据Warra表示,该公司开发了一种噪声发生器,能够产生典型的汽车噪音,内燃机发动声,喇叭发声,窗户滚动和下降等噪声,以噪声测试汽车以太网实现和整个汽车系统的稳健性。他强调,这一项测试尤为重要,因为无线系统不仅用于车载信息系统,而且还用于自动驾驶辅助系统等安全功能。当以太网用于导航和信息的显示器时,Warra表示,对普通汽车来说,噪声影响可能仅限于屏幕闪烁或卡屏,但类似的情况一旦在自动驾驶系统中发生,可能会危及生命。
PV063R1K1T1NFR1
PV063R1K1T1NFHS
PV063R1K1T1NMM1
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PV063R1K1T1NFWS
PV063R1K1T1NFRC
PV063R1K1T1NFF1
PV080L1K1T1NFFC
PV080R1K1B1NSLB
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PV092R1K8T1N001
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PV092R1K1A1NSLA
PV140R1K1T1NFRL
PV140L1K8T1NSLC
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PV140R9K1T1NUPZ
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PV140R9K1A1NSLCK0173
PV140R9K1T1NFDSK0186
PV140R9K1T1NFFCK0011
PV140R9K1T1NFHSK0017
PV140R9K1T1NFRCK0107
PV140R9K1T1NFWSK0032
PV140R9K1T1NFWSK0155
PV140R9K1T1NKCCK0175
PV140R9K1T1NMLCK0081
PV140R9K1T1NSLCK0003
PV140R9K1T1WSCCK0072
PV140R9K4T1NFFPK0088
PV140R9K4T1NZCBK0154
PV140R9K4T1WFRPX5918
PV140L9G1T1NFFPK0083
内置DSP使用户能够将机器学推向应用的*前沿。Yole的Malquin补充表示,在一个组件中集成DSP、MCU和收发器,带来了更低的互连损耗,以及更快的处理速度。TI毫米波雷达中使用的DSP是一款6MHz用户可编程的C674xDSP,以及一颗2MHz用户可编程的ARMCortex-R4F处理器。AWR1642毫米波雷达芯片的高级架构框图毫米波雷达探寻更广泛的汽车应用盲点监测和自适应巡航等基础ADAS(*驾驶辅助系统)功能已经很常见了,利用24GHz侧方雷达和77GHz前方雷达就可以轻松实现。
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