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RNBD451 데이터시트(PDF) 21 Page - Microchip Technology

부품명 RNBD451
상세설명  RNBD451 Bluetooth® Low Energy Module Data Sheet
PDF  67 Pages
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제조업체  MICROCHIP [Microchip Technology]
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RNBD451 데이터시트(HTML) 21 Page - Microchip Technology

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RNBD451
Electrical Characteristics
© 2022 Microchip Technology Inc.
and its subsidiaries
Advance Information Data Sheet
DS70005514A-page 21
Figure 4-10. XOSC32 Block Diagram
C1
RS
XTAL
Notes: 
1.
VDDIO = VDDANA = 3.3V.
2.
This is for guidance only. A major component of crystal start-up time is based on the second party crystal MFG
parasitic that is outside the scope of this specification. If this is a major concern, the customer might need to
characterize this based on their design choices.
3.
The test conditions for crystal load capacitor calculation are as follows:
– Standard PCB trace capacitance = 1.5 pF per 12.5 mm (0.5 inches) (in other words, PCB STD TRACE W
= 0.175 mm, H = 36 μm, T = 113 μm)
– Xtal PCB capacitance typical; therefore, ~= 2.5 pF for a tight PCB xtal layout
– For CXIN and CXOUT within 4 pF of each other, assume CXTAL_EFF = ((CXIN / 2)
– Note: Averaging CXIN and CXOUT will affect the final calculated CLOAD value by less than the
tolerance of the capacitor selection.
4.
Equation 4-1. Equation 1:
MFG CLOADSpec= CXIN+ C1 * CXOUT + C2 /CXIN+ C1+C2+CXOUT +estimated
oscillatorPCBstraycapacitance
Assuming C1 = C2 and CXin ~= CXout, the formula can be further simplified and restated to solve for C1 and
C2 by:
Equation 4-2. Equation 2 (In other words: Simplified Equation 1)
C1 = C2 = 2* MFG CLOADSpec −CXTAL_EFF− 2* PCB capacitance
Example:
• XTAL Mfg CLOAD Data Sheet Spec = 12 pF
• PCB XTAL trace Capacitance = 2.5 pF
• CXIN pin = 6.5 pF, CXOUT pin = 4.5 pF therefore CXTAL_EFF = ((CXIN / 2)
CXTAL_EFF = ((6.5 + 4.5)/2) = 5.5 pF
C1 = C2 = ((2 * MFG Cload spec) - CXTAL_EFF - (2 * PCB capacitance))
C1 = C2 = (24 - 5.5 - (2 * 2.5))
C1 = C2 = (24 - 5.5 - 5)
C1 = C2 = 13.5 pF (Always rounded down)
C1 = C2 = 13 pF (in other words, for hypothetical example crystal external load capacitors)
User C1 = C2 = 13 pF ≤ CLOAD_X32 (max.) spec



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