 05-05-2011 Model: SCC-001 FCC ID: ZBR001 IC: 9540A-001 9540A-001 Page 3 of 5 Photo 3 Transmitter w shielding in place US Tech 11-0091 Client Sypes Canyon Issue Date 05-05-2011 Model: SCC-001 FCC ID: ZBR001 IC: 9540A-001 9540A-001 Page 4 of 5 Photo 4 Transmitter Module Photo 5 Transmitter Module, Shield Removed US Tech 11-0091 Client Sypes Canyon Issue Date 05-05-2011 Model: SCC-001 FCC ID: ZBR001 IC: 9540A-001 9540A-001 Page 5 of 5 Photo 6 Transmitter Module, disassembled Photo 7 Transmitter Module, bottom, no shield

Parts List/Tune Up Info

Quantity Comment Description Designator Footprint Package / Case Manufacturer Manufacturer Part Number Tolerance 14 100pF Capacitor C1, C2, C3, C4, C5, C6, C7, C8, C9, C11, C14, C18, C33, C34 DRCAPC1005L 0402 (1005 Metric) Murata GRM1555C1H101JZ01D 5 COG 7 1000pF Capacitor C10, C12, C13, C20, C22, C24, C31 DRCAPC1005L 0402 (1005 Metric) Murata GRM1555C1H102JA01D 5 COG 1 22μF Capacitor (Semiconductor SIM Model) C16 CAPC2012L 0805 (2012 Metric) Taiyo Yuden LMK212BJ226M G-T 20 X5R 1 4.7μF MURATA - GRM188R60J475KE19 D - CAPACITOR, 0603, 4.7UF, 6.3V C17 CAPC1608L 0603 (1608 Metric) TDK Corporation C1608X5 R1A475K 10 X5R 3 10uF Capacitor (Semiconductor SIM Model) C19, C21, C23 CAPC1608L 0603 (1608 Metric) Taiyo Yuden L MK107BJ106MALTD 20 X5R 1 180pF Capacitor C25 DRCAPC1005L 0402 (1005 Metric) Murata GRM1555C1H181JA01D 5 COG 1 56pF Capacitor C26 DRCAPC1005L 0402 (1005 Metric) Murata G RM1555C1H560JD01D 5 COG 1 2.7nF Capacitor C27 DRCAPC1005L 0402 (1005 Metric) Murata GRM155R71H272KA01D 10 X7R 4 0.1uF Capacitor C29, C32, C42, C54 DRCAPC1005L 0402 (10 05 Metric) Murata GRM155R71C104KA88D 10 X7R 2 3.3pF Capacitor C36, C59 DRCAPC1005L 0402 (1005 Metric) T DK Corporation C1005C0G1H3R3B 5 COG 2 2.2nF Capacitor C44, C46 DRCAPC1005L 402 (1005 Metric) Mu rata GRM155R71H222KA01D 10 X7R 1 3.3nF Capacitor C45 DRCAPC1005L 402 (1005 Metric) Murata G RM155R71H332KA01D 10 X7R 4 2.2uF Capacitor (Semiconductor SIM Model) C47, C48, C50, C51 DRCAPC1005L 0402 (1005 Metric) TDK C orporation C1005X5R0J225M X5R 2 0.5pF Capacitor C55, C56 DRCAPC1005L 0402 (1005 Metric) T DK Corporation C1005C0G1H0R5C 5 COG 1 2.2pF Capacitor C57 DRCAPC1005L 0402 (1005 Metric) TDK Co rporation C1005C0G1H2R2C 5 COG 1 1.2pF Capacitor C58 DRCAPC1005L 0402 (1005 Metric) TDK Co rporation C1005C0G1H1R2B 5 COG 1 NSR30CM3T5G DIODE SCHOTTKY DUAL 30V SOT-723 D1 SOT-723 SOT-723 ON Semiconductor NSR30CM3T5G 1 3.3μH Inductor, 3.3uH, 0.88A, 299mO L1 EPL2010 Coilcraft EPL2010-332MLB 2 22uH Inductor L2, L3 0603LS 0603 (1608 Metric) Coilcraft 06 03LS-223XJLB 2 2.7nH Inductor L4, L5 DRCAPC1005L 0402 (1005 Metric) Coil craft 0402HP-2N7XJLU 2 15nH Inductor L6, L7 DRCAPC1005L 0402 (1005 Metric) Coilcr aft 0402HP-15NXJLB 1 CLP-104-02-F-D Header, 4-Pin, Dual row P1 CLP-104-02-XXX-D- A Samtec CLP-104-02-F-D 1 FTS-104-03-L-DV Header, 4-Pin, Dual row P2 FTSH-104-0 2-L-DV Samtec FTS-104-03-L-DV 1 NE664M04 NPN General Purpose Amplifier Q1 NEC_M04 1 VMMK-2403 2-4 GHz Amp RFIC LNA E-PHEMT 4GHZ 0402 Q2 VMMK-2403 0402 (1005 Metric) - 1.00mm L x 0.50mm W x 0.25mm H Avago Technologies US Inc. VMMK-2403-BLKG 1 2SA2029T2LR TRANSISTOR PNP 50V 0.15A VMT3 Q3 SOT-723 VMT3 Rohm Semiconductor 2SA2029T2LR 1 DMG1012UW-7 MOSFET N-CH 20V 1A SOT323 Q4 SOT-323 SOT-323-3 Diodes Inc DMG1012UW-7 1 51 Resistor R20 DRCAPC1005L 0402 (1005 Metric) Panasonic - E CG ERJ-2RKF51R1X 1% 1 300 Resistor R1 DRCAPC1005L 0402 (1005 Metric) Panasonic - E CG ERJ-2RKF3000X 1% 2 100 Resistor R2, R9 DRCAPC1005L 0402 (1005 Metric) Panasoni c - ECG ERA-W33J101X 1% 5 1K Resistor R3, R6, R7, R14, R21 DRCAPC1005L 0402 (1005 Metric) Stackpole Electronics Inc RMCF0402FT1K00 1% 1 4.7k Resistor R4 DRCAPC1005L 0402 (1005 Metric) Panasonic - ECG ERJ-2RKF4701X 1% 1 1.8k Resistor R5 DRCAPC1005L 0402 (1005 Metric) Vishay CRCW0 4021K80FKED 1% 1 620 Resistor R8 DRCAPC1005L 0402 (1005 Metric) Panasonic - E CG ERJ-2RKF6200X 1% 1 9.1K Resistor R10 DRCAPC1005L 0402 (1005 Metric) Panasonic - ECG ERJ-2RKF9101X 1% 3 10K Resistor R11, R12, R19 DRCAPC1005L 0402 (1005 Metric) Panasonic - ECG ERJ-2RKF1002X 1% 1 22 Resistor R13 DRCAPC1005L 0402 (1005 Metric) Vishay CRCW04 0222R0FKED 1% 3 220 Resistor R15, R16, R22 DRCAPC1005L 0402 (1005 Metric) Vishay CRCW0402220RFKED 1% 1 10 Resistor R17 DRCAPC1005L 0402 (1005 Metric) Vishay CRCW04 0210R0FKED 1% 1 2K Resistor R18 DRCAPC1005L 0402 (1005 Metric) Panasonic - E CG ERJ-2RKF2001X 1% 1 51.1 Resistor R20 DRCAPC1005L 0402 (1005 Metric) Panasonic - ECG ERJ-2RKF51R1X 1% 1 ADRF6702 U1 QFN50P600X600- 40VL_Dr 40-LFCSP Analog Devices Inc ADRF6702ACPZ-R7 1 TPS63002DRCR TEXAS INSTRUMENTS - TPS63002DRCR - IC, BUCK-BOOST CONVERTER, SON-10 U2 QFN10PWRPACK TEXAS INSTRUMENTS TPS63002DRCR 1 40MHz TCXO OSCILLATOR TCXO 40.000MHZ SMD U5 XTAL-04-2.5X2.0 SMD 2.50mm x 2.00mm AVX Corporation KT2520Y40000ECV28TBA 1 CY8C21223-24LGXI IC MCU 4K FLASH 256B SRAM 16UQFN U8 QFN50P300X300- 16PSOC 16-UQFN, 16-μQFN Cypress Semiconductor Corp CY8C21223-24L GXI 1 24LC01BT-I/LT 1Kbit, 400kHz, 2.5V, I2C Serial EEPROM, 5- Pin SC70, Industrial Temperature, Tape and Reel U9 SC70-LT5_N Microchip Technology 24LC01BT-I/LT Completed Assembly Designator Manufacturer Mfg Part Number Equivalent OK Cost U1 ITW Chemtronics CW7250 Yes (-40 to +85C rated) ? 1/8" RTV bead top board, on R2 Yes ? Hand solder to bottom board Yes (10 mil thickness) $1.95 Shield Barcode Label Sypes Canyon SCC-01Label No $5 Assembly Process Description Boron Nitride Heat Sink Grease installed on top of U1 to shieldRTV bead (1 location)RF ShieldBarcode Label Desctiption Install shield over top board assembly, soldering shield to bottom board assembly. Heatsink grease and RTV should contact inside-top of shield.install Barcode label on top of shieldFinished assembled units to be 100% tested through ZeMo test fixture (supplied by Sypes Canyon). Test time per device ~ 45 seconds.Manufacture board assemblies - perform all standard mfg quality checksSnap apart, remove snap-stubs (especially from top board)Apply RTV bead on bottom board ( approx 1/8" ) on corner of U2closest to C41 to avoid getting RTV on L1 inductor coilInsert top board assembly into bottom board assembly. Ensure RTV bead on bottom board touches top board.Apply RTV bead ( approx 1/8" bead) on R2. Avoid getting any RTV on L2 or L3 inductor coils or U1 pinsApply Heatsink Grease on U1.

RF Exposure Info

US Tech 11-0091 Client Sypes Canyon Issue Date 05-05-2011 Model: SCC-001 FCC ID: ZBR001 IC: 9540A-001 Page 1 of 1 Maximum Public Exposure to RF (MPE) The maximum exposure level to the public from the RF power of the EUT shall not exceed a power density, S, of 1.0 mW/cm 2 at a distance, d, of 20 cm from the EUT. Antenna Gain = 5dBi Peak Power (Watts) = 21.5 dBm (0.141 Watts) (from UST report 11-0013) Gain of Transmit Antenna = 5.0 dB i = 3.16, numeric (from UST report 11- 0013) d = Distance = 20 cm = 0.2 m S = (PG/ 4πd 2 ) = EIRP/4A = 0.141(3.16)/4*π*0.2*0.2 =0.4456/0.502 = 0.8876 W/m 2 = (W/m 2 ) (1m 2 /W) (0.1 mW/cm 2 ) = 0.08876 mW/cm 2 Which is << less than 1 mW/cm 2

Test Report

Page 1 of 52 Application for Title 47 USC, Part 2, Subpart J, Section 2.942 Equipment Authorization of Modular Certification Per FCC Part 25 for the Sypes Canyon Communications Model ZeMo SCC-001 FCC ID: ZBR001 IC: 9540A-001 Issue Date: February 21, 2011 UST Project No: 11-0013 Number of pages contained in his report: 52 3505 Francis Circle Alpharetta, GA 30004 PH: 770-740-0717 Fax: 770-740-1508 www.ustech-lab.com Page 2 of 52 I certify that I am authorized to sign for the test facility and that all of the statements in this report and in the Exhibits attached hereto are true and correct to the best of my knowledge and belief: US TECH (Agent Responsible For Test): By: Name: Alan Ghasiani Title: Consulting Engineer - President Date: February 21, 2011 This report shall not be reproduced except in full. This rep…

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Contact Information

Applicant

Gary Naden(CTO)
[email protected]406-581-0370Fax: 406-522-1109

Test Firm

US TechGeorge Yang
[email protected]7707400717Fax: 7707401508

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
4251.62 GHz - 1.62 GHz104.00 mW2M50G1D8 ppm
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Modular Transmitter. Power Output listed is conducted. The antenna gain, including cable loss, must not exceed 5dBi (antennas for use with this module are listed in the product manual) The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be collocated or operating in conjunction with any other antenna or transmitter. Antenna configurations with higher gains than above are addressed at time of licensing. The final product operating with this transmitter must include operating instructions and applicable warnings for end users and installers to satisfy RF exposure compliance requirements. OEM integrators must be informed of the specific requirements

Other Applications from Sypes Canyon Communications, Inc.

SATELLITE TRANSMITTER - FCC ID ZBR002 - Sypes Canyon Communications, Inc.
ZBR002

SATELLITE TRANSMITTER

Sep 06, 2012

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter