MPC8349VVALFB Freescale Semiconductor, MPC8349VVALFB Datasheet - Page 43

IC MPU POWERQUICC II 672-TBGA

MPC8349VVALFB

Manufacturer Part Number
MPC8349VVALFB
Description
IC MPU POWERQUICC II 672-TBGA
Manufacturer
Freescale Semiconductor
Series
PowerQUICC II PROr
Datasheet

Specifications of MPC8349VVALFB

Processor Type
MPC83xx PowerQUICC II Pro 32-Bit
Speed
667MHz
Voltage
1.3V
Mounting Type
Surface Mount
Package / Case
672-TBGA
Processor Series
MPC8xxx
Core
e300
Data Bus Width
32 bit
Development Tools By Supplier
MPC8349E-MITXE
Maximum Clock Frequency
667 MHz
Maximum Operating Temperature
+ 105 C
Mounting Style
SMD/SMT
I/o Voltage
1.8 V, 2.5 V, 3.3 V
Minimum Operating Temperature
0 C
Family Name
MPC83xx
Device Core
PowerQUICC II Pro
Device Core Size
32b
Frequency (max)
667MHz
Instruction Set Architecture
RISC
Supply Voltage 1 (typ)
1.3V
Operating Supply Voltage (max)
1.36V
Operating Supply Voltage (min)
1.24V
Operating Temp Range
0C to 105C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
672
Package Type
TBGA
Core Size
32 Bit
Program Memory Size
64KB
Cpu Speed
667MHz
Embedded Interface Type
I2C, SPI, USB, UART
Digital Ic Case Style
TBGA
No. Of Pins
672
Rohs Compliant
Yes
For Use With
MPC8349E-MITX-GP - KIT REFERENCE PLATFORM MPC8349EMPC8349E-MITXE - BOARD REFERENCE FOR MPC8349MPC8349EA-MDS-PB - KIT MODULAR DEV SYSTEM MPC8349E
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

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Figure 26
Figure 27
Figure 28
Freescale Semiconductor
At recommended operating conditions (see
JTAG external clock to output high impedance:
Notes:
1. All outputs are measured from the midpoint voltage of the falling/rising edge of t
2. The symbols for timing specifications follow the pattern of t
3. TRST is an asynchronous level sensitive signal. The setup time is for test purposes only.
4. Non-JTAG signal input timing with respect to t
5. Non-JTAG signal output timing with respect to t
6. Guaranteed by design and characterization.
The output timings are measured at the pins. All output timings assume a purely resistive 50 Ω load (see
Time-of-flight delays must be added for trace lengths, vias, and connectors in the system.
and t
(JT) with respect to the time data input signals (D) reaching the valid state (V) relative to the t
to the high (H) state or setup time. Also, t
went invalid (X) relative to the t
based on three letters representing the clock of a particular function. For rise and fall times, the latter convention is used with
the appropriate letter: R (rise) or F (fall).
(first two letters of functional block)(reference)(state)(signal)(state)
provides the AC test load for TDO and the boundary-scan outputs of the MPC8349EA.
provides the JTAG clock input timing diagram.
provides the TRST timing diagram.
MPC8349EA PowerQUICC II Pro Integrated Host Processor Hardware Specifications, Rev. 12
External Clock
Table 41. JTAG AC Timing Specifications (Independent of CLKIN)
TRST
Parameter
JTAG
Output
JTG
Figure 26. AC Test Load for the JTAG Interface
Figure 27. JTAG Clock Input Timing Diagram
Boundary-scan data
clock reference (K) going to the high (H) state. In general, the clock reference symbol is
Table
VM
t
JTKHKL
JTDXKH
Figure 28. TRST Timing Diagram
2).
VM
VM = Midpoint Voltage (OV DD /2)
VM = Midpoint Voltage (OV DD /2)
TCLK
Z
t
JTG
TCLK
0
symbolizes JTAG timing (JT) with respect to the time data input signals (D)
= 50 Ω
TDO
.
VM
.
t
TRST
for outputs. For example, t
(first two letters of functional block)(signal)(state)(reference)(state)
Symbol
t
t
JTKLOZ
JTKLDZ
VM
2
R
L
VM
= 50 Ω
Min
TCLK
t
2
2
JTGR
to the midpoint of the signal in question.
JTDVKH
OV
DD
1
Max
symbolizes JTAG device timing
19
t
9
(continued)
JTG
JTGF
/2
clock reference (K) going
Unit
ns
Figure
for inputs
17).
Notes
5, 6
JTAG
43

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