FE3RW0051 User Manual Change History Date Change Description Owner (s) 2022.11.18 Initial version Liu Pujia 1.1 2022.12.05 Add antenna requirements Liu Pujia 1.2 2023.01.04 Add regulatory compliance notes Liu Pujia 1.3 2023.01.04 Add general test antenna spec Liu Pujia Internal...
FE3RW0051 User Manual Table of Contents Key Features ..........................7 Regulatory Compliance Notes ....................10 Specifications ......................... 13 Mechanical Information ......................15 Storage and Handling ......................18 Part Reliability ........................19 Internal...
FE3RW0051 User Manual List of Figures Figure 1: Module Exploded View .........................15 Figure 2: Module Top Side View ........................16 Figure 3: Module Side View .........................17 Internal...
FE3RW0051 User Manual List of Tables Table 1: SA415M Band Configuration Support ....................8 Table 2: Recommended Operating Conditions ....................13 Table 3: Output Voltage Supplies .........................13 Internal...
FE3RW0051 User Manual Terms and Acronyms CDMA Code Division Multiple Access UMTS Universal Mobile Telecommunication System WCDMA Wideband Code Division Multiple Access Long Term Evolution LTE-A LTE-Advanced GLONASS GLObalnaya NAvigatsionnaya Sputnikovaya Sistema GNSS Global Navigation Satellite System DCM-TCU Data Connectivity Module...
FE3RW0051 User Manual LTE 4G NAD Module The LTE 4G is a CAT 4 Rel. 14 NAD is a family of proprietary embedded modules designed by Continental Automotive Systems, Inc. The modules will be integrated into Data Connectivity Modules (DCM-TCUs) or USB hosts (HUs) designed and produced by Continental or by a 3 party for use by automotive OEMs.
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FE3RW0051 User Manual 4Gbit / 512 M Bytes -x8 SLC Module NAND Micron MT29GZ5A5BPGGA-53 1.1.3 Electrical Interface Support LTE/WCDMA/GSM: LTE_ANT_1, LTE_ANT_2 Antenna Ports GNSS: GNSS_ANT_1 1x Lane (Gen2) PCIe End Point and Root Complex support RGMII Integrated MAC 4 Rx bits...
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FE3RW0051 User Manual Access to the NADs HS-USB interface, including AT command, Diagnostics and NMEA ports. Ability to conduct basic call processing and data throughout measurements. NAD UART for communication using Linux console. RF Ports: If on-board antennas are used by the product, provisions must be made to support conducted RF measurements on all antenna interfaces: LTE Primary, Diversity and GNSS.
2.1 Regulatory compliance notes 2.1.1 CE-RED: Hereby, Continental Automotive Systems, Inc, declares that the radio equipment type FE3RW0051 is in compliance with Directive 2014/53/EU. The full test of the EU Declaration of Conformity is available at the following internet address: Homologation - Daimler (continental-homologation.com)
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SAR will be required if the distance limitation cannot be met. The FE3RW0051 module does not contain internal antennas and external antenna must be provided by the integrator or OEM. Based on EN 62311:2020 and EN 50665:2017 and FCC OET Bulletin 65 Supplement...
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LTE Band 7: 9.0 dBi LTE Band 26: 10.3 dBi The FE3RW0051 module was tested against general test antenna with below spec and max antenna gain above were calculated according to test results with test antenna: GSM 850: 0.82 dBi GSM 1900: 1.52 dBi...
FE3RW0051 User Manual 3 Specifications 3.1 Recommended Operating Conditions Over operating temperature range (unless otherwise stated) Table 2: Recommended Operating Conditions Parameter UNIT 4V_PMX_V Power management input supply voltage 4V_QET_V Average power tracking input supply voltage 5V_CV2X Average power tracking input supply voltage 4.75...
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FE3RW0051 User Manual 3.3 NAD Module RF Characteristics 3.3.1 NAD Module RF Transmitter Output Power The Transmitter Power at the NAD antenna terminal at Room Temperature (not the FAKRA of the evaluation board or the Telematics/parent module): WCDMA: + 23.5 dBm +1.0/-2.5 dB LTE: +23.0 dBm +1.0/-2.0 dB *...
FE3RW0051 User Manual 5 Storage and Handling 5.1 Moisture Sensitivity Level (MSL) All NAD modules are moisture sensitive and should be kept in their sealed moisture resistant bags until ready for assembly onto the DCM-TCU via the soldering process. Any parts that are not used immediately should be properly resealed in the same moisture resistant bag using appropriate equipment or placed into a dry box until they are needed again.
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