測(cè)試測(cè)量設(shè)備-ETTUSUSRPN310美國(guó)原裝進(jìn)口
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產(chǎn)品概述
USRP N310是一種網(wǎng)絡(luò)軟件定義無線電(SDR),為大規(guī)模和分布式無線系統(tǒng)的部署提供可靠性和容錯(cuò)能力。USRP N310設(shè)備通過引入獨(dú)特的功能來遠(yuǎn)程執(zhí)行任務(wù),如更新軟件、重新啟動(dòng)、工廠重置、自我測(cè)試、主機(jī)PC/ARM調(diào)試和監(jiān)視系統(tǒng)健康狀況,從而簡(jiǎn)化了無線電網(wǎng)絡(luò)的控制和管理。
USRP N310是SDR市場(chǎng)中通道密度最高的設(shè)備之一,提供4個(gè)RX和4個(gè)TX通道,具有半寬RU尺寸。RF前端使用兩個(gè)AD9371收發(fā)器,這是來自Analog Device的最新RFIC技術(shù)。每個(gè)頻道提供高達(dá)100MHz的瞬時(shí)頻寬,頻率范圍涵蓋10MHz~6GHz。
開源的USRP硬件驅(qū)動(dòng)程序(UHD) API和射頻片上網(wǎng)絡(luò)(RFNoC) FPGA開發(fā)框架減少了軟件開發(fā)工作,并與GNU Radio等多種行業(yè)標(biāo)準(zhǔn)工具集成。用戶可以快速原型化和可靠地部署各種SDR應(yīng)用程序的設(shè)計(jì),如無線試驗(yàn)臺(tái)、遠(yuǎn)程無線電頭、頻譜監(jiān)控等。請(qǐng)注意,USRP N310不是為快速調(diào)諧而設(shè)計(jì),因而不適合跳頻應(yīng)用。
基帶處理器
基帶處理器使用Xilinx Zynq-7100 SoC來提供一個(gè)大容量用戶可編程FPGA,用于實(shí)時(shí)和低延遲處理,以及一個(gè)雙核ARM CPU用于獨(dú)立操作。用戶可以直接將應(yīng)用程序部署到預(yù)裝的嵌入式Linux操作系統(tǒng)上,或者通過兩個(gè)SFP+端口使用高速接口(如1GigE、10GigE和Aurora)將采樣數(shù)據(jù)注入到PC上。
同步
USRP N310具有靈活的同步體系結(jié)構(gòu),支持傳統(tǒng)的SDR同步方法,如時(shí)鐘參考、PPS時(shí)間參考和GPSDO,從而實(shí)現(xiàn)了高通道數(shù)MIMO系統(tǒng)。此外,USRP N310采用開源的White Rabbit時(shí)序協(xié)議,具有獨(dú)特的基于以太網(wǎng)的同步特性。在沒有g(shù)ps的環(huán)境中,White Rabiit可以實(shí)現(xiàn)長(zhǎng)距離的精確基帶同步。有關(guān)更多信息,請(qǐng)參考“Using Ethernet-Based Synchronization on the USRP N3xx Devices”。
可信平臺(tái)模塊(TPM)
USRP N310包括一個(gè)可信平臺(tái)模塊,以支持一些安全特性,如文件加密。由于產(chǎn)品在一些國(guó)家的適從性限制,USRP N310有兩種變體:
帶TPM標(biāo)準(zhǔn)型(PN 785067-01)
非TPM型(PN 786465-01)
在中國(guó)大陸和香港只有USRP N310的非TPM提供。USRP N310帶TPM型在法國(guó)、以色列或俄羅斯不可用,直到在這些國(guó)家注冊(cè)。
產(chǎn)品特征
High channel density
Reliable and fault-tolerant deployment
Remote management capability
Stand-alone (embedded) or host-based (network streaming) operation
Fully integrated and assembled (the USRP N310 does not support swappable daughtercards)
10 MHz to 6 GHz extended frequency range
Up to 100 MHz of instantaneous bandwidth per channel
4 RX, 4TX in half-wide RU form factor[1]
RX, TX filter bank
16 bit ADC, 14 bit DAC
Configurable sample rates: 122.88, 125, and 153.6 MS/s
Xilinx Zynq-7100 SoC
Dual-core ARM Cortex-A9 800 MHz CPU
Two SFP+ ports (1 Gigabit Ethernet, 10 Gigabit Ethernet, Aurora)
RJ45 (1 GbE)[2]
Clock reference
PPS time reference
External RX, TX LO input ports [3]
Built-in GPSDO
1 Type A USB host port
1 micro-USB port (serial console, JTAG)
Trusted Platform Module v1.2
Watchdog timer
OpenEmbedded Linux
USRP Hardware Driver? (UHD) open-source software API version 3.11.0 or later
RF Network on Chip (RFNoC? ) FPGA development framework
Xilinx Vivado 2017.4 Design Suite (license not included)
GNU Radio support maintained by Ettus Research? through GR-UHD, an interface to UHD distributed by GNU Radio
High channel density
Reliable and fault-tolerant deployment
Remote management capability
Stand-alone (embedded) or host-based (network streaming) operation
Fully integrated and assembled (the USRP N310 does not support swappable daughtercards)
10 MHz to 6 GHz extended frequency range
Up to 100 MHz of instantaneous bandwidth per channel
4 RX, 4TX in half-wide RU form factor[1]
RX, TX filter bank
16 bit ADC, 14 bit DAC
Configurable sample rates: 122.88, 125, and 153.6 MS/s
Xilinx Zynq-7100 SoC
Dual-core ARM Cortex-A9 800 MHz CPU
Two SFP+ ports (1 Gigabit Ethernet, 10 Gigabit Ethernet, Aurora)
RJ45 (1 GbE)[2]
Clock reference
PPS time reference
External RX, TX LO input ports [3]
Built-in GPSDO
1 Type A USB host port
1 micro-USB port (serial console, JTAG)
Trusted Platform Module v1.2
Watchdog timer
OpenEmbedded Linux
USRP Hardware Driver? (UHD) open-source software API version 3.11.0 or later
RF Network on Chip (RFNoC? ) FPGA development framework
Xilinx Vivado 2017.4 Design Suite (license not included)
GNU Radio support maintained by Ettus Research? through GR-UHD, an interface to UHD distributed by GNU Radio
[1] The RF front-end uses two AD9371 transceivers that are independently tunable. Each transceiver is capable of 2X2 MIMO operation with LO sharing between each channel.
[2] The RJ45 port is used for remote management of the device and does not support IQ streaming.
[3] The external LO frequency must be twice the center frequency, with center frequency limited to the range from 300 MHz to 4 GHz. Phase coherency is not repeatable after retune or reinitialization of the RF front-end. Phase recalibration is required after these operations.
設(shè)計(jì)框圖
點(diǎn)擊查看大圖 USRP N310 Motherboard 點(diǎn)擊查看大圖 USRP N310 Daughterboard
其他資源
USRP N310 Getting Started Guide
USRP N310 Hardware Resources
Schematics
Building and Installing UHD and GNU Radio Application Note
Verifying USRP Operation Application Note
RFNoC Development Application Note
Getting Started With UHD and C Application Note
Using Ethernet-Based Synchronization Application Note
USRP N310 Getting Started Guide
USRP N310 Hardware Resources
Schematics
Building and Installing UHD and GNU Radio Application Note
Verifying USRP Operation Application Note
RFNoC Development Application Note
Getting Started With UHD and C Application Note
Using Ethernet-Based Synchronization Application Note
包裝清單
USRP N310
RJ45 Ethernet Cable
SFP+ to RJ45 Adapter
Micro-USB cable
Imaged microSD Card
Power Supply
USRP N310
RJ45 Ethernet Cable
SFP+ to RJ45 Adapter
Micro-USB cable
Imaged microSD Card
Power Supply
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