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MPC8536BVTATH Datenblatt(PDF) 114 Page - Freescale Semiconductor, Inc |
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MPC8536BVTATH Datenblatt(HTML) 114 Page - Freescale Semiconductor, Inc |
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114 / 128 page ![]() MPC8536E PowerQUICC™ III Integrated Processor Hardware Specifications, Rev. 2 System Clocking Freescale Semiconductor 114 Figure 74 depicts the primary heat transfer path for a package with an attached heat sink mounted to a printed-circuit board. Figure 74. Package with Heat Sink Mounted to a Printed-Circuit Board The heat sink removes most of the heat from the device for most applications. Heat generated on the active side of the chip is conducted through the silicon and through the heat sink attach material (or thermal interface material), and finally to the heat sink. The junction-to-case thermal resistance is low enough that the heat sink attach material and heat sink thermal resistance are the dominant terms. 2.24.3.2 Thermal Interface Materials A thermal interface material is required at the package-to-heat sink interface to minimize the thermal contact resistance. The performance of thermal interface materials improves with increased contact pressure. This performance characteristic chart is generally provided by the thermal interface vendors. 3 Hardware Design Considerations This section provides electrical and thermal design recommendations for successful application of the MPC8536E. 3.1 System Clocking This device includes seven PLLs: • The platform PLL generates the platform clock from the externally supplied SYSCLK input. The frequency ratio between the platform and SYSCLK is selected using the platform PLL ratio configuration bits as described in Section 2.23.2, “CCB/SYSCLK PLL Ratio.” • The e500 core PLL generates the core clock as a slave to the platform clock. The frequency ratio between the e500 core clock and the platform clock is selected using the e500 PLL ratio configuration bits as described in Section 2.23.3, “e500 Core PLL Ratio/” • The PCI PLL generates the clocking for the PCI bus • The local bus PLL generates the clock for the local bus. • There is a PLL for the SerDes1 block to be used for PCI Express interface • There is a PLL for the SerDes2 block to be used for SGMII and SATA interfaces. • The DDR PLL generates the DDR clock from the externally supplied DDRCLK input in asynchronous mode. The frequency ratio between the DDR clock and DDRCLK is described in Section 2.23.4, “DDR/DDRCLK PLL Ratio.” External Resistance External Resistance Internal Resistance Radiation Convection Radiation Convection Heat Sink Printed-Circuit Board Thermal Interface Material Package/Solder Spheres Die Junction Die/Package (Note the internal versus external package resistance) |
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