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CY23FS08OXCT Datasheet(PDF) 8 Page - Cypress Semiconductor

Part # CY23FS08OXCT
Description  Failsafe??2.5 V/3.3 V Zero Delay Buffer
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Manufacturer  CYPRESS [Cypress Semiconductor]
Direct Link  http://www.cypress.com
Logo CYPRESS - Cypress Semiconductor

CY23FS08OXCT Datasheet(HTML) 8 Page - Cypress Semiconductor

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CY23FS08
Document Number: 38-07518 Rev. *F
Page 8 of 15
Figure 12. Phase Offset
XTAL Selection Criteria and Application Example
Selecting the appropriate XTAL ensures the FailSafe device is
able to span an appropriate frequency of operation. Also, the
XTAL parameters determine the holdover frequency stability.
Critical parameters are given here. Cypress recommends that
you choose:
Low C0/C1 ratio (240 or less) so that the XTAL has enough
range of pullability.
Low temperature frequency variation
Low manufacturing frequency tolerance
Low aging
C0 is the XTAL shunt capacitance (3 pF to 7 pF typ).
C1 is the XTAL motional capacitance (10 fF to 30 fF typ).
The capacitive load as “seen” by the XTAL is across its terminals.
It is named CLOADMIN (for minimum value), and CLOADMAX (for
maximum value).These are used for calculating the pull range.
Note that the CLOAD range “center” is approximately 20 pF, but
we may not want a XTAL calibrated to that load. This is because
the pullability is not linear, as represented in the equation below.
Plotting the pullability of the XTAL shows this expected behavior
as shown in Figure 13. In this example, specifying a XTAL
calibrated to 14 pF load provides a balanced ppm pullability
range around the nominal frequency.
Example:
CLOADMIN = (12 pF IC input cap + 0 pF pulling cap + 6 pF trace cap on board) / 2 = 9 pF
CLOADMAX = (12 pF IC input cap + 48 pF pulling cap + 6 pF trace cap on board) / 2 = 33 pF
Pull Range = (fCLOADMIN – fCLOADMAX) / fCLOADMIN = (C1 / 2) * [(1 / (C0 + CLOADMIN)) – (1 / (C0 + CLOADMAX))]
Pull Range in ppm = (C1 / 2) * [(1 / (C0 + CLOADMIN)) – (1 / (C0 + CLOADMAX))] * 106
REF
V
DD/2
t
(
)
V
DD/2
FBK
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