
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
1 POWER POWER SAVING Telenexus “HHR Demo” User Guide v.2.0.0 This preliminary user guide describes how to use the Telenexus hand-held reader. It also describes how to use the reader HHRDemo test application. The intended uses of this demo app are: • Demonstration of reader functions. • Qualification and regression testing of the CE reader software. • Reader evaluation and test tool for engineering lab use. Reader operation Unit power is applied and removed with the On/Off button in the upper right corner of the key panel. • On: Press and hold the On/Off button. A high-pitch beep indicates that the button press has been received and that the unit is powering up. The CE desktop will appear ~10 seconds after the beep. • Off: Press and hold the On/Off button. A low-pitch beep indicates that the button press has been received and that the unit is powering down. A few additional beeps indicate that the current reader settings are being stored in non-volatile memory prior to power down. The reader provides a Suspend mode which extends battery life while maintaining the application program currently being executed. The reader may be configured to auto- matically enter the Suspend mode after a period of inactivity. The reader also may be immediately placed in the Suspend Mode by tapping the Start button on the WinCE task bar followed by tapping the Suspend button. Turning the power off removes all power from the system. This means any programs loaded in RAM and any data generated and saved in RAM since power-up are lost. Programs and data stored in the flash file system are maintained. 2 BATTERY CHARGE INDICATION BATTERY GAUGE LCD CONTRAST BACKLIGHT WINCE KEYBOARD KEYPAD An application may inform you of the state of battery charge in one of two way. The application may provide a 4-level battery charge indication: • Good: OK to use unit. • Low: Recharge as soon as convenient. • Critical: Only a few minutes of charge remaining. • Kill: CE power is turned off to avoid battery damage. Your application may display Low and Critical dialogs when the discharge and recharge thresholds are reached. When the Kill state is reached, the reader will shut itself off to avoid battery damage. Your application may provide a gauge icon showing how much battery charge is remaining. Low and Critical dialogs may also be displayed when the discharge and recharge thresholds are reached. LCD bias is set using keypad keys. • Increase: Press and release 2nd, then press and hold the ‘.’ key until the contrast has increased to the desired level. • Decrease: Press and release 2nd, then press and hold 0 until the contrast has decreased to the desired level. No LCD contrast adjustment is needed except when operating the reader in extreme temperatures. The backlight is illuminated with the keypad Light button, and an application may also provide a means to turn it on and off. The amount of time the backlight remains lit is determined by the application program in use. A WinCE keyboard emulation panel may be viewed by double-tapping the stylus icon in the task bar. The panel may be moved by dragging with a stylus. Keys tapped by a stylus are sent to WinCE in the same manner as done with an actual keyboard. The emulation panel is removed from the screen by double-tapping the stylus icon. Keypad codes are sent only to an application that requests them. See the API manual for more detail. • The keypad is normally in a numeric entry mode. • Alphanumeric mode is entered by pressing the Alpha key. In this mode, multiple presses of the same key will cycle through the set of alphanumeric values assigned to a key. The application program is responsible for presentation of codes to the user: The HHRDemo application provides one example of how this may be done. A short delay, or pressing the cursor-right key indicates selection of the current key value. Pressing the Alpha key a second time reverts the mode back to numerics. 3 • When the keypad is in the alphanumeric mode, Pressing 2nd-Shift will cause an upper-case character code to be issued. Pressing 2nd-Shift-Shift will perform a “Caps Lock” operation, causing all subsequent alphabetic characters to be issued in upper case. • Function mode is entered for the single key following a press of the 2nd key. Keys 1..5 have no function labelled on the keypad, but pressing one of these keys after pressing the 2nd key will generate function codes that may be used by an applica- tion. 4 START OPERATIONS “HHR Demo” Application The application is started by opening Windows Explorer and navigating to the Windows folder. Double-tap the HHRDemo icon to start the application. Later releases will move the demo app to a more convenient location. The top-level application dialog is shown in the above image. Tapping a button either causes another dialog to be displayed or a function to be performed. Function dialogs may be closed with the title bar OK button. Tapping the EPC Read button creates a pop-up dialog to select the type of EPC-formatted tags to read, and routes the trigger switch to the RFID reader module. Each pull of the trigger switch enable the reader for as long as the trigger is held. See the section titled “EPC Parameter Configuration” for a description of configuring the RFID module for reading EPC tags. As tags are read, they are shown in the Response window. When the trigger is released, reader statistics are display above the response window. Tapping the RF Read button enables the RF tag reader to read Mat- rics-formatted tags, and routes the trigger switch to the RF tag reader module. Each pull of the trigger switch enable the reader for as long as the trigger is held. See the section titled “Matrics Mode Configuration ” for a description of configuring the RFID module for reading Matrics tags. As tags are read, they are shown in the Response window. When the trigger is released, reader statistics are display above the response window.Tag type and ID are displayed in ascending byte orde…
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Block Diagram TX Board Amplifier MOD Generated RX Board (2) Low Pass Filter 3904 Frequency Synthesis PLL VCO PLL_EN PLL_DATA PLL_CLK LD REF_CLK Amplifier Band Pass Filter Amplifier RX_LO Generated RX Board (2) Vcontrol PA Final Amplifier Low Pass Filter Isolator Directional Coupler Ant. Isolator FP to RX Board (2) Output power control PA_EN PC Amplifier 90 Degree Hybrid Amplifier RX_LO RX Band Pass Filter Power Splitter Antenna Sense ANT_SENSE to RX Board(2) Generated RX Board (2) Generated RX Board (2) Mixer Mixer Q to RX Board (2) I to RX Board (2) Block Diagram RX Board Mixer I from TX Board (1) Band Pass Filter Band Pass Filter Amplifier Amplifier Q from TX Board (1) Amplifier Band Pass Filter MixerDSP
Cisco Systems, Inc. 4125 Highlander Parkway Richfield, Ohio 44286 Phone: 330 523-2094 Fax: 330 523-2002 http://www.cisco.com Phone: (330) 523-2094 Fax: (330) 523-2002 E-Mail: [email protected] June 16, 2004 Federal Communications Commission Equipment Authorization Division, Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21046 Re: FCC ID: JNBHHR001 To Whom It May Concern: The following information is to be held confidential pursuant to 47 CFR Part 0 §0.457 and Section 552(b)(4) of the Freedom of Information Act, because the information provided is proprietary and contains trade secrets. If made public, the information might be used to the disadvantage of the Cisco Systems, Inc. in the market place. AIR-LMC352 Block Diagram AIR-LMC352 Schematic Diagrams AIR-LMC352 Technical Description Best Regards, Jim Nicholson EMC Compliance Engineer
From: [email protected] Sent: Thursday, September 30, 2004 6:17 AM To: [email protected] Subject: E04-000013 Item 1. The users manual refers to an RF Exposure Statement stating 20cm separation. This statement is not sufficient for an RF Exposure warning since the user will typically be within 20cm; this is not a mobile device. Please revise users manual statement. > What will be the industry put for handheld device? Please give me > samples or direction on this. Item 2. Please clarify antenna used with CISCO card. Is the internal antenna used for this device, does it use the same antenna as 902-928MHz Transmitter. > No, the CISCO has 2 small patch antennas and that is completely > separated from the reader antenna. Item 3. Please clarify operational mode during emissions testing. Has the product been evaluated for simultaneous transmission using both transmitters? > Yes, we tested the handheld reader with both reader and WIFI on at the > same time.
Operational Description Hand Held Reader Copyright 2003 Telenexus, Inc. All rights reserved The information and/or drawings set forth in this document and all rights in and to inventions disclosed herein and patents which might be granted thereon disclosing or employing the materials, methods, techniques, or apparatus described herein are the exclusive property of Telenexus. No disclosure of information or drawings shall be made to any other person or organization without the prior consent of Telenexus. Overview............................................................................................................................. 3 Block Description ...............................................................................................................5 Windows CE Card Engine .............................................................................................. 6 Wireless Interface ........................................................................................................... 6 CE Mother Board ............................................................................................................ 6 CE Power Supply Card ................................................................................................... 6 RF Section........................................................................................................................... 7 Overview RFID Tag Reader • 900 Mhz band 902 – 928 Mhz band FCC Part 15 Unlicensed • 10 foot read range (typical, dependent upon reader and tag orientation) • 500 tag/second read rate (typical) • Read Auto ID Class 0 tags Barcode Reader • CCD-based 1-D scanner • Can read barcodes up to a distance of 50 cm (19.6”) • Auto-adaptive scan rate of up to 36 scans per second • Can be used in any lighting conditions from total darkness to full sunlight (100,000 lux). • Safe, no lasers, scanner’s lighting is produced by LEDs • Optics: 645 nm visible LED • Symbologies – UPC (E&A), EAN, Code 11, Code 39, Code 128, UCC EAN 128, ISBN, ISBT, Interleaved, Matrix, Industrial and Standard 2 of 5, Codabar, Code 93, MSI, Plessey, Telepen Data Entry and Reader Control • 320 x 240 pixel, monochrome backlit LCD • Touch panel operation • Alphanumeric/function keypad • Trigger switch for 1-handed operation • Beeper for audio feed back for scans, and other operations Tag Data Processing and Storage • Windows CE.net operating system • SuperH 32-bit RISC microprocessor running at 156MHz • 208 MIPs • 32 MB Flash ROM • 32 MB RAM Host Processor Interfaces • USB v1.1 High-speed serial bus • Optional 802.11b wireless network interface with 128-bit data encryption, WiFi compliant • RS232 serial interface – 16C550 like, standard UART Environmental/Operational Characteristics • -20 - +50 degrees C operating temperature range • Water-resistant case • Internal rechargeable battery pack providing 8 hours operation on a single battery charge (at avg. of TBD read operations per minute) Physical Characteristics • Height 12 inches or 30.5 cm tall • Width 3.5 inches or 8.9 cm wide • Depth 5.5 inches or 14.1 cm deep. • The HHR weighs approximately 2.5 pounds The typical use of the Hand Held Reader (HHR) is to read Auto ID Class 0 RF tags and or bar codes. The RF tags are read in the range of 902 to 928 MHz. The reader would then process this information through a customer specific application that resides on the HHR. The custom software would upload the processed information via the built in serial interface, USB v1.1, or the 802.11b wireless interface, to a customer specific database. The Hand Held Reader (HHR) operates either off of an internal battery pack, at 6.0V and 2.7 amp hour, or an external AC wall wart. There are two types of AC adaptors for the HHR. One AC adaptor will only charge the internal battery, and the other AC adaptor will allow for the HHR to be powered from the AC power. The unit’s standard configuration is for the unit to run off of internal battery power. The AC adaptors are not interchangeable, meaning that the AC power unit will not recharge the HHR. The user interface consists of a 320 x 240 pixel, monochrome backlit LCD. The LCD display has an integrated touch panel, to be used as a pen and pad operation, similar to a Palm Pilot. Additionally an alphanumeric/function keypad surrounds the LCD display. A trigger switch activates either the bar code scanner or RF reading functionality of the HHR. A beeper is integrated for audio feedback from the HHR. Block Description The Hand Held Reader, (HHR) is a generic hardware platform for a customer’s custom software to operate on. The platform consists of an RF Section, 802.11b wireless interface, a solid state bar code scanner, the required hardware to run Windows, and a user interface. The current software that runs on the HHR was written at Telenexus for demonstration purposes only. The software allows for all of the hardware functionality to be exercised. The RF section frequency selection, hop table, and hop duration is firmware controlled. The following block diagram depicts the major systems of the HHR. CE Power Supply Card CE Motherboard Telenexus RF Module RFM001-S61152FCU Barcode Scanner Intermec E1022 Scan Engine 3-122019-0010 802.11b WiFi Cisco Aironet 350 Series AIR-LMC352 Windows CE Engine LogicPD Card Engine 32K RAM STD LSH7727-10-160BP-AB-33-ABC User Interface Touchscreen Keypad Button Serial IntefaceSerial Inteface Windows CE Card Engine The Windows CE Card Engine was designed by LogicPD, part number LSH7727- 10-160BP-AB-33-ABC, and built into the HHR. The card contains a 156MHz 32bit RISC processor with 32 Mbytes of RAM and Flash memory. Windows CE is resident in the Flash on the CE Card Engine. Wireless Interface The wireless interface consists of a Cisco 802.11b WiFi card. The card is a Cisco Aironet 350 series, part number AIR-LMC352, 800-13712-05. CE Mother Board The CE Mother Board was designed at Telenexus and contains the physical interfaces for the CE eng…
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Card Engine SH7727 Card Engine Hardware Specification SH7727-20 Card Engine Hardware Specification Logic DN: 70000039-Rev: A Logic Product Development All Rights Reserved i REVISION HISTORY REV EDITOR REVISION DESCRIPTION APPROVAL DATE 0.1 Hans Rempel First Draft Version HAR 02/23//03 1 Hans Rempel Preliminary Release HAR 03/03/03 A Hans Rempel Initial Release HAR 04/01/03 Please check www.logicpd.com for the latest revision of this manual, errata’s, and additional application notes. SH7727-20 Card Engine Hardware Specification Logic DN: 70000039-Rev: A Logic Product Development All Rights Reserved ii Table of Contents 1 Introduction ..........................................................................................................................................1 1.1 Product Brief ...................................................................................................................................1 1.2 Acronyms ........................................................................................................................................2 1.3 Technical Specification ...................................................................................................................2 1.4 Card Engine Advantages ................................................................................................................4 1.5 Card Engine Interface .....................................................................................................................5 1.6 SH7727-20 Card Engine Block Diagram ........................................................................................6 1.7 Electrical, Mechanical, and Environmental Specifications..............................................................7 1.7.1 Absolute Maximum Ratings 1 ....................................................................................................7 1.7.2 Recommended Operating Conditions .....................................................................................7 2 Electrical Specification ........................................................................................................................8 2.1 Microprocessor................................................................................................................................8 2.1.1 SH7727 Microprocessor ..........................................................................................................8 2.1.2 SH7727 Microprocessor Block Diagram..................................................................................9 2.2 Clocks ...........................................................................................................................................10 2.3 Memory .........................................................................................................................................10 2.3.1 Synchronous DRAM ..............................................................................................................10 2.3.2 Direct Memory Access (DMA) ...............................................................................................11 2.3.3 NOR Flash .............................................................................................................................11 2.3.4 Compact Flash (memory-mapped mode only) ......................................................................11 2.4 10/100 Ethernet Controller ............................................................................................................12 2.5 Audio CODEC ...............................................................................................................................12 2.6 Analog Front End (AFE) Interface.................................................................................................12 2.7 Video Interface ..............................................................................................................................12 2.8 Serial Interface ..............................................................................................................................13 2.8.1 UARTA...................................................................................................................................13 2.8.2 SSP/SPI .................................................................................................................................13 2.8.3 SIOF (Serial I/O with FIFO) ...................................................................................................14 2.9 USB Interface................................................................................................................................14 2.9.1 USB Host ...............................................................................................................................14 2.9.2 USB Function.........................................................................................................................14 2.10 Touch Interface .............................................................................................................................15 2.11 General Purpose Analog & Digital I/O ..........................................................................................15 2.12 CPLD.............................................................................................................................................15 2.13 Serial EEPROM Interface .............................................................................................................15 2.14 Expansion Options ........................................................................................................................16 3 System Integration .............................................................................................................................17 3.1 Configuration..................................................................................................…
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BOM-410-004994 This document includes the followin g assembl y variations: Variation Title Description -005 3V,HFA3861A,LED INV,PCI MOD INCORPORATED -006 5V,HFA3861A,LED INV,PCI MOD INCORPORATED -007 3V,HFA3861B,LED INV,PCI MOD INCORPORATED -008 5V,HFA3861B,LED INV,PCI MOD INCORPORATED 19-Jan-00 BOM-410-004994 PAGE 1 OF 17 RUN PCA, PLUTO LM, PCMCIA RADIO BILL OF MATERIALS THE INFORMATION CONTAINED HEREIN IS PROPRIETARYANY REPRODUCTION OR DISCLOSURE OF THIS DRAWN: Julie Hawk APPROVAL: Jim Nahra 18-Jan-00 CHECKED: DOCUMENT IS FORBIDDEN, EXCEPT WITH WRITTENTO AIRONET WIRELESS COMMUNICATIONS INC.PERMISSION FROM AIRONET WIRELESS COMMUNICATIONS. REV DESCRIPTION ECN B0 2262 PRODUCTION REL EASE REVISIONS APPROVED Aironet Wireless Communications, Inc. Fairlawn, Ohio 44333 NOTE: SEE SO URCE CONTROL DRAWINGS FOR ORDERING INFORMATION. Part Number Value/Item Description Reference Designator Rev Item Qty Fab Assy -005: 3V,HFA3861A,LED INV,PCI MOD INCORPORATED Doc Cell PCB1 PCB , PLUTO LM , PCMCIA RADIO PCB 510-004994 B 1B0 1 SHLD1 SHIELD, POWER AMP SHIELD 530-004913 A1 1 2 SHIELD SHLD6 SHIELD, I/Q MODEM SHIELD 530-004919 A1 1 3 SHIELD SHLD3 SHIELD , RF/IF SHIELD 530-004939 B0 1 4 SHIELD SHLD2 SHIELD , 2GHZ VCO SHIELD 530-005061 A0 1 5 SHIELD SHLD8 SHIELD , TX BPF SHIELD 530-005062 B0 1 6 SHIELD U704 IC, UHS INVERTER, TINYLOGIC ( TM ) UHS SINGLE INV 601-004165 1 7 USV U500 U501 VOLTAGE REGULATOR , 150MA CMOS LDO TC1185-2.8VCT 601-004325-0280 2 8 SMV U700 IC , UHS BUFFER , TINYLOGIC ( TM ), GROUP IC , UHS BUFFER 601-004565 1 9 USV U400 IC , RF/IF CONVERTER & SYNTHESIZER 2.4GHZ HFA3683A 601-004748 1 10 LQFP64 U503 IC, I/Q MODULATOR/DEMOD & SYNTHESIZER HFA3783IN 601-004749 1 11 TQFP48 U101 IC , POWER AMPLIFIER & DETECTOR , 2.4GHZ HFA3983IV 601-004802 1 12 TSSP29 U401 IC , SILICON MMIC WIDEBAND AMP , 3V , 2.7GHZ UPC2745TB 601-004866 1 13 SMM6 U1 U100 IC , GAAS RF SWITCH , SPDT , 2.5GHZ AS179-92 601-004904 2 14 SOT363 U701 U705 U708 LMOS, 2-INPUT AND GATE TC7S08FU 604-002976 3 15 USV U600 IC,2MBIT BOTTOM SECTOR, LO VOLTAGE FLASH AM29LV002BB-120EC 605-003571-120C 1 16 TSOP40 U706 IC , SRAM , 128K X 16 , 3.3V , CMOS SRAM 128Kx16 15ns , C 605-004901-015 1 17 TQFP44 U710 IC , SILICON SERIAL NUMBER DS2401AP 606-002904 1 18 TSOC6 U707 IC , DSSS BASEBAND PROCESSOR , 11MB , CCK HFA3861AIN 607-004752 1 19 LQFP64 U601 PROCESSOR, A503 CUSTOM EMBEDDED ASIC A503 608-004808 1 20 TQ128W CR700 DIODE , ZENER , LOW LEVEL 500UA , 250MW CMDZ7L5 610-004951-7.5V 1 21 SOD323 Q700 Q701 TRANSISTOR , SILICON NPN W/BUILTIN RESIS B=10K/BE=NONE 611-002986-14T 2 22 SSM R302 R413 R415 R417 R418 R420 R509 RESISTOR , 1/16W , 5% - SMD 0.0 620-003251-000 20 23 0402 R511 R520 R608 R616 R707 R711 R715 R721 R727 R728 R729 R733 R742 R400 R501 R508 R737 RESISTOR , 1/16W , 5% - SMD 100 620-003251-100 4 24 0402 R613 R617 R618 R700 R701 R702 R732 RESISTOR , 1/16W , 5% - SMD 10K 620-003251-10K 7 25 0402 R105 R107 R308 R414 R516 R600 R612 RESISTOR, 1/16W, 5% - SMD 10 620-003251-10R 7 26 0402 R305 R403 R411 RESISTOR, 1/16W, 5% - SMD 18 620-003251-18R 3 27 0402 R101 RESISTOR , 1/16W , 5% - SMD 1.0K 620-003251-1K0 1 28 0402 R412 R416 RESISTOR , 1/16W , 5% - SMD 1.1K 620-003251-1K1 2 29 0402 19-Jan-00 BOM-410-004994 PAGE 2 OF 17 RUN PCA, PLUTO LM, PCMCIA RADIO BILL OF MATERIALS THE INFORMATION CONTAINED HEREIN IS PROPRIETARYANY REPRODUCTION OR DISCLOSURE OF THIS DRAWN: Julie Hawk APPROVAL: Jim Nahra 18-Jan-00 CHECKED: DOCUMENT IS FORBIDDEN, EXCEPT WITH WRITTENTO AIRONET WIRELESS COMMUNICATIONS INC.PERMISSION FROM AIRONET WIRELESS COMMUNICATIONS. REV DESCRIPTION ECN B0 2262 PRODUCTION REL EASE REVISIONS APPROVED Aironet Wireless Communications, Inc. Fairlawn, Ohio 44333 NOTE: SEE SO URCE CONTROL DRAWINGS FOR ORDERING INFORMATION. Part Number Value/Item Description Reference Designator Rev Item Qty Fab Assy -005: 3V,HFA3861A,LED INV,PCI MOD INCORPORATED (Cont’d) Doc Cell R306 R610 RESISTOR , 1/16W , 5% - SMD 1.5K 620-003251-1K5 2 30 0402 R402 RESISTOR, 1/16W, 5% - SMD 20 620-003251-20R 1 31 0402 R500 R506 RESISTOR , 1/16W , 5% - SMD 2.0K 620-003251-2K0 2 32 0402 R301 R304 R401 R404 R409 R410 RESISTOR , 1/16W , 5% - SMD 300 620-003251-300 6 33 0402 R505 R748 RESISTOR , 1/16W , 5% - SMD 3.9K 620-003251-3K9 2 34 0402 R709 R741 R743 RESISTOR, 1/16W, 5% - SMD 470 620-003251-470 3 35 0402 R611 R744 R745 R746 R747 RESISTOR, 1/16W, 5% - SMD 47K 620-003251-47K 5 36 0402 R1 R100 R104 R106 R2 R50 R51 R517 RESISTOR , 1/16W , 5% - SMD 51 620-003251-51R 9 37 0402 R522 R307 R725 RESISTOR , 1/16W , 5% - SMD 680 620-003251-680 2 38 0402 R601 R602 R603 R604 R605 R606 R708 RESISTOR, 1/16W, 5% - SMD 68K 620-003251-68K 16 39 0402 R719 R720 R722 R724 R730 R731 R735 R736 R740 R309 R310 RESISTOR , 1/16W , 5% - SMD 82 620-003251-82R 2 40 0402 R311 RESISTOR, 1/16W, 5% - SMD 91 620-003251-91R 1 41 0402 R406 RESISTOR, 1/16W 1% -SMD 11.5K 620-003521-11K5 1 42 0402 R705 R712 R716 R718 RESISTOR , 1/16W 1% -SMD 124 620-003521-124R 4 43 0402 R706 RESISTOR , 1/16W 1% -SMD 12.1K 620-003521-12K1 1 44 0402 R713 R714 RESISTOR , 1/16W 1% -SMD 19.1K 620-003521-19K1 2 45 0402 R407 RESISTOR, 1/16W 1% -SMD 1.50K 620-003521-1K50 1 46 0402 R510 RESISTOR , 1/16W 1% -SMD 2.87K 620-003521-2K87 1 47 0402 R102 R103 RESISTOR , 1/16W 1% -SMD 3.74K 620-003521-3K74 2 48 0402 R704 R717 RESISTOR , 1/16W 1% -SMD 536 620-003521-536R 2 49 0402 R726 RESISTOR, 1/16W 1% -SMD 976 620-003521-976R 1 50 0402 R408 RESISTOR , 1/16W 1% -SMD 9.53K 620-003521-9K53 1 51 0402 C518 CAPACITOR X7R 25V 10% - SMD 220nF 622-000677-U22 1 52 0805 C513 CAPACITOR X7R 50V 10% 220pF 622-001699-N22 1 53 0603 C715 CAPACITOR, TANT 10V 20%, LOW PROFILE 1.0uF 622-002996-1U0 1 54 3216L C612 CAPACITOR, TANT 10V 20%, LOW PROFILE 10uF 622-002997-10U 1 55 3528L C502 C505 C520 C527 CAPACITOR , TANT 10V 20% , LOW PROFILE 4.7uF 622-002997-4U7 4 56 3528L C101 C102 C109 C110 C111 C112 C116 CAPACITOR , X7R , 50V , 10% TOL. CLASS 2 1.0nF 622-003315-1N0 16 57 0402 19-Jan-00 BOM-410-004994 PAGE 3 OF 17 RUN PCA, PLUTO LM, PCMCIA RADIO BILL OF MATERIALS…
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BOM-411-004994 This document includes the followin g assembl y variations: Variation Title Description -002 5V, A PHY, REV A0 BOARDS ONLY -004 5V, A PHY, PCI MOD, REV A0 BOARDS ONLY -006 5V, A PHY, LED MOD, PCI MOD -008 5V, B PHY, LED MOD, PCI MOD 11-Feb-00 BOM-411-004994 PAGE 1 OF 5 RUN TESTED PCA, PLUTO LM SERIES RADIO BILL OF MATERIALS THE INFORMATION CONTAINED HEREIN IS PROPRIETARYANY REPRODUCTION OR DISCLOSURE OF THIS DRAWN: Julie Hawk APPROVAL: Jim Friedmann 10-Feb-00 CHECKED: DOCUMENT IS FORBIDDEN, EXCEPT WITH WRITTENTO AIRONET WIRELESS COMMUNICATIONS INC.PERMISSION FROM AIRONET WIRELESS COMMUNICATIONS. REV DESCRIPTION ECN A1 2333 INCORPORATED ECN REVISIONS APPROVED Aironet Wireless Communications, Inc. Fairlawn, Ohio 44333 NOTE: SEE SO URCE CONTROL DRAWINGS FOR ORDERING INFORMATION. Part Number Value/Item Description Reference Designator Rev Item Qty Fab Assy -002: 5V, A PHY, REV A0 BOARDS ONLY Doc Cell PCA , PLUTO LM , PCMCIA RADIO 5V , A PHY 410-004994-002 1 1 AUTOMATED TEST ENVIRONMENT 740-004746 1 2 AUTOMATED TESTS, PLUTO SERIES RADIO 741-005193 1 3 n/a 11-Feb-00 BOM-411-004994 PAGE 2 OF 5 RUN TESTED PCA, PLUTO LM SERIES RADIO BILL OF MATERIALS THE INFORMATION CONTAINED HEREIN IS PROPRIETARYANY REPRODUCTION OR DISCLOSURE OF THIS DRAWN: Julie Hawk APPROVAL: Jim Friedmann 10-Feb-00 CHECKED: DOCUMENT IS FORBIDDEN, EXCEPT WITH WRITTENTO AIRONET WIRELESS COMMUNICATIONS INC.PERMISSION FROM AIRONET WIRELESS COMMUNICATIONS. REV DESCRIPTION ECN A1 2333 INCORPORATED ECN REVISIONS APPROVED Aironet Wireless Communications, Inc. Fairlawn, Ohio 44333 NOTE: SEE SO URCE CONTROL DRAWINGS FOR ORDERING INFORMATION. Part Number Value/Item Description Reference Designator Rev Item Qty Fab Assy -004: 5V, A PHY, PCI MOD, REV A0 BOARDS ONLY Doc Cell PCA , PLUTO LM , PCMCIA RADIO 5V , A PHY , PCI MOD 410-004994-004 1 1 AUTOMATED TEST ENVIRONMENT 740-004746 1 2 AUTOMATED TESTS , PLUTO SERIES RADIO 741-005193 1 3 n/a 11-Feb-00 BOM-411-004994 PAGE 3 OF 5 RUN TESTED PCA, PLUTO LM SERIES RADIO BILL OF MATERIALS THE INFORMATION CONTAINED HEREIN IS PROPRIETARYANY REPRODUCTION OR DISCLOSURE OF THIS DRAWN: Julie Hawk APPROVAL: Jim Friedmann 10-Feb-00 CHECKED: DOCUMENT IS FORBIDDEN, EXCEPT WITH WRITTENTO AIRONET WIRELESS COMMUNICATIONS INC.PERMISSION FROM AIRONET WIRELESS COMMUNICATIONS. REV DESCRIPTION ECN A1 2333 INCORPORATED ECN REVISIONS APPROVED Aironet Wireless Communications, Inc. Fairlawn, Ohio 44333 NOTE: SEE SO URCE CONTROL DRAWINGS FOR ORDERING INFORMATION. Part Number Value/Item Description Reference Designator Rev Item Qty Fab Assy -006: 5V, A PHY, LED MOD, PCI MOD Doc Cell PCA , PLUTO LM , PCMCIA RADIO 5V , A PHY , LED MOD , PCI M 410-004994-006 1 1 AUTOMATED TEST ENVIRONMENT 740-004746 1 2 AUTOMATED TESTS , PLUTO SERIES RADIO 741-005193 1 3 n/a 11-Feb-00 BOM-411-004994 PAGE 4 OF 5 RUN TESTED PCA, PLUTO LM SERIES RADIO BILL OF MATERIALS THE INFORMATION CONTAINED HEREIN IS PROPRIETARYANY REPRODUCTION OR DISCLOSURE OF THIS DRAWN: Julie Hawk APPROVAL: Jim Friedmann 10-Feb-00 CHECKED: DOCUMENT IS FORBIDDEN, EXCEPT WITH WRITTENTO AIRONET WIRELESS COMMUNICATIONS INC.PERMISSION FROM AIRONET WIRELESS COMMUNICATIONS. REV DESCRIPTION ECN A1 2333 INCORPORATED ECN REVISIONS APPROVED Aironet Wireless Communications, Inc. Fairlawn, Ohio 44333 NOTE: SEE SO URCE CONTROL DRAWINGS FOR ORDERING INFORMATION. Part Number Value/Item Description Reference Designator Rev Item Qty Fab Assy -008: 5…
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802 N. Kealy · Lewisville, Texas · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 2.41 GHz - 2.46 GHz | 100.00 mW |

LMS - Part 90 Location & Monitoring Transmitter
Equipment Class
LMS - Part 90 Location & Monitoring TransmitterMaximum output power: 100 mW.
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterMaximum output power: 100 mW
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter