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ADSP-21486KSWZ-2AB Datasheet(PDF) 30 Page - Analog Devices

Part # ADSP-21486KSWZ-2AB
Description  SHARC Processor
PDF  68 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADSP-21486KSWZ-2AB Datasheet(HTML) 30 Page - Analog Devices

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Rev. B
|
Page 30 of 68
|
March 2013
ADSP-21483/ADSP-21486/ADSP-21487/ADSP-21488/ADSP-21489
Precision Clock Generator (Direct Pin Routing)
This timing is only valid when the SRU is configured such that
the precision clock generator (PCG) takes its inputs directly
from the DAI pins (via pin buffers) and sends its outputs
directly to the DAI pins. For the other cases, where the PCG’s
inputs and outputs are not directly routed to/from DAI pins (via
pin buffers), there is no timing data available. All timing param-
eters and switching characteristics apply to external DAI pins
(DAI_P01 – DAI_P20).
Table 29. Precision Clock Generator (Direct Pin Routing)
Parameter
Min
Max
Unit
Timing Requirements
tPCGIW
Input Clock Period
tPCLK × 4
ns
tSTRIG
PCG Trigger Setup Before Falling Edge of PCG Input
Clock
4.5
ns
tHTRIG
PCG Trigger Hold After Falling Edge of PCG Input
Clock
3ns
Switching Characteristics
tDPCGIO
PCG Output Clock and Frame Sync Active Edge
Delay After PCG Input Clock
2.5
10
ns
tDTRIGCLK
PCG Output Clock Delay After PCG Trigger
2.5 + (2.5 × tPCGIP)
10 + (2.5 × tPCGIP)ns
tDTRIGFS
PCG Frame Sync Delay After PCG Trigger
2.5 + ((2.5 + D – PH) × tPCGIP)
10 + ((2.5 + D – PH) × tPCGIP)ns
tPCGOW
1
Output Clock Period
2 × tPCGIP – 1
ns
D = FSxDIV, PH = FSxPHASE. For more information, see the ADSP-214xx SHARC Processor Hardware Reference, “Precision Clock Generators”
chapter.
1 Normal mode of operation.
Figure 16. Precision Clock Generator (Direct Pin Routing)
DAI_Pn
DPI_Pn
PCG_TRIGx_I
DAI_Pm
DPI_Pm
PCG_EXTx_I
(CLKIN)
DAI_Py
DPI_Py
PCG_CLKx_O
DAI_Pz
DPI_Pz
PCG_FSx_O
tDTRIGFS
tDTRIGCLK
tDPCGIO
tSTRIG
tHTRIG
tPCGOW
tDPCGIO
tPCGIP



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