atlas-sientific_FLO-30 Circuit.fzp 11 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163
  1. <?xml version='1.0' encoding='UTF-8'?>
  2. <module fritzingVersion="0.4.1b.07.17.4356" moduleId="atlas-sientific_FLO-30 Circuit" referenceFile="atlas-sientific_FLO-30 Circuit.fzp">
  3. <author>Atlas Scientific </author>
  4. <title>FLO-30 Circuit</title>
  5. <label>FLO-30 Circuit</label>
  6. <date>Thu Jul 18 2013</date>
  7. <tags/>
  8. <properties>
  9. <property name="family">Flow</property>
  10. <property name="layer"></property>
  11. <property name="variant">variant 1</property>
  12. <property name="part number"></property>
  13. </properties>
  14. <description>&lt;!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
  15. &lt;html>&lt;head>&lt;meta name="qrichtext" content="1" />&lt;style type="text/css">
  16. p, li { white-space: pre-wrap; }
  17. &lt;/style>&lt;/head>&lt;body style=" font-family:'MS Shell Dlg 2'; font-size:8.25pt; font-weight:400; font-style:normal;">
  18. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">Reading liquid flow may not appear to be such a challenge to the embedded systems engineer. It certainly seems easy enough to do, however, as the saying goes, 'the devil is in the details'. In order to achieve true scientific grade liquid flow readings you simply cannot just count pulses.&lt;/span>&lt;/p>
  19. &lt;p style="-qt-paragraph-type:empty; margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px; font-size:8pt;">&lt;br />&lt;/p>
  20. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">The FLO-30 Flow Meter Circuit has been designed around quality components. The flow meters that the FLO-30 can interface with are of the highest quality. The firmware on the FLO-30 Flow Meter Circuit is a very fast, real time operating system capable of managing the complex timing events needed to accurately read and report flow rates without ever missing a beat.&lt;/span>&lt;/p>
  21. &lt;p style="-qt-paragraph-type:empty; margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px; font-size:8pt;">&lt;br />&lt;/p>
  22. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Supports 3 types of flow meter&lt;/span>&lt;/p>
  23. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• TurboFlow-226000 Polypropylene: 800 ml/min to 7.6 LPM&lt;/span>&lt;/p>
  24. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;"> Accurate to ± 1mL/min&lt;/span>&lt;/p>
  25. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• RotoFlow-155421 Polypropylene: 15.14 LPM to 75.70 LPM&lt;/span>&lt;/p>
  26. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;"> Accurate to ± 5mL/min&lt;/span>&lt;/p>
  27. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• RotoFlow-194761 Brass: 11.35 LPM to 113.56 LPM&lt;/span>&lt;/p>
  28. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;"> Accurate to ± 15mL/min&lt;/span>&lt;/p>
  29. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Scientific grade results&lt;/span>&lt;/p>
  30. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Food Safe&lt;/span>&lt;/p>
  31. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Gasoline Safe&lt;/span>&lt;/p>
  32. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Diesel Safe&lt;/span>&lt;/p>
  33. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Kerosene Safe&lt;/span>&lt;/p>
  34. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Calculates total volume flow, L/minute, L/hour&lt;/span>&lt;/p>
  35. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Enable/disable flow meter&lt;/span>&lt;/p>
  36. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Flow indicator LED blinks with each turn of the flow meter&lt;/span>&lt;/p>
  37. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Built in total volume flow alarm&lt;/span>&lt;/p>
  38. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Single reading or continuous reading modes&lt;/span>&lt;/p>
  39. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Simple asynchronous serial connectivity (voltage swing 0-VCC)&lt;/span>&lt;/p>
  40. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Simple instruction set consisting of only 12 commands&lt;/span>&lt;/p>
  41. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Micro footprint circuitry&lt;/span>&lt;/p>
  42. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Debugging LED's&lt;/span>&lt;/p>
  43. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• 2.5V to 5.5V operational voltage&lt;/span>&lt;/p>
  44. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Low power consumption&lt;/span>&lt;/p>
  45. &lt;p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">&lt;span style=" font-size:8pt;">• Dimensions: 14mm X 20.3mm (0.55&amp;quot; X0.79&amp;quot;)&lt;/span>&lt;/p>&lt;/body>&lt;/html></description>
  46. <views>
  47. <iconView>
  48. <layers image="icon/atlas-sientific_FLO-30 Circuit_icon.svg">
  49. <layer layerId="icon"/>
  50. </layers>
  51. </iconView>
  52. <schematicView>
  53. <layers image="schematic/atlas-sientific_FLO-30 Circuit_schematic.svg">
  54. <layer layerId="schematic"/>
  55. </layers>
  56. </schematicView>
  57. <breadboardView>
  58. <layers image="breadboard/atlas-sientific_FLO-30 Circuit_breadboard.svg">
  59. <layer layerId="breadboard"/>
  60. </layers>
  61. </breadboardView>
  62. <pcbView>
  63. <layers image="pcb/atlas-sientific_FLO-30 Circuit_pcb.svg">
  64. <layer layerId="copper0"/>
  65. <layer layerId="silkscreen"/>
  66. <layer layerId="copper1"/>
  67. </layers>
  68. </pcbView>
  69. </views>
  70. <connectors>
  71. <connector type="male" id="connector0" name="GND">
  72. <description>Supply Ground</description>
  73. <views>
  74. <breadboardView>
  75. <p svgId="connector0pin" layer="breadboard"/>
  76. </breadboardView>
  77. <schematicView>
  78. <p svgId="connector0pin" layer="schematic" terminalId="connector0terminal"/>
  79. </schematicView>
  80. <pcbView>
  81. <p svgId="connector0pin" layer="copper1"/>
  82. <p svgId="connector0pin" layer="copper0"/>
  83. </pcbView>
  84. </views>
  85. </connector>
  86. <connector type="male" id="connector1" name="TX">
  87. <description>Data Out</description>
  88. <views>
  89. <breadboardView>
  90. <p svgId="connector1pin" layer="breadboard"/>
  91. </breadboardView>
  92. <schematicView>
  93. <p svgId="connector1pin" layer="schematic" terminalId="connector1terminal"/>
  94. </schematicView>
  95. <pcbView>
  96. <p svgId="connector1pin" layer="copper1"/>
  97. <p svgId="connector1pin" layer="copper0"/>
  98. </pcbView>
  99. </views>
  100. </connector>
  101. <connector type="male" id="connector2" name="RX">
  102. <description>Data In</description>
  103. <views>
  104. <breadboardView>
  105. <p svgId="connector2pin" layer="breadboard"/>
  106. </breadboardView>
  107. <schematicView>
  108. <p svgId="connector2pin" layer="schematic" terminalId="connector2terminal"/>
  109. </schematicView>
  110. <pcbView>
  111. <p svgId="connector2pin" layer="copper1"/>
  112. <p svgId="connector2pin" layer="copper0"/>
  113. </pcbView>
  114. </views>
  115. </connector>
  116. <connector type="male" id="connector3" name="Vcc">
  117. <description>Supply Voltage</description>
  118. <views>
  119. <breadboardView>
  120. <p svgId="connector3pin" layer="breadboard"/>
  121. </breadboardView>
  122. <schematicView>
  123. <p svgId="connector3pin" layer="schematic"/>
  124. </schematicView>
  125. <pcbView>
  126. <p svgId="connector3pin" layer="copper1"/>
  127. <p svgId="connector3pin" layer="copper0"/>
  128. </pcbView>
  129. </views>
  130. </connector>
  131. <connector type="male" id="connector4" name="PRB">
  132. <description>Probe (Sensor)</description>
  133. <views>
  134. <breadboardView>
  135. <p svgId="connector4pin" layer="breadboard"/>
  136. </breadboardView>
  137. <schematicView>
  138. <p svgId="connector4pin" layer="schematic"/>
  139. </schematicView>
  140. <pcbView>
  141. <p svgId="connector4pin" layer="copper1"/>
  142. <p svgId="connector4pin" layer="copper0"/>
  143. </pcbView>
  144. </views>
  145. </connector>
  146. <connector type="male" id="connector5" name="GND">
  147. <description>Supply Ground</description>
  148. <views>
  149. <breadboardView>
  150. <p svgId="connector5pin" layer="breadboard"/>
  151. </breadboardView>
  152. <schematicView>
  153. <p svgId="connector5pin" layer="schematic"/>
  154. </schematicView>
  155. <pcbView>
  156. <p svgId="connector5pin" layer="copper1"/>
  157. <p svgId="connector5pin" layer="copper0"/>
  158. </pcbView>
  159. </views>
  160. </connector>
  161. </connectors>
  162. <url>https://www.atlas-scientific.com/product_pages/embedded/flo-30.html</url>
  163. </module>