参数资料
型号: MPC8569VTAQLJA
厂商: FREESCALE SEMICONDUCTOR INC
元件分类: 微控制器/微处理器
英文描述: RISC PROCESSOR, PBGA783
封装: 29 X 29 MM, 1 MM PITCH, PLASTIC, BGA-783
文件页数: 14/126页
文件大小: 2847K
代理商: MPC8569VTAQLJA
MPC8569E PowerQUICC III Integrated Processor Hardware Specifications, Rev. 0
Programmable Interrupt Controller (PIC)
Freescale Semiconductor
110
2.17.2
Timers AC Timing Specifications
The following table provides the timers input and output AC timing specifications.
The following figure provides the AC test load for the timers.
Figure 63. Timers AC Test Load
2.18
Programmable Interrupt Controller (PIC)
This section describes the DC and AC electrical specifications for the PIC of the MPC8569E.
2.18.1
PIC DC Electrical Characteristics
The following table provides the DC electrical characteristics for the external interrupt pins IRQ[0:6], IRQ[8:11] and IRQ_OUT
of the PIC, as well as the port interrupts of the QUICC Engine block.
Table 70. Timers Input AC Timing Specifications
For recommended operating conditions, see Table 3
Parameter
Symbol
Typ
Unit
Notes
Timers inputs—minimum pulse width
tTIWID
20
ns
1, 2
Notes:
1. Input specifications are measured from the 50% level of the signal to the 50% level of the rising edge of CLKIN. Timings are
measured at the pin.
2. Timers inputs and outputs are asynchronous to any visible clock. Timers outputs must be synchronized before use by any
external synchronous logic. Timers inputs are required to be valid for at least tTIWID ns to ensure proper operation.
Table 71. PIC DC Electrical Characteristics
For recommended operating conditions, see Table 3
Parameter
Symbol
Min
Max
Unit
Notes
Input high voltage
VIH
2—
V
1
Input low voltage
VIL
—0.8
V
1
Input current (OVIN = 0 V or OVIN = OVDD)IIN
—±40
μA2
Output high voltage (OVDD = min, IOH = –2 mA)
VOH
2.4
V
Output low voltage (OVDD = min, IOL = 2 mA)
VOL
—0.4
V
Note:
1. The min VILand max VIH values are based on the respective min and max OVIN values found in Table 3.
2. The symbol OVIN represents the input voltage of the supply. It is referenced in Table 3.
Output
Z0 = 50 Ω
OVDD/2
RL = 50 Ω
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