FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. IT TELECOM Co., Ltd./
  3. ZO9ITT-WAVE-2010

ZO9ITT-WAVE-2010DSRCS Roadside Unit

IT TELECOM Co., Ltd.
DSRCS Roadside Unit - FCC ID ZO9ITT-WAVE-2010 - IT TELECOM Co., Ltd.
Click to zoom

Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Sep 20, 2011
Application Purpose
Original Equipment
Date of Application
Sep 06, 2011
Equipment Note
DSRCS Roadside Unit
Frequency Range
5860.00000000 - 5920.00000000
Company
IT TELECOM Co., Ltd.
Country
South Korea

Documents & Files

Select a file to view

Users Manual

↗

Cover Letter(s)

↗
↗

External Photos

↗

ID Label/Location Info

↗

Internal Photos

↗

Parts List/Tune Up Info

↗
↗

Test Report

↗

Test Setup Photos

↗

Document Text

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

Users Manual

WAVE RSE User’s Manual 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 anyconditions: (1) This device may not cause harmful interference, and (2) This device must accept any interference received, including interference that may cause undesired operation. Any changes or modifications (including the antennas) made to this device that are not expressly approved by the manufacturer may void the user's authority to operate the equipment. This equipment complies with FCC RF radiation exposure limits set forth for an uncontrolled environment This equipment is a handheld device and should be maintained with a minimumenvironment. This equipment is a handheld device and should be maintained with a minimum safety distance of 20cm from the antenna. This transmitter must not be co-located or operated in conjunction with any other antenna or transmitter. Table of Contents 1. Overview ----------------------------------------------------------------------------5 1.1 Purpose ---------------------------------------------------------------------------5 1.2 Definition of WAVE ----------------------------------------------------------------------5 1.3 WAVE Network Configuration --------------------------------------------------------6 2. WAVE RSE System Configuration ----------------------------------------------7 3. WAVE RSE SW Installation -----------------------------------------------------------9 3.1 Setting up WAVE RSE Environment -------------------------------------------------------------9 3.2 Software Upgrade ------------------------------------------------------------------11 1. Overview 1.1 Purpose The user manual is used to comprehend how the WAVE RSE(Road Side Equipment) is functioning and how to operate it to execute the tasks by using RSE. It includes the explanation of WAVE RSE related technical terminologies and some procedures to operate RSE. 1.2 Definition of WAVE The “WAVE” stands for “Wireless Access in Vehicle Environments” and this technology supports both V2V(Vehicle to Vehicle) and V2I(Vehicle to Infrastructure) communication. The WAVE technology is a global standard, IEEE 802.11p and 1609.1~12, which is used for ITS(Intelligent Transport System) service, especially for the vehicle safety control. The basic configuration of WAVE system consists of RSE(Road Side Equipment) and OBE(On Board Equipment). The RSE is located on the road and OBE is located in the car. The name of wireless communication protocol between RSE and OBE or OBE’s is the WAVE. Apparent differentiation from the existing wireless technology is that it provides reliable high speed broadband communication with the lowest packet latency even when the car is moving faster than 200Km/h. Picture 1. Basic Configuration of WAVE system The WAVE standard is based on the 5 ,860~5,920MHz frequency band. IEEE 802.11p defines the physical layer and MA C layer for the wireless communication. IEEE 1609.1~12 defines upper multi-channel layer, networking, authorization & security layer and applicable service layer. Basically WAVE communication supports high speed mobility, very short time link access time and very low latency for the packet transmission. And these characteristics such as 27Mbps data transmission under faster than 200Km/h mobility environment, long distance radio coverage up to 1Km, very low latency less than 100msec and very short time link access time less than 1msec are the differentiation. The WAVE communication supports both V2V and V2I with these differentiated performance specifications. ITEMS Performance Velocity Max. 200 Km/h Radio Coverage Max. 1 Km Data Rate 12Mbps, Max. 27Mbps Packet Error Rate 0.1(10%) Packet Latency Time Less than 100msec Link Access Time Less than 1msec Communication Vehicle to Vehicle(V2V) Vehicle to Infrastructure(V2I) [Table 1] WAVE Performance Specifications The Wireless link budget is specified in IEEE 802.11p. WAVE RSE specification versus that for wireless LAN is described in Table 2. The WAVE RF frequency band is secured for only ITS services and the propagation power can be increased up to 44.8 dBm(around 30W) for the public service usage. The original channel bandwith 20MHz is changed to 10MHz and it is robust against the propagation delay spread and the timing because the symbol time for the transmitted signal is extended twice. Therefore, as one of the advantages, the physical layer for IEEE 802.11p is designed to support high speed mobility and wide area coverage considering vehicle driving environment. Standard MAC IEEE1609.4 LLC IEEE1609.3 PHY IEEE802.11P RF Frequency 5,860 ~ 5,920MHz TX Power 28.8dBm(max) RX Sensitivity -85dBm Stability ±10ppm max Antenna Gain ≥ 8dBi Date Date Rate 3 ~ 27 Mbps Velocity 200Kph max Modulation QPSK / 16QAM / 32QAM / 64QAM OFDM Time Link Acces ≤ 100msec Packet Latency ≤ 100msec Distance Communication Area 1 Km≒ System Power Source DC 12V GPS Sirf3 V2V Vehicle to vehicle Communication V2I Vehicle to Infrastructure Communication Interface Ethernet, USB, UART [Table 2] WAVE RSE Specification vs. Wireless LAN IEEE 802.11p MAC layer is same as that for the wireless LAN. But to minimize the packet latency it is designed for the multi-channel switching ,which has a control channel and the traffic channel to transceive the safety and traffic message without the congestion. And to reduce the link access time it can be access the link right after receiving the RSE information by removing the authorization ,the security and the association for the link access. 1.3 WAVE Network Configuration [Picture 2] WAVE Network Configuration The WAVE based network requires the following equipments ▶ ITS service server(vehicle related information management) ▶ WAVE RSE ▶ WAVE OBE ▶ UMPC ▶ OBD2 ▶ Antenna(OBE, RSE) ▶ Optical switch and local HUB ▶ Intersection Safety Equipment 2. WAVE RSE System Configuration GPS단자: GPS termina…

Text truncated - open the document above for the full version.

Cover Letter(s)

IT TELECOM Co., Ltd. #517, TheOvalley, 555-9, Hogye-dong, Dongan-gu, Anyang-si, Gyeonggi-do, Korea Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Gentlemen: This letter is to comply with Section 0.457(d)(2)(i) and 0.459 pertaining to confidential material. We, IT TELECOM Co., Ltd., would like the following documents regarding this submission for FCC ID: ZO9ITT-WAVE-2010 to be kept confidential. 1. Schematics 2. Operating description 3. Block Diagram The above material contains trade secrets or technical data, which would customarily be guarded from competitors. We do not want these documents to be accessible to the general public. Sincerely, Cho Byung Woo/ Senior Engineer IT TELECOM Co., Ltd.

External Photos

External photos of EUT Top view of EUT Bottom view of EUT Front view of EUT Do Not Use Rear view of EUT Side view of EUT Antenna of EUT

ID Label/Location Info

FCC Label 1. FCC Label Drawing 2. FCC Label Location IT TELECOM Co., Ltd. Model : IT-WAVE-2010 FCC ID : ZO9ITT-WAVE-2010 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. Made in Korea

Internal Photos

Internal photos of EUT Inner view of EUT Top view of Main PCB Bottom view of Main PCB Top view of RF module Bottom view of RF module Top view of Sub PCB Bottom view of Sub PCB

Parts List/Tune Up Info

NO. DESCRIPTION GEOMETRY VALUE COUNT REFE RENCE ----- -------------------- ------------------------- ------------- ------- ---------- ---- ----- ----- 1 C1005 cc1005 1005_10nF 12 C1 C2 C3 C4 C7 C10 C16 C18 C29 C30 C31 C32 2 C1005 cc1005 1005_1.5pF 2 C5 C26 3 C1005 cc1005 1005_2.7pF 2 C6 C28 4 C1005 cc1005 1005_1uF 2 C8 C22 5 C1005 cc1005 1005_1nF 2 C9 C11 6 C1005 cc1005 1005_150pF 1 C12 7 C1005 cc1005 1005_1.2pF 2 C13 C14 8 C1005 cc1005 1005_100pF 7 C15 C19 C20 C21 C25 C33 C35 9 C1005 cc1005 1005_560pF 1 C17 10 C1005 cc1005 1005_0.1uF 2 C23 C34 11 C1005 cc1005 1005_0.3pF 1 C24 12 C1005 cc1005 1005_3.0pF 1 C27 13 C2012 cc2012 2012_10uF 2 C36 C38 14 C2012 cc2012 2012_47uF 1 C37 15 C1005 cc1005 1005_1.8pF 2 C39 C40 16 C1005 cc1005 1005_0.01uF 3 C41 C43 C45 17 C1005 cc1005 1005_2.2uF 3 C42 C44 C46 18 C1608 c1608 1608_2.2uF 3 C47 C48 C49 19 BEAD1608 l1608 1608_H 2 FB1 FB2 20 MINIPCI_TYPE3A-A minipci-type3a-comp 1 J1 21 MINIPCI_TYPE3A-B minipci-type3a-sold 1 J2 22 COIL l1005 1005_1.3nH 2 L1 L4 23 COIL l1005 1005_3.9nH 2 L2 L3 24 LED1608 led1608 1608_COLOR 1 LD1 25 R1005 cr1005 1005_0 5 R1 R2 R8 R13 R15 26 R1005 cr1005 1005_OPEN 2 R3 R6 27 R1005 cr1005 1005_1K 2 R4 R5 28 R1005 cr1005 1005_50 3 R7 R11 R12 29 R1005 cr1005 1005_300 1 R9 30 R1005 cr1005 1005_620 1 R10 31 R1005 cr1005 1005_3.9K 1 R14 32 R1005 cr1005 1005_11K 1 R16 33 R1005 cr1005 1005_330 1 R17 34 MCX_PDF-S03 mcx_pdf-s03_0.33 2 SMA1 SMA 2 35 TP tp-0.3 1 T1 36 TC3216 ct3216 3216_10uF 3 TC1 TC2 TC3 37 BGA758L7 tsfp-7-8 2 U1 U2 38 MAX2829 mlfp56_w0800_l060 1 U3 39 LDB215G3710C_001 balun-ldb21 1 U4 40 MGA25203 mga25203 1 U5 41 MASWSS0094 maswss0094 1 U6 42 MAX8887EZK29 sot23_5p_0.95x2.7 3 U7 U8 U9 ----- -------------------- ------------------------- ------------- ------- ---------- ---- ----- ----- TOTAL 90 Item Qty Reference Part Name Description 1 1 J8 6318644-1,6318644-1 Memory Socket 2 1 U20 AD7278F 3 2 FB1-2 BEAD1608,120 Ohm Ferrite Bead, 120Ohm, 2000mA, 1608 4 4 C10-13 C1005,0.01uF Chip Capacitor 5 2 C50-51 C1005,1005/0.1uF Chip Capacitor 6 3 C3 C7 C9 C1005,1005/15pF Chip Capacitor 7 1 C45 C1005,100pF Chip Capacitor 8 1 C16 C1005,1uF Chip Capacitor 9 4 C52-55 CAP1608,1608/10uF Chip Capacitor 10 6 C1-2 C4-6 C8 CAP1608,1608/1uF Chip Capacitor 11 1 U19 ICS553,ICS553MI LOW SKEW 1 TO 4 CLOCK BUFFER 12 1 U21 LT1764AEFE-3_3 13 1 U2 MAX6061,MAX6061 Micropower, Low-Dropout 14 2 L1 L9 NFE31P Chip EMIFILr LC Combined Type 15 1 J1 QTE-060-05-L-D-A 16 2 R16-17 RES\1005,0 Chip Resister 17 1 R34 RES\1005,0 Chip Register 18 2 R36 R86 RES\1005,10 Chip Resister 19 5 R140-144 RES\1005,1005/10K Chip Resister 20 8 R1-2 R5-8 R11-12 RES\1005,1005/1K Chip Resister 21 4 R3-4 R9-10 RES\1005,1005/33 Chip Resister 22 3 R13-15 RES\1005,22 Chip Resister 23 4 R18-21 RES\1005,50 Chip Resister 24 8 U7-10 U14-17 RSJB-S00-000,RSJB-S00-000 RF Switch Jack 25 1 Y1 SG-8002CE,40MHz 3.3V SMD OSC 26 2 TC6-7 TC2012,47nF Tantalum Capacitor 27 15 TC1-5 TC8-16 TC19 TC3216_A_TYPE,10uF Tantalum Capacitor WAVE-AFE-RFE_IF_V1.1 NO. PART_NO MFG_PART_NO GEOMETRY VALUE/DES. REFERENCE 1 pn-bead3216 BEAD bead3216 BLM31P601SG BL1 BL4 BL6 BL7 BL8 BL9 BL10 BL11 BL12 BL13 BL14 BL15 BL16 BL17 BL18 BL19 2 pn-bead1005 BEAD bead1005 BLM15HD102SN BL2 BL3 3 pn-C3225X5R0J686M C3225X5R0J686M avx_c3225 68uF/6.3V C83 C202 4 pn-cc1005 CAP cc1005 0.1uF C84 C85 C86 C87 C88 C89 C90 C95 C189 C190 C192 C193 C194 C195 C200 C201 C205 C208 C209 C220 C221 C222 C223 C224 C225 C226 C228 C229 C231 C233 C234 C235 C239 C240 C242 C244 C247 C248 C249 C252 C253 C254 C256 C257 C258 C259 C260 C261 C262 C275 C276 C277 C291 C293 C294 C297 C300 C302 C305 C306 C335 C340 C341 C342 C343 C344 C345 C346 C347 C348 C349 C350 C351 C352 C353 C354 C355 C358 C359 C366 C367 C368 C369 C370 C371 C372 C373 C374 C375 C376 C377 C378 C379 C380 C381 C382 C383 C384 C385 C386 C387 C398 C399 C400 U36 U37 U38 U39 U40 5 pn-C3225 C3225 avx_c3225 100uF/6.3V C91 C96 C227 C255 C404 C408 6 pn-cc1005 CAP cc1005 10nF/25V C92 C93 C94 C290 C292 C298 C299 C301 C303 C313 7 pn-C1608Y5V0J106Z C1608Y5V0J106Z avx_c1608 10uF/6.3V C97 C98 C 99 C230 C232 C236 C237 C238 C241 C243 C245 C250 C251 C267 C268 C269 C270 C284 C321 C326 C327 C328 C329 C332 C333 C388 C389 C392 C393 C413 C414 C415 C416 8 pn-KHD250E107M80A0B00 KHD250E107M80A0B00 THD_13.5x5.5_10mm 100uF/ 25V C103 9 pn-cc1005 CAP cc1005 270pF C104 C105 10 pn-c2012 C2012 cc2012 10uF/16V C191 C196 C203 C206 C295 11 pn-C2012Y5V1C475Z C2012Y5V1C475Z cc2012 4.7uF/16V C204 C207 C33 4 12 pn-cc1005 CAP cc1005 320pF C246 C285 C286 C287 13 pn-LMK325BJ107MM-T LMK325BJ107MM-T avx_c3225 100uF/10V C318 C319 14 pn-C1608 C1608 avx_c1608 15pF/50V C322 C323 C324 C325 15 pn-C3216 C3216 avx_c3216 1uF/50V(DNS) C330 C409 C410 C412 16 pn-C3216 C3216 avx_c3216 1uF/6.3V C331 17 pn-C0603 C0603 avx_c1608 0.022uF C336 C337 C338 C339 18 pn-cc1005 CAP cc1005 1uF/6.3V C390 C391 C394 C395 C397 19 pn-cc1005 CAP cc1005 470pF C396 20 pn-C3225 C3225 avx_c3225 10uF/50V C401 C405 21 pn-C3225 C3225 avx_c3225 10uF/50V(DNS) C402 C406 22 pn-C3225 C3225 avx_c3225 10uF/16V C403 C407 23 pn-C3216 C3216 avx_c3216 1uF/16V C411 24 pn-tp_gnd TP tp_1.1pi GND1 25 pn-con2_smw250-02d CON2 con2_smw250-02d SMW250_02 J2 J9 WAVE-RSE-V3.2 COMPONENT_LIST 11.03.31 26 pn-mictor38p MICTOR_CON38P mictorcon38_recept_0.635 2-767004-2 J3 J16 27 pn-header7x1 HEADER7X1 header7x1 951214-8622-AR J5 28 pn-con2_smw250-02d CON2 con2_smw250-02d SMW250_02D J10 29 pn-hi05_ag0110 HI05_AG0110 hjc_h105-ag0110-a1 HI05_AG0110 J11 30 pn-pj-325 PHONE_JACK_5P PJ-325 PJ-325 J12 J13 31 pn-rj45_8p_J00-0045 J00_0045 rj45_8p_led_J00-0045 13F-641GYDNW2S Z2NL J14 32 pn-DC-005_GANA DC_JACK_3P DC-005_GANA DC-005 J15 33 pn-chip_coil CHIP_COIL bead1005 27nH/LQG15HS27NJ02 L1 34 pn-led_3p LED_3P led_3p 3ARG9HW LD1 35 pn-SSL-LXA3025IGC-TR SSL-LXA3025IGC-TR SSL-LXA3025IGC-TR 67-1372 -2-ND LD2 LD3 36 pn-led3216 LED led3216 RED LD7 37 pn-con2x60_QSE-060 CON2x60 QSE-060-01 QSE-060-01-L-D-A P1 38 pn-bcr133 BCR133 sot23-3_0.95 BCR133 Q1 39 pn-mmbt3904 MMBT3904LT1 sot23-3_0.95 SOT-23-3 Q3 40 pn-rc1005 RES rc1005 2…

Text truncated - open the document above for the full version.

Parts List/Tune Up Info

WAVE RSE EEPROM Setting 1. Terminal Access 1.1 Connect the notebook with the RSE using USB to Serial cable and execute HyperTerminal program. 1.2 Setting up COM Port 1.3 Port Setting 1.4 Hit the “Enter” key to show ” VMC>” , which means ready. 2. Frequency Change 2.1 Verify Frequency 2.2 Frequency Change Change EEPROM address 30 using the command “eepromw”, here to 5.860. Ex) 5.840=0x28, 5.850=0x32, 5.860=0x3C, 5.870=0x46, 5.880=0x50 ... Refer to the details in the EEPROM MAP on the last ending page. After changing the value, reboot the system using the command “rst”. 2.3 Verify Frequency Change 3. Power Change 3.1 Verify the power 3.2 Power Change Change the EEPROM address 31 using the command “eepromw”, here to 8. Ex) 1~8 Refer to the details in the EEPROM MAP on the last ending page. After changing the value, reboot the system using the command “rst”. 3.3 Verify Power Change EEPROM MAP EEPROM MAP offset: 10 Octets: offset: 1617 Octets: 01=0x01 02=0x02 offset: 182226 Octets:FFFFFF0 129=0x81 254=0xFE 81=0x51 162=0xA2 255=0xFF 255=0xFF 255=0xFF0 129=0x81 254=0xFE 81=0x51 0x01 129=0x81 254=0xFE 94=0x5E 64=0x40 255=0xFF 255=0xFF 255=0xFF0 129=0x81254=0xFE 94=0x5E 0x01 offset:30 313233343536 37 38 default frequency default power Datarate WSA Auto MAC Priority AMC Auto Midamble Auto Multich Auto Alarm Auto Octets:111111111 default frequency 5.840=0x28, 5.850=0x32, 5.860=0x3C, 5.870=0x46, 5.880=0x50 default power 1~8 MAC Priority 1~8 Midamble Auto ON: 0x01 OFF:ELSE default datarate 3 = 0x03 4.5 =0x04 6 = 0x06 9 = 0x09 12=0x0C 18=0x12 24=0x18 27=0x1B WSA Auto ON: 0x01 OFF:ELSE AMC Auto ON: 0x01 OFF:ELSE Multich Auto ON: 0x01 OFF:ELSE offset: 404142 OP_Mode: evenRSE(0x00)/ oddRSE(0x10)/ OBE(0x20) USB_OBE =0x01 Multihop_ ON=0x01 Octets:111 RSE Gateway Addr VMC Src MAC Add r 6 RSE IP AddrRSE Subnet Mask Ethernet PHY Address

Test Report

Report Number: F690501/RF-RTL004754-1 Page: 2 of 36 The results shown in this test report refer only to the sample(s) tested unless otherwise stated. This test report cannot be reproduced, except in full, without prior written permission of the Company. SGS Korea Co., Ltd. (Gunpo Laboratory)18-34, Sanbon-dong, Gunpo-si, Gyeonggi-do, Korea, 435-040 Tel. +82 31 428 5700 / Fax. +82 31 427 2371 www.kr.sgs.com/ee INDEX TABLE OF CONTENTS Page 1. General Information ---------------------------------------------------------------------------------------3 2. RF Output Power and Spurious Emission ---------------------------------------------------------- 7 3. Conducted Output Power ------------------------------------------------------------------------------- 16 4. Occupied Bandwidth --------------------------------------------------------------------------------------18 5. Transmit Spectrum Mask --------------------------------------------------------------------------------26 6. Frequency Tolerance -------------------------------------------------------------------------------------33 7. RF Exposure evaluation ----------------------------------------------------------------------- 35 Report Number: F690501/RF-RTL004754-1 Page: 3 of 36 The results shown in this test report refer only to the sample(s) tested unless otherwise stated. This test report cannot be reproduced, except in full, without prior written permission of the Company. SGS Korea Co., Ltd. (Gunpo Laboratory)18-34, Sanbon-dong, Gunpo-si, Gyeonggi-do, Korea, 435-040 Tel. +82 31 428 5700 / Fax. +82 31 427 2371 www.kr.sgs.com/ee 1. General information 1.1. Testing laboratory SGS Korea Co., Ltd. (Gunpo Laboratory) - 705, Dongchun-Dong Sooji-Gu, Yongin-Shi, Kyungki-Do, South Korea. - Wireless Div. 2FL, 18-34, Sanbon-dong, Gunpo-si, Gyeonggi-do, Korea 435-040 www.kr.sgs.com/ee Telephone : +82 +31 428 5700 FAX : +82 +31 427 2371 1.2. Details of applicant Applicant :IT TELECOM co.,Ltd. Address : #517, TheOvalley, 555-9, Hogye-dong, Dongan-gu, Anyang-si, Gyeonggi-do, Korea Contact Person : Byung Woo Cho Phone No. : +82 +31 479 6541 Fax No. : +82 +31 479 6540 1.3. Description of EUT Kind of Product DSRCS Roadside Unit Model Name IT-WAVE-2010 Serial Number N/A Power Supply DC 24 V Rated Power 10 dBm EIRP & Conducted Power EIRP : 1.73 dBm Conducted : 5.47 dBm Frequency Range 5 860 ㎒ ~ 5 920 ㎒ 1.4. Declaration by the manufacturer - Class B - Manufacturer declares operating temperature : -20 ~ 50 degree C Report Number: F690501/RF-RTL004754-1 Page: 4 of 36 The results shown in this test report refer only to the sample(s) tested unless otherwise stated. This test report cannot be reproduced, except in full, without prior written permission of the Company. SGS Korea Co., Ltd. (Gunpo Laboratory)18-34, Sanbon-dong, Gunpo-si, Gyeonggi-do, Korea, 435-040 Tel. +82 31 428 5700 / Fax. +82 31 427 2371 www.kr.sgs.com/ee 1.4. Test equipment list Equipment Manufacturer Model S/N Cal Due. Signal Generator Agilent E4438C MY42082477 Mar. 31, 2012 Signal Generator R & S SMR40 100272 Jul. 15, 2012 Spectrum Analyzer R & S FSV30 100768 Mar. 31, 2012 Spectrum Analyzer R & S FSP40 100007 Jul. 14, 2012 High Pass Filter Wainwright WHK6.0/18G-10SS 11 Sep. 29, 2011 DC power Supply Agilent U8002A MY49030063 Jan. 05, 2012 Preamplifier H.P. 8447F 2944A03909 Jul. 04, 2012 Preamplifier Agilent 8449B 3008A01932 Mar. 31, 2012 Preamplifier MITEQ Inc. JS44-18004000-35-8P1546891 Jun. 04, 2012 Test Receiver R & S ESU26 100109 Feb. 21, 2012 Bilog Antenna SCHWARZBECK MESSELEKTRONIK VULB9163 396 Apr. 27, 2013 Horn Antenna R & S HF 906 100326 Oct. 08, 2011 Horn Antenna SCHWARZBECK BBH 9120D 138 Oct. 13, 2012 Dipole Antenna SCHWARZBECK VHAP/UHAP 974/957 Oct. 30, 2011 Antenna Master EMCO 1050 N.C.R. N.C.R. Turn Table Daeil EMC DI-1500 N.C.R. N.C.R. Anechoic Chamber SY Corporation L × W × H (9.6 m × 6.4 m × 6.6 m) N.C.R. N.C.R. Report Number: F690501/RF-RTL004754-1 Page: 5 of 36 The results shown in this test report refer only to the sample(s) tested unless otherwise stated. This test report cannot be reproduced, except in full, without prior written permission of the Company. SGS Korea Co., Ltd. (Gunpo Laboratory)18-34, Sanbon-dong, Gunpo-si, Gyeonggi-do, Korea, 435-040 Tel. +82 31 428 5700 / Fax. +82 31 427 2371 www.kr.sgs.com/ee 1.6. Summary of test results The EUT has been tested according to the following specifications: APPLIED STANDARD : FCC Part 2, 90 Section in FCC part Test Item Result §90.377 (b), §90.379, ASTM E2213-03 8.9.2, 8.9.3 RF Output Power and Spurious Emission Complied §90.379, ASTM E2213-03 8.4 Modulation Characteristic Complied §90.375 (c) Conducted Output Power Complied §90.379, ASTM E2213-03 Occupied Bandwidth Complied §90.379, ASTM E2213-03 8.9.2.1 Transmit Spectrum Mask Complied §90.379, ASTM E2213-03 8.9.4 Frequency Tolerance Complied 1.1307(b)(1) Maximum Permissible Exposure (Exposure of Humans to RF Fields) Complied Report Number: F690501/RF-RTL004754-1 Page: 6 of 36 The results shown in this test report refer only to the sample(s) tested unless otherwise stated. This test report cannot be reproduced, except in full, without prior written permission of the Company. SGS Korea Co., Ltd. (Gunpo Laboratory)18-34, Sanbon-dong, Gunpo-si, Gyeonggi-do, Korea, 435-040 Tel. +82 31 428 5700 / Fax. +82 31 427 2371 www.kr.sgs.com/ee 1.7. Modulation Characteristics and Conclusion of worst-case The carrier signal is OFDM. The sub-carriers have the following data rates and modulations: Compare Conducted output power at middle channel (5 890 ㎒) Data Rate (Mbits/s) Modulation Output Power (dBm) 3 BPSK 5.07 4.5 BPSK 5.01 6 QPSK 3.70 9 QPSK 4.41 12 16-QAM 3.95 18 16-QAM 3.21 24 64-QAM 2.07 27 64-QAM 3.24 Worst case is 3 Mbits/s 1.8. Test report revision Revision Report number Description 0 F690501/RF-RTL004754 Initial 1 F690501/RF-RTL004754-1 Addition : all modulation data for obw, spectral mask Report Number: F690501/RF-RTL004754-1 Page: 7 of 36 The results shown in this test re…

Text truncated - open the document above for the full version.

Test Setup Photos

Test setup photos of EUT Photo of Field Strength & Spurious Emission Test

Contact Information

Applicant

Byung Woo Cho(Senior Engineer)
[email protected]82-31-479-6541Fax: 82-31-479-6540

Test Firm

SGS Korea Co., Ltd.Forest Lee
[email protected]82(0)31-428-5715Fax: 82(0)31-427-2373

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
1905.86 GHz - 5.92 GHz4.00 mW8M88G7D5.5000000000 ppm
Confidentiality
Long Term
Grant Notes
Output power listed is conducted. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be collocated or operating in conjunction with any other antenna or transmitter within a host device, except in accordance with FCC multitransmitter product procedures. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

Other Applications from IT TELECOM Co., Ltd.

C-V2X OBU Device - FCC ID ZO9-MSD-A3 - IT TELECOM Co., Ltd.
ZO9-MSD-A3

C-V2X OBU Device

Apr 27, 2026

Equipment Class

CVO - Part 95 CV2-X Onboard Units without Geofencing
DSRCS Roadside Units - FCC ID ZO9ITT-V2X-RSU-N2 - IT TELECOM Co., Ltd.
ZO9ITT-V2X-RSU-N2

DSRCS Roadside Units

Mar 08, 2021

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
DSRCS On-Board Units - FCC ID ZO9-ASD-N2 - IT TELECOM Co., Ltd.
ZO9-ASD-N2

DSRCS On-Board Units

Jan 27, 2021

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
DSRCS On-Board Units - FCC ID ZO9ITT-VAD-SH2-ET - IT TELECOM Co., Ltd.
ZO9ITT-VAD-SH2-ET

DSRCS On-Board Units

Oct 01, 2014

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter