
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
WER120 Wireless Ethernet Router T he WER120 Wireless Ethernet Router is the subscriber device of iAIR Network 1000 and is designed for user with flexible access capability. Empowered with multi-hopping & multi-routing technology, the WER120 enhances wireless coverage range and system reliability. By configuring to act as a wireless router/repeater, WER120 improves network connectivity for other iAIR components. This increases network robustness and coverage at no additional cost. You can freely enjoy up to 11Mbps burst rate for data and video streaming services without wiring effort by simply connecting your PC to WER120 via Ethernet interface. The seamless hand-over capability furthermore ensures continuous application while users are in moving. All the WER120 can form their own peer-to-peer network anywhere at anytime. It is easy for any Ethernet ready device to access the iAIR Network 1000. Computers, IP video cameras, sensors, signs, signals, etc. can all be enabled to send and receive data and video signals. Finally, WERs can instantly form Peer-to-Peer, broadband network without using any network infrastructure. Features and Benefits Non-Line-of-Sight (NLOS) Coverage With integrated multi-hopping technology, the WER120 Wireless Ethernet Router extends coverage by acting as an intelligent wireless router/repeater for network traffic. The subscribers using WER120 no longer require being within the immediate access range of central gateway/hub as the traffics of distant users are automatically relayed to Gateway with various alternate routes in iAIR Network 1000. True non-line of sight connection capability is hence realized even in hard-to-cover area. Highly Mobile Broadband Internet The iAIR network provides an always-on dedicated broadband connection for high speed mobility application with seamless hand-over functionality. Competitive price with terrestrial broadband service Due to intelligent system architecture, the WER120 provides competitive price with terrestrial broadband services and also below services from 2.5G or 3G mobile data service. Increased Network Capacity Network capacity provisioned for subscribers at the edge of the iAIR Network 1000 can be increased via multi-hop routing technology. Throughput to the subscriber devices is greatly improved with the Self-Load Balancing feature and the congestion management function of iAIR network. Burst transmit rate up to 11Mbps for data and high quality video streaming is also applied to the Wireless Ethernet Router. Industry Standard Security Support The iAIR system architecture allows WER120 to support higher layer security standards of IPSec VPN in end-to-end connection. Support Peer-to-Peer Applications All the WER120 in iAIR Network 1000 can form their own peer-to-peer network anywhere at anytime. A wireless broadband network can exist among iAIR subscriber devices even in places without network backbone. Company, family, and community can make up private and effortless group communication. Easy Installation, Operation and Maintenance Self-Configuration capability makes WER120 easy to install, operate and maintain. Omni-directional antenna is usually utilized for WER120 and therefore simplify installation. No special trainings or skills are necessary with the Self-Configuration capability. Ethernet interface is provided on WER120 for attaching your desk- or lap-top PC. After powered on, WER120 will instantly recognize other iAIR components and automatically associate with the existing network. Enhanced Network Robustness Self-Forming and Self-Healing features enable WER120 to automatically route around network nodes and recover from single node failure. iAIR Network 1000 is naturally robust than conventional WLAN architecture due to its ability of dynamically creating new routes. Subscriber Authentication and Management The built-in software of WER120 supports subscribers authentication and allows service providers to remotely manage and control the subscription status. Over-the-air Software Upgrade Advanced software with new functionalities and services can be upgraded to WER120 in iAIR Network 1000 via over-the-air software upgrade capability. Network Management Network management of WER120 is easily achieved via the distributed iAIR Network Management System(NMS), iSysView v1.0. The sophisticated but ease-to-use network management package software simplifies network deployment, monitor, operation, and maintenance. Flexible network management capability allows for quickly isolating and resolving network troubles and diagnostics. Product Specifications Network Specifications System architecture iAIR multi-hopping & multi-routing; Peer-to-Peer Mobile wireless access Seamless hand-over Bandwidth management Self βload balancing Fault recovery Self configuration, Self healing Network interface 10/100Mbps Ethernet Radio Specifications Frequency band 2.4~2.4835 GHz Channels 14 (depending on locality) Radio type Direct sequence spread spectrum (DSSS) Data rate Up to 11 Mbps Transmit power -20dBm ~ +17dBm (Automatic Power Control) Receiver sensitivity -83dBm@11Mbps Security Path diversity, Channel diversity, User authentication, Attacks rejection, Burst transmission mode, Unique air interface User data 3DES security(option) Antenna 2 dBi omni-directional(optional antenna by request) Network Management Authentication & registration MAC address access control Management system iSysView v1.0 Software upgrade Local and over-the-air upgrade Diagnostic interface Telnet and iSysView NMS Physical & Electrical Specifications LAN connection RJ-45 Antenna connection Reverse SMA jack LED Wireless, LAN Weight 230g Dimension 102(W) X 32(D) X 128(H) mm Power connection DC 5V jack Power adapter 100~240VAC, 50~60Hz Power consumption Typical 7W Environmental Specifications Humidity 0-90% Non-Condensing Operating temperature 0 ~ +40 o C Regulatory Compliance Safety EN60950; UL1950; CSA950 EMI/EMC EN50081, 50082, 55022, 61000, 301 489; FCC Part 15β¦
Text truncated - open the document above for the full version.
AA BB CC DD EE 4 4 3 3 2 2 1 1 TitleSize Document Number R e v Date: Sheet of <Doc><Title> C 11 Friday, September 17, 2004 POWER SUPPLY RF Module JTAG Port,Console Port 4MB FLASH (S3C2500) CPU/MAC/PHY 10/100baseT (LAN) LED's MII Interface +3.3V +2.5V +1.8V 16MB SDRAM +5V GPIO Real Time IIC Circuit SIM Card Reader KS8721B EPHY CHIP +5V adapt Data/Address Bus GPIO
Report No.: 048H048FI Page : 1 of 5 Version:1.0 Attachment 2 : EUT Detailed Photographs (1) EUT Photo (2) EUT Photo
FCC ID.: R3L-WER120-IDU 19125 North Creek Parkway, Suite 201, Bothell, WA 98011, USA Tel: 425 485 9928 FCC ID AND DoC Label The FCC ID and DoC Label will be placed on the equipment as shown in the photograph below. Trade name: IWICS Model number.: WER120 Wireless Ethernet Router Model No.: WER120 F F C C C C I I D D : : R R 3 3 L L - - W W E E R R 1 1 2 2 0 0 - - I I D D U U 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. S/N: Made in Taiwan
FCC ID.: R3L-WER120-IDU 19125 North Creek Parkway, Suite 201, Bothell, WA 98011, USA Tel: 425 485 9928 FCC ID AND DoC Label The FCC ID and DoC Label will be placed on the equipment as shown in the photograph below. Trade name: IWICS Model number.: WER120 Wireless Ethernet Router Model No.: WER120 F F C C C C I I D D : : R R 3 3 L L - - W W E E R R 1 1 2 2 0 0 - - I I D D U U 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. S/N: Made in Taiwan
Report No.: 048H048FI Page : 2 of 5 Version:1.0 (3) EUT Photo (4) EUT Photo Report No.: 048H048FI Page : 3 of 5 Version:1.0 (5) EUT Photo Report No.: 048H048FI Page : 4 of 5 Version:1.0 (6) EUT Photo Report No.: 048H048FI Page : 5 of 5 Version:1.0 (7) EUT Photo (8) EUT Photo
Report No. 048H048FI Page: 5 of 35 Version:1.0 1.2. Operational Description EUT is an Wireless Ethernet Router with 11 channels. This device provided four kind of transmitting speed 1,2,5.5 and 11Mbps. The device of RF carrier is DQPSK, DB PSK and CCK. The device adapts direct sequence spread spectrum modulation. The Connector antenna was provides diversity function to improve the receiving function. This Wireless Ethernet Router is an IEEE 802.11b Wireless LAN adapter. It allows your computer to connect to a wireless network and to share resources, such as files or printers without being bound to the network wires. Operation in 2.4GHz Direst Sequence Spread Spectrum (DSSS) radio transmission, the Wireless Ethernet Router transfers data at speeds up to 64/128-bit Wired Equivalent Protection (WEP) algorithm is used. In addition, its standard compliance ensures that it can communicate with any 802.11b network.
Report No. 048H048FI Page: 1 of 3 Version: 1.0 RF Exposure Evaluation declaration Product Name : Wireless Ethernet Router Model No.: WER120 FCC ID.: R3L-WER120-IDU Applicant : IWICS, INC. Address : 19125 North Creek Parkway, Suite 201, Bothell, WA 98011, USA Date of Receipt : Aug. 12, 2004 Date of Declaration : Sep. 10, 2004 Report No. : 048H048FI The declaration results relate only to the samples calculated. The declaration shall not be reproduced except in full without the written approval of QuieTek Corporation. Report No. 048H048FI Page: 2 of 3 Version: 1.0 1. RF Exposure Evaluation 1.1. Limits According to FCC 1.1310: The criteria listed in the following table shall be used to evaluate the environment impact of human exposure to radio frequency (RF) radiation as specified in 1.1307(b) LIMITS FOR MAXIMUM PERMISSIBLE EXPOSURE (MPE) Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Average Time (Minutes) (A) Limits for Occupational/ Control Exposures 300-1500 -- -- F/300 6 1500-100,000 -- -- 5 6 (B) Limits for General Population/ Uncontrolled Exposures 300-1500 -- -- F/1500 6 1500-100,000 -- -- 1 30 F= Frequency in MHz Friis Formula Friis transmission formula: Pd = (Pout*G)/(4*pi*r 2 ) Where Pd = power density in mW/cm 2 Pout = output power to antenna in mW G = gain of antenna in linear scale Pi = 3.1416 R = distance between observation point and center of the radiator in cm Pd id the limit of MPE, 1 mW/cm 2 . If we know the maximum gain of the antenna and the total power input to the antenna, through the calculation, we will know the distance r where the MPE limit is reached. 1.2. Test Procedure Software provided by client enabled the EUT to transmit and receive data at lowest, middle and highest channel individually. The temperature and related humidity: 18Β°Cand 78οΌ RH. Report No. 048H048FI Page: 3 of 3 Version: 1.0 1.3. Test Result of RF Exposure Evaluation Product : Wireless Ethernet Router Test Item : RF Exposure Evaluation Test Site : No.1 OATS Test Mode : Normal Operation Antenna Gain Antenna Gain: The maximum Gain measured in fully anechoic chamber is 2dBi or 1.58 in linear scale. Output Power Into Antenna & RF Exposure Evaluation Distance: Channel Channel Frequency (MHz) Output Power to Antenna (mW) Power Density at R = 20 cm (mW/cm 2 ) 1 2412.0 86.2979 0.0272 6 2437.0 88.7156 0.0280 11 2462.0 93.7562 0.0296 The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission formula is far below the limit of 1 mW/cm 2 .
0 90 PLL 0 90 RF_IN RSSI AGC State Machine D/A D/A FIRDACFIRDAC TXCAL STATE MACHINE POWER DETECTOR XO : 2 FILTER TUNNING TX_OUT_LO TX_OUT_HI TX_HI TXRX SDATA SCLK SEN RX_OUT_I RSSI RX_OUT_QAGCRESET AGCSETV_TUNE CP LOCK REF_CLK XTAL TX_IN_I DATA_I DATA_Q TX_IN_Q PA AP1091 RF SWITCH RF SWITCH 2.45GHz BPF RF SWITCH SA2400 Single Chip Transceiver TXI+ TXI- TXQ+ TXQ- RXQ RXI PE1/AGC_RESET ZD1201 BBP and MAC Chip Samsung S3C2500 128Mbit SDRAM 32Mbit FLASH LAN Chip SIM Card Reader ARM940T 10/100 Ethernet MAC Memory Controller Console UART I2C GPIO ARM7TDMI Clkgen Memory Bus Arbitor DMAC RX FIFO TX FIFO S2P P2S BB DACs XTAL ADCs PCMCIA I/F 128K x16 RAM 4Kx1 EEPROM To ADCs & DACs 55 44 33 22 11 D D C C B B A A 48V+ TX-0 48V+ TX+0 RX+0 RX+0 RX-0 RX-0 TX+0 TX-0 48V- -VIN 48V- +VIN TX+1 TX-1 RX+1 RX-1 TX+1 TX-1 RX+1 RX-1 +5V VDD33 VDD33 VCC18 V2.5 VDD33 +5V RX-1TX+1RX+1TX-1 TX+0TX-0RX+0RX-0 TitleSize Document Number R e v Date: Sheet of Power (POE, +5V, VDD33, VCC18, VDD25, V2.5) P974 Point to Point WLAN AP/AC C 211 Tuesday, August 10, 2004 Close to KS8721B Close to S3C2500A ζ ε€η§ζ θ‘δ»½ζιε ¬εΈ 1.0C Switch ing Node, close to each other Tantalum Tantalum Tantalum Tantalum Tantalum U8G950T63 GND GND VO VO VI VI 1 1 C6 1uF/100V D1 BAV19WS AC C2710uF/10V R3 619K, 1% R7 150 C2410uF/10V C7 1uF/100V C451000pF/2KV 12 D4 RB051L-40 AC FB14 MLB-201209- 0220P-N2(DNP) 1 2 C26 0.1uF 12 C44 1000pF/2KV 12 L1 1uH/2.5A D16 GBLC03C U4CEM9435 S 1 S 2 S 3 G 4 D 5 D 6 D 7 D 8 C37 1000pF/2KV 12 C25 0.1uF 12 C180.1uF 12 R170.1 12 R1610K 12 C8 47pF/100V T1 SMT-POT-003 14 5867 23 C20 10uF/10V R6 8.25K, 1% D17GBLC03C C124.7uF/20V U7G952T63U GND GND VO VO VI VI 1 1 C381000pF/2KV 12 R2 1.0ohm T3ABC LINE FILTER (DNP) 12 43 + C21 100uF/10V 12 C2 2.2nF/50V JP161X4 WAFER(White) 1 2 3 4 D12 GBLC03C C10 100uF/10V C13220nF C15100nF C9 100uF/10V D13GBLC03C C4 1uF/100V C39 1000pF/2KV 12 R13 220 12 C11 1uF/10V C3 1uF/100V R14100 1% 12 R4160 T2 B82722-A2102-N1 1 2 4 3 R18 10K,1% D2 SMBJ150A R151.82K (1%) 12 C161uF/10V FB2 MLB-201209-0220P-N2 1 2 TP1testpoint_040 TP 1 R11 5.1 C1 1000pF/2KV 1 2 R191.07K (1%) 12 R12 220 C220.1uF 12 U1SBG1040CT 1 2 K L2 TRANSFORMER R10 10K,1% U5AMS34063 SC 1 SE 2 TC 3 G 4 FB 5 VCC 6 CS 7 DC 8 CONTROL U2DPA424R L 2 S 4 D 7 F 5 C 1 X 3 C23100pF 12 C401000pF/2KV 12 C190.01uF 12 L3 100uH 1 2 C411000pF/2KV 12 + C17 330uF/6.3V 12 R91K C42 1000pF/2KV 12 R8 10K,1% R51 C431000pF/2KV 12 JP181X4 WAFER(White) 1 2 3 4 C290.1uF 12 JP171X4 WAFER(Red) 1 2 3 4 C1468uF/10V U6LM431 C30 0.1uF 12 U3LTV-817S 12 34 D3 BAV19WS AC C2810uF/10V R1 10 ohm TP2testpoint_040 TP 1 C3110uF/10V C5 1uF/100V 55 44 33 22 11 D D C C B B A A S-GNDS-GND S-GND SDCLK S-GND S-GND S-GND CPU_TDOnTRST_ICE RTCK nSRST nLSDWE D19 nSDCAS nLEWAIT D29D3 A10 BIG CLKMOD1 VDDA_PHY TX_CLK_0 PHY_FILTER D12 A14 A9 SDCKE XCLKCPU_FILTER VDDA_BUS CPU_TCK D28D9D5 A0 TX_EN_0 nRESET D16 A12 CLKMOD0 LDQM[0..3] nDTE_RXD D1 A19 CRS_0 BUS_FILTER nTRST D0D2 nRESET PHY_FILTER CPU_FILTER LDQM1 D26D20D4 A20 A16 CPU_TDI CPU_TMS LDQM2 S-GND LDQM3 nSDCAS D31 A7 VDDA_BUS D[0..31] VDDA_PHY A11 A15 A17 D18D11 A13 A6 A4 nLSDWE B0SIZE1 LHCLKO VDDA_CPUVSSA nLRCS0 CPU_TMS D22D23D7D8D6 COL_0 D24D25 A18 A8 A3 BUS_FILTER SDCKE LDQM0 A1 CPU_TCK CPU_TDI D30D21D15D13D17 A5 A2 CPU_TDO VSSA RXDV_0TX_ERR_0 nLRCS3 D27D14D10 RX_CLK_0 nLEWAIT S-GND #STSCHG A[0..20] PHY_CLKSEL SDASCL BUS_FREQ1 GND VDDA_USB USB_FILTER S-GNDUSB_FILTER VDDA_USB S-GND CPU_FREQ2 CPU_FREQ0 BUS_FREQ0 CPU_FREQ1 TMODE BUS_FREQ2 nTOUT1 #WLANLINK #WLANACT RESWLAN #WLANINT SIM_IO nDTE_TXD #SIM_ERR nLOE nLRCS0 nLSDCS0 nSDRAS nLSDCS0nSDRAS PRXD3PTXD2PRXD0RX_ERR_0PTXD0PTXD1PTXD3PRXD2 VDDA_CPU PRXD1 COL_1 TX_CLK_1STXD0STXD1STXD2STXD3TX_EN_1TX_ERR_1CRS_1RX_CLK_1 SRXD0SRXD1SRXD2SRXD3 RX_DV_1RX_ERR_1 VDD33 VDD33 VCC18 VCC18 VDD33 VDD33 VCC18 VCC18 VDD33 VDD33 VDD33 VDD33 VDD33 VDD33 nDTE_RXD nTOUT1 #STSCHG#WLANINT nRST_LANSYS_LED D[0..31]A[0..20] nSDCASnLSDWE LDQM[0..3] nLOE#CSWLANSDCKE nTRST SDCLK nTRST_ICE nSRST nRESET PRXD[0..3] RX_DV_0 RX_ERR_0 PTXD[0..3] TX_CLK_0 COL_0 TX_EN_0 TX_ERR_0RX_CLK_0 CRS_0 MDIO_0 MDC_0 SDASCL RESWLAN#WLANLINK#WLANACT nDTE_TXDSIMIO#SIM_ERR nWRPT nEWAITnCSFlash0nSDRASnSDCS0 MDIO_1 MDC_1 COL_1 TX_CLK_1 STXD[0..3] TX_EN_1 TX_ERR_1 CRS_1 RX_CLK_1 SRXD[0..3] RX_ERR_1 RX_DV_1 TitleSize Document Number Rev Date: Sheet of CPU P974 Point to Point WLAN AP/AC Custom 311 Tuesday, August 10, 2004 Very close to IC (ceramic) BOSIZE0 = 0,BOSIZE1 = 1 :BootROM isHalf-Word(16bits) wide BIG = 1, big endian TMODE = 0 : normal (ceramic) (ceramic) CLKMOD[0,1] = [11] CPU_FREQ[0..2] = [000] BUS_FREQ[0..2] = [000] ARM940T Core = 166 MHz AMBA BUS = 133 MHz USB = 48 MHz JTAG/Multi-ICEConnect ζ ε€η§ζθ‘δ»½ ζιε ¬εΈ 1.0C CLKSEL = 0: Use PLL output as systemclock PHY_CLKSELPHY_FREQHIGH : 25 MHz Tantalum Tant alum For SIM Card & RTC control (ceramic) LOW : PLL output clock,HIGH: no PHY PLL output + C47 10uF/10V 12 C790.1uF 12 C9222pF 12 + C50 10uF/10V 12 + C46 10uF/10V 12 C680.1uF 12 R25200 12 + C51 10uF/10V 12 + C49 10uF/10V 12 C80 0.01uF 12 + C52 10uF/10V 12 R26 150 1 2 C9010pF 12 + C53 10uF/10V 12 JP3MULTI_ICE(DNP) 1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 R28 10K 1 2 C690.1uF 12 C890.01uF 12 R35330(DNP) 12 C660.1uF 12 X1 10.00MHz 1 2 4 R3310K(DNP) 12 C82 0.01uF 12 RA5 4.7K*4 18 27 36 45 R3110K(DNP) 12 C630.1uF 12 C880.1uF 12 R3210K(DNP) 12 C650.1uF 12 FB7 MLB-201209-0220P-N2 1 2 C83 0.01uF 12 R4010K 1 2 R3010K(DNP) 12 C640.1uF 12 R27 10K 1 2 FB3 MMZ2012S301A 12 R23 51 1 2 C61 330uF/ 6.3V FB4 MMZ2012S301A 12 RA422K*4 18 27 36 45 C730.1uF 12 + C54 10uF/10V 12 C62 330uF/6.3V C700.1uF 12 + C60 10uF/10V 12 FB5 MMZ2012S301A 12 RA322K*4 18 27 36 45 C740.1uF 12 + C59 10uF/10V 12 C87 330p F/5% 12 FB6 MMZ2012S301A 12 U11A74LVC14 1 2 + C58 10uF/10V 12 C84 330p F/5% 12 + C55 10uF/10V 12 C81 0.01uF 12 + C56 10uF/10V 12 R2151 1 2 C86 330p F/5% 12 C710.1uF 12 + C57 10uF/10V 12 U10 S3C2500A01 MDC_0 C2 MDIO_0 D2 COL_0 D3 TX_CLK_0 E4 TXD_0[0]/TXD_10M C1 TXD_0[1]/LOOP_10M D1 TXD_0[2] E3 TXD_0[3] E2 TX_EN_0 E1 TX_β¦
Text truncated - open the document above for the full version.
Report No. 048H048FI Page: 1 of 35 Version:1.0 Test Report Product Name : Wireless Ethernet Router Model No.: WER120 FCC ID.: R3L-WER120-IDU Applicant : IWICS, INC. Address : 19125 North Creek Parkway, Suite 201, Bothell, WA 98011, USA Date of Receipt : Aug. 12, 2004 Date of Test : Sep. 10, 2004 Report No. : 048H048FI The test results relate only to the samples tested. The test report shall not be reproduced except in full without the written approval of QuieTek Corporation. This report must not be used to claim product endorsement by NVLAP any agency of the U.S. Government Report No. 048H048FI Page: 2 of 35 Version:1.0 Test Report Certification Test Date : Sep. 10, 2004 Report No. : 048H048FI The Test Results relate only to the samples tested. The test report shall not be reproduced except in full without the written approval of QuieTek Corporation. This report must not be used to claim product endorsement by NVLAP any agency of the U.S. Government Product Name : Wireless Ethernet Router Applicant : IWICS, INC. Address : 19125 North Creek Parkway, Suite 201, Bothell, WA 98011, USA Manufacturer : ZyGATE Communications Inc. Model No. : WER120 FCC ID. : R3L-WER120-IDU Rated Voltage : AC 120V/60Hz Trade Name : IWICS Measurement Standard : FCC CFR Title 47 Part 15 Subpart C 15.247: 2003 Measurement Procedure : ANSI C63.4: 2001 Test Result : Complied Documented By : ( Carol Tsai ) Tested By : ( Dampier Chang ) Approved By : ( Kevin Wang ) Accredited by NIST (NVLAP) NVLAP Lab Code: 200347-0 Report No. 048H048FI Page: 3 of 35 Version:1.0 TABLE OF CONTENTS Description Page 1. GENERAL INFORMATION .....................................................................................................4 1.1. EUT Description............................................................................................................................4 1.2. Operational Description ................................................................................................................5 1.3. Tested System Datails....................................................................................................................6 1.4. Configuration of tested System .....................................................................................................7 1.5. EUT Exercise Software .................................................................................................................7 1.6. Test Facility ...................................................................................................................................8 2. Conducted Emission....................................................................................................................9 2.1. Test Equipment..............................................................................................................................9 2.2. Test Setup ......................................................................................................................................9 2.3. Limits ............................................................................................................................................9 2.4. Test Procedure .............................................................................................................................10 2.5. Test Result of Conducted Emission.............................................................................................11 3. Peak Power Output ...................................................................................................................13 3.1. Test Equipment............................................................................................................................13 3.2. Test Setup ....................................................................................................................................13 3.3. Limits ..........................................................................................................................................13 3.4. Test Result of Peak Power Output...............................................................................................14 4. Radiated Emission .....................................................................................................................15 4.1. Test Equipment............................................................................................................................15 4.2. Test Setup ....................................................................................................................................15 4.3. Limits ..........................................................................................................................................16 4.4. Test Procedure .............................................................................................................................16 4.5. Test Result of Radiated Emission................................................................................................17 5. Band Edge ..................................................................................................................................23 5.1. Test Equipment............................................................................................................................23 5.2. Test Setup ....................................................................................................................................23 5.3. Limits ..........................................................................................................................................25 5.4. Test Procedure .............................................................................................................................25 5.5. Test Result of Band Edge ............................................................................................................26 6. Occupied Bandwidth ....................................β¦
Text truncated - open the document above for the full version.
Report No.: 048H048FI Page : 1 of 3 Version:1.0 Attachment 1: EUT Test Setup Photographs Front View of Conducted Test Back View of Conducted Test Report No.: 048H048FI Page : 2 of 3 Version:1.0 Front View of Radiated Test Back View of Radiated Test Report No.: 048H048FI Page : 3 of 3 Version:1.0 Front View of Radiated Test (Horn)
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 94.00 mW |

PARROT 212A ODMA Enabled
Equipment Class
DTS - Digital Transmission System
Intelligent Access Seed
Equipment Class
DTS - Digital Transmission System