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<?xml-stylesheet type="text/xsl" href="https://devzone.nordicsemi.com/cfs-file/__key/system/syndication/rss.xsl" media="screen"?><rss version="2.0" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:slash="http://purl.org/rss/1.0/modules/slash/" xmlns:wfw="http://wellformedweb.org/CommentAPI/" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>How can I escape 32K crystal in nRF52832</title><link>https://devzone.nordicsemi.com/f/nordic-q-a/57414/how-can-i-escape-32k-crystal-in-nrf52832</link><description>Hi, 
 I am porting a BLE program in nRF52832 EVB, and it can work correct. 
 The system will not work when I want to remove 32KHz crystal from my own real board. 
 Would you please tell me how to modify my program to escape 32KHz crystal? 
 
 Thank you</description><dc:language>en-US</dc:language><generator>Telligent Community 13</generator><lastBuildDate>Wed, 05 Feb 2020 09:03:48 GMT</lastBuildDate><atom:link rel="self" type="application/rss+xml" href="https://devzone.nordicsemi.com/f/nordic-q-a/57414/how-can-i-escape-32k-crystal-in-nrf52832" /><item><title>RE: How can I escape 32K crystal in nRF52832</title><link>https://devzone.nordicsemi.com/thread/232757?ContentTypeID=1</link><pubDate>Wed, 05 Feb 2020 09:03:48 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:ff9a39bb-98c9-4dd2-a138-37e90d569ff8</guid><dc:creator>Vidar Berg</dc:creator><description>&lt;p&gt;Hi,&lt;/p&gt;
&lt;p&gt;You can apply the following settings in&amp;nbsp; sdk_config.h to make the Softdevice used the internal RC oscillator:&lt;/p&gt;
&lt;p&gt;&lt;pre class="ui-code" data-mode="c_cpp"&gt;// &amp;lt;/h&amp;gt; 
//==========================================================

// &amp;lt;h&amp;gt; Clock - SoftDevice clock configuration

//==========================================================
// &amp;lt;o&amp;gt; NRF_SDH_CLOCK_LF_SRC  - SoftDevice clock source.
 
// &amp;lt;0=&amp;gt; NRF_CLOCK_LF_SRC_RC 
// &amp;lt;1=&amp;gt; NRF_CLOCK_LF_SRC_XTAL 
// &amp;lt;2=&amp;gt; NRF_CLOCK_LF_SRC_SYNTH 

#ifndef NRF_SDH_CLOCK_LF_SRC
#define NRF_SDH_CLOCK_LF_SRC 0
#endif

// &amp;lt;o&amp;gt; NRF_SDH_CLOCK_LF_RC_CTIV - SoftDevice calibration timer interval. 
#ifndef NRF_SDH_CLOCK_LF_RC_CTIV
#define NRF_SDH_CLOCK_LF_RC_CTIV 16
#endif

// &amp;lt;o&amp;gt; NRF_SDH_CLOCK_LF_RC_TEMP_CTIV - SoftDevice calibration timer interval under constant temperature. 
// &amp;lt;i&amp;gt; How often (in number of calibration intervals) the RC oscillator shall be calibrated
// &amp;lt;i&amp;gt;  if the temperature has not changed.

#ifndef NRF_SDH_CLOCK_LF_RC_TEMP_CTIV
#define NRF_SDH_CLOCK_LF_RC_TEMP_CTIV 2
#endif

// &amp;lt;o&amp;gt; NRF_SDH_CLOCK_LF_ACCURACY  - External clock accuracy used in the LL to compute timing.
 
// &amp;lt;0=&amp;gt; NRF_CLOCK_LF_ACCURACY_250_PPM 
// &amp;lt;1=&amp;gt; NRF_CLOCK_LF_ACCURACY_500_PPM 
// &amp;lt;2=&amp;gt; NRF_CLOCK_LF_ACCURACY_150_PPM 
// &amp;lt;3=&amp;gt; NRF_CLOCK_LF_ACCURACY_100_PPM 
// &amp;lt;4=&amp;gt; NRF_CLOCK_LF_ACCURACY_75_PPM 
// &amp;lt;5=&amp;gt; NRF_CLOCK_LF_ACCURACY_50_PPM 
// &amp;lt;6=&amp;gt; NRF_CLOCK_LF_ACCURACY_30_PPM 
// &amp;lt;7=&amp;gt; NRF_CLOCK_LF_ACCURACY_20_PPM 
// &amp;lt;8=&amp;gt; NRF_CLOCK_LF_ACCURACY_10_PPM 
// &amp;lt;9=&amp;gt; NRF_CLOCK_LF_ACCURACY_5_PPM 
// &amp;lt;10=&amp;gt; NRF_CLOCK_LF_ACCURACY_2_PPM 
// &amp;lt;11=&amp;gt; NRF_CLOCK_LF_ACCURACY_1_PPM 

#ifndef NRF_SDH_CLOCK_LF_ACCURACY
#define NRF_SDH_CLOCK_LF_ACCURACY 1
#endif

// &amp;lt;/h&amp;gt; &lt;/pre&gt;&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item></channel></rss>