參數(shù)資料
型號: MPC8313EZQAFFB
廠商: Freescale Semiconductor
文件頁數(shù): 43/99頁
文件大?。?/td> 0K
描述: IC MPU POWERQUICC II PRO 516PBGA
標準包裝: 40
系列: MPC83xx
處理器類型: 32-位 MPC83xx PowerQUICC II Pro
速度: 333MHz
電壓: 0.95 V ~ 1.05 V
安裝類型: 表面貼裝
封裝/外殼: 516-BBGA 裸露焊盤
供應(yīng)商設(shè)備封裝: 516-PBGAPGE(27x27)
包裝: 托盤
配用: MPC8313E-RDB-ND - BOARD PROCESSOR
MPC8313E PowerQUICC II Pro Processor Hardware Specifications, Rev. 4
48
Freescale Semiconductor
This figure provides the AC test load for the local bus.
Figure 36. Local Bus AC Test Load
Notes:
1. The symbols used for timing specifications follow the pattern of t(first two letters of functional block)(signal)(state)(reference)(state) for inputs
and t(first two letters of functional block)(reference)(state)(signal)(state) for outputs. For example, tLBIXKH1 symbolizes local bus timing (LB)
for the input (I) to go invalid (X) with respect to the time the tLBK clock reference (K) goes high (H), in this case for clock one (1).
2. All timings are in reference to falling edge of LCLK0 (for all outputs and for LGTA and LUPWAIT inputs) or rising edge of LCLK0
(for all other inputs).
3. All signals are measured from NVDD/2 of the rising/falling edge of LCLK0 to 0.4 NVDD of the signal in question for 3.3-V
signaling levels.
4. Input timings are measured at the pin.
5. tLBOTOT1 and tLALETOT1 should be used when RCWH[LALE] is not set and the load on LALE output pin is at least 10 pF less than
the load on LAD output pins.
6. tLBOTOT2 and tLALETOT2 should be used when RCWH[LALE] is set and the load on LALE output pin is at least 10 pF less than
the load on LAD output pins.
7. tLBOTOT3 and tLALETOT3 should be used when RCWH[LALE] is set and the load on LALE output pin equals to the load on LAD
output pins.
8. For purposes of active/float timing measurements, the Hi-Z or off state is defined to be when the total current delivered through
the component pin is less than or equal to the leakage current specification.
Table 45. Local Bus General Timing Parameters (continued)
Parameter
Symbol1
Min
Max
Unit
Note
Output
Z0 = 50
NVDD/2
RL = 50
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