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71M6403 Datasheet, PDF (44/75 Pages) Teridian Semiconductor Corporation – Electronic Trip Unit
71M6403
Electronic Trip Unit
SEPTEMBER 2006
FUNCTIONAL DESCRIPTION
System Timing Summary
Figure 9 summarizes the timing relationships between the input MUX states. In this example, MUX_DIV=0 (six mux states) and
FIR_LEN = 0 (2 PLLOUT cycles). Since FIR filter conversions require two or three PLLOUT cycles, the duration of each MUX
cycle is 1 + 2 * states defined by MUX_DIV if FIR_LEN = 0, and 1 + 3 * states defined by MUX_DIV if FIR_LEN = 1. Followed by
the conversions is a single PLLOUT cycle.
Each CE program pass begins when MUX_SYNC falls. Depending on the length of the CE program, it may continue running
until the end of the ADC5 conversion. CE opcodes are constructed to ensure that all CE code passes consume exactly the same
number of cycles. The result of each ADC conversion is inserted into the CE DRAM when the conversion is complete. The CE
code is designed to tolerate sudden changes in ADC data. The exact CK count when each ADC value is loaded into DRAM is
shown in Figure 9.
Figure 9 also shows that the two serial data streams, RTM and SSI, begin transmitting at the beginning of MUX_SYNC. RTM,
consisting of 140 CK cycles, will always finish before the next code pass starts. The SSI port begins transmitting at the same
time as RTM, but may significantly overrun the next code pass if a large block of data is required. Neither the CE nor the SSI
port will be affected by this overlap.
ADC, CE and SERIAL TIMING
ADC TIMING
PLLOUT
MUX_SYNC
MUX STATE S
ADC EXECUTION
CE TIMING
0
CE_EXECUTION
ADC MUX Frame
MUX_DIV Conversions (MUX_DIV=4 is shown)
Settle
150
0
1
2
3
S
ADC0
ADC1
450
900
CK COUNT = CE_CYCLES + floor((CE_CYCLES + 2) / 5)
ADC2
1350
ADC3
1800
MAX CK COUNT
NOTES:
1. ALL DIMENSIONS ARE 5MHZ CK COUNTS.
2. THE PRECISE FREQUENCY OF CK COUNTS IS 150*CRYSTAL FREQUENCY = 4.9152MHz.
.
Figure 9: Timing Relationship between ADC MUX, CE, and Serial Transfers
Page: 44 of 75
© 2006 TERIDIAN Semiconductor Corporation
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