MCF5407AI220 Freescale Semiconductor, MCF5407AI220 Datasheet - Page 86

IC MPU 32B 220MHZ COLDF 208-FQFP

MCF5407AI220

Manufacturer Part Number
MCF5407AI220
Description
IC MPU 32B 220MHZ COLDF 208-FQFP
Manufacturer
Freescale Semiconductor
Series
MCF540xr
Datasheets

Specifications of MCF5407AI220

Core Processor
Coldfire V4
Core Size
32-Bit
Speed
220MHz
Connectivity
EBI/EMI, I²C, UART/USART
Peripherals
DMA, WDT
Number Of I /o
16
Program Memory Type
ROMless
Ram Size
4K x 8
Voltage - Supply (vcc/vdd)
1.65 V ~ 3.6 V
Oscillator Type
External
Operating Temperature
0°C ~ 70°C
Package / Case
208-FQFP
Maximum Clock Frequency
220 MHz
Operating Supply Voltage
1.8 V, 3.3 V
Maximum Operating Temperature
+ 105 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
0 C
Program Memory Size
24KB
Cpu Speed
220MHz
Embedded Interface Type
I2C, UART
Digital Ic Case Style
FQFP
No. Of Pins
208
Supply Voltage Range
3.3V
Rohs Compliant
Yes
For Use With
M5407C3 - KIT EVAL FOR MCF5407 W/ETHERNET
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-
Program Memory Size
-
Data Converters
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

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ADDI
ADDQ
ADDX
AND
ANDI
ASL
ASR
Bcc
BCHG
BCLR
BRA
BSET
BSR
BTST
CLR
CMP
CMPA
CMPI
DIVS
DIVU
EOR
EORI
EXT
EXTB
HALT
JMP
JSR
LEA
Instruction
Instruction Set Summary
2-20
1
#<data>,Dx
#<data>,<ea>x
Dy,Dx
Dy,<ea>x
<ea>y,Dx
#<data>,Dx
Dy,Dx
#<data>,Dx
Dy,Dx
#<data>,Dx
<label>
Dy,<ea>x
#<data>,<ea-1>x
Dy,<ea>x
#<data>,<ea-1>x
<label>
Dy,<ea>x
#<data>,<ea-1>x
<label>
Dy,<ea>x
#<data>,<ea-1>x
<ea>y,Dx
<ea>y,Ax
<ea>y,Dx
<ea>y,Dx
<ea-1>y,Dx
<ea>y,Dx
<ea-1>y,Dx
Dy,<ea>x
Dy,<ea>x
#<data>,Dx
#<data>,Dx
Dx
None
<ea-3>y
<ea-3>y
<ea-3>y,Ax
Operand Syntax
Table 2-8. User-Level Instruction Set Summary (Continued)
.L
.L
.L
.L
.L
.L
.L
.L
.L
.L
.B,.W,.L
.B,.L
.B,.L
.B,.L
.B,.L
.B,.W,.L
.B,.L
.B,.L
.B,.W,.L
.B,.L
.B,.L
.B,.W,.L
.B,.W,.L
.W,.L
.B,.W,.L
.W
.L
.W
.L
.L
.L
.B →.W
.W →.L
.B →.L
Unsized
Unsized
Unsized
.L
Operand Size
MCF5407 User’s Manual
Immediate data + destination → destination
Immediate data + destination → destination
Source + destination + X → destination
Source & destination → destination
Immediate data & destination → destination
X/C ← (Dx << Dy) ← 0
X/C ← (Dx << #<data>) ← 0
MSB → (Dx >> Dy) → X/C
MSB → (Dx >> #<data>) → X/C
If condition true, then PC + 2 + d
~(<bit number> of destination) → Z,
Bit of destination
~(<bit number> of destination) → Z;
0 → bit of destination
PC + 2 + d
~(<bit number> of destination) → Z;
1→ bit of destination
SP – 4 → SP; next sequential PC→ (SP); PC + 2 + d
~(<bit number> of destination) → Z
0 → destination
Destination – source
Destination – source
Destination – immediate data
Dx /<ea>y → Dx {16-bit remainder; 16-bit quotient}
Dx /<ea>y → Dx {32-bit quotient}
Signed operation
Dx /<ea>y → Dx {16-bit remainder; 16-bit quotient}
Dx /<ea>y → Dx {32-bit quotient}
Unsigned operation
Source ^ destination → destination
Immediate data ^ destination → destination
Sign-extended destination → destination
Sign-extended destination → destination
Enter halted state
Address of <ea> → PC
SP – 4 → SP; next sequential PC → (SP); <ea> → PC
<ea> → Ax
n
→ PC
Operation
n
→ PC
n
→ PC

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