电子创新@@188足彩外围@@app 网@@ - CAN-FD - 188足彩网 //www.300mbfims.com/tag/can-fd zh-hans 智能汽车@@CAN FD总线需要什么样的降噪@@对策@@? //www.300mbfims.com/content/2022/100565315.html <!-- THEME DEBUG --> <!-- CALL: theme('field') --> <!-- FILE NAME SUGGESTIONS: * field--body--article.tpl.php * field--article.tpl.php * field--body.tpl.php * field--text-with-summary.tpl.php x field.tpl.php --> <!-- BEGIN OUTPUT from 'sites/all/themes/Murata/templates/field.tpl.php' --> <!-- This file is not used by Drupal core, which uses theme functions instead. See http://api.drupal.org/api/function/theme_field/7 for details. After copying this file to your theme's folder and customizing it, remove this HTML comment. --> <div class="field field-name-body field-type-text-with-summary field-label-hidden"> <div class="field-items"> <div class="field-item even"><p><strong>1. CAN FD是什么@@</strong></p> <p>CAN FD是连接汽车内的@@ECU或电脑并进行通讯的车内局域网@@之一@@。</p> <p>CAN FD能够以比以往的@@CAN标准@@更快的速度进行通讯@@。</p> <p><strong>2. 噪声问题@@</strong></p> <p>CAN FD具有比以往的@@CAN更高的比特率@@,这也增加了@@CAN通讯时产生的发射噪声问题@@@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277104-1.png" alt="" /></center> <p>CAN FD等接口使用被称为差分传输的传输方式@@。差分传输通过两条信号线之间的电位差传输信号@@,因此@@具有不易受外部辐射噪声影响的特点@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277105-2.png" alt="" /></center> <p>此外@@,两条信号线上因信号而产生的电波还会相互抵消@@,因此@@难以作为噪声向外发射@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277106-3.png" alt="" /></center> <p>然而@@,由于各种因素@@,电路板上会产生共模@@电流@@。如果共模@@电流流入差分传输线的电缆@@,电缆就会辐射共模@@噪声@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277107-4.png" alt="" /></center> <p><strong>3. 噪声问题@@的对策@@ </strong></p> <p>共模@@扼流圈适合用来解决共模@@噪声问题@@@@。</p> <p>共模@@扼流圈是通过磁力将两条信号线耦合的线圈@@,能够在@@不影响差分信号等差模@@信号的前提下@@,仅消除共模@@噪声@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277108-5.png" alt="" /></center> <p>反相@@(差模@@)信号的磁场被消除@@ → 穿透@@</p> <p>同相@@(共模@@)噪声的磁场重叠@@ → 反射@@</p> <p>原则上@@,共模@@扼流圈具有消除共模@@噪声的功能@@,但如果两条信号线的线圈均衡被打破@@,就会发生模式转换@@,部分差模@@信号被转换为共模@@信号@@,从而产生噪声@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277109-6.png" alt="" /></center> <p>因此@@,使用模式转换较少的@@、能够保持均衡的共模@@扼流圈@@是非常重要的@@。</p> <p><strong>村田推荐@@</strong></p> <p>建议用于@@CAN FD的共模@@扼流圈@@<br /> <img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277110-7.png" alt="" /></p> <p><a target="_blank" href="https://www.murata.com/zh-cn/products/productdetail?cate=cgInductors&amp;partno=DLW32SH101XF2%23&amp;excid=cn_so-o_we_sns_s-y4_202211" textvalue="DLW32SH1‍01XF2" linktype="text" imgurl="" tab="outerlink" data-linktype="2"><strong>DLW32SH101XF2</strong></a></p> <p>村田推荐@@的用于@@CAN FD的共模@@扼流圈@@DLW32SH101XF2,188足彩外围@@app 尺寸@@为@@3.2×2.5mm,共模@@电感@@ : 100μH-30%/+50%(at 0.1MHz)。</p> <p><strong>188足彩外围@@app 尺寸@@</strong><br /> <img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277111-8.png" alt="" /></p> <p><strong>阻抗@@-频率特性@@</strong><br /> <img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277112-9.png" alt="" /></p> <p>请前往产品页面@@,了解更多规格参数说明@@,并可申请样品和@@查询经销商库存@@。</p> <p><strong>4. 降噪@@措施的效果@@</strong></p> <p><strong>确认共模@@扼流圈的降噪@@效果@@@@</strong></p> <p>为了评估共模@@扼流圈的降噪@@效果@@@@,我们使用信号发生器驱动@@CAN FD收发器@@,并通过频谱分析仪观察了@@CAN-H和@@CAN-L线上的共模@@噪声@@。我们插入三种不同的共模@@扼流圈@@@@,并分别确认了@@各线圈的效果@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277113-10.png" alt="" /></center> <p>通过结果可知@@,噪声级别会随着信号发生器比特率的增加而增加@@。</p> <p>此外@@,我们还发现@@,在@@三种共模@@扼流圈中@@@@,DLW32SH101XF2的降噪@@效果@@相对较高@@。DLW32SH101XF2在@@各比特率下皆能有效地抑制噪声@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277114-11.jpg" alt="" /></center> <p><strong>确认传导发射对策的效果@@</strong></p> <p>之后@@,我们通过传导发射测量@@(150Ω方法@@)确认了@@DLW32SH101XF2的降噪@@效果@@。该测量符合@@IEC 62228-2:2019规定的@@“射频干扰的发射@@”条件@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277115-12.jpg" alt="" /></center> <p>通过使用@@DLW32SH101XF2,我们成功地达到了传导发射中@@限值要求非常严格的@@Class III标准@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277116-13.jpg" alt="" /></center> <p><strong>确认抗扰度对策的效果@@</strong></p> <p>接着@@,为了确认抗扰度对策的效果@@@@,我们进行了抗扰度实验@@之一的@@DPI(直接功率注入@@)实验@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277117-14.jpg" alt="" /></center> <p>该测量符合@@IEC 62228-3:2019规定的@@“对射频干扰的抗扰度@@”条件@@。<br /> </p><center><img src="https://cdn.eetrend.com/files/2022-11/wen_zhang_/100565315-277118-15.jpg" alt="" /></center> <p>在@@DPI测试中@@@@,通过使用@@DLW32SH101XF2也能满足限值要求非常严格的@@Class III标准@@。</p> <p><strong>5. 总结@@</strong> </p> <li>在@@CAN FD中@@,共模@@噪声是容易经常出现的问题@@</li> <li>共模@@扼流圈可以有效地消除共模@@噪声@@</li> <li>为防止因模式转换而产生共模@@噪声@@,共模@@扼流圈的模式转换特性也非常重要@@</li> <li>村田推荐@@的共模@@扼流圈@@@@DLW32SH101XF2在@@传导发射和@@@@DPI对策方面皆有效@@</li> <p>文章来源@@:Murata村田中@@国@@</p> </div> </div> </div> <!-- END OUTPUT from 'sites/all/themes/Murata/templates/field.tpl.php' --> <!-- THEME DEBUG --> <!-- CALL: theme('field') --> <!-- FILE NAME SUGGESTIONS: x field--field-keywords--article.tpl.php * field--article.tpl.php * field--field-keywords.tpl.php * field--taxonomy-term-reference.tpl.php * field.tpl.php --> <!-- BEGIN OUTPUT from 'sites/all/themes/Murata/templates/field--field-keywords--article.tpl.php' --> <!-- This file is not used by Drupal core, which uses theme functions instead. See http://api.drupal.org/api/function/theme_field/7 for details. After copying this file to your theme's folder and customizing it, remove this HTML comment. --> <ul class="list-inline"> <li> <a href="/tag/智能汽车@@"><span class='glyphicon glyphicon-tag'></span> 智能汽车@@</a> </li> <li> <a href="/tag/can-fd"><span class='glyphicon glyphicon-tag'></span> CAN-FD</a> </li> <li> <a href="/tag/降噪@@"><span class='glyphicon glyphicon-tag'></span> 降噪@@</a> </li> </ul> <!-- END OUTPUT from 'sites/all/themes/Murata/templates/field--field-keywords--article.tpl.php' --> Wed, 02 Nov 2022 08:03:02 +0000 judy 100565315 at //www.300mbfims.com //www.300mbfims.com/content/2022/100565315.html#comments CAN FD的降噪@@措施@@ //www.300mbfims.com/content/2022/100558152.html <!-- THEME DEBUG --> <!-- CALL: theme('field') --> <!-- FILE NAME SUGGESTIONS: * field--body--article.tpl.php * field--article.tpl.php * field--body.tpl.php * field--text-with-summary.tpl.php x field.tpl.php --> <!-- BEGIN OUTPUT from 'sites/all/themes/Murata/templates/field.tpl.php' --> <!-- This file is not used by Drupal core, which uses theme functions instead. See http://api.drupal.org/api/function/theme_field/7 for details. After copying this file to your theme's folder and customizing it, remove this HTML comment. --> <div class="field field-name-body field-type-text-with-summary field-label-hidden"> <div class="field-items"> <div class="field-item even"><p><strong>1. CAN FD是什么@@</strong><br /> CAN FD是连接汽车内的@@ECU或电脑并进行通讯的车内局域网@@之一@@。CAN FD能够以比以往的@@CAN标准@@更快的速度进行通讯@@。</p> <p><strong>2. 噪声问题@@</strong><br /> CAN的速度提升和@@噪声问题@@@@<br /> CAN FD具有比以往的@@CAN更高的比特率@@。<br /> 这也增加了@@CAN通讯时产生的发射噪声问题@@@@。<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244468-1.png" alt="" /></center> <p>CAN-FD的噪声问题@@@@<br /> CAN FD等接口使用被称为差分传输的传输方式@@。<br /> 差分传输通过两条信号线之间的电位差传输信号@@,因此@@具有不易受外部辐射噪声影响的特点@@。此外@@,两条信号线上因信号而产生的电波还会相互抵消@@,因此@@难以作为噪声向外发射@@。</p> <p>针对外部噪声@@<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244469-2.png" alt="" /></center> <p>针对噪声辐射@@<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244470-3.png" alt="" /></center> <p>然而@@,由于各种因素@@,电路板上会产生共模@@电流@@。如果共模@@电流流入差分传输线的电缆@@,电缆就会辐射共模@@噪声@@。<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244471-4.png" alt="" /></center> <p><strong>3. 噪声问题@@的对策@@</strong></p> <p>利用共模@@扼流圈@@<br /> 共模@@扼流圈适合用来解决共模@@噪声问题@@@@。<br /> 共模@@扼流圈是通过磁力将两条信号线耦合的线圈@@,能够在@@不影响差分信号等差模@@信号的前提下@@,仅消除共模@@噪声@@。<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244472-5.png" alt="" /></center><br /> 反相@@(差模@@)信号的磁场被消除@@ → 穿透@@<br /> 同相@@(共模@@)噪声的磁场重叠@@ → 反射@@ <p>共模@@扼流圈的质量及模式转换@@<br /> 原则上@@,共模@@扼流圈具有消除共模@@噪声的功能@@,但如果两条信号线的线圈均衡被打破@@,就会发生模式转换@@,部分差模@@信号被转换为共模@@信号@@,从而产生噪声@@。因此@@,使用模式转换较少的@@、能够保持均衡的共模@@扼流圈@@是非常重要的@@。<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244473-6.png" alt="" /></center> <p>建议用于@@CAN FD的共模@@扼流圈@@<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244480-6-2.jpg" alt="" /></center> <p><strong>4. 降噪@@措施的效果@@</strong></p> <p>确认共模@@扼流圈的降噪@@效果@@@@<br /> 为了评估共模@@扼流圈的降噪@@效果@@@@,我们使用信号发生器驱动@@CAN FD收发器@@,并通过频谱分析仪观察了@@CAN-H和@@CAN-L线上的共模@@噪声@@。我们插入三种不同的共模@@扼流圈@@@@,并分别确认了@@各线圈的效果@@。<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244474-7.png" alt="" /></center> <p>通过结果可知@@,噪声级别会随着信号发生器比特率的增加而增加@@。<br /> 此外@@,我们还发现@@,在@@三种共模@@扼流圈中@@@@,DLW32SH101XF2的降噪@@效果@@相对较高@@。DLW32SH101XF2在@@各比特率下皆能有效地抑制噪声@@。<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244475-8.jpg" alt="" /></center> <p>确认传导发射对策的效果@@<br /> 之后@@,我们通过传导发射测量@@(150Ω方法@@)确认了@@DLW32SH101XF2的降噪@@效果@@。<br /> 该测量符合@@IEC 62228-2:2019规定的@@“射频干扰的发射@@”条件@@。<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244476-9.png" alt="" /></center> <p>通过使用@@DLW32SH101XF2,我们成功地达到了传导发射中@@限值要求非常严格的@@Class III标准@@。<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244477-10.png" alt="" /></center> <p>确认抗扰度对策的效果@@<br /> 接着@@,为了确认抗扰度对策的效果@@@@,我们进行了抗扰度实验@@之一的@@DPI(直接功率注入@@)实验@@。该测量符合@@IEC 62228-3:2019规定的@@“对射频干扰的抗扰度@@”条件@@。<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244478-11.png" alt="" /></center> <p>在@@DPI测试中@@@@,通过使用@@DLW32SH101XF2也能满足限值要求非常严格的@@Class III标准@@。<br /> </p><center><img src="//www.300mbfims.com/files/2022-03/wen_zhang_/100558152-244479-12.png" alt="" /></center> <p><strong>5. 总结@@</strong></p> <p>在@@CAN FD中@@,共模@@噪声是容易经常出现的问题@@</p> <p>共模@@扼流圈可以有效地消除共模@@噪声@@</p> <p>为防止因模式转换而产生共模@@噪声@@,共模@@扼流圈的模式转换特性也非常重要@@</p> <p>DLW32SH101XF2在@@传导发射和@@@@DPI对策方面皆有效@@。</p> <p>文章来源@@:Murata官网@@@@</p> </div> </div> </div> <!-- END OUTPUT from 'sites/all/themes/Murata/templates/field.tpl.php' --> <!-- THEME DEBUG --> <!-- CALL: theme('field') --> <!-- FILE NAME SUGGESTIONS: x field--field-keywords--article.tpl.php * field--article.tpl.php * field--field-keywords.tpl.php * field--taxonomy-term-reference.tpl.php * field.tpl.php --> <!-- BEGIN OUTPUT from 'sites/all/themes/Murata/templates/field--field-keywords--article.tpl.php' --> <!-- This file is not used by Drupal core, which uses theme functions instead. See http://api.drupal.org/api/function/theme_field/7 for details. After copying this file to your theme's folder and customizing it, remove this HTML comment. --> <ul class="list-inline"> <li> <a href="/tag/can-fd"><span class='glyphicon glyphicon-tag'></span> CAN-FD</a> </li> <li> <a href="/tag/降噪@@"><span class='glyphicon glyphicon-tag'></span> 降噪@@</a> </li> </ul> <!-- END OUTPUT from 'sites/all/themes/Murata/templates/field--field-keywords--article.tpl.php' --> Tue, 01 Mar 2022 08:23:13 +0000 judy 100558152 at //www.300mbfims.com //www.300mbfims.com/content/2022/100558152.html#comments