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FCK-NEOSTRA001MOBILE INTERNET DEVICES (MID)

SHENZHEN NEOSTRA TECHNOLOGY CO., LTD.
MOBILE INTERNET DEVICES (MID) - FCC ID FCK-NEOSTRA001 - SHENZHEN NEOSTRA TECHNOLOGY CO., LTD.
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Application Details

Equipment Class
JBC - Part 15 Class B Computing Device/Personal Computer
Date of Grant
Apr 05, 2012
Application Purpose
Original Equipment
Date of Application
Apr 05, 2012
Equipment Note
MOBILE INTERNET DEVICES (MID)
Company
SHENZHEN NEOSTRA TECHNOLOGY CO., LTD.
Country
China

Documents & Files

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Users Manual

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Block Diagram

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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Schematics

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Test Report

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Test Setup Photos

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Document Text

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

Block Diagram

Block Diagram

External Photos

External Photo

ID Label/Location Info

FCC Certification Label FCC ID: FCK-NEOSTRA001 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. Label Location on EUT EUT View/ FCC ID Label Location

Internal Photos

Internal Photo Antenna

Operational Description

Operation Description The EUT has a Wireless Wi-Fi adapter with 11 channels (802.11b, g, n (20MHz)) or 7 channels(802.11n (40MHz)). After the product has been connected to DC 3.3V, product will start to work through XTAL 40MHz (XTAL1) vibration. During transmitting, transceiver (U1 RTL8188CUS), and then eradiate signals to the space through Antenna network. During receiving signal, antenna will send electromagnetic wave signal to the Low Noise Amplifier for enlarging, and then signal will be sent to transceiver to demodulate. The Realtek RTL8188CUS-GR is a highly integrated single-chip QFN-46 pin Wireless LAN (WLAN) USB2.0 network interface controller compatible with the 802.11n specification. It combines a MAC, a 1T1R capable baseband, and RF in a single chip. The RTL8188CUS provides a complete solution for a high throughput performance wireless client. The RTL8188CUS baseband implements Orthogonal Frequency Division Multiplexing (OFDM) with 1 transmit and 1 receive path and is compatible with the IEEE 802.11n specification. Features include one spatial stream transmission, short guard interval (GI) of 400ns, spatial spreading, and transmission over 20MHz and 40MHz bandwidth. For legacy compatibility, Direct Sequence Spread Spectrum (DSSS), Complementary Code Keying (CCK) and OFDM baseband processing are included to support all IEEE 802.11b and 802.11g data rates. Differential phase shift keying modulation schemes, DBPSK and DQPSK with data scrambling capability, are available, and CCK provides support for legacy data rates, with long or short preamble. The high-speed FFT/IFFT paths, combined with BPSK, QPSK, 16QAM, and 64QAM modulation of the individual subcarriers and rate compatible punctured convolutional coding with coding rate of 1/2, 2/3, 3/4, and 5/6, provide higher data rates of 54Mbps and 150Mbps for IEEE 802.11g and 802.11n OFDM respectively. The RTL8188CUS builds in an enhanced signal detector, an adaptive frequency domain equalizer, and a soft-decision Viterbi decoder to alleviate severe multi-path effects and mutual interference in the reception of multiple streams. Robust interference detection and suppression are provided to protect against Bluetooth, cordless phone, and microwave oven interference. Efficient IQ-imbalance, DC offset, phase noise, frequency offset, and timing offset compensations are provided for the radio frequency front-end. Selectable digital transmit and receive FIR filters are provided to meet transmit spectrum mask requirements and to reject adjacent channel interference, respectively. The RTL8188CUS supports fast receiver Automatic Gain Control (AGC) with synchronous and asynchronous control loops among antennas, antenna diversity functions, and adaptive transmit power control function to obtain the better performance in the analog portions of the transceiver. The RTL8188CUS MAC supports 802.11e for multimedia applications, 802.11i for security, and 802.11n for enhanced MAC protocol efficiency. Using packet aggregation techniques such as A-MPDU with BA and A-MSDU, protocol efficiency is significantly improved. Power saving mechanisms such as Legacy Power Save, and U-APSD, and APSD, reduce the power wasted during idle time, and compensates for the extra power required to transmit OFDM. The RTL8188CUS provides simple legacy and 20MHz/40MHz co-existence mechanisms to ensure backward and network compatibility.

Schematics

DC/DC3-1.2V-1.2ADC/DC2-1.25V-1.6ALDO3-2.80V-400mALDO2-3.00V-200mALDO1-1.3V-30mA Batterycharger/detect LDO4-1.80-3.3V-200mA IPSOUT3.3V-5V-2A for CPURTC-VDD DCIN(5V)2A BAT(4.2V) AVCC AXP209 POWER TREE INTERFACE/HDMICSI0-IOCSI1-IO POWER TREE USBVBUS (5V-900mA) RT9193 -33PB AP1231B 28ZRM CSI0 GPS HDMI 300mA 300mA1000mA DC2.8V DC5V 2000mA MOS 3V3 CSI(1V8) SY8008B DRAM-VCC AP1231B 12ZRMSWL-N20S 3V31V2 SY8008B SY7208 EUP2584 EUP2571 RT9293B WIFI RT9284 USB OTG LCD BL LCD BIAS Optional 1V8 1V5 1000mA 1000mA 300mA 3V3 SY8008B RT9266 500mA TitleSize Document Number Rev Date: Sheet of N507H6/N707H6 <V1.0> A3 419 Thursday, December 15, 2011 TitleSize Document Number Rev Date: Sheet of N507H6/N707H6 <V1.0> A3 419 Thursday, December 15, 2011 TitleSize Document Number Rev Date: Sheet of N507H6/N707H6 <V1.0> A3 419 Thursday, December 15, 2011 CPU1 CPU1 'LIIHUHQ WLDOSD LUV=   RKP (TX LO RQJ % 86 =   RKP ND0 SDQS0 ND1 SDQS0#SDQS1 ND2 SDQS1# ND3 SDQS2 ND4 SDQS2# ND5 SDQS3SDQS3# ND6 SDQ17 SDQM0 ND7 SDQM1SDQM2SDQM3 SCK#SCK SCKE0SA0SA1 NAND-VCC SA2SA3SA4SDQ0SDQ1SA5SDQ2SA6SDQ3SA7SDQ4SDQ5SA8SDQ6SA9SDQ7SA10SDQ8SDQ9SA11SDQ10SA12SDQ11SA13SDQ12SA14SBA0SDQ13SBA1SDQ14SDQ15SBA2SDQ16SWESCASSRASSDQ18SCS0SDQ20SDQ21SDQ22SDQ23SRSTSDQ24SDQ25SDQ26SDQ27SDQ28SODT0SDQ29 SZQ SDQ30SDQ31SVREF0SVREF3SVREF1SVREF2SDQ19 SDQ[31:0] SA[12:0] SDQM[3:0] SVREF[3:0] SBA[2:0] ND[7:0] SDQS[3:0] NAND-VCC SVREF2SVREF1SVREF0SVREF3 NAND-VCC DLLVDD CSI0-VCC GND DRAM-VCCCPUVDDINTVDDVCC-3V3 CSI1-VCC AGND VCC-3V3 LVDS-3V3 GND GND CSI0-D3NCE1#CSI1-D0CSI0-D4CSI1-D1CSI1-PCLKCSI0-D5 NDQS CSI0-MCLKCSI1-D2CSI0-D6NCE0#CSI0-HSYNCCSI1-D3CSI0-D7NRE#CSI0-VSYNCCSI1-D4NRB0#CSI0-D0CSI1-D5CSI0-D1CSI1-D6 NWP CSI0-D2CSI1-D7CSI1-MCLKNWE# NCE2# CSI1-HSYNCNALENRB1# NCE3# CSI0-PCLKCSI1-VSYNCNCLE SDQ[31:0] SA[12:0] SA14 SDQM[3:0] SVREF[3:0] SCS0SCKE0 SBA[2:0]SCKSCK# SWESCASSRAS SDQS0#SDQS1#SDQS2#SDQS3# SRST SODT0 ND[7:0] SDQS[3:0] SA13 GPS-VCC-EN GPS-MOSI GPS-SCS GPS-SCLK CPU-REF Title Size Document Number Rev Date: Sheet of N507H6/N707H6 <V1.0> A3 519 Thursday, December 15, 2011 Title Size Document Number Rev Date: Sheet of N507H6/N707H6 <V1.0> A3 519 Thursday, December 15, 2011 Title Size Document Number Rev Date: Sheet of N507H6/N707H6 <V1.0> A3 519 Thursday, December 15, 2011 A10 U1-2 FBGA441C80P19X19 VCC0_DRAM G5 VCC1_DRAM H5 VCC2_DRAM L5 VCC3_DRAM M5 VCC4_DRAM R5 VCC5_DRAM T5 VCC6_DRAM W5 VCC7_DRAM W6 VCC8_DRAM W7 VCC9_DRAM Y6 VDD0_DLL M8 VDD1_DLL N9 VDD2_DLL P9 VDD0_CPU H11 VDD1_CPU H12 VDD2_CPU H13 VDD3_CPU H14 VDD4_CPU J12 VDD5_CPU J13 VDD0_INT J15 VDD1_INT J16 VDD2_INT K9 VDD3_INT K10 VDD4_INT K15 VDD5_INT L8 VDD6_INT L9 VDD7_INT R9 VDD8_INT R10 VDD9_INT T8 VCC_CARD N19 VCC0_LVDS W12 VCC1_LVDS W13 VCC2_LVDS W14 VCC_CSI0 F19 VCC_CSI1 E18 VCC0 H8 VCC1 H9 VCC2 H10 VCC3 H15 VCC4 J8 VCC5 J9 VCC6 J10 VCC7 J14 GND0_DRAM G3 GND1_DRAM G4 GND2_DRAM J5 GND3_DRAM K5 GND4_DRAM N5 GND5_DRAM P5 GND6_DRAM U5 GND7_DRAM V5 GND8_DRAM Y7 GND9_DRAM Y8 GND0_DLL M9 GND1_DLL N10 GND2_DLL P10 GND0 J11 GND1 K11 GND2 K12 GND3 K13 GND4 L10 GND5 L11 GND6 L12 GND7 M10 GND8 M11 GND9 M12 GND10 M13 GND11 N11 GND12 N12 GND13 P11 GND14 P12 GND15 R11 GND16 R12 GND17 T11 GND18 T12 GND0_LVDS W9 GND1_LVDS W10 GND2_LVDS W11 C38 224 CC0402 R1 240R/1% R0402 DRAM NANDTS0/CSI0TS1/CSI1 A10 U1-1 FBGA441C80P19X19 SDQ0 AB4 SDQ1 AC7 SDQ2 AC4 SDQ3 AB8 SDQ4 AC8 SDQ5 AB5 SDQ6 AB7 SDQ7 AC3 SDQ8 AB2 SDQ9 Y1 SDQ10 AC2 SDQ11 Y2 SDQ12 AA1 SDQ13 AB3 SDQ14 W2 SDQ15 AC1 SDQ16 N1 SDQ17 T2 SDQ18 N2 SDQ19 U1 SDQ20 U2 SDQ21 P1 SDQ22 T1 SDQ23 M2 SDQ24 L1 SDQ25 H1 SDQ26 L2 SDQ27 H2 SDQ28 J1 SDQ29 M1 SDQ30 G2 SDQ31 K2 SVREF0 H3 SVREF1 H4 SVREF2 Y5 SVREF3 AA8 SDQS0 AB6 SDQS0# AC5 SDQS1 AB1 SDQS1# AA2 SDQS2 R1 SDQS2# P2 SDQS3 K1 SDQS3# J2 SDQM0 AC6 SDQM1 W1 SDQM2 R2 SDQM3 G1 SCK# V2 SCK V1 SCKE0 N3 SCKE1 J4 SA0 W4 SA1 R4 SA2 U4 SA3 M4 SA4 Y4 SA5 N4 SA6 V4 SA7 M3 SA8 AA3 SA9 P4 SA10 L3 SA11 W3 SA12 P3 SA13 Y3 SA14 R3 SBA0 K3 SBA1 L4 SBA2 K4 SWE T3 SCAS U3 SRAS T4 SCS0 V3 SCS1 AA4 SZQ AA7 SRST AA6 SDBG0 P8 SDBG1 R8 ADBG N8 NWE#/SPI0_MOSI/PC0 M23 NALE/SPI0_MISO/PC1 M22 NCLE/SPI0_CLK/PC2 L23 NCE1/PC3 L22 NCE0/PC4 K23 NRE#/PC5 K22 NRB0/SDC2_CMD/PC6 J23 NRB1/SDC2_CLK/PC7 J22 NDQ0/SDC2_D0/PC8 H23 NDQ1/SDC2_D1/PC9 H22 NDQ2/SDC2_D2/PC10 G23 NDQ3/SDC2_D3/PC11 G22 NDQ4/PC12 H21 NDQ5/PC13 H20 NDQ6/PC14 G21 NDQ7/PC15 G20 NWP/PC16 M21 NCE2/PC17 F23 NCE3/PC18 F22 NCE4/SPI2_CS0/PC19 L21 K21 NCE5/SPI2_CLK/PC20 NCE6/SPI2_MOSI/PC21 J21 NCE7/SPI2_MISO/PC22 J20 SPI0_CS0/PC23 G19 NDQS/PC24 F21 NAND_VCC0 H19 NAND_VCC1 J19 TS0_CLK/CSI0_PCLK/PE0 E23 TS0_ERR/CSI0_MCLK/PE1 E22 TS0_SYNC/CSI0_HSYNC/PE2 D23 TS0_DVLD/CSI0_VSYNC/PE3 D22 TS0_D0/CSI0_D0/PE4 C23 TS0_D1/CSI0_D1/PE5 C22 TS0_D2/CSI0_D2/PE6 B23 TS0_D3/CSI0_D3/PE7 B22 TS0_D4/CSI0_D4/PE8 A23 TS0_D5/CSI0_D5/PE9 A22 TS0_D6/CSI0_D6/PE10 B21 TS0_D7/CSI0_D7/PE11 A21 TS1_CLK/CSI1_PCLK/SDC1_CMD/PG0 F20 TS1_ERR/CSI1_MLCK/SDC1_CLK/PG1 E21 TS1_SYNC/CSI1_HSYNC/SDC1_D0/PG2 E20 TS1_DVLD/CSI1_VSYNC/SDC1_D1/PG3 D21 TS1_D0/CSI1_D0/SDC1_D2/CSI0_D8/PG4 D20 TS1_D1/CSI1_D1/SDC1_D3/CSI0_D9/PG5 C21 TS1_D2/CSI1_D2/UART3_TX/CSI0_D10/PG6 E19 TS1_D3/CSI1_D3/UART3_RX/CSI0_D11/PG7 C20 TS1_D4/CSI1_D4/UART3_RTS/CSI0_D12/PG8 D19 TS1_D5/CSI1_D5/UART3_CTS/CSI0_D13/PG9 C19 TS1_D6/CSI1_D6/UART4_TX/CSI0_D14/PG10 D18 TS1_D7/CSI1_D7/UART4_RX/CSI0_D15/PG11 C18 ODT0 AA5 ODT1 J3 C39 224 CC0402 CPU2 DEBUG HVP UVCCULVDDHPVCCINHPVCCHPLDM0DP0DM1DP1UVCCDM2 RTCVDD DP2 X2 PLLVP X1Y1Y2 VRA1VRA2VRP GND UART0-RXUART0-TXJTAG-CK0JTAG-MS0JTAG-DI0JTAG-DO0 TVDACVCC ULVDD TVDACVCC PLLVP UVCC HVP HPVCCIN GND RTCVDD AGND GND VCC-3V3 GND AVCC GND GNDGNDGND SATA12V DRAM-VCC DRAM-VCC GND VCC-3V3 RESET# HPL VRA1 LCD0-D16LCD0-D17 CLK32K-IN VRA2 LCD0-D18 VMIC UART0-TX VRP LCD0-D0 MICIN1 SD3-D2 CSI0-RESET# LCD0-D1 CSI1-RESET# LCD0-D2 SD3-D3 LCD0-CLK JTAG-MS LCD0-D3 SD0-D1 CLK32K-OUT LCD0-DELCD0-D4LCD0-HSYNC JTAG-CK LCD0-D19 HTX0P SD0-D0 UART0-RX LCD-PWR LCD0-VSYNC PMU-SCK LCD0-D20 HTX0N LCD0-D21 JTAG-DO HTX1P SD0-CLK HOLD_KEY LRADC0 X1 LCD0-D22 UBOOT HTX1N DM2 SD0-DET# X2 LCD0-D23 JTAG-DI HTX2P LCD0-D5 PWM0 DP2SD0-CMD OSC24MI Y1 HTX2N HPR LCD0-D6 CSI0-1V8-EN SD3…

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Test Report

FCC PART 15 CLASS B EMI MEASUREMENT AND TEST REPORT For SHENZHEN NEOSTRA TECHNOLOGY CO., LTD 4-5/F, 7 Building, Huaide Cuihai Industrial Park, Fuyong, Baoan District, Shenzhen, China FCC ID: FCK-NEOSTRA001 March 28, 2012 This Report Concerns: Original Report Equipment Type: Mobile Internet Devices (MID) Test Engineer: Jack Liu Report No.: BST12020357Y-1ER-3-2 Receive EUT Date/Test Date: March 20, 2012/ March 21-27, 2012 Reviewed By: Christina Prepared By: Shenzhen BST Technology Co.,Ltd. 3F,Weames Technology Building, No. 10 Kefa Road,Science Park, Nanshan District,Shenzhen,Guangdong,China Tel: 0755-267477513 Fax: 0755-267477513 ext.826 Note: The test report is specially limited to the above company and this particular sample only. It may not be duplicated without prior written consent of Shenzhen BST Technology Co.,Ltd. This report must not be used by the client to claim product certification,approval,or endorsement by NVLAP, NIST or any agency of the US Government. SHENZHEN NEOSTRA TECHNOLOGY CO., LTD FCC ID: FCK-NEOSTRA001 BST12020357Y-1ER-3-2 Page 2/19 TABLE OF CONTENTS 1. GENERAL INFORMATION .................................................................................................... 3 1.1. Report information............................................................................................................ 3 1.2. Measurement Uncertainty................................................................................................. 3 2. PRODUCT DESCRIPTION ...................................................................................................... 4 2.1. EUT Description ............................................................................................................... 4 2.2. Block Diagram of EUT Configuration ............................................................................. 5 2.3. Support Equipment List .................................................................................................... 6 2.4. Test Conditions .................................................................................................................6 3. FCC ID LABEL........................................................................................................................... 7 4. TEST RESULTS SUMMARY ................................................................................................... 8 Modifications ................................................................................................................................ 8 5. TEST EQUIPMENT USED ....................................................................................................... 9 5.1. For Conducted Emission Test ........................................................................................... 9 5.2. For Radiated Emission Measurement ............................................................................... 9 6. CONDUCTED EMISSION TEST........................................................................................... 10 6.1. Block Diagram of Test Setup.......................................................................................... 10 6.2. Test Standard ..................................................................................................................11 6.3. Conducted Emission Limit(Class B) .............................................................................. 11 6.4. EUT Configuration on Test ............................................................................................ 11 6.5. Operating Condition of EUT .......................................................................................... 11 6.6. Test Procedure ................................................................................................................ 11 6.7. Test Result ...................................................................................................................... 11 7. RADIATED EMISSION MEASUREMENT ......................................................................... 16 7.1. Block Diagram of EUT Configuration ........................................................................... 16 7.2. Test Standard ..................................................................................................................17 7.3. Radiated Emission Limit(Class B) ................................................................................. 17 7.4. EUT Configuration on Test ............................................................................................ 17 7.5. Operating Condition of EUT .......................................................................................... 17 7.6. Test Procedure ................................................................................................................ 17 7.7. Test Result ...................................................................................................................... 17 SHENZHEN NEOSTRA TECHNOLOGY CO., LTD FCC ID: FCK-NEOSTRA001 BST12020357Y-1ER-3-2 Page 3/19 1. GENERAL INFORMATION 1.1. Report information 1.1.1.This report is not a certificate of quality; it only applies to the sample of the specific product/equipment given at the time of its testing. The results are not used to indicate or imply that they are application to the similar items. In addition, such results must not be used to indicate or imply that BST approves recommends or endorses the manufacture, supplier or use of such product/equipment, or that BST in any way guarantees the later performance of the product/equipment. 1.1.2.The sample/s mentioned in this report is/are supplied by Applicant, BST therefore assumes no responsibility for the accuracy of information on the brand name, model number, origin of manufacture or any information supplied. Additional copies of the report are available to the Applicant at an additional fee. No third part can obtain a copy of this report through BST, unless the applicant has author…

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Test Setup Photos

Radiated emissions test Conducted emissions test

Contact Information

Applicant

Xiaojin Zhu(Manager)
[email protected](86) 755-29774660Fax: (86) 755-29774620

Test Firm

SinTek Laboratory Co., Ltd.Eric Lin
[email protected]86-755-27608353Fax: 86-755-27608359

Technical Specifications

#Rule PartsFrequency RangePower Output
115B--

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