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KMPC862TCZQ80B

KMPC862TCZQ80B

Product Overview

  • Category: Integrated Circuit (IC)
  • Use: Embedded Processor
  • Characteristics: High-performance, Power-efficient
  • Package: QFP (Quad Flat Package)
  • Essence: Advanced Microprocessor
  • Packaging/Quantity: Individual unit packaging

Specifications

  • Manufacturer: Freescale Semiconductor
  • Model Number: KMPC862TCZQ80B
  • Architecture: PowerPC
  • Clock Speed: 80 MHz
  • Data Bus Width: 32-bit
  • Address Bus Width: 32-bit
  • Cache Memory: 8 KB Instruction Cache, 8 KB Data Cache
  • Operating Voltage: 3.3V
  • Operating Temperature Range: -40°C to +85°C
  • Package Type: Plastic Quad Flat Package (PQFP)
  • Pin Count: 256

Detailed Pin Configuration

The KMPC862TCZQ80B has a total of 256 pins. The pin configuration is as follows:

  1. VDD
  2. VSS
  3. XTALIN
  4. XTALOUT
  5. RESET
  6. IRQ0
  7. IRQ1
  8. IRQ2
  9. IRQ3
  10. IRQ4
  11. IRQ5
  12. IRQ6
  13. IRQ7
  14. IRQ8
  15. IRQ9
  16. IRQ10
  17. IRQ11
  18. IRQ12
  19. IRQ13
  20. IRQ14
  21. IRQ15
  22. IRQ16
  23. IRQ17
  24. IRQ18
  25. IRQ19
  26. IRQ20
  27. IRQ21
  28. IRQ22
  29. IRQ23
  30. IRQ24
  31. IRQ25
  32. IRQ26
  33. IRQ27
  34. IRQ28
  35. IRQ29
  36. IRQ30
  37. IRQ31
  38. IRQ32
  39. IRQ33
  40. IRQ34
  41. IRQ35
  42. IRQ36
  43. IRQ37
  44. IRQ38
  45. IRQ39
  46. IRQ40
  47. IRQ41
  48. IRQ42
  49. IRQ43
  50. IRQ44
  51. IRQ45
  52. IRQ46
  53. IRQ47
  54. IRQ48
  55. IRQ49
  56. IRQ50
  57. IRQ51
  58. IRQ52
  59. IRQ53
  60. IRQ54
  61. IRQ55
  62. IRQ56
  63. IRQ57
  64. IRQ58
  65. IRQ59
  66. IRQ60
  67. IRQ61
  68. IRQ62
  69. IRQ63
  70. IRQ64
  71. IRQ65
  72. IRQ66
  73. IRQ67
  74. IRQ68
  75. IRQ69
  76. IRQ70
  77. IRQ71
  78. IRQ72
  79. IRQ73
  80. IRQ74
  81. IRQ75
  82. IRQ76
  83. IRQ77
  84. IRQ78
  85. IRQ79
  86. IRQ80
  87. IRQ81
  88. IRQ82
  89. IRQ83
  90. IRQ84
  91. IRQ85
  92. IRQ86
  93. IRQ87
  94. IRQ88
  95. IRQ89
  96. IRQ90
  97. IRQ91
  98. IRQ92
  99. IRQ93
  100. IRQ94
  101. IRQ95
  102. IRQ96
  103. IRQ97
  104. IRQ98
  105. IRQ99
  106. IRQ100
  107. IRQ101
  108. IRQ102
  109. IRQ103
  110. IRQ104
  111. IRQ105
  112. IRQ106
  113. IRQ107
  114. IRQ108
  115. IRQ109
  116. IRQ110
  117. IRQ111
  118. IRQ112
  119. IRQ113
  120. IRQ114
  121. IRQ115
  122. IRQ116
  123. IRQ117
  124. IRQ118
  125. IRQ119
  126. IRQ120
  127. IRQ121
  128. IRQ122
  129. IRQ123
  130. IRQ124
  131. IRQ125
  132. IRQ126
  133. IRQ127
  134. IRQ128
  135. IRQ129
  136. IRQ130
  137. IRQ131
  138. IRQ132
  139. IRQ133
  140. IRQ134
  141. IRQ135
  142. IRQ136
  143. IRQ137
  144. IRQ138
  145. IRQ139
  146. IRQ140
  147. IRQ141
  148. IRQ142
  149. IRQ143
  150. IRQ144
  151. IRQ145
  152. IRQ146
  153. IRQ147
  154. IRQ148

قم بإدراج 10 أسئلة وإجابات شائعة تتعلق بتطبيق KMPC862TCZQ80B في الحلول التقنية

Sure! Here are 10 common questions and answers related to the application of KMPC862TCZQ80B in technical solutions:

  1. Question: What is KMPC862TCZQ80B?
    Answer: KMPC862TCZQ80B is a microprocessor chip manufactured by Freescale Semiconductor (now NXP Semiconductors). It is commonly used in embedded systems and technical solutions.

  2. Question: What are the key features of KMPC862TCZQ80B?
    Answer: Some key features of KMPC862TCZQ80B include a PowerPC architecture, clock speed of 80 MHz, integrated memory management unit (MMU), multiple communication interfaces, and support for various peripherals.

  3. Question: In what types of technical solutions can KMPC862TCZQ80B be used?
    Answer: KMPC862TCZQ80B can be used in a wide range of technical solutions, including industrial automation, networking equipment, telecommunications systems, automotive electronics, and more.

  4. Question: What programming languages are commonly used to develop applications for KMPC862TCZQ80B?
    Answer: C and C++ are commonly used programming languages for developing applications for KMPC862TCZQ80B. These languages provide low-level control and efficient code execution.

  5. Question: Can KMPC862TCZQ80B handle real-time processing requirements?
    Answer: Yes, KMPC862TCZQ80B is capable of handling real-time processing requirements due to its high clock speed and efficient architecture. However, the overall system design and software implementation also play a crucial role in meeting real-time constraints.

  6. Question: Does KMPC862TCZQ80B support operating systems?
    Answer: Yes, KMPC862TCZQ80B supports various operating systems, including embedded Linux, VxWorks, and QNX. The choice of the operating system depends on the specific requirements of the technical solution.

  7. Question: Can KMPC862TCZQ80B be used in low-power applications?
    Answer: While KMPC862TCZQ80B is not specifically designed for low-power applications, it can still be used in such scenarios by implementing power-saving techniques like clock gating, dynamic voltage scaling, and optimizing software algorithms.

  8. Question: What are the communication interfaces available on KMPC862TCZQ80B?
    Answer: KMPC862TCZQ80B provides various communication interfaces, including Ethernet, UART (serial), SPI (Serial Peripheral Interface), I2C (Inter-Integrated Circuit), and CAN (Controller Area Network).

  9. Question: Is KMPC862TCZQ80B suitable for real-time data processing and analysis?
    Answer: Yes, KMPC862TCZQ80B can handle real-time data processing and analysis tasks efficiently due to its high clock speed, integrated memory management unit, and support for communication interfaces.

  10. Question: Are there any development tools or evaluation boards available for KMPC862TCZQ80B?
    Answer: Yes, there are development tools and evaluation boards available for KMPC862TCZQ80B, which help in software development, debugging, and testing. Some popular options include CodeWarrior Development Studio, JTAG debuggers, and evaluation boards from NXP Semiconductors.