MPC8541EVTAPF Freescale Semiconductor, MPC8541EVTAPF Datasheet - Page 76

IC MPU POWERQUICC III 783-FCPBGA

MPC8541EVTAPF

Manufacturer Part Number
MPC8541EVTAPF
Description
IC MPU POWERQUICC III 783-FCPBGA
Manufacturer
Freescale Semiconductor
Series
PowerQUICC IIIr
Datasheets

Specifications of MPC8541EVTAPF

Processor Type
MPC85xx PowerQUICC III 32-Bit
Speed
833MHz
Voltage
1.2V
Mounting Type
Surface Mount
Package / Case
783-FCPBGA
Core Size
32 Bit
Program Memory Size
64KB
Cpu Speed
833MHz
Digital Ic Case Style
BGA
No. Of Pins
783
Supply Voltage Range
1.14V To 1.26V
Rohs Compliant
Yes
Family Name
MPC85XX
Device Core
PowerQUICC III
Device Core Size
32b
Frequency (max)
833MHz
Instruction Set Architecture
RISC
Supply Voltage 1 (typ)
1.2V
Operating Supply Voltage (max)
1.26V
Operating Supply Voltage (min)
1.14V
Operating Temp Range
0C to 105C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
783
Package Type
FCBGA
For Use With
MPC8548CDS - DEV TOOLS CDS FOR 8548CWH-PPC-8540N-VE - KIT EVAL SYSTEM MPC8540
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Lead Free Status / Rohs Status
Compliant

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System Design Information
17 System Design Information
This section provides electrical and thermal design recommendations for successful application of the
MPC8541E.
17.1
The MPC8541E includes five PLLs.
17.2
Each of the PLLs listed above is provided with power through independent power supply pins (AV
AV
and preferably these voltages are derived directly from V
as the following.
There are a number of ways to reliably provide power to the PLLs, but the recommended solution is to
provide five independent filter circuits as illustrated in
providing independent filters to each PLL the opportunity to cause noise injection from one PLL to the
other is reduced.
This circuit is intended to filter noise in the PLLs resonant frequency range from a 500 kHz to 10 MHz
range. It should be built with surface mount capacitors with minimum Effective Series Inductance (ESL).
Consistent with the recommendations of Dr. Howard Johnson in High Speed Digital Design: A Handbook
of Black Magic (Prentice Hall, 1993), multiple small capacitors of equal value are recommended over a
single large value capacitor.
Each circuit should be placed as close as possible to the specific AV
noise coupled from nearby circuits. It should be possible to route directly from the capacitors to the AV
pin, which is on the periphery of the 783 FC-PBGA footprint, without the inductance of vias.
76
DD
1. The platform PLL (AV
2. The e500 Core PLL (AV
3. The CPM PLL (AV
4. The PCI1 PLL (AV
5. The PCI2 PLL (AV
2, AV
input. The frequency ratio between the platform and SYSCLK is selected using the platform PLL
ratio configuration bits as described in
frequency ratio between the e500 core clock and the platform clock is selected using the e500
PLL ratio configuration bits as described in
internally by the CPM block. The ratio between the CPM PLL and the platform clock is fixed and
not under user control.
MPC8541E PowerQUICC™ III Integrated Communications Processor Hardware Specification, Rev. 4.2
System Clocking
PLL Power Supply Filtering
DD
3, AV
DD
4, and AV
DD
DD
DD
4) generates the clocking for the first PCI bus.
5) generates the clock for the second PCI bus.
3) is slaved to the platform clock and is used to generate clocks used
DD
DD
DD
1
)
2
generates the platform clock from the externally supplied SYSCLK
5 respectively). The AV
)
generates the core clock as a slave to the platform clock. The
Section 15.2, “Platform/System PLL
Section 15.3, “e500 Core PLL
Figure
DD
DD
through a low frequency filter scheme such
49, one to each of the five AV
level should always be equivalent to V
DD
pin being supplied to minimize
Ratio.”
Ratio.”
Freescale Semiconductor
DD
pins. By
DD
DD
1,
DD
,

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