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TC9256AFG датащи(PDF) 20 Page - Toshiba Semiconductor

номер детали TC9256AFG
подробное описание детали  PLL for DTS
PDF  34 Pages
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производитель  TOSHIBA [Toshiba Semiconductor]
домашняя страница  http://www.semicon.toshiba.co.jp/eng
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TC9256AFG датащи(HTML) 20 Page - Toshiba Semiconductor

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TC9256, 57APG/AFG
2006-07-14
20
Lock Detection Bits
The lock detection bits detect locked states in the PLL system. These systems have an unlock detection bit
(unlock bit), which is used to detect, using the reference frequency cycle, the phase difference between the
reference frequency and the divided output of the programmable counter. These systems also have phase error
detection bits (bits PE1to PE3), which are capable of more precise detection (
±0.55 µs to ±7.15 µs).
1.
Unlock Detection Bit (UNLOCK)
This bit detects, using the reference frequency cycle, the phase difference between the reference
frequency and the divided output of the programmable counter. When there is no lock, that is, when the
reference frequency and the divided output of the programmable counter are not the same, unlock F/F is
set.
Unlock F/F is reset every time the input register (D2H) unlock reset bit (RESET) is set to “1”.
After unlock F/F has been reset in this way, locked state can be detected by checking the unlock detection
bit (UNLOCK) of the output register (D3H). After unlock F/F has been reset, the unlock detection bit must
be checked after a time interval exceeding the reference frequency cycle. This is because the reference
frequency cycle inputs the lock detection strobe to unlock F/F. If the time interval is short, the correct
locked state cannot be detected. Therefore, the output register (D3H) has a lock enable bit (ENABLE). This
bit is reset every time the input register (D2H) reset bit is set to “1”, and set to “1” through the lock
detection timing. That is, the locked state is correctly detected when the lock enable bit (ENABLE) is “1”.
Figure 10



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