
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
USB Wireless Adaptor User Manual 一、 Network Card Installation Please follow the following steps to install your new wireless network card: 1. Insert the USB wireless network card into an empty USB2.0 port of your computer when computer has power on. Never use force to insert the card, if you feel it’s stuck, flip the card over and try again. 2. Insert device driver CD into the CDROM drive of your computer, double click the ‘Setup.exe’ icon and run the ‘Setup.exe’ program. 3. Select the language that you are familiar with. 4. Click ‘OK’, then pop up the InstallShield Wizard 5. Click ‘Next’ , 6. Click ‘ Install ’, and begin the installation 7. Please wait while the installation procedure is running. Finally, click ‘Finish’ and restart your computer to finis h the driver installation 二、 Connect to Wireless Access Point 1. After installation has finished, wireless configuration utility will be shown on the desktop of your computer, and it will try to connect to any unencrypted wireless access point automatically. If you want to connect to a specific wireless access point, or the access point you wish to connect uses encryption, you have to configure the wireless network card and input the correct password to get connected to the wireless access point. Double click the icon on your desktop. 2. Scan available wireless access point. Scan results will display in the ‘Available Network’ zone. If you can’t find the access point you wish to connect here, click the ‘Refresh’ button, until you can find your wireless access point. 3. Choose the wireless access point’s SSID, and click ‘Add to Profile’ 4. If it’s an open wireless network system, you will be warned by this pop up dialogue 5. Click ‘OK ’, and fill your information in the ‘Wireless network properties’, or just click ‘OK’. If the wireless access point has enabled encryption, you will have to input the WEP key or WPA preshared key in the form. 6. Then, you can find your wireless access point in the ‘Profile’, it will automatically connect to the access point every time you use your usb network card. 7. After you have connected to the wireless access point successfully, click the ‘General’ menu, you can get the detail information of connected access point, such as status、IP address、speed and so on. 8. Click the ‘Wi -Fi Protect Setup’ menu, by a simple setting allows you to secure connection to your wireless AP. NOTICE: 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. Changes or modifications made to this equipment not expressly approved by SHENZHEN MTN ELECTRONICS CO., LTD. may void the FCC authorization to operate this equipment. This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: • Reorient or relocate the receiving antenna. • Increase the separation between the equipment and receiver. • Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. • Consult the dealer or an experienced radio/TV technician for help. Radiofrequency radiation exposure Information: This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. Please see the RF Exposure information. This transmitter must not be co-located or operating in conjunction with any other antenna or transmitter. Note: The manufacturer is not responsible for any radio or tv interference caused by unauthorized modifications to this equipment. Such modifications could void the user's authority to operate the equipment.
Block Diagram
SHENZHEN MTN ELECTRONICS CO.,LTD. MTN Industrial Park, No. 3 Fuhua Road, Pingxi Neighborhood,Pingdi Town , Longgang District, Shenzhen AGENCY AUTHORIZATION LETTER FCC ID: ZBXWU-150R3 Date: May 6, 2011 Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 To whom it may concern: We, the undersigned, hereby authorize Shenzhen CTL Electromagnetic Technology Co., Ltd.(MR. Tracy Qi) on our behalf, to apply to the Federal Communications Commission on our equipment. Any and all acts carried out by Shenzhen CTL Electromagnetic Technology Co., Ltd. (MR. Tracy Qi) on our behalf shall have the same effect as acts of our own. This authorization expires on December 31, 2011. This is to advise that we are in full compliance with the Anti-Drug Abuse Act. We, SHENZHEN MTN ELECTRONICS CO., LTD. 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. Sincerely, Shuangyun Qin / Manager
SHENZHEN MTN ELECTRONICS CO.,LTD. MTN Industrial Park, No. 3 Fuhua Road, Pingxi Neighborhood,Pingdi Town , Longgang District, Shenzhen Attestation for FCC DoC FCC ID: ZBXWU-150R3 Date: May 6, 2011 Please be notified that we, the undersigned, SHENZHEN MTN ELECTRONICS CO., LTD. declare that the product which bears the above FCC ID is also compliant with the FCC requirements for DoC. The test report number supporting the DoC is 11B04151F. Testing in regards to this report was done by Interocean EMC Technology Corp., located at No.5-2, Lin 1, Tin-Fu Tsun, Lin-Kou Hsiang, Taipei County 244, Taiwan, R.O.C., which has been accredited in accordance to all of the requirements of 47CFR 2.948(d) and (e) of the FCC rules and KDB349827. Sincerely, Shuangyun Qin / Manager
External and Internal Photos of the EUT External Photos N-SMA connector
FCC ID Label Information 1. Label location: 2. FCC ID Label: Model: WU-150R3 FCC ID: ZBXWU-150R3
Internal Photos
Operation Description The Wireless 150N USB Adapter is an high-speed adapter that allows you to connect your notebook or desktop PC to wireless networks at faster speeds than ever before. Now you can transfer or receive digital images, videos and MP3 files faster than ever, connecting to the wireless network with link speeds of up to 150 Mbps using the latest in wireless technology. This adapter is also compatible with 802.11b and 802.11g wireless access points and wireless routers, giving you the flexibility to start upgrading your wireless network without the need to replace your existing equipment. Features: z Complies with IEEE 802.11b/g and is upward compatible with 802.11n z High transfer data rate – up to 150 Mbps z Supports WMM (Wi-Fi Multimedia) for increased multimedia data throughput z Supports WEP (64/128 bit), WPA and WPA2 data encryption z Supports Cisco CCX z Supports the most popular operating systems: Windows XP, Vista and Windows 7 z Supports Hi-Speed USB 2.0/1.1 interface z Supports Software AP function (turns your wireless client into a wireless access point) z Extremely compact design Specifications: Standards » IEEE 802.11b (11 Mbps Wireless LAN) » IEEE 802.11g (54 Mbps Wireless LAN) » IEEE 802.11e (QoS Enhancement WMM) » Upward compatible to IEEE 802.11n (150 Mbps Wireless LAN) General z Interface: Hi-Speed USB 2.0 z Chipset: Realtek RTL8188SU z Frequency band: 2.4000 – 2.483 GHz (Industrial Scientific Medical Band) z Modulation technologies: - 802.11b: Direct Sequence Spread Spectrum (DSSS): DBPSK, DQPSK, CCK - 802.11g: Orthogonal Frequency Division Multiplexing (OFDM): BPSK, QPSK, 16QAM, 64QAM - 802.11n: Orthogonal Frequency Division Multiplexing (OFDM): BPSK, QPSK, 16QAM, 64QAM z Security: - 64/128-bit WEP data encryption - WPA and WPA2 - Cisco CCX LEDs Link/Activity Environmental z Operating temperature: 0 – 40°C (32 – 104°F) z Operating humidity: 10 – 90% RH, non-condensing z Storage temperature: -20 – 60°C (-4 – 149°F) Block Diagram
RF Exposure Statement 1. Standard Applicable According to 1.1307 (b)(1), systems operating under the provisions of this section shall be operated in a manner that ensure that the public is not exposed to radio frequency energy level in excess of the Commission’s guideline. This is a portable device. 2. Measurement Result: This is a portable device and the max average output power is 10. 45 dBm (11.09mW). The antenna gain of the device is 2dBi The EIRP of the device is 10. 45+2=12.45dBm=17.5792mW Lower than the low threshold 60/f GHz = (24.37 mW) The SAR/MPE measurement is not necessary.
55 44 33 22 11 D D C C B B A A RTL8188CU 1T1R USB 1V0 LED1 90ohm UD88C00_1V0 initial 20090922 WPS CONFIGURE TX2G_PAON[0] VD12D_LDO VD33USB REXT VD33PA[0] VD15R[1] VD33RVD33A VD33SPS VDD33 XO VD15A TX2G_PAOP[0] VDD33 VDD33 5V 5V VDD33 LED_0 5V VDD33 VDD33 GPIO2 GPIO5 GPIO7 XI VD33A GPIO6 VD12A VD25P VD12S HSDPHSDM LED_0LED_1 VD15R[1] GPIO2 GPIO4 VD15R[0] VD15R[0] VD15D VD33PA[0] VD33PA[0] VDD33 HSDPHSDM 5V_IN VDD33 TitleSize Document Number Rev Date: Sheet of <Doc> <RevCode> C 11 Thursday, April 22, 2010 TitleSize Document Number Rev Date: Sheet of <Doc> <RevCode> C 11 Thursday, April 22, 2010 TitleSize Document Number Rev Date: Sheet of <Doc> <RevCode> C 11 Thursday, April 22, 2010 C92.7pFC92.7pF C300.1uFC300.1uF R16100KR16100K L9NCL9NC C311uFC311uF CON1marata connectorCON1marata connector IN 1 OUT 2 GND 3 GND 4 GND 5 GND 6 C1022pFC1022pF U21TPU21TP 1 1 L16.8uHL16.8uH R31560R31560 R212.7nHR212.7nH C110.7pFC110.7pF C200.1uFC200.1uF R50RR50R C36 1uF C36 1uF L334.7uHL334.7uH R20RR20R R2324KR2324K R14NCR14NC L26.8nHL26.8nH L83.3nHL83.3nH L72.7nHL72.7nH R22 0.8pF R22 0.8pF C810pFC810pF C142.7pFC142.7pF C23100pFC23100pF C291uFC291uF R30RR30R RTL8188CU QFN46 U2 RTL8188CU QFN46 U2 PAPE[0] 46 RX2G_IP[0] 6 VD15R[0] 5 TX2G_PAON[0] 3 TX2G_PAOP[0] 4 VD33PA[0] 2 TRSWP[0] 1 VD15R[1] 8 LED1 / ANT_SEL_N 11 LED0 / ANT_SWL_P 10 VD33A 12 RETX 13 VD15A 14 VD12A_LDO 15 XI 16 XO 17 CK_BT_40M/DA6 18 GNDS 28 GPIO[9] 33 WL_RX/GPIO[1] 21 GPIO[2]/BT_STAT 22 GPIO[3]/BT_PRI 23 NC 19 VD12D_LDO 25 VD25P 27 VD15D 26 GPIO[11]/PDN 24 VD12S_LDO 29 HSDP 30 HSDM 31 V33USB 32 WL_ACT/GPIO[0] 20 TRSWN[0] / LED2 34 VD33IO 35 VDSPS33 36 LX_SPS0 37 GND_SPS0 38 VD12D 39 BT_Suspend 41 GPIO[5] 42 EEDO 43 EEDI 44 EESK 45 VD33R 9 RX2G_IN[0] 7 GND_D 40 U20TPU20TP 1 1 L510nHL510nH C51 10uF C51 10uF C191uFC191uF C121.1pFC121.1pF C3322pFC3322pF C260.1uFC260.1uF C131.2pFC131.2pF C65 22uF C65 22uF C27 4.7nF C27 4.7nF C181.8nHC181.8nH T23 HEADERT23 HEADER 123 R8NCR8NC R10RR10R SW1SW1 2 1 C67 10nF C67 10nF C310pFC310pF CON3A USB_A-PLUG CON3A USB_A-PLUG 4 4 3 3 2 2 1 1 G 5 NC 6 C52 10nF C52 10nF R15NCR15NC C60.1uFC60.1uF C171uFC171uF C221.8nHC221.8nH C351uFC351uF C410pFC410pF R36 680K R36 680K L62.7nHL62.7nH L310RL310R R13NCR13NC R25NCR25NC R12NCR12NC C1610pFC1610pF R90RR90R R1127pFR1127pF R40RR40R R35 150K R35 150K R290RR290R U4CAT7103U4CAT7103 EN 1 GND 2 SW 3 VIN 4 FB 5 ANT1ANT1 ANT_IN 1 NC 2 C252n7FC252n7F L42.7nHL42.7nH C510uFC510uF R33 100K R33 100K C241uFC241uF C54 10nF C54 10nF C1510pFC1510pF C110uFC110uF C71.2pFC71.2pF R280RR280R R34 10K R34 10K R70R70 XTAL140MHzXTAL140MHz XTALP 1 GND 4 XTALP 3 GND 2 C222uFC222uF L36.8nHL36.8nH 12 C3222pFC3222pF R260RR260R C53 NP C53 NP 1 2 3 4 5 6 78 ABCD 8 7 6 5 4 3 2 1 D CBA 1 23 4 X140MHz C3620pF C3520pF RTL8191SU - R43 EECS VDD33VDD18VDD33VDD18 VDD33 VDD18 VDD15 VDD12VDD18VDD25VDD33 VDD33 VDD33 VDD12 R324KR XI_40M XO_40M XI_40M XO_40M C41p2FC31p2F L52n7HL42n7H C11u0F TX2G_PA[0]-TX2G_PA[0]+RX2G[0]+RX2G[0]- C181u0F C151u0FC111u0F L86n8H C51u0FC60u1FC90u1FC100u1F C170u1F C120u1FC131u0FC140u1F C20NP C2122uF C20u1F L26u8H VDD18 C160u1F L96n8H C2510pFC2610pF VDD33VDD33 C272p2FC282p2F L62n2H C310RC320R L124n7H C231p0F C240p8F L33n3H C22NP VDD33 EN 1 GND 2 SW 3 VIN 4 FB 5 U3CAT7103 L334u7H C3822uF R6680KRR7150KR C4010nF 5V VDD33 C3710uF R5100KR C3910nF 5V HSDMHSDP R8NP R910KR C41NP GPIO[0] GPIO[1] VDD33 VDD33 VDD33 R101K0R C810pF R126K2R EESK EEDI EEDO ANT_1 R220R R21NPR23NP LED1LED LED0LED R2560R R1560R LED[0] LED[1] VDD33 C48100pF CHIP_SELECT 1 DATA_ CLK 2 DATA_IN 3 DATA_OUT 4 GND 5 ORG 6 X 7 VCC 8 U2NP EECSEESKEEDIEEDO VDD33 TRSWP[0] 2 VD33PA 3 PAPE[0] 1 TX2G_PAON[0] 4 TX2G_PAOP[0] 5 NC 10 RX2G_IN[0] 9 XO 26 ANT_SEL_P 17 EECS 63 TRSWN[0] 6 VD33R 11 NC 12 EESK 62 EEDI / GPIO[7] 61 EEDO / GPIO[6] 60 RX2G_IP[0] 8 NC 13 VD18R[1] 14 VD18D 34 VD12_D 58 NC 46 GND_D 28 VD33IO 55 GGPIO[4] 56 VD33U 36 PDn 48 NC 54 NC 53 GND_D 59 TSSI _0 64 HSDP 38 RX2G_IN[1] 16 RX2G_IP[1] 15 ANT_SEL_N 18 BT_PRI / GPIO[3] / USIN 32 LED[1] 20 NC 44 LED[0] 19 VD12S 40 NC 42 VD33A 21 GND_SPS_0 49 REXT 22 XI 25 NC 27 WL_ACT / GPIO[0] / EEPROM 29 HSDM 39 NC 52 VD33_SPS_0 51 NC 47 LX_SPS_0 50 VD18A 23 VD15A 24 GPIO[5] 57 BT_FREQ / GPIO[1] / HCI_SEL / USOUT 30 VD25E 35 VD12D 33 RREF 37 GND_S 41 NC 43 NC 45 BT_STA / GPIO[2] 31 VD18R[0] 7 GND_RF 65 U1RTL8191SU IO 1 SW 2 GND 3 GND 4 GND 5 GND 6 CON1MURATA GPIO[4] SW1SW SPST R111K0R C710nF VDD33 1234 CON3USB 5V HSDMHSDP L310RL320R GPIO[4]
V1.0 Page 45 of 76 Report No.: CTL11048239-S-WF Note : For 802.11n (20MHz) Mode: Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the peak radiated field strength shall blow 74dBμv/m. 2. Antenna Polarization vertical. Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the average radiated field strength shall blow 54dBμv/m. 2. Antenna Polarization vertical. V1.0 Page 46 of 76 Report No.: CTL11048239-S-WF Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the peak radiated field strength shall blow 74dBμv/m. 2. Antenna Polarization horizontal. Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the average radiated field strength shall blow 54dBμv/m. 2. Antenna Polarization horizontal. V1.0 Page 47 of 76 Report No.: CTL11048239-S-WF Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the peak radiated field strength shall blow 74dBμv/m. 2. Antenna Polarization horizontal. Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the average radiated field strength shall blow 54dBμv/m. 2. Antenna Polarization horizontal. V1.0 Page 48 of 76 Report No.: CTL11048239-S-WF Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the peak radiated field strength shall blow 74dBμv/m. 2. Antenna Polarization verticall. Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the average radiated field strength shall blow 54dBμv/m. 2. Antenna Polarization vertical. V1.0 Page 49 of 76 Report No.: CTL11048239-S-WF Note : For 802.11n (40MHz) Mode: Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the peak radiated field strength shall blow 74dBμv/m. 2. Antenna Polarization vertical. Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the average radiated field strength shall blow 54dBμv/m. 2. Antenna Polarization vertical. V1.0 Page 50 of 76 Report No.: CTL11048239-S-WF Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the peak radiated field strength shall blow 74dBμv/m. 2. Antenna Polarization horizontal. Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the average radiated field strength shall blow 54dBμv/m. 2. Antenna Polarization horizontal. V1.0 Page 51 of 76 Report No.: CTL11048239-S-WF Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the peak radiated field strength shall blow 74dBμv/m. 2. Antenna Polarization vertical. Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the average radiated field strength shall blow 54dBμv/m. 2. Antenna Polarization vertical. V1.0 Page 52 of 76 Report No.: CTL11048239-S-WF Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the peak radiated field strength shall blow 74dBμv/m. 2. Antenna Polarization horizontal. Note: 1. The field strength of any emissions which appear outside of this band shall not exceed the general radiated emission limits in Section 15.209, the average radiated field strength shall blow 54dBμv/m. 2. Antenna Polarization horizontal. V1.0 Page 53 of 76 Report No.: CTL11048239-S-WF 4.6. Power Spectral Density Measurement TEST CONFIGURATION EUT SPECTRUM ANALYZER TEST PROCEDURE 1. The testing follows the FCC KDB Publication No. 558074 (Measurement Guidelines of DTS). 2. Set SPAN = 20 MHz (For devices with a nominal 40 MHz BW, 50 MHz span will be needed) 3. Set REFERENCE LEVEL = 20 dBm 4. Set ATTENUATION = 0 dB (add internal attenuation, if necessary) 5. Set SWEEP TIME = Coupled 6. Set RBW = 3 kHz 7. Set VBW = 10 kHz 8. Set DETECTOR = Peak 9. Set MKR = Center Frequency 10. Set TRACE = CLEAR WRITE Place the radio in continuous transmit mode. Set the TRACE to MAX HOLD, and after the trace stabilizes, the TRACE to VIEW. Set the marker on the peak of the signal and then adjust the center frequency of the spectrum analyzer to the marker frequency. After viewing the EUT waveform on the spectrum analyzer, perform the following spectrum analyzer functions to capture the trace: 11. Set SPAN = 300 kHz 12. Set SWEEP TIME = 100 s 13. Set TRACE = MAX HOLD 14. Set MKR = PEAK SEARCH 15. Record the marker level for the particular mode. Repeat these steps for other device modes. LIMIT For digitally modulated systems, the power spectral density conducted from the intentional radiator to the antenna shall not be greater than 8 dBm in any 3 kHz band during any time interval of continuous transmission. TEST RESULTS (Result=Read+cable loss) Channel Read (dBm) Cable Loss (dB) RF power level in 3 KHz BW (dBm) Maximum limit (dBm) PASS / FAIL 802.11b CH1 -18.57 3 -15.57 8 PASS 802.11b CH 6 -20.07 3 -17.07 8 PASS 802.11b CH 11 -14.90 3 -11.90 8 PASS 802.11g CH1 -18.84 3 -15.84 8 PASS 802.11g CH6 -20.2…
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V1.0 Page 56 of 76 Report No.: CTL11048239-S-WF 4.7. Spurious RF Conducted Emission TEST CONFIGURATION EUT SPECTRUM ANALYZER TEST PROCEDURE The Spurious RF conducted emissions compliance of RF radiated emission should be measured by following the guidance in ANSI C63.10-2009 with respect to maximizing the emission by rotating the EUT, measuring the emission while the EUT is situated in three orthogonal planes (if appropriate), adjusting the measurement antenna height and polarization etc. Set RBW=100kHz and VBM= 300KHz to measure the peak field strength , and measure frequeny range from 30MHz to 26.5GHz. LIMIT In any 100 kHz bandwidth outside the frequency band in which the spread spectrum or digitally modulated intentional radiator is operating, the radio frequency power that is produced by the intentional radiator shall be at least 20 dB below that in the 100 kHz bandwidth within the band that contains the highest level of the desired power, based on either an RF conducted or a radiated measurement, provided the transmitter demonstrates compliance with the peak conducted power limits. TEST RESULTS Photos of Spurious RF Conducted Emission Measurement For 802.11b Mode: CH1 V1.0 Page 57 of 76 Report No.: CTL11048239-S-WF CH6 V1.0 Page 58 of 76 Report No.: CTL11048239-S-WF CH11 V1.0 Page 59 of 76 Report No.: CTL11048239-S-WF For 802.11g Mode: CH1 V1.0 Page 60 of 76 Report No.: CTL11048239-S-WF CH6 V1.0 Page 61 of 76 Report No.: CTL11048239-S-WF CH11 V1.0 Page 62 of 76 Report No.: CTL11048239-S-WF For 802.11n (20MHz) Mode: CH1 V1.0 Page 63 of 76 Report No.: CTL11048239-S-WF CH6 V1.0 Page 64 of 76 Report No.: CTL11048239-S-WF CH11 V1.0 Page 65 of 76 Report No.: CTL11048239-S-WF For 802.11n (40MHz) Mode: CH3 V1.0 Page 66 of 76 Report No.: CTL11048239-S-WF CH6 V1.0 Page 67 of 76 Report No.: CTL11048239-S-WF CH9 V1.0 Page 68 of 76 Report No.: CTL11048239-S-WF V1.0 Page 69 of 76 Report No.: CTL11048239-S-WF Test mode Frequency Delta peak to band emission Limit(dBc) 2400MHz 38.09 20 802.11b 2483.5MHz 56.35 20 V1.0 Page 70 of 76 Report No.: CTL11048239-S-WF Test mode Frequency Delta peak to band emission Limit(dBc) 2400MHz 37.33 20 802.11g 2483.5MHz 56.75 20 V1.0 Page 71 of 76 Report No.: CTL11048239-S-WF Test mode Frequency Delta peak to band emission Limit(dBc) 2400MHz 36.18 20 802.11N HT20M 2483.5MHz 57.77 20 V1.0 Page 72 of 76 Report No.: CTL11048239-S-WF Test mode Frequency Delta peak to band emission Limit(dBc) 2400MHz 42.90 20 802.11N HT40M 2483.5MHz 52.69 20 V1.0 Page 73 of 76 Report No.: CTL11048239-S-WF 4.8. Antenna Requirement STANDARD APPLICABLE For intentional device, according to FCC 47 CFR Section 15.203, an intentional radiator shall be designed to ensure that no antenna other than that furnished by the responsible party shall be used with the device. And according to FCC 47 CFR Section 15.247 (c), if transmitting antennas of directional gain greater than 6dBi are used, the power shall be reduced by the amount in dB that the directional gain of the antenna exceeds 6dBi. Refer to statement below for compliance. The manufacturer may design the unit so that the user can replace a broken antenna, but the use of a standard antenna jack or electrical connector is prohibited. Further, this requirement does not apply to intentional radiators that must be professionally installed. ANTENNA CONNECTED CONSTRUCTION The directional gains of antenna used for transmitting is 2.0 dBi, and the antenna connector is designed with permanent attachment and no consideration of replacement. Please see EUT photo for details. V1.0 Page 74 of 76 Report No.: CTL11048239-S-WF 5. Test Setup Photos of the EUT V1.0 Page 75 of 76 Report No.: CTL11048239-S-WF 6. External and Internal Photos of the EUT External Photos N-SMA connector V1.0 Page 76 of 76 Report No.: CTL11048239-S-WF Internal Photos ......................End of Report........................
Shenzhen CTL Electromagnetic Technology Co., Ltd. Tel: +86-755-89486194 Fax: +86-755-89486187 FCC PART 15 SUBPART C TEST REPORT FCC Part 15.247 Report Reference No......................: CTL11048239-S-WF Compiled by ( position+printed name+signature) .: File administrators Andy Zhang Name of the organization performing the tests ( position+printed name+signature) .: Test Engineer Kendy Wang Approved by ( position+printed name+signature) .: Manager Tracy Qi Date of issue.....................................: May 05, 2011 Representative Laboratory Name.: Shenzhen CTL Electromagnetic Technology Co., Ltd. Address ............................................: Zone B,4/F, Block 20,Guangqian Industrial Park, Longzhu Road,Nanshan,Shenzhen 518055 China. Test Firm.........................................: Bontek Compliance Testing Laboratory Ltd Address ............................................: 1/F, Block East H-3, OCT Eastern Ind. Zone, Qiaocheng East Road, Nanshan, Shenzhen, China Applicant’s name............................: SHENZHEN MTN ELECTRONICS CO.,LTD. Address ............................................: MTN Industrial Park, No. 3 Fuhua Road, Pingxi Neighborhood, Pingdi Town , Longgang District, Shenzhen Test specification: Standard ...........................................: FCC Part 15.247: Operation within the bands 902–928 MHz, 2400– 2483.5 MHz, and 5725–5850 MHz. TRF Originator..................................: Shenzhen CTL Electromagnetic Technology Co., Ltd. Master TRF.......................................: Dated 2011-01 Shenzhen CTL Electromagnetic Technology Co., Ltd. All rights reserved. This publication may be reproduced in whole or in part for non-commercial purposes as long as the Shenzhen CTL Electromagnetic Technology Co., Ltd. is acknowledged as copyright owner and source of the material. Shenzhen CTL Electromagnetic Technology Co., Ltd. takes no responsibility for and will not assume liability for damages resulting from the reader's interpretation of the reproduced material due to its placement and context. Test item description .....................: USB Wireless Adapter FCC ID.......................................: ZBXWU-150R3 Trade Mark .......................................: / Model/Type reference ......................: WU-150R3 Listed Models ..................................: / Modulation .......................................: DSSS, OFDM Work Frequency Range..................: 2412~2462MHz Antenna Type..............................: N-SMA connector Result ............................................... : Positive V1.0 Page 2 of 76 Report No.: CTL11048239-S-WF T E S T R E P O R T Test Report No. : CTL11048239-S-WF May 05, 2011 ______________________________________________________________________________________________ Date of issue Equipment under Test : USB Wirele ss Adapter Model /Type : WU-150R3 Listed Models : / Applicant : SHENZHEN MTN ELECTRONICS CO.,LTD. Address : MTN Industrial Park, No. 3 Fuhua Road, Pingxi Neighborhood,Pingdi Town , Longgang District, Shenzhen Manufacturer SHENZHEN MTN ELECTRONICS CO.,LTD. Address MTN Industrial Park, No. 3 Fuhua Road, Pingxi Neighborhood,Pingdi Town , Longgang District, Shenzhen Test Result according to the standards on page 4: Positive The test report merely corresponds to the test sample. It is not permitted to copy extracts of these test result without the written permission of the test laboratory. V1.0 Page 3 of 76 Report No.: CTL11048239-S-WF Contents 1. TEST STANDARDS................................................................. 4 2. SUMMARY............................................................................ 5 2.1. General Remarks 5 2.2. Equipment Under Test 5 2.3. Short description of the Equipment under Test (EUT) 5 2.4. EUT operation mode 5 2.5. EUT configuration 6 2.6. NOTE 6 2.7. Related Submittal(s) / Grant (s) 6 2.8. Modifications 6 3. TEST ENVIRONMENT ............................................................. 7 3.1. Address of the test laboratory 7 3.2. Test Facility 7 3.3. Environmental conditions 7 3.4. Configuration of Tested System 7 3.5. Statement of the measurement uncertainty 8 3.6. Equipments Used during the Test 8 3.7. Summary of Test Result 9 4. TEST CONDITIONS AND RESULTS.......................................... 10 4.1. Conducted Emissions Test 10 4.2. Radiated Emission Test 13 4.3. 6dB Bandwidth Measurement 30 4.4. Maximum Peak Output Power 33 4.5. Band Edge Measurement 36 4.6. Power Spectral Density Measurement 53 4.7. Spurious RF Conducted Emission 56 4.8. Antenna Requirement 73 5. TEST SETUP PHOTOS OF THE EUT ........................................ 74 6. EXTERNAL AND INTERNAL PHOTOS OF THE EUT ..................... 75 V1.0 Page 4 of 76 Report No.: CTL11048239-S-WF 1. TEST STANDARDS The tests were performed according to following standards: FCC Part 15.247: Frequency Hopping, Direct Spread Spectrum and Hybrid Systems that are in operation within the bands of 902-928 MHz, 2400-2483.5 MHz, and 5725-5850 MHz. ANSI C63.4-2003 KDB Publication No. 558074 Guidance on Measurements for Digital Transmission Systems ANSI C63.10-2009: American National Standard for Testing Unlicensed Wireless Devices. V1.0 Page 5 of 76 Report No.: CTL11048239-S-WF 2. SUMMARY 2.1. General Remarks Date of receipt of test sample : April 28, 2011 Testing commenced on : April 29, 2011 Testing concluded on : April 30, 2011 2.2. Equipment Under Test Power supply system utilised Power supply voltage : o 120V / 60 Hz o 115V / 60Hz o 12 V DC o 24 V DC z Other (specified in blank below) DC 5V from USB Description of the test mode IEEE 802.11b/g/n: Thirteen channels are provided to the EUT,but only eleventh channels used for USA. Channel Frequency(MHz)ChannelFrequency(MHz) 1 241282447 2 241792452 3 2422102457 4 2427112462 5 2432 6 2437 7 2442 2.3. Short description of the Equipment under Test (EUT) 2.4GHz (Wireless Router N wtih USB) For more details, refer to the user’s manual of the EUT. Serial number: …
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Test Setup Photos of the EUT
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 2.42 GHz - 2.45 GHz | 8.00 mW |

300Mbps Wireless USB Adapter
Equipment Class
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Equipment Class
DTS - Digital Transmission System
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Equipment Class
DTS - Digital Transmission System
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Equipment Class
DTS - Digital Transmission System