
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Copyright ⓒ. 2014. All Rights Reserved. User Guide for LTD-VL1000 (Eagle) 1.Overview 2.Major feature 3.Interface 4.Electrical specification 5.RF specification 6.Mechanical specification 7.General specification 8.Connector 9. RFx information 10. FCC Approval Table of Contents Product : LTE/CDMA(EVDO) Wireless Modem Model name : LTD-VL1000 Copyright ⓒ. 2014. All Rights Reserved. The LTD-VL1000 is achieved as personal mobile communication devices of the compact radio equipment, the latest design of the parts becoming smaller, lighter weight having the LTE(700/1700MHz), CDMA(850/1900MHz) bands. It is the vehicle’s telematics system that connect with LTE and CDMA(EVDO) wireless network and the wireless module with voice and data communication. It can be operated at land, rivers, and other similar areas. On LTE operating mode, It can be communicated with uplink 50Mbps, downlink up to 100Mbps data transfer speed such as a movie or a video call. It may be able to receive large amounts of data. Standard RS-232 port and USB port communicating with the host system via AT-command or control commands can be used to send data. Voice calls are possible. 1. Overview Copyright ⓒ. 2014. All Rights Reserved. Mechanical Dimension 93.15(L) x 45.0(W) x 7.6(T) mm Weight 45g(max) Interface USB, UART, General Purpose I/O pins Antenna FAKRA Connector Temperature * Operation : -20°C ~ +70 °C Storage : -40 °C ~ +85 °C Technology Main Chipset MDM 9615 Memory 1024Mb(NAND) / 1024Mb(SDRAM) Standard 3GPP Rel.8 LTE - DL Speed : 100 Mbps(20M bandwidth) - UL Speed : 50 Mbps(20M bandwidth) 3GPP2 CDMA 1X, EVDO Rev.A - DL Speed : 3.1 Mbps - UL Speed : 1.8 Mbps Band LTE B4, B13 CDMA 850(Cellular), 1900 (PCS) GPS Not Supported Power LTE : Typ. 23dBm(Power Class 3) CDMA : Typ. 24dBm (Power Class 3) ETC DC Power 3.8V Functions Voice, Data, SMS 2. Major feature Copyright ⓒ. 2014. All Rights Reserved. 3. Interface Customer P/N is connected with outer device using 40 pin connector 3.1 Pin output Figure 1. Connector pin arrangement 48H_END UART_TX_TCU UART_RX_TCU Copyright ⓒ. 2014. All Rights Reserved. 3. Interface 3.2 Pin description Pin NO. Signal Name In/Out Function NC 1, 2, 3, 4, 5, 6, 9, 10, 13, 14, 15, 17 , 23, 24, 25, 26, 3 8 NC V_BATT 31, 32 POWER POWER GND 21, 22, 33, 34, 40 GND GND Audio PCM 16 PCM_3.3V_TXD O PCM DATA OUT 18 PCM_3.3V_RXD I PCM DATA IN 19 PCM_3.3V_CLK I PCM CLK 20 PCM_3.3V_SYNC I PCM SYNC UART2 (DM Port) 37 UART_RXD I UART RX DATA 39 UART_TXD O UART TX DATA 7 UART_RFR O UART ready-for-receive 8 UART_CTS I UART clear-to-send USB (USB2.0) 29 USB_VBUS I Power supply for the USB transceiver 35 USB_D+ I/O USB differential data (+) 36 USB_D- I/O USB differential data (-) User Interface 11 BOOT_OK O Modem Booting Completion / Modem Wake Up 12 MSG O Received emergency message from Center 27 96H_END O Signified in 96 hours standby mode ending 28 RESET_IN I Modem Hardware reset input 30 ACC_ON_SLEEP I Modem Power ON / Modem POWER Sleep Table 1. Pin descriptions Copyright ⓒ. 2014. All Rights Reserved. 3. Interface 3.3 UART(RS-232 Interface) This module is provided with interface supporting Standard RS-232 protocol. DCE(modem) communicate with DTE(host) through data or control AT- Command. Pin No. Signal Name Direction Function 37 UART_RXD I UART RX DATA 39 UART_TXD O UART TX DATA 7 UART_RFR O UART ready-for-receive 8 UART_CTS I UART clear-to-send 3.4 USB It is supported with universal serial bus for high data communication. And It is satisfied with USB2.0 specification and supported with max.480Mbps Pin No. Signal Name Direction Function 37 UART_RXD I UART RX DATA 39 UART_TXD O UART TX DATA 7 UART_RFR O UART ready-for-receive 8 UART_CTS I UART clear-to-send Table 2. UART Pin descriptions Table 3. USB Pin descriptions Copyright ⓒ. 2014. All Rights Reserved. 3. Interface 3.5 Audio This module is provided with PCM interface. The resistor of pulled-up or pulled-down in this pin must be over 50Kohm. Pin No. Signal Name Direction Function 37 UART_RXD I UART RX DATA 39 UART_TXD O UART TX DATA 7 UART_RFR O UART ready-for-receive 8 UART_CTS I UART clear-to-send Table 4. PCM Pin descriptions 3.6 User interface Pin No. Signal Name Direction Function 11 BOOT_OK O Modem booting end / Modem Wake Up 12 MSG O Received emergency message from center 27 96H_END O Signified in 96 hours standby mode ending 28 RESET_IN- I Modem Hardware reset input 30 ACC_ON_SLEEP I Modem Power ON / Modem Power Sleep Table 5. User interface Pin descriptions Copyright ⓒ. 2014. All Rights Reserved. 4. Electrical specification 4.1 Power supply specification Modem power(V_BATT) should be provided DC3.8V ± 0.1V, 2.0A. Modem power is provided according to inner function and per block using DC regulated circuit. It is controlled with each power depending on the mechanism to reduce power consumption to a minimum. PA is used directly V_BATT because of a lot of power input power source. Thus, It can be resulted in breakage of PA in excess of the rated input power. In addition, surge and ESD should be designed to block the influx in order to prevent damage to the modem. Pin No. Signal Name Direction MIN TYP MAX 32, 33 V_BATT I 3.7V 3.8V 3.9V Table 6. Power supply specification Copyright ⓒ. 2014. All Rights Reserved. 4. Electrical specification 4.2 Logic level specification 4.2.1 Digital logic level specification Basic interface level : CMOS 1.8V Table 7. Digital logic level specification Copyright ⓒ. 2014. All Rights Reserved. 5. RF specification 5.1 CDMA 5.1.1 Receiver .- Bandwidth : 1.25MHz .- Frequency : 869MHz – 894MHz (BC0), 1930MHz – 1990MHz (BC1) .- RF to Baseband Direct conversion (Zero IF) .- Modulation method : QPSK, 8PSK and 16QAM .- Sensitivity : ≤-104dBm (BER = Under 0.5%) 5.1.2 Transmitter .- Frequency: 824MHz – 849MHz (BC0), 1850MHz – 1910MHz (BC1) .- Maximum RF Output : Power class3 (BC0), 23.01dBm ~ 26dBm Power class2 (BC1), 23.01dBm ~ 26dBm .- Modulation method : BPSK, QPSK AND 8PSK .- Baseband to RF Direct conversion (Zero IF) 5.2 LTE 5.2.1 Receive…
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LG Innotek Co., Ltd. 978-1, Jangduk-dong, Gwangsan-gu, Gwangju-City, 506-731, Korea Compliance Certification Services Certification Division 47173 Benicia Street Fremont, CA 94538, USA August 5, 2014 Modular Approval Request Letter Applicant: LG Innotek Co., Ltd. FCC ID: YZP-VL1000 No. FCC requirements 1 Have its own RF shielding RF Block shielded by Metal Case. 2 Have buffered modulation/data inputs (if such inputs are provided), Yes, the module has buffered data input. 3 The modular transmitter must have its own power supply regulation. We used self own power supply regulation. 4 Meet the antenna requirements of section 15.203 Not applicable to licensed transmitters. 5 Be tested in a stand-alone configuration, i.e., the antenna, AC or DC power and data input/output lines must be connected to the module but, the module must not be inside another case during testing Yes, the EUT (module) was tested a stand alone configuration. 6 Be labeled with its own FCC ID number, and if the FCC ID is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. The FCC ID label format is placed on the module. If FCC ID label is not visible when module is install into the system, “Contains FCC ID: YZP-VL1000” shall be placed on the outside of final product. 7 The modular transmitter is manufactured so that the user can not influence the operation of the transmitter that will operate outside of the scope of the regulations. It complies with specific rules or operating requirements. And instruction is included User manual. 8 Address compliance with the Commission`s RF exposure limits in Sections 1.1310 and 2.1093. The exposure condition of this module is compliant with the requirements. Sincerely, Jeong Inchang Senior Research Engineer
LG Innotek Co., Ltd. 978-1, Jangduk-dong, Gwangsan-gu, Gwangju-City, 506-731, Korea Date: August 06, 2014 UL Verification Services Inc. 47173 Benicia Street Fremont, CA 94538, USA RE: Request of Confidentiality for FCCID: YZP-VL1000 To Whom It may Concern: Pursuant to Sections 0.457 and 0.459 of the Commission`s Rules(CFR 47), and Section 552 (b) (4) of the Freedom of Information Act, LG Innotek Co.,Ltd. hereby requests confidentiality and treatment of certain information accompanying this application. The materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the Applicant and provide unjustified benefits to its competitors. We are also hereby request Short-Term Confidentiality for 180 days after the grant as outlined in Public Notice DA 04-1705. This provision will give LG Innotek Co.,Ltd. temporary confidentiality of commercially sensitive information prior to product release. The requested permanent and Short-Term Confidential exhibits are listed as follows: PERMANENT & SHORT-TERM CONFIDENTIAL LIST Exhibit Description PERMANENT 1 Block Diagram 2 Schematics 3 Part Lists and Tuned-up Procedure 4 Operation Description SHORT-TERM 5 Internal Photos 6 External Photos 7 Test-Setup Photos 8 User Manual The Applicant understands that pursuant to Rule 0.457, disclosure of this application and all accompanying documentations, where applicable, will not be public before the date of the Grant for this application. Sincerely, Jeong Inchang Director
DT&C Co., Ltd. 42, Yurim-ro, 154beon-gil, Cheoin-gu, Yongin-si, Gyeonggi-do, Korea 449-935 Date: August 06, 2014 UL Verification Services Inc. 47173 Benicia Street Fremont, CA 94538, USA To whom it may concern: I, the undersigned, hereby authorize Ms. Claire Hoque/Application Examiner of Compliance Engineering Services, Inc., d.b.a. Compliance Certification Services and hereafter referred to as CCS, to act on our behalf in all manners relating to application for equipment authorization, including signing of all documents relating to these matters. Any and all acts carried out by Ms. Claire Hoque of CCS on our behalf shall have the same effect as acts of our own. I, the undersigned, hereby certify that we are not subject to a denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 853(a). In authorizing CCS as our agent, we still recognize that we are responsible to: a) comply with the relevant provisions of the certification program; b) make all necessary arrangements for the conduct of the evaluation, including provision for examining documentation and access to all areas, records (including internal audit reports) and personnel for the purposes of evaluation (e.g. testing, inspection, assessment, surveillance, reassessment) and resolution of complaints; c) make claims regarding certification only in respect of the scope for which certification has been granted; d) do not use our product certification in such a manner as to bring the Certification Division into disrepute and not make any statement regarding our product certification which the Certification Division may consider misleading or unauthorized; e) upon suspension or cancellation of certification, discontinue use of all advertising matter that contains any reference thereto and return any certification documents as required by the Certification Division; f) use certification only to indicate the products are certified as being in conformity with specified standards;
LG Innotek Co., Ltd. 978-1, Jangduk-dong, Gwangsan-gu, Gwangju-City, 506-731, Korea Date: August 06, 2014 Letter of Authorization We, the undersigned, hereby authorize DT&C Co., Ltd. to act on our behalf in all manners relating to application for equipment authorization for FCCID: YZP-VL1000 including signing of all documents relating to these matters. Any and all acts carried out by DT&C Co., Ltd. on our behalf shall have the same affect as acts of our own. This authorization is valid until further written notice from LG Innotek Co.,Ltd. . “I, the undersigned, hereby certify that we are not subject to a denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 853(a).” Sincerely, Jeong Inchang Director
FCC ID: YZP-VL1000 Copyright Ⓒ 2014, DT&C Co., Ltd. View 1 FCC ID: YZP-VL1000 Copyright Ⓒ 2014, DT&C Co., Ltd. View 2 FCC ID: YZP-VL1000 Copyright Ⓒ 2014, DT&C Co., Ltd. View 3
FCC ID: YZP-VL1000 Copyright Ⓒ 2014, DT&C Co., Ltd. FCC ID SAMPLE LABEL & LOCATION LABELLING REQUIREMENTS PER §2.925 The Label shown shall be permanently affixed at a conspicuous location on the device and be readily visible to the user at the time of purchase Label locate above the shield can - The FCC label shown is representative of the label that will appear on the radio when in production. Other information may also be included on this label.
FCC ID: YZP-VL1000 Copyright Ⓒ 2014, DT&C Co., Ltd. View 1
~ - ▪ ▪S=- = = ▪ mW/cm² (FCC Part 1.1310 Table 1 Limits for maximum permissible exposure(MPE) / ( 4 X 20 2 X π )S = Maximum power density(mW/cm 2 ) Conclusion : The exposure condition of this device is compliant with FCC rules. 0.251 mW/cm 2 EIRP = Equivalent Isotropic Radiated Power(mW) R = Distance to the center of the radiation of the antenna(20cm) Target power : dBm dB ~ dBm dBm Requirment =0.519 Calculation of power density at the specific separation EIRP / ( 4 R 2 π ) 1261.664 - FCCID: YZP-VL1000LG Innotek Co., Ltd. 779.50 MHz784.50 MHz Frequency range : MPE Calculation : LTE Band 13 Maximum antenna gain(PK) : 5.31 dBi Tolerance : Max Target power : Measured Conducted power : 25.70 23.28 2.702.70 23.00 + dB Note Maximum EIRP : 31.01 dBm( The MPE calculation for this exposure is shown below. 1261.664 )mW The EUT will only be used with a separation of 20 centimeters or greater between the antenna and the body of the user. ~ - ▪ ▪S=- = = ▪ mW/cm² (FCC Part 1.1310 Table 1 Limits for maximum permissible exposure(MPE) - FCCID: YZP-VL1000LG Innotek Co., Ltd. MPE Calculation : LTE Band 4 Frequency range : 1710.70 MHz 1754.30 MHz Target power : 23.00 dBm Tolerance : + 2.70 dB ~ Max Target power : 25.70 dBm Measured Conducted power : 23.90 dBm Maximum antenna gain(PK) : 4.29 dBi Maximum EIRP : 29.99 dBm( 997.700 )mW 1 The MPE calculation for this exposure is shown below. Calculation of power density at the specific separation EIRP / ( 4 R 2 π ) Note 997.700 / ( 4 X 20 2 X π )S = Maximum power density(mW/cm 2 ) Requirment = The EUT will only be used with a separation of 20 centimeters or greater between the antenna and the body of the user. Conclusion : The exposure condition of this device is compliant with FCC rules. 2.70dB 0.199 mW/cm 2 EIRP = Equivalent Isotropic Radiated Power(mW) R = Distance to the center of the radiation of the antenna(20cm) ~ - ▪ ▪S=- = = ▪ mW/cm² (FCC Part 1.1310 Table 1 Limits for maximum permissible exposure(MPE) - FCCID: YZP-VL1000LG Innotek Co., Ltd. MPE Calculation : CDMA 1X (Cellular) Frequency range : 824.70 MHz848.31 MHz Target power : 24.00 dBm Tolerance : + 2.00 dB ~ Max Target power : 26.00 dBm Measured Conducted power : 24.38 dBm Maximum antenna gain(PK) : 5.50 dBi Maximum EIRP : 31.50 dBm( 1412.460 )mW 0.549 The MPE calculation for this exposure is shown below. Calculation of power density at the specific separation EIRP / ( 4 R 2 π ) Note 1412.460 / ( 4 X 20 2 X π )S = Maximum power density(mW/cm 2 ) Requirment = The EUT will only be used with a separation of 20 centimeters or greater between the antenna and the body of the user. Conclusion : The exposure condition of this device is compliant with FCC rules. 0.99dB 0.281 mW/cm 2 EIRP = Equivalent Isotropic Radiated Power(mW) R = Distance to the center of the radiation of the antenna(20cm) ~ - ▪ ▪S=- = = ▪ mW/cm² (FCC Part 1.1310 Table 1 Limits for maximum permissible exposure(MPE) - FCCID: YZP-VL1000LG Innotek Co., Ltd. MPE Calculation : CDMA 1X (PCS) Frequency range : 1851.25 MHz 1908.75 MHz Target power : 24.00 dBm Tolerance : + 2.00 dB ~ Max Target power : 26.00 dBm Measured Conducted power : 24.44 dBm Maximum antenna gain(PK) : 7.00 dBi Maximum EIRP : 33.00 dBm( 1995.262 )mW 1 The MPE calculation for this exposure is shown below. Calculation of power density at the specific separation EIRP / ( 4 R 2 π ) Note 1995.262 / ( 4 X 20 2 X π )S = Maximum power density(mW/cm 2 ) Requirment = The EUT will only be used with a separation of 20 centimeters or greater between the antenna and the body of the user. Conclusion : The exposure condition of this device is compliant with FCC rules. 0.99dB 0.397 mW/cm 2 EIRP = Equivalent Isotropic Radiated Power(mW) R = Distance to the center of the radiation of the antenna(20cm) ~ - ▪ ▪S=- = = ▪ mW/cm² (FCC Part 1.1310 Table 1 Limits for maximum permissible exposure(MPE) - FCCID: YZP-VL1000LG Innotek Co., Ltd. MPE Calculation : CDMA 1X EVDO (Cellular) Frequency range : 824.70 MHz848.31 MHz Target power : 24.00 dBm Tolerance : + 2.00 dB ~ 0.99dB Max Target power : 26.00 dBm Measured Conducted power : 24.36 dBm Maximum antenna gain(PK) : 5.50 dBi Maximum EIRP : 31.50 dBm( 1412.460 )mW The MPE calculation for this exposure is shown below. Calculation of power density at the specific separation EIRP / ( 4 R 2 π ) Note 1412.460 / ( 4 X 20 2 X π )S = Maximum power density(mW/cm 2 ) The EUT will only be used with a separation of 20 centimeters or greater between the antenna and the body of the user. Conclusion : The exposure condition of this device is compliant with FCC rules. 0.281 mW/cm 2 EIRP = Equivalent Isotropic Radiated Power(mW) R = Distance to the center of the radiation of the antenna(20cm) Requirment =0.549 ~ - ▪ ▪S=- = = ▪ mW/cm² (FCC Part 1.1310 Table 1 Limits for maximum permissible exposure(MPE) - FCCID: YZP-VL1000LG Innotek Co., Ltd. MPE Calculation : CDMA 1X EVDO (PCS) Frequency range : 1851.25 MHz 1908.75 MHz Target power : 24.00 dBm Tolerance : + 2.00 dB ~ 0.99dB Max Target power : 26.00 dBm Measured Conducted power : 24.38 dBm Maximum antenna gain(PK) : 7.00 dBi Maximum EIRP : 33.00 dBm( 1995.262 )mW The MPE calculation for this exposure is shown below. Calculation of power density at the specific separation EIRP / ( 4 R 2 π ) Note 1995.262 / ( 4 X 20 2 X π )S = Maximum power density(mW/cm 2 ) The EUT will only be used with a separation of 20 centimeters or greater between the antenna and the body of the user. Conclusion : The exposure condition of this device is compliant with FCC rules. 0.397 mW/cm 2 EIRP = Equivalent Isotropic Radiated Power(mW) R = Distance to the center of the radiation of the antenna(20cm) Requirment =1 ▪ ▪ ▪ Requirment =Σ of MPE ratios ≤ 1 - FCCID: YZP-VL1000LG Innotek Co., Ltd. CellularPCSCellularPCS CDMA Cellular(Voice) + EVDO PCS(Data) CDMA PCS(Voice) + EVDO Cellular(Data) Note: Above configuration was declared from applicant. 0.909 Band 13 Band 4 0.2510.1990.2810.3970.2810.397 0.596 0.909 0.996 0.881 0.711 0.397 0.1990.512 RF E…
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FCCID: YZP-VL1000 DEMC1406-02530 Report No.: DRTFCC1408-1021(1) TRF-RF-224(00)140625 Page 2 / 80 Copyright ○ C 2014, DT&C Co., Ltd. Test Report Version Test Report No. Date Description DRTFCC1408-1021 Aug. 11, 2014Initial issue DRTFCC1408-1021(1) Aug. 14, 2014 Re-test of BE extended LTE Band 4 OBW 3MHz High Ch (1753.5MHz) Revised the Effective Radiated Power FCCID: YZP-VL1000 DEMC1406-02530 Report No.: DRTFCC1408-1021(1) TRF-RF-224(00)140625 Page 3 / 80 Copyright ○ C 2014, DT&C Co., Ltd. Table of Contents 1. GENERAL INFORMATION ........................................................................ 4 2. INTRODUCTION ........................................................................................ 5 2.1. EUT DESCRIPTION ............................................................................................................ 5 2.2. MEASURING INSTRUMENT CALIBRATION ...................................................................... 5 2.3. TEST FACILITY ................................................................................................................... 5 3. DESCRIPTION OF TESTS ......................................................................... 6 3.1 ERP & EIRP ......................................................................................................................... 6 3.2 PEAK TO AVERAGE RATIO ................................................................................................ 7 3.3 OCCUPIED BANDWIDTH. ................................................................................................... 8 3.4 UNDESIRABLE EMISSIONS (CONDUCTED) ..................................................................... 9 3.5 UNDESIRABLE EMISSIONS (RADIATED) ........................................................................ 11 3.6 FREQUENCY STABILITY .................................................................................................. 12 4. LIST OF TEST EQUIPMENT ................................................................... 13 5. SUMMARY OF TEST RESULTS .............................................................. 14 6. SAMPLE CALCULATION ........................................................................ 15 7. TEST DATA .............................................................................................. 16 7.1 CONDUCTED OUTPUT POWER ....................................................................................... 16 7.2 OCCUPIED BANDWIDTH .................................................................................................. 18 7.3 PEAK TO AVERAGE RATIO .............................................................................................. 19 7.4 UNDESIRABLE EMISSIONS (CONDUCTED) ................................................................... 19 7.5 EFFECTIVE RADIATED POWER (LTE Band 13) .............................................................. 20 7.6 EQUIVALENT ISOTROPIC RADIATED POWER (LTE Band 4) ......................................... 20 7.7 UNDESIRABLE EMISSIONS (RADIATED) ........................................................................ 21 7.7.1 UNDESIRABLE EMISSIONS (LTE Band 13) ............................................................. 21 7.7.2 UNDESIRABLE EMISSIONS IN 763 ~ 775 MHz & 793 ~ 805 MHz(LTE Band 13) .... 22 7.7.3 UNDESIRABLE EMISSIONS IN 1559 ~ 1610 MHz(LTE Band 13) ............................. 23 7.7.4 UNDESIRABLE EMISSIONS (LTE Band 4) ............................................................... 24 7.8 FREQUENCY STABILITY .................................................................................................. 26 7.8.1 FREQUENCY STABILITY (LTE Band 13) .................................................................. 26 7.8.2 FREQUENCY STABILITY (LTE Band 4) .................................................................... 27 8. TEST PLOTS ........................................................................................... 28 8.1 OCCUPIED BANDWIDTH (LTE Band 13) ......................................................................... 28 8.2 OCCUPIED BANDWIDTH (LTE Band 4) ........................................................................... 30 8.3 PEAK TO AVERAGE RATIO (LTE Band 13) ..................................................................... 36 8.4 PEAK TO AVERAGE RATIO (LTE Band 4) ....................................................................... 38 8.5 UNDESIRABLE EMISSIONS (CONDUCTED- LTE Band 13) ............................................ 44 8.6 UNDESIRABLE EMISSIONS (CONDUCTED- LTE Band 4) .............................................. 52 FCCID: YZP-VL1000 DEMC1406-02530 Report No.: DRTFCC1408-1021(1) TRF-RF-224(00)140625 Page 4 / 80 Copyright ○ C 2014, DT&C Co., Ltd. 1. GENERAL INFORMATION Applicant Name: LG Innotek Co.,Ltd. Address: 978-1, Jangduk-dong, Gwangsan-gu, Gwangju-City, South Korea FCC ID : YZP-VL1000 FCC Classification : PCS Licensed Transmitter (PCB) EUT Type : LTE/CDMA(EVDO) Wireless Modem Module Model Name : LTD-VL1000 Add Model Name : N/A Supplying power : DC 3.8V Antenna Type : Cellular & PCS band for CDMA 1x EVDO(Rev. A) : External type LTE for Band 13 and Band 4 : External type Mode Tx Frequency (MHz) Rx Frequency (MHz) Emission Designator Modulation Conducted Power Max power (dBm) Max power (W) LTE Band 13 779.5 ~ 784.5 748.5 ~ 753.5 4M49G7D QPSK 23.28 0.213 LTE Band 13 779.5 ~ 784.5 748.5 ~ 753.5 4M49W7D 16QAM 22.23 0.167 LTE Band 13 782 751 8M94G7D QPSK 23.26 0.212 LTE Band 13 782 751 8M92W7D 16QAM 22.22 0.167 LTE Band 4 1710.7 ~ 1754.3 2110.7 ~2154.3 1M09G7D QPSK 23.50 0.224 LTE Band 4 1710.7 ~ 1754.3 2110.7 ~2154.3 1M09W7D 16QAM 22.57 0.181 LTE Band 4 1711.5 ~ 1753.5 2111.5 ~ 2153.5 2M68G7D QPSK 23.62 0.230 LTE Band 4 1711.5 ~ 1753.5 2111.5 ~ 2153.5 2M69W7D 16QAM 22.62 0.183 LTE Band 4 1712.5 ~ 1752.5 2112.5 ~ 2152.5 4M48G7D QPSK 23.90 0.245 LTE Band 4 1712.5 ~ 1752.5 2112.5 ~ 2152.5 4M48W7D 16QAM 22.91 0.195 LTE Band 4 1715 ~ 1750 2115 ~ 2150 8M95G7D QPSK …
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FCCID: YZP-VL1000 DEMC1406-02530 Report No.: DRTFCC1408-1006(1) TRF-RF-210(03)140515 Page 2 / 53 Copyright ○ C 2014, DT&C Co., Ltd. Test Report Version Test Report No. Date Description DRTFCC1408-1006 Aug. 05. 2014 Initial issue DRTFCC1408-1006(1) Aug. 18. 2014 Revised the Effective Radiated Power FCCID: YZP-VL1000 DEMC1406-02530 Report No.: DRTFCC1408-1006(1) TRF-RF-210(03)140515 Page 3 / 53 Copyright ○ C 2014, DT&C Co., Ltd. Table of Contents 1. GENERAL INFORMATION ........................................................ 4 2. INTRODUCTION ........................................................................ 5 2.1. EUT DESCRIPTION .......................................................................................... 5 2.2. MEASURING INSTRUMENT CALIBRATION.................................................... 5 2.3. TEST FACILITY ................................................................................................ 5 3. DESCRIPTION OF TESTS ......................................................... 6 3.1 ERP & EIRP ....................................................................................................... 6 3.2 PEAK TO AVERAGE RATIO .............................................................................. 8 3.3 OCCUPIED BANDWIDTH. ................................................................................. 9 3.4 SPURIOUS AND HARMONIC EMISSIONS AT ANTENNA TERMINAL. .......... 10 3.5 RADIATED SPURIOUS EMISSIONS ............................................................... 11 3.6 FREQUENCY STABILITY / VARIATION OF AMBIENT TEMPERATURE ........ 12 4. LIST OF TEST EQUIPMENT .................................................... 13 5. SUMMARY OF TEST RESULTS .............................................. 14 6. SAMPLE CALCULATION ........................................................ 15 7. TEST DATA .............................................................................. 16 7.1 CONDUCTED OUTPUT POWER ..................................................................... 16 7.2 PEAKTOAVERAGERATIO ............................................................................... 17 7.3 OCCUPIED BANDWIDTH ................................................................................ 17 7.4 SPURIOUS AND HARMONIC EMISSIONS AT ANTENNA TERMINAL ........... 17 7.5 BAND EDGE .................................................................................................... 17 7.6 EFFECTIVE RADIATED POWER..................................................................... 18 7.7 EQUIVALENT ISOTROPIC RADIATED POWER ............................................. 18 7.8 RADIATED SPURIOUS EMISSIONS ............................................................... 19 7.8.1 RADIATED SPURIOUS EMISSIONS (Cellular CDMA 1x) .......................... 19 7.8.2 RADIATED SPURIOUS EMISSIONS (Cellular CDMA 1x EVDO (Rev. A)) . 20 7.8.3 RADIATED SPURIOUS EMISSIONS (PCS CDMA 1x) ................................ 21 7.8.4 RADIATED SPURIOUS EMISSIONS (PCS CDMA 1x EVDO (Rev. A)) ....... 22 7.9 FREQUENCY STABILITY / VARIATION OF AMBIENT TEMPERATURE ........ 23 7.9.1 FREQUENCY STABILITY (Cellular CDMA 1x) ........................................... 23 7.9.2 FREQUENCY STABILITY (Cellular CDMA 1x EVDO (Rev. A)) .................. 24 7.9.3 FREQUENCY STABILITY (PCS CDMA 1x) ................................................. 25 7.9.4 FREQUENCY STABILITY (PCS CDMA 1xEVDO (Rev. A)) ......................... 26 8. TEST PLOTS ........................................................................... 27 8.1 Peak to Average Ratio ................................................................................... 27 8.2 Occupied Bandwidth (99 % Bandwidth) ...................................................... 28 8.3 Spurious Emissions at Antenna Terminal ................................................... 36 8.4 Band Edge ..................................................................................................... 46 FCCID: YZP-VL1000 DEMC1406-02530 Report No.: DRTFCC1408-1006(1) TRF-RF-210(03)140515 Page 4 / 53 Copyright ○ C 2014, DT&C Co., Ltd. 1. GENERAL INFORMATION Applicant Name: LG Innotek Co.,Ltd. Address: 978-1, Jangduk-dong, Gwangsan-gu, Gwangju-City, South Korea FCC ID : YZP-VL1000 FCC Classification : PCS Licensed Transmitter (PCB) EUT : LTE/CDMA(EVDO) Wireless Modem Module Model Name : LTD-VL1000 Add Model Name : N/A Supplying power : DC 3.8V Antenna Type : Cellular & PCS band for CDMA 1x EVDO(Rev. A) : External type LTE for Band 13 and Band 4 : External type Tx Frequency : Cellular band CDMA 1x 824.70 MHz ~ 848.31 MHz Cellular band CDMA 1x EVDO(Rev. A): 824.70 MHz ~ 848.31 MHz PCS band CDMA 1x 1851.25 MHz ~ 1908.75 MHz PCS band CDMA 1x EVDO(Rev. A): 1851.25 MHz ~ 1908.75 MHz Rx Frequency : Cellular band CDMA 1x 869.70 MHz ~ 893.31 MHz Cellular band CDMA 1x EVDO(Rev. A): 869.70 MHz ~ 893.31 MHz PCS band CDMA 1x 1931.25 MHz ~ 1988.75 MHz PCS band CDMA 1x EVDO(Rev. A): 1931.25 MHz ~ 1988.75 MHz Max. Conducted Output Power : Cellular band CDMA 1x 0.274 W (24.38 …
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 27 | 1.72 GHz - 1.75 GHz | 195.00 mW | 17M9W7D | 2.5 ppm |
Telematics Module
Equipment Class
CBE - Citizens Band End User DevicesTelematics Module
Equipment Class
PCB - PCS Licensed TransmitterTelematics Module
Equipment Class
TNB - Licensed Non-Broadcast Station TransmitterWGM TYPE 1
Equipment Class
DTS - Digital Transmission SystemWireless CSC Type1
Equipment Class
DTS - Digital Transmission System