数据搜索系统,热门电子元器件搜索
  Chinese  ▼
ALLDATASHEETCN.COM

X  

MPC7445 数据表(PDF) 49 Page - Freescale Semiconductor, Inc

部件名 MPC7445
功能描述  RISC Microprocessor Hardware Specifications
PDF  64 Pages
Scroll/Zoom Zoom In 100%  Zoom Out
制造商  FREESCALE [Freescale Semiconductor, Inc]
网页  http://www.freescale.com
标志 FREESCALE - Freescale Semiconductor, Inc

MPC7445 数据表(HTML) 49 Page - Freescale Semiconductor, Inc

Back Button MPC7445 Datasheet HTML 45Page - Freescale Semiconductor, Inc MPC7445 Datasheet HTML 46Page - Freescale Semiconductor, Inc MPC7445 Datasheet HTML 47Page - Freescale Semiconductor, Inc MPC7445 Datasheet HTML 48Page - Freescale Semiconductor, Inc MPC7445 Datasheet HTML 49Page - Freescale Semiconductor, Inc MPC7445 Datasheet HTML 50Page - Freescale Semiconductor, Inc MPC7445 Datasheet HTML 51Page - Freescale Semiconductor, Inc MPC7445 Datasheet HTML 52Page - Freescale Semiconductor, Inc MPC7445 Datasheet HTML 53Page - Freescale Semiconductor, Inc Next Button
Zoom Inzoom in Zoom Outzoom out
 49 / 64 page
background image
MPC7455 RISC Microprocessor Hardware Specifications, Rev. 4.1
Freescale Semiconductor
49
System Design Information
Figure 24. PLL Power Supply Filter Circuit
9.3 Decoupling Recommendations
Due to the MPC7455 dynamic power management feature, large address and data buses, and high operating
frequencies, the MPC7455 can generate transient power surges and high frequency noise in its power supply,
especially while driving large capacitive loads. This noise must be prevented from reaching other components in the
MPC7455 system, and the MPC7455 itself requires a clean, tightly regulated source of power. Therefore, it is
recommended that the system designer place at least one decoupling capacitor at each VDD, OVDD, and GVDD pin
of the MPC7455. It is also recommended that these decoupling capacitors receive their power from separate VDD,
OVDD/GVDD, and GND power planes in the PCB, utilizing short traces to minimize inductance.
These capacitors should have a value of 0.01 or 0.1 µF. Only ceramic surface mount technology (SMT) capacitors
should be used to minimize lead inductance, preferably 0508 or 0603 orientations where connections are made along
the length of the part. Consistent with the recommendations of Dr. Howard Johnson in High Speed Digital Design:
A Handbook of Black Magic (Prentice Hall, 1993) and contrary to previous recommendations for decoupling
Freescale microprocessors, multiple small capacitors of equal value are recommended over using multiple values of
capacitance.
In addition, it is recommended that there be several bulk storage capacitors distributed around the PCB, feeding the
VDD, GVDD, and OVDD planes, to enable quick recharging of the smaller chip capacitors. These bulk capacitors
should have a low equivalent series resistance (ESR) rating to ensure the quick response time necessary. They should
also be connected to the power and ground planes through two vias to minimize inductance. Suggested bulk
capacitors: 100–330 µ F (AVX TPS tantalum or Sanyo OSCON).
9.4 Connection Recommendations
To ensure reliable operation, it is highly recommended to connect unused inputs to an appropriate signal level.
Unused active low inputs should be tied to OVDD. Unused active high inputs should be connected to GND. All NC
(no-connect) signals must remain unconnected.
Power and ground connections must be made to all external VDD, OVDD, GVDD, and GND pins in the MPC7455.
If the L3 interface is not used, GVDD should be connected to the OVDD power plane, and L3VSEL should be
connected to BVSEL.
9.5 Output Buffer DC Impedance
The MPC7455 processor bus and L3 I/O drivers are characterized over process, voltage, and temperature. To
measure Z0, an external resistor is connected from the chip pad to OVDD or GND. Then, the value of each resistor
is varied until the pad voltage is OVDD/2 (see Figure 25).
The output impedance is the average of two components, the resistances of the pull-up and pull-down devices. When
data is held low, SW2 is closed (SW1 is open), and RN is trimmed until the voltage at the pad equals OVDD/2. RN
then becomes the resistance of the pull-down devices. When data is held high, SW1 is closed (SW2 is open), and
VDD
AVDD
10
2.2 µF
2.2 µF
GND
Low ESL Surface Mount Capacitors



Html Pages

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64


数据表 下载

Go To PDF Page


链接网址



ALLDATASHEET是否为您带来帮助?  [ DONATE ] 

关于 Alldatasheet   |   广告服务   |   联系我们   |   隐私政策   |   数据表链接    |   链接交换   |   制造商名单
All Rights Reserved©Alldatasheet.com


Mirror Sites
English : Alldatasheet.com  |   English : Alldatasheet.net  |   Chinese : Alldatasheetcn.com  |   German : Alldatasheetde.com  |   Japanese : Alldatasheet.jp
Russian : Alldatasheetru.com  |   Korean : Alldatasheet.co.kr  |   Spanish : Alldatasheet.es  |   French : Alldatasheet.fr  |   Italian : Alldatasheetit.com
Portuguese : Alldatasheetpt.com  |   Polish : Alldatasheet.pl  |   Vietnamese : Alldatasheet.vn
Indian : Alldatasheet.in  |   Mexican : Alldatasheet.com.mx  |   British : Alldatasheet.co.uk  |   New Zealand : Alldatasheet.co.nz
Family Site : ic2ic.com  |   icmetro.com