MC9S12DP512CPVE Freescale, MC9S12DP512CPVE Datasheet - Page 16

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MC9S12DP512CPVE

Manufacturer Part Number
MC9S12DP512CPVE
Description
Manufacturer
Freescale
Datasheet

Specifications of MC9S12DP512CPVE

Cpu Family
HCS12
Device Core Size
16b
Frequency (max)
25MHz
Interface Type
CAN/I2C/SCI/SPI
Total Internal Ram Size
14KB
Number Of Timers - General Purpose
8
Operating Supply Voltage (typ)
2.5/5V
Operating Supply Voltage (max)
2.75/5.25V
Operating Supply Voltage (min)
2.35/4.5V
On-chip Adc
2(8-chx10-bit)
Instruction Set Architecture
CISC
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
112
Package Type
LQFP
Program Memory Type
Flash
Program Memory Size
512KB
Lead Free Status / RoHS Status
Compliant

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MC9S12DP512 Device Guide V01.25
The following items should be considered when using a derivative (Table 0-1):
Registers
– Do not write or read CAN0 registers (after reset: address range $0140 - $017F), if using a
– Do not write or read CAN1registers (after reset: address range $0180 - $01BF), if using a
– Do not write or read CAN2 registers (after reset: address range $01C0 - $01FF), if using a
– Do not write or read CAN3 registers (after reset: address range $0200 - $023F), if using a
– Do not write or read CAN4 registers (after reset: address range $0280 - $02BF), if using a
– Do not write or read BDLC registers (after reset: address range $00E8 - $00EF), if using a
Interrupts
– Fill the four CAN0 interrupt vectors ($FFB0 - $FFB7) according to your coding policies for
– Fill the four CAN1 interrupt vectors ($FFA8 - $FFAF) according to your coding policies for
– Fill the four CAN2 interrupt vectors ($FFA0 - $FFA7) according to your coding policies for
– Fill the four CAN3 interrupt vectors ($FF98 - $FF9F) according to your coding policies for
– Fill the four CAN4 interrupt vectors ($FF90 - $FF97) according to your coding policies for
– Fill the BDLC interrupt vector ($FFC2, $FFC3) according to your coding policies for unused
Ports
– The CAN0 pin functionality (TXCAN0, RXCAN0) is not available on port PJ7, PJ6, PM5,
– The CAN1 pin functionality (TXCAN1, RXCAN1) is not available on port PM3 and PM2, if
– The CAN2 pin functionality (TXCAN2, RXCAN2) is not available on port PM5 and PM4, if
– The CAN3 pin functionality (TXCAN3, RXCAN3) is not available on port PM7 and PM6, if
derivative without CAN0.
derivative without CAN1.
derivative without CAN2.
derivative without CAN3.
derivative without CAN4.
derivative without BDLC.
unused interrupts, if using a derivative without CAN0.
unused interrupts, if using a derivative without CAN1.
unused interrupts, if using a derivative without CAN2.
unused interrupts, if using a derivative without CAN3.
unused interrupts, if using a derivative without CAN4.
interrupts, if using a derivative without BDLC.
PM4, PM3, PM2, PM1 and PM0, if using a derivative without CAN0.
using a derivative without CAN1.
using a derivative without CAN2.
using a derivative without CAN3.

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