KA78R05_Low_Dropout_Voltage_Regulator.fzp 4.4 KB

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  1. <?xml version="1.0" encoding="UTF-8"?>
  2. <module fritzingVersion="0.6.3b.08.16.5401" moduleId="054b3d1b56ef5470113b3e56d5dfc532">
  3. <author>Carlos Hansen Mendoza</author>
  4. <title>KA78R05 Low Dropout Voltage Regulator</title>
  5. <label>VREG</label>
  6. <date>2011-11-15</date>
  7. <tags>
  8. <tag>Voltage Regulator</tag>
  9. <tag>Low Dropout Voltage Regulator</tag>
  10. <tag>LDO</tag>
  11. <tag>KA78R05</tag>
  12. </tags>
  13. <properties>
  14. <property name="family">Voltage Regulator</property>
  15. <property name="maximum dropout">0.5V</property>
  16. <property name="output voltage">5V</property>
  17. <property name="output current">1A</property>
  18. <property name="manufacturer">Fairchild</property>
  19. <property name="part number">KA78R05</property>
  20. <property name="package">TO-220F-4L</property>
  21. </properties>
  22. <description>A low-dropout or LDO regulator is a DC linear voltage regulator which can operate with a very small input–output differential voltage. The advantages of a low dropout voltage include a lower minimum operating voltage, higher efficiency operation and lower heat dissipation. [Wikipedia]</description>
  23. <views>
  24. <iconView>
  25. <layers image="icon/low_dropout_voltage_regulator_TO220_4_icon.svg">
  26. <layer layerId="icon"/>
  27. </layers>
  28. </iconView>
  29. <breadboardView>
  30. <layers image="breadboard/low_dropout_voltage_regulator_TO220_4_breadboard.svg">
  31. <layer layerId="breadboard"/>
  32. </layers>
  33. </breadboardView>
  34. <schematicView>
  35. <layers image="schematic/low_dropout_voltage_regulator_TO220_4_schematic.svg">
  36. <layer layerId="schematic"/>
  37. </layers>
  38. </schematicView>
  39. <pcbView>
  40. <layers image="pcb/jumper4.svg">
  41. <layer layerId="copper0"/>
  42. <layer layerId="silkscreen"/>
  43. </layers>
  44. </pcbView>
  45. </views>
  46. <connectors>
  47. <connector id="connector3" type="male" name="EN">
  48. <description>ENABLE</description>
  49. <views>
  50. <breadboardView>
  51. <p layer="breadboard" svgId="connector3pin" legId="connector3leg"/>
  52. </breadboardView>
  53. <schematicView>
  54. <p layer="schematic" svgId="connector3pin" terminalId="connector3terminal"/>
  55. </schematicView>
  56. <pcbView>
  57. <p layer="copper0" svgId="connector3pin"/>
  58. </pcbView>
  59. </views>
  60. </connector>
  61. <connector id="connector0" type="male" name="VIN">
  62. <description>Input Voltage</description>
  63. <views>
  64. <breadboardView>
  65. <p layer="breadboard" svgId="connector0pin" legId="connector0leg"/>
  66. </breadboardView>
  67. <schematicView>
  68. <p layer="schematic" svgId="connector0pin" terminalId="connector0terminal"/>
  69. </schematicView>
  70. <pcbView>
  71. <p layer="copper0" svgId="connector0pin"/>
  72. </pcbView>
  73. </views>
  74. </connector>
  75. <connector id="connector1" type="male" name="VOUT">
  76. <description>Output Voltage</description>
  77. <views>
  78. <breadboardView>
  79. <p layer="breadboard" svgId="connector1pin" legId="connector1leg"/>
  80. </breadboardView>
  81. <schematicView>
  82. <p layer="schematic" svgId="connector1pin" terminalId="connector1terminal"/>
  83. </schematicView>
  84. <pcbView>
  85. <p layer="copper0" svgId="connector1pin"/>
  86. </pcbView>
  87. </views>
  88. </connector>
  89. <connector id="connector2" type="male" name="GND">
  90. <description>Ground</description>
  91. <views>
  92. <breadboardView>
  93. <p layer="breadboard" svgId="connector2pin" legId="connector2leg"/>
  94. </breadboardView>
  95. <schematicView>
  96. <p layer="schematic" svgId="connector2pin" terminalId="connector2terminal"/>
  97. </schematicView>
  98. <pcbView>
  99. <p layer="copper0" svgId="connector2pin"/>
  100. </pcbView>
  101. </views>
  102. </connector>
  103. </connectors>
  104. </module>