
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
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1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 AA BB CC DD SizeDocument NumberRev Date:Sheet of SHENZHEN COBY COMMUNICATIONS CO., LTD. BLOCK DIAGRAM 1.0Custom 241Friday, November 26, 2010 SizeDocument NumberRev Date:Sheet of SHENZHEN COBY COMMUNICATIONS CO., LTD. BLOCK DIAGRAM 1.0Custom 241Friday, November 26, 2010 SizeDocument NumberRev Date:Sheet of SHENZHEN COBY COMMUNICATIONS CO., LTD. BLOCK DIAGRAM 1.0Custom 241Friday, November 26, 2010 A892 System Block Diagram SPI ROM LCD and Camera USB 3 In 1 SD/MMC/MS + - O LR PineView-M LVDS RGB Tiger Point DMI USB SATA PCI-e X1 WLAN DDRII 667 PCI-e X1 LAN RTL8103E CardReader RTM5159-GR CODEC ALC662 LPC ITE 8502 SPI ROM KB TouchPad LED Right Antenna Clock Generator ICS9LPRS365 Y7 Y5 Y6 32.768KHz 32.768KHz 14.31818KHz Y8 25MHz Left Antenna
China Great-wall Computer Shenzhen Co., Ltd. FCC ID:KXY-A892 POWER OF ATTORNEY December 2, 2010 Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 To Whom It May Concern: We, China Great-wall Computer Shenzhen Co., Ltd. the undersigned, hereby authorize MOST Technology Service Co., Ltd. (Terry YANG/Manager) on our behalf, to apply to the Federal Communications Commission on our equipment. Any and all acts carried out by Shenzhen Super Test Service Technology Co., Ltd. (Terry YANG/General Manager) on our behalf shall have the same effect as acts of our own. This authorization expires on December 31, 2010. This is to advise that we are in full compliance with the Anti-Drug Abuse Act. We, China Great-wall Computer Shenzhen Co., Ltd., Inc are not subject to a denial of federal benefits pursuant to Section 5301 of the Anti-Drug Act of 1988, 21 USC853a, and no party to the application is subject to a denial of federal benefits pursuant to that section. Company: China Great-wall Computer Shenzhen Co., Ltd. Name: Lin Yu Title: Engineer Date: December 2, 2010
FCC ID: KXY-A892 Report No.: MOST100910F1 FRONT VIEW OF SAMPLE BACK VIEW OF SAMPLE FCC ID: KXY-A892 Report No.: MOST100910F1 LEFT VIEW OF SAMPLE RIGHT VIEW OF SAMPLE FCC ID: KXY-A892 Report No.: MOST100910F1 TOP VIEW OF SAMPLE BOTTOM VIEW OF SAMPLE FCC ID: KXY-A892 Report No.: MOST100910F1 VIEW OF EXPANDING SAMPLE PHOTO OF POWER SUPPLY FCC ID: KXY-A892 Report No.: MOST100910F1 PHOTO OF AC LINE PHOTO OF THE ENTIRE SAMPLE FCC ID: KXY-A892 Report No.: MOST100910F1 PHOTO OF THE BATTERY
FCC ID: KXY-A892 Report No.: MOST100910F1 INTERNAL PHOTO OF SAMPLE - 1 INTERNAL PHOTO OF SAMPLE -2 FCC ID: KXY-A892 Report No.: MOST100910F1 INTERNAL PHOTO OF SAMPLE - 3 INTERNAL PHOTO OF SAMPLE - 4 FCC ID: KXY-A892 Report No.: MOST100910F1 INTERNAL PHOTO OF SAMPLE - 5 INTERNAL PHOTO OF SAMPLE - 6 FCC ID: KXY-A892 Report No.: MOST100910F1 INTERNAL PHOTO OF SAMPLE - 7 INTERNAL PHOTO OF SAMPLE - 8 FCC ID: KXY-A892 Report No.: MOST100910F1 INTERNAL PHOTO OF SAMPLE - 9 INTERNAL PHOTO OF SAMPLE - 10 FCC ID: KXY-A892 Report No.: MOST100910F1 INTERNAL PHOTO OF SAMPLE - 11 INTERNAL PHOTO OF SAMPLE - 12 FCC ID: KXY-A892 Report No.: MOST100910F1 INTERNAL PHOTO OF SAMPLE - 13 INTERNAL PHOTO OF SAMPLE - 14 FCC ID: KXY-A892 Report No.: MOST100910F1 INTERNAL PHOTO OF POWER SUPPLY-1 INTERNAL PHOTO OF POWER SUPPLY-2
9/5/2006- 1 - AW-NE785H IEEE 802.11b/g/n PCIE half size Mini-Card Wireless Module Datasheet Version draft 0.4 Document release Date Modification initials Approved Version 0.1 2008 /10 /28 Initial release Antonio Chu Eric Lee Version 0.2 2008 /12 /2 Update Mechanical Antonio Chu Antonio Chu Version 0.3 2008 /12 /25 Update RF power Antonio Chu Antonio Chu Version 0.4 2008 /12 /30 Update RF power Antonio Chu Antonio Chu 9/5/2006- 2 - 1. Introduction AzureWave Technologies, Inc. introduces the pioneer of the IEEE 802.11b/g/n PCIE half size Mini-Card wireless module ---AW-NE785H. The AW-NE785H PCIE half size Mini-Card wireless module is a highly integrated wireless local area network (WLAN) solution to let users enjoy the digital content through the latest wireless technology without using the extra cables and cords. It enables a high performance, cost effective, low power, compact solution that easily fits onto one side of a PCIE half size Mini-Card. Compliant with the IEEE 802.11b/g/n standard, the AW-NE785H uses Direct Sequence Spread Spectrum (DSSS), Orthogonal Frequency Division Multiplexing (OFDM), BPSK, QPSK, CCK and QAM baseband modulation technologies. A high level of integration and full implementation of the power management functions specified in the IEEE 802.11 standard minimize system power requirements by using AW-NE785H. Longer Range and Faster Speed Comparing to 802.11g technology, 802.11n draft 2.0 standard make big improvement on speed and range. It Increases wireless range by up to 2 times and reduces dead spots in coverage area. The device adopt Multiple In, Multiple Out” (MIMO) technology, it effectively doubles the data rate. Unlike ordinary wireless networking technologies that are confused by signal reflections, MIMO actually uses these reflections to increase the range and reduce “dead spots” in the wireless coverage area. The robust signal travels farther, maintaining wireless connections more farther than standard 802.11g. The data rate can up to 150Mbps data rate. 2. Features PCIE half size Mini-Card Compliant with IEEE802.11n Draft 2.0 standard Antenna to support 1(Transmit) × 1 (Receive) MIMO technology Antenna RX diversity High speed wireless connection up to 150Mbps Low power consumption and high performance Enhanced wireless security 9/5/2006- 3 - 3. Block Diagram DISCRETE BALUN ANT_CON PCI EXPRESS MINICARD CONNECTOR EEPROM ANT_CON : ANTENNA CONNECTOR XTAL 40MHZ AR9285 3.3V SUPPLY ANT_CON TX/RX DISCRETE BALUN RX PNP Transistor 1.2V TX/RX RX 9/5/2006- 4 - 4. General Specifications Model Name AW-NE785H Product Description PCIE half size Mini-Card wireless module WLAN Standard IEEE 802.11 b/g/n, Wi-Fi compliant Host Interface PCIE half size Mini-Card Major Chipset Atheros AR9285 ( MAC/Baseband/RF ) Single chip Dimension 29.85 X 26.65 x 3.25 mm Weight 3.8g Antenna Connector Hirose U.FL-R-SMT 1:TX / RX 2:RX Operating Conditions Voltage 3.3V+-10% Temperature Operating: Storage: Electrical Specifications Frequency Range 2.4 GHz ISM Bands 2.412-2.472 GHz, 2.484 GHz Modulation 802.11 g/n: OFDM 802.11b: CCK(11, 5.5Mbps), QPSK(2Mbps), BPSK(1Mbps) Output Power 802.11b: 17dBm +/-1.5dBm 802.11g: 16dBm +/-1.5dBm 802.11n(HT20): 15dBm +/-1.5dBm 802.11n(HT40): 12dBm +/-1.5dBm Receive Sensitivity 802.11b: less than -80 dBm (11Mbps) 802.11g: less than -70 dBm (54Mbps) 802.11n: less than -61 dBm at HT40 MCS7 less than -64 dBm at HT20 MCS7 Data Rates 802.11b: 11,5.5,2,1 Mbps 802.11g: 54,48,36,24,18,12,9,6 Mbps 802011n: up to 150Mbps Operating Range Open Space: ~300M Indoor:~100M (The transmission speed may vary according to the environment) Security WEP 64-bit and 128-bit encryption WPA(Wi-Fi Protected Access) WPA2(Wi-Fi Protected Access) 9/5/2006- 5 - Operating System Compatibility Windows XP/Vista Regulatory FCC / CE / NCC / Japan ...etc Details refer to Regulatory documentation 4-1. Power Consumption States StatesStates States Current (mA) Max power saving (Battery mode) HT40L1 Cont Rx 285 Cont Tx 405 Idle(associated) 9 Idle(unassociated)9 Radio Off 8 Driver Disabled 7 HT20L1 Cont Rx 230 Cont Tx 380 Idle(associated) 9 Idle(unassociated)9 Radio Off 8 Driver Disabled 7 Max performance HT40L1 Cont Rx 285 Cont Tx 405 Idle(associated) 236 Idle(unassociated)9 Radio Off 8 Driver Disabled 7 HT20L1 Cont Rx 230 Cont Tx 380 Idle(associated) 195 Idle(unassociated)9 Radio Off 8 Driver Disabled 7 9/5/2006- 6 - 5. Mechanical Dimensions 9/5/2006- 7 - 6. Connector Pin-out Definitions Pin No. Definition Basic Description Type 1 NC No connect. Should be left open. 2 3.3v 3.3V power supply VCC 3 NC No connect. Should be left open 4 GND Ground GND 5 NC No connect. Should be left open 6 NC No connect. Should be left open. 7 CLKREQ_L Reference clock request. 8 NC No connect. Should be left open. 9 GND Ground GND 10 NC No connect. Should be left open. 11 REFCLK- Differential reference clock 12 NC No connect. Should be left open. 13 REFCLK+ Differential reference clock 14 NC No connect. Should be left open. 15 GND Ground GND 16 NC No connect. Should be left open. 17 NC No connect. Should be left open. 18 GND Ground GND 19 NC No connect. Should be left open. 20 W_DISABLE_L WLAN disable control. Input 21 GND Ground GND 22 PERST_L PCI express fundamental reset Input 23 PERn0 Differential transmit Output 24 NC No connect. Should be left open. 25 PERp0 Differential transmit Output 26 GND Ground GND 27 GND Ground GND 28 NC No connect. Should be left open. 29 GND Ground GND 30 NC No connect. Should be left open. 31 PETn0 Differential receive Input 32 NC No connect. Should be left open. 33 PETp0 Differential receive Input 34 GND Ground GND 35 GND Ground GND 36 NC No connect. Should be left open. 37 GND Ground GND 38 NC No connect. Should be left open. 39 NC No connect. Should be left open. 40 GND Ground GND 41 NC No connect. Should be left open. 42 NC No connect. Should be left open. 43 NC No connect. Should be left open. 44 LED_WLAN_L Active low signal. The signal is used to provide status indicators vi…
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802.11n 1x1 PCIe Minicard transceiver Model AR5B95 Dec 2007 © 2000–2006 by Atheros Communications, Inc. All rights reserved. ATHEROS, the Atheros logo, 5-UP, Driving the Wireless Future, Atheros Driven, Atheros Turbo Mode, and the Air is Cleaner at 5-GHz are trademarks of Atheros Communications, Inc. All other trademarks are the property of their respective holders. Notice The information in this document has been carefully reviewed and is believed to be accurate. Nonetheless, this document is subject to change without notice, and Atheros Communications, Inc. (Atheros) assumes no responsibility for any inaccuracies that may be contained in this document, and makes no commitment to update or to keep current the contained information, or to notify a person or organization of any updates. Atheros reserves the right to make changes, at any time, in order to improve reliability, function or design and to attempt to supply the best product possible. Atheros does not represent that products described herein are free from patent infringement or from any other third party right. No part of this document may be reproduced, adapted or transmitted in any form or by any means, electronic or mechanical, for any purpose, except as expressly set forth in a written agreement signed by Atheros. Atheros or its affiliates may have patents or pending patent applications, trademarks, copyrights, maskwork rights or other intellectual property rights that apply to the ideas, material and information expressed herein. No license to such rights is provided except as expressly set forth in a written agreement signed by Atheros. ATHEROS MAKES NO WARRANTIES OF ANY KIND WITH REGARD TO THE CONTENT OF THIS DOCUMENT. IN NO EVENT SHALL ATHEROS BE LIABLE FOR DIRECT, INDIRECT, SPECIAL, INCIDENTAL SPECULATORY OR CONSEQUENTIAL DAMAGES ARISING FROM THE USE OR INABILITY TO USE THIS PRODUCT OR DOCUMENTATION, EVEN IF ADVISED OF THE POSSIBLITY OF SUCH DAMAGES. IN PARTICULAR, ATHEROS SHALL NOT HAVE LIABILITY FOR ANY HARDWARE, SOFTWARE, OR DATA TRANSMITTED OR OTHERWISE USED WITH THE PRODUCT, INCLUDING THE COSTS OF REPAIRING, REPLACING, INTEGRATING, INSTALLING OR RECOVERING SUCH HARDWARE, SOFTWARE OR DATA. ATHEROS SPECIFICALLY DISCLAIMS THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR A PARTICULAR PURPOSE AS THEY MIGHT OTHERWISE APPLY TO THIS DOCUMENT AND TO THE IDEAS, MATERIAL AND INFORMATION EXPRESSED HEREIN. Atheros Communications, Inc. • iii COMPANY CONFIDENTIAL December 2008 Document Conventions Text Conventions bold Bold type within paragraph text indicates commands, file names, directory names, paths, output, or returned values. Example: The DK_Client package will not function unless you use the wdreg_install batch file. italic Within commands, italics indicate a variable that the user must specify. Example: mem_alloc size_in_bytes Titles of manuals or other published documents are also set in italics. Courier The Courier font indicates output or display. Example: Error:Unable to allocate memory for transfer! Menu The Menu character tag is used for menu items. Example: Choose Edit > Copy. [ ] Within commands, items enclosed in square brackets are optional parameters or values that the user can choose to specify or omit. { } Within commands, items enclosed in braces are options from which the user must choose. | Within commands, the vertical bar separates options. ... An ellipsis indicates a repetition of the preceding parameter. > The right angle bracket separates successive menu selections. Example: Start > Programs > DK > wdreg_install. Notices NOTE: This message denotes neutral or positive information that calls out important points to the text. A note provides information that may apply only in special cases. iv • Atheros Communications, Inc. Dec 2007 COMPANY CONFIDENTIAL Revision History Revision Description of Changes Dec 2007 Initial Release Atheros Communications, Inc. • v COMPANY CONFIDENTIAL Dec 2007 Contents Introduction .......................................................................................................... 7 System Requirements .................................................................................... 7 Profile Management ............................................................................................. 7 Create or Modify a Configuration Profile .................................................... 7 Remove a Configuration Profile ................................................................... 8 Auto Profile Selection Management ................................................................... 8 Switching to a Different Configuration Profile .................................................. 9 Import and Export Profiles .................................................................................. 9 Importing a Profile ............................................................................................... 9 Exporting a Profile ............................................................................................... 9 TCP/IP Configuration ......................................................................................... 9 Configuring the TCP/IP Address for the network device: ............................... 9 General Tab......................................................................................................... 10 Advanced Tab..................................................................................................... 10 Security Tab ........................................................................................................ 11 Using EAP-TLS Security.............................................................................. 12 Using EAP-TTLS Security ........................................................................... 12 Using PEAP (EAP-GTC) Security ............................................................... 13 Using PEAP-MSCHAP V2 Security.............................................…
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Maximum Permissible Exposure (MPE) Estimation 1. Limits and Guidelines on Exposure to Electromagnetic Fields General population/uncontrolled exposure apply in situations is which the general public may be exposed, or in which persons that are exposed as a consequence of their employment may not be fully aware of the potential for exposure or can not exercise control over their exposure. The exposure levels can be expressed in terms of power density, electric field strength, or magnetic field strength, as averaged over 30 minutes for the general public and 6 minutes for trained personnel. The exposure criterion is frequency dependent, and a chart covering the range from 3 kHz to 100 GHz can be found in NCRP No.86 (references IEEE C95.1-1999). Below are the limits. Limits for Occupational/Controlled Exposure Frequency Range (MHz) Electric Field Strength (E) (V/m) Magnetic Field Strength (H) (A/m) Power Density (S) (mW/cm2) 0.3-3.0 3.0-30 30-300 300-1500 15,00-100,000 614 1842/f 61.4 -- -- 16.3/f 16.3/f 0.163 -- -- (100)* (900/f2)* 1.0 f/300 5 Limits for General Population/Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength (E) (V/m) Magnetic Field Strength (H) (A/m) Power Density (S) (mW/cm2) 0.3-1.34 1.34-30.0 30-300 300-1500 15,00-100,000 614 824/f 27.5 -- -- 1.63 2.19/f 0.073 -- -- (100)* (180/f2)* 0.2 f/1500 1 Power density S [mW/cm2] for controlled area at 2442MHz, S= 5 mW/cm2 Power density S [mW/cm2] for uncontrolled area at 2442 MHz S= 1 mW/cm2 Reference levels are provided for exposure assessment to determine whether the basic restrictions on exposure of humans to electromagnetic fields are exceeded. The basic restrictions on exposure to electromagnetic fields are based directly on established health effects and biological considerations. 2. Prediction of the Exposure to Electromagnetic Fields Calculations can be made on a site by site basis to ensure the power density is below the limits given above, or guidelines can be done beforehand to ensure the minimum distances from the antenna is maintained through the site planning. The calculations are based on FCC OET 65 Appendix B. 3. Calculation method of the Safe Distance Below method describes a theoretical approach to calculate possible exposure to electromagnetic radiation around a base station transceiver antenna. Precise statements are basically only possible either with measurements or complex calculations considering the complexity of the environment (e.g. soil conditions, near buildings and other obstacles) which causes reflections, scattering of electromagnetic fields. The maximum output power (given in EIRP) of a base station is usually limited by license conditions of the network operator. A rough estimation of the expected exposure in power flux density on a given point can be made with the following equation. The calculations are based on FCC OET 65 Appendix B. Whereas: S= Power Density P = Maximum output power in W of the site G numeric = Numeric gain of the antenna relative to isotropic antenna R = distance between the antenna and the point of exposure in meters 4. Test Result Power at antenna connector: 13.61 dBm (0.023W) Antenna gain: 2.5 dB (1.78) Predication Distance: 15 cm Predication Frequency: 2442 MHz S= (23*1.78)/ (4*15*15*3.14) =0.014 (mW/cm 2 ) SO, Power Density at Predication Frequency and Predication Distance: 0.014 (mW/cm 2 ) Limit for Occupational/Controlled Exposure at the Predication Frequency: 5 (mW/cm 2 ) Limit for General Population/Uncontrolled Exposure at the Predication Frequency: 1(mW/cm 2 ) TEST RESULT: PASS
PRELIMINARY ATHEROS CONFIDENTIAL DATE HB95- 802.11n Half-sized PCI Express Card Reference Design REVISION NUMBER INITIALS DESCRIPTION 01/15/08 245-01616-010 TK Initial design03/05/08 JL Pin name modificationsBoard number to HB95 245-01616-010 JC 245-01616-020 08/01/08 1.Q1 change SOT89 package2. re-dispose component location 245-01616-030 10/01/08 JC 1.Q1 change SOT23 package,C133 change 10uF,R23 change 2.7K,C19 change 1uF,C27 change 1000pF, C28 change 100pF,C39 change 0.01uF,C29 change 0.01uF,C23 change 0.01uF, C20 change 0.01uF, C1 C2 change 22pF,C5 change 3.3pF,C6 C7 C11 change 10pF,C8 C9 C10 change 2pF,L1 L2 change 2nH, C13 C14 change 4.7pF,L5 change 2.2nH, C15 change 1.5pF2.Add R26,C16,L6,C32,C40,C41 245-01616-040 10/29/08 1.Add C42, C43, VR1, D1, R272.C34 from 1u change 0.1u, C41 from 1p change 1.5p, C6 C7 from 4.7p change 10p, R19 change NC L1 L2 from 2n change 2.2n, C8 C9 C10 C16 from 2p change 1.5p, C5 from 3p change 2p C31 C35 from 4.7u change 2.2u, C28 from 100p change 102p3.Remove R25, C33, C29, Q1, R20 JC 245-01616-050 JC 11/10/08 3.Remove VR11.Add C43, R20, R25, Q12.C5 from 2p change 2.2p, C11 from 10p change 0ohm1.Add VR1, L3, C44, R27, R28, C33, R193.Remove C43, R252.R20 from 10ohm change 5.1ohm/1206, C31 from 2.2u change 1u, Q1 change NC, 245-01616-060 11/13/08 JC HB95 - Title Page Atheros Communications, Inc. Friday, November 14, 2008 13 B 5480 Great America ParkwaySanta Clara, CA 95054 000 HB95-245-01616-060 Size DWG NO Rev Sheet of Title Date MINICARD CONNECTOR EEPROM ANT_CON : ANTENNA CONNECTOR XTAL40MHZ AR9285 3.3V SUPPLY ATHEROS CONFIDENTIAL PRELIMINARY PCI EXPRESS DISCRETE BALUN ANT_CONANT_CON PNPTransistor1.2V TX/RX RX DISCRETE BALUN TX/RX RX Option DC-DCRegulatory HB95 - Block Diagram Atheros Communications, Inc. Wednesday, November 12, 2008 23 B 5480 Great America ParkwaySanta Clara, CA 95054 000 HB95-245-01616-060 Size DWG NO Rev Sheet of Title Date EEPROM PCIe interface Diff 100 OHMS ATHEROS CONFIDENTIAL PRELIMINARY Digital & RF Atheros Communications, Inc. Thursday, December 18, 2008 33 B 5480 Great America ParkwaySanta Clara, CA 95054 000 HB95-245-01616-060 Size DWG NO Rev Sheet of Title Date PETP0PETN0PERP0PERN0REFCLK+REFCLK-CLKREQ_LPERST_L RX_CLEAR MPCIE_WLAN_LED BT_ACTIVE MPCIE_WLAN_LED WLAN_DISABLE WLAN_DISABLE GPIO_1GPIO_0A WAKE2_L 1.2V Bias GPIO_3 EPRM_SCK EPRM_SDA XTALO 1.2V Bias GPIO_3GPIO_1 GPIO_0A BIASREF RFOUTPRFOUTN AVDD33 AVDD33 XTALI XTALO RFOUTP XTALI WAKE2_LPERN_0PERP_0PETP0PERST_LREFCLK-REFCLK+PETN0 DVDD12 RFINNRFINP AVDD33 DVDD33DVDD33DVDD33 AVDD12_XTAL AVDD12AVDD33 DVDD12DVDD12 AVDD12 PERP0PERN0 RX_CLEARBT_ACTIVE CLKREQ_L RFINN RFINP DVDD12 WAKE_L AVDD33 EPRM_SDAEPRM_SCK RFOUTN DVDD12DVDD12DVDD12DVDD33 PERST_L AVDD33AVDD33 EPRM_SCK 3.3VAUX 3.3V 3.3V 3.3V 3.3V 3.3V AVDD12_XTAL AVDD12 DVDD12 3.3VAUX 3.3V 3.3V 3.3V 3.3V3.3V AVDD33 DVDD33 3.3V DVDD12 IS24C04A U2 IS24C04A 1234 5678 A0A1A2GND SDA SCL WP VCC C4010pF50V+/-5% C144.7pF50V+/-0.25PF C191uF6.3V+/-10% R220 C411.5pF50V+/-0.25PF C370.1uF R12No Load U1D AR9285 636410 1819202421223029233233504912 65662627 58 5857 5251 NCNCRST_B GPIO0GPIO1GPIO2 GPIO3/EEP_WP GPIO4GPIO5 CMODE0CMODE1 GPIO6GPIO7GPIO8GPIO9 GPIO10 GPIO11/XLNA_Ctrl NCNCEPRM_SDAEPRM_SCKNCNC CTRL1CTRL2 NCNC C13310uF 6.3V+/-10% R710K+/-5%1/16W R9No Load R1910K +/-5%1/16W L62.2nH+/-0.1NH C52.7pF50V+/-0.25PF C710pF50V+/-5% C110 1/16W+/-5%1/16W C161.5pF50V+/-0.25PF C310pF R210K L32.2uH 20% C4422pF50V+/-5% R20No Load R2710.7K +/-1%1/16W R2810K +/-1%1/16W U1AAR9285 55 54 62 31 XTALI XTALO BIASREF CLKOBS R40 C81.5pF50V+/-0.25PF J3CON RF 3PIN 213 R21No Load R18No Load RT8010-3.3V VR1 3 6 2 45 1 7 VIN FB/VOUT EN LX GND NC TPAD R10 0 C301uF 6.3V+/-10% C421pF C281000pF 50V+/-10% C390.01uF 16V+/-10% C240.1uF 10V+/-10% L12.0nH+/-0.1NH C36No Load R8No Load R110 R6No Load C12No Load R17 No Load C250.1uF 10V+/-10% C380.1uF J2CON RF 3PIN 213 C170.1uF 10V+/-10% C312.2uF16V+/-10% C410pF C222pF50V+/-5% C340.1uF10V+/-10% R110K L22.0nH +/-0.1NH MMBT2907A Q1MMBT2907A 1 2 3 U1C AR9285 1615671314 3276 68 94 SWCOM3SWCOM2XPABIASSWCOM0SWCOM1 RFINP RFINN RFOUTN RFOUTP PDET0PABIASNPABIASP C200.01uF 16V+/-10% J5 CON PCI EXPRESS MINI-1.1 52 2 24 48 3638422037393032122744111323253133 29 34 35 40 28 6 18 21 26 27 4 9 15 50 16171910121435843454749514146 3.3V 3.3V 3.3VAUX 1.5V USB_D- USB_D+ LED_WWAN_L W_DISABLE_L RESERVEDRESERVED SMB_CLK SMB_DATA WAKE_L PERST_L CLKREQ_L LED_WLAN_L REFCLK- REFCLK+ PERn0PERp0 PETn0PETp0 GND GND GND GND 1.5V 1.5V GND GND GND GND GND GND GND GND UIM_VPP UIM_C8UIM_C4 UIM_DATA UIM_CLK UIM_RESET RESERVEDRESERVED UIM_PWR RESERVEDRESERVEDRESERVEDRESERVEDRESERVEDRESERVED LED_WPAN_L C151.5pF 50V+/-0.25PF R2610K+/-5%1/16W U1E AR9285 17 1 53 441128434625343545 5659616069 VDDP33 AVD33_RXAVDD33_XTAL VDDP12 DVDD12 VDDP33VDDP33VDDP33 DVDD12DVDD12 VDDP12 DVDD12 AVDD12_XTALAVDD12ADCAVDD12_BB_SYNTHAVDD33_BB_SYNTHGND C211uF 6.3V+/-10% ZH1 1 C122pF50V+/-5% R13 No Load R14 No Load C230.01uF 16V+/-10% C321.5pF50V+/-0.25PF C180.1uF 10V+/-10% R510K +/-5%1/16W C134.7pF50V+/-0.25PF C91.5pF 50V+/-0.25PF R24No Load Y140MHz 2 14 3 C352.2uF16V+/-10% C260.1uF 10V+/-10% ZH2 1 C101.5pF50V+/-0.25PF R232.7K+/-5%1/16W R16No Load C220.1uF 10V+/-10% U1B AR9285 403942413736474838 PCIE_TX_PPCIE_TX_NPCIE_RX_PPCIE_RX_NPCIE_REFCLK_PPCIE_REFCLK_NPCIE_CLKREQ_L PCIE_WAKE_LPCI_RST_L R36.19K, 1% L52.2nH+/-0.1NH R15No Load C271000pF 50V+/-10% C610pF 50V+/-5%
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 AA BB CC DD PCI3 CLK_BSEL1 FSCCLK_BSEL2 CLK_BSEL0 FSA CLK_BSEL1 PCI2_TMEPCIF5_ITP_EN CLK_SRC10_EN#_R CLK_SRC9_EN#_R XTAL_OUT CLK_BSEL2 PCI2_TME CLK_BSEL0 +CK505_V3.3S CLK_EN PCIF5_ITP_EN XTAL_IN PCI4_SRC5_EN PCI4_SRC5_EN +CK505_V1.5S CLK_SRC10_EN#_R CLK_CPU_BCLK 5 CLK_CPU_BCLK# 5 STP_PCI# 15 STP_CPU# 15 CLK_MCH_BCLK 5 CLK_MCH_BCLK# 5 CLK_PCIE_3GPLL# 4 CLK_PCIE_3GPLL 4 MINICARD_CLKREQ#20,21 CLK_PCIE_MINI 20 CLK_PCIE_MINI# 20 CLK_PCIE_LAN 24 CLK_PCIE_LAN# 24 CLK_PCIE_ICH14 CLK_PCIE_ICH#14 CLK_PCIE_SATA 15 CLK_PCIE_SATA# 15 DREFSSCLK 5 DREFSSCLK# 5 DREFCLK 5 DREFCLK# 5 CLK_LPC_KBC18 PCI_CLK_DUG13 CLK_ICHPCI14 CLK_USB4823 CLK_ICH1415 CPU_BSEL05 CPU_BSEL15 CPU_BSEL25 CK505_CLK_EN#36 MCH_BSEL0 5 MCH_BSEL1 5 MCH_BSEL2 5 CLK_PCIE_MINI1 21 CLK_PCIE_MINI#1 21 CLK_EN5,15 ICH_CLK_USB4814 SMB_CLK_S 9,16,20,21 SMB_DATA_S 9,16,20,21 +3VRUN +3VRUN +3VRUN +1_05VRUN +1_5VRUN +1_05VRUN +3VRUN SizeDocument NumberRev Date:Sheet of SHENZHEN COBY COMMUNICATIONS CO., LTD. 2.2A3 341Friday, November 26, 2010 SizeDocument NumberRev Date:Sheet of SHENZHEN COBY COMMUNICATIONS CO., LTD. 2.2A3 341Friday, November 26, 2010 SizeDocument NumberRev Date:Sheet of SHENZHEN COBY COMMUNICATIONS CO., LTD. 2.2A3 341Friday, November 26, 2010 1 1 1 0 FSB 1 0 1 100 266 1 0 BSEL1 BSEL2 0 0 0 FSA 0 133 333 0 1 400 0 166 Reserved 0 FSC 1 1 0 Host Clock frequency MHz 200 1 0 1 BSEL0 1 CPU,MCH and XDP BCLK FREQUENCY SELECTION TABLE PCI_F5/ITP_EN 0 =SRC8/SRC8# 1 = ITP/ITP# PCI2/TME 0 = Overclocking of CPU and SRC Allowed 1 = Overclocking of CPU and SRC NOT allowed R733_FR733_F 12 R1033_FR1033_F 12 R18 NC_10K_J R18 NC_10K_J 1 2 C287 NC_22P_50V_J C287 NC_22P_50V_J 1 2 R633_FR633_F 12 R5NC_0_JR5NC_0_J 12 R22 NC_1K_J R22 NC_1K_J 1 2 R34 NC_1K_J R34 NC_1K_J 1 2 C10 10U_6.3V_M C10 10U_6.3V_M 1 2 R24 56_J R24 56_J 1 2 L1 120R-100MHZ_0805 L1 120R-100MHZ_0805 12 TP2tpc26TP2tpc26 1 R691 10K_J R691 10K_J 1 2 R701 NC_10K_J R701 NC_10K_J 1 2 R20_JR20_J 12 C286 NC_22P_50V_J C286 NC_22P_50V_J 1 2 R1533_FR1533_F 12 R30_JR30_J 12 C8 10U_10V_M C8 10U_10V_M 1 2 C9 10U_6.3V_M C9 10U_6.3V_M 1 2 G D S Q1 2N7002 G D S Q1 2N7002 3 2 1 C18 0.1U_16V_M C18 0.1U_16V_M 1 2 R40_JR40_J 12 TP1tpc26TP1tpc26 1 R11422_JR11422_J 12 TP6tpc26TP6tpc26 1 R17 NC_10K_J R17 NC_10K_J 1 2 R32 0_J R32 0_J 1 2 R33 NC_0_J R33 NC_0_J 1 2 R132.2K_JR132.2K_J 12 C284 NC_22P_50V_J C284 NC_22P_50V_J 1 2 C16 27P_50V_K C16 27P_50V_K 1 2 C17 27P_50V_K C17 27P_50V_K 1 2 C14 0.1U_16V_M C14 0.1U_16V_M 1 2 C15 0.1U_16V_M C15 0.1U_16V_M 1 2 TP5tpc26TP5tpc26 1 R10722_JR10722_J 12 R9475_FR9475_F 12 C1 10U_10V_M C1 10U_10V_M 1 2 C2 0.1U_16V_M C2 0.1U_16V_M 1 2 C3 0.1U_16V_M C3 0.1U_16V_M 1 2 C4 0.1U_16V_M C4 0.1U_16V_M 1 2 R21 10K_J R21 10K_J 1 2 C5 0.1U_16V_M C5 0.1U_16V_M 1 2 C6 0.1U_16V_M C6 0.1U_16V_M 1 2 C7 0.1U_16V_M C7 0.1U_16V_M 1 2 C11 0.1U_16V_M C11 0.1U_16V_M 1 2 C12 0.1U_16V_M C12 0.1U_16V_M 1 2 C13 0.1U_16V_M C13 0.1U_16V_M 1 2 R26 NC_0_J R26 NC_0_J 12 R28 NC_0_J R28 NC_0_J 12 U1 9LPRS365 U1 9LPRS365 PCI0/CR#_A 1 PCI1/CR#_B 3 PCI2/TME 4 PCI3 5 PCI4/SRC5_EN 6 VSS_PCI 8 VSS_48 11 VSS_CPU 52 VSS_SRC1 23 VSS_SRC2 29 VSS_IO 15 VDD_SRC 39 VDD_IO 12 VDD_SRC_IO_1 26 VDD_CPU 55 VSS_SRC3 42 VDD_SRC_IO_2 36 VDD_CPU_IO 49 CPU_STOP#/SRC5# 37 CPU0 54 CPU1 51 SRC8/ITP 47 SRC10# 35 SRC9 30 SRC7/CR#_F 44 SRC6 41 SRC3/CR#_C 24 SRC2/SATA 21 PCI_STOP#/SRC5 38 CPU0# 53 CPU1# 50 SRC8#/ITP# 46 SRC10 34 SRC9# 31 SRC7#/CR#_E 43 SRC6# 40 SRC3#/CR#_D 25 SRC2#/SATA# 22 SRC1#/SE2 18 SRC0/DOT96 13 SRC1/SE1 17 SRC0#/DOT96# 14 VDD_PLL3 16 VDD_48 9 VDD_PCI 2 VDD_REF 61 VDD_PLL3_IO 20 PCIF5/ITP_EN 7 USB/FSA 10 FSB/TESTMODE 57 REF/FSC/TESTSEL 62 VSS_PLL3 19 VDD_SRC_IO_3 45 NC 48 VSS_REF 58 SRC4 27 SRC4# 28 CKPWRGD/PWRDWN# 56 SRC11/CR#_H 33 SRC11#/CR#_G 32 XTAL_IN 60 XTAL_OUT 59 SCLK 64 SDA 63 R30 NC_0_J R30 NC_0_J 12 R1410K_JR1410K_J 12 R27 1K_J R27 1K_J 12 R29 1K_J R29 1K_J 12 R31 1K_J R31 1K_J 12 C285 NC_22P_50V_J C285 NC_22P_50V_J 1 2 R650 56_J R650 56_J 1 2 R20 10K_J R20 10K_J 1 2 R19 10K_J R19 10K_J 1 2 R16 10K_J R16 10K_J 1 2 R25 1K_J R25 1K_J 12 R10622_JR10622_J 12 TP3tpc26TP3tpc26 1 Y5 14.31818MHZ_20P_30PPM Y5 14.31818MHZ_20P_30PPM 12 TP4tpc26TP4tpc26 1 R1122_JR1122_J 12 C290 NC_22P_50V_JC290 NC_22P_50V_J 12 R1222_JR1222_J 12 L2 120R-100MHZ_0805 L2 120R-100MHZ_0805 12 R8922_JR8922_J 12 C289 NC_22P_50V_JC289 NC_22P_50V_J 12 R1NC_0_JR1NC_0_J 12 1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 AA BB CC DD DMI_RXP0 14 DMI_RXN0 14 DMI_RXP1 14 DMI_RXN1 14 DMI_TXP014 DMI_TXN014 DMI_TXP114 DMI_TXN114 CLK_PCIE_3GPLL3 CLK_PCIE_3GPLL#3 SizeDocument NumberRev Date:Sheet of SHENZHEN COBY COMMUNICATIONS CO., LTD. 2.2A3 441Friday, November 26, 2010 SizeDocument NumberRev Date:Sheet of SHENZHEN COBY COMMUNICATIONS CO., LTD. 2.2A3 441Friday, November 26, 2010 SizeDocument NumberRev Date:Sheet of SHENZHEN COBY COMMUNICATIONS CO., LTD. 2.2A3 441Friday, November 26, 2010 L<500mil L<500mil C19,C20,C21,C22 should be placed beside TGP R370_JR370_J 12 R350_JR350_J 12 TP12tpc26TP12tpc26 1 TP7tpc26TP7tpc26 1 C220.1U_16V_MC220.1U_16V_M 12 TP11tpc26TP11tpc26 1 TP18tpc26TP18tpc26 1 R360_JR360_J 12 TP15tpc26TP15tpc26 1 C200.1U_16V_MC200.1U_16V_M 12 C210.1U_16V_MC210.1U_16V_M 12 R40750_FR40750_F 12 TP9tpc26TP9tpc26 1 TP16tpc26TP16tpc26 1 DMI PINEVIEW_M REV = 1.1 ? 1 OF 6 ? U2A PINEVIEW-M DMI PINEVIEW_M REV = 1.1 ? 1 OF 6 ? U2A PINEVIEW-M RSVD_M2 M2 RSVD_N2 N2 EXP_ICOMPI L9 EXP_RBIAS L8 RSVD_N9 N9 RSVD_N10 N10 RSVD_R9 R9 RSVD_R10 R10 RSVD_M4 M4 RSVD_J1 J1 RSVD_K2 K2 DMI_RXN_1 G3 DMI_RXP_1 H4 DMI_RXN_0 F2 DMI_RXP_0 F3 RSVD_TP_P11 P11 RSVD_TP_N11 N11 EXP_RCOMPO L10 RSVD_L2 L2 RSVD_K3 K3 DMI_TXN_1 J2 DMI_TXP_1 H3 DMI_TXN_0 G1 DMI_TXP_0 G2 EXP_CLKINP N6 EXP_CLKINN N7 RSVD_L3 L3 TP19tpc26TP19tpc26 1 TP13tpc26TP13tpc26 1 TP8tpc26TP8tpc26 1 C190.1U_16V_MC190.1U_16V_M 12 R380_JR380_J 12 TP20tpc26TP20tpc26 1 TP14tpc26TP14tpc26 1 R3949.9_FR3949.9_F 12 TP17tpc26TP17tpc26 1 5 5 4 4 3 3 2 2 1 1 DD…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 3 | 15C | 2.42 GHz - 2.45 GHz | 23.00 mW |

Notebook Computer
Equipment Class
DTS - Digital Transmission System
LCD MONITOR
Equipment Class
JBP - Part 15 Class B Computing Device Peripheral
LCD MONITOR
Equipment Class
JBP - Part 15 Class B Computing Device Peripheral
PART 15 CLASS B COMPUTING DEVICE PERIPHERAL
Equipment Class
JBP - Part 15 Class B Computing Device Peripheral
LCD TV
Equipment Class
JBP - Part 15 Class B Computing Device Peripheral