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TDA4VE...ALZQ1 数据表(PDF) 141 Page - Texas Instruments

部件名 TDA4VE...ALZQ1
功能描述  TDA4VE TDA4AL TDA4VL Jacinto™ Processors, Silicon Revision 1.0
PDF  251 Pages
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制造商  TI [Texas Instruments]
网页  http://www.ti.com
标志 TI - Texas Instruments

TDA4VE...ALZQ1 数据表(HTML) 141 Page - Texas Instruments

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VDDA_WKUP
WKUP_OSC0_XO
t
sX
Time
VSS
VDDA_WKUP (min.)
VDD_WKUP (min.)
VSS
VDD_WKUP
J7ES_WKUP_OSC_STARTUP_04
Figure 7-24. WKUP_OSC0 Start-up Time
7.10.4.1.1.1 Load Capacitance
The crystal circuit must be designed such that it applies the appropriate capacitive load to the crystal, as defined
by the crystal manufacturer. The capacitive load, CL, of this circuit is a combination of discrete capacitors
CL1, CL2, and several parasitic contributions. PCB signal traces which connect crystal circuit components to
WKUP_OSC0_XI and WKUP_OSC0_XO have parasitic capacitance to ground, CPCBXI and CPCBXO, where the
PCB designer should be able to extract parasitic capacitance for each signal trace. The WKUP_OSC0 circuits
and device package have combined parasitic capacitance to ground, CPCBXI and CPCBXO, where these parasitic
capacitance values are defined in Table 7-22.
J7ES_WKUP_OSC_CC_05
C
PCBXI
C
PCBXO
C
L1
C
L2
PCB
Signal Traces
Crystal Circuit
Components
WKUP_OSC0_XO
WKUP_OSC0_XI
C
XI
C
XO
Device
Figure 7-25. Load Capacitance
Load capacitors, CL1 and CL2 in Figure 7-23, should be chosen such that the below equation is satisfied. CL in
the equation is the load specified by the crystal manufacturer.
CL = [(CL1 + CPCBXI + CXI) × (CL2 + CPCBXO + CXO)] / [(CL1 + CPCBXI + CXI) + (CL2 + CPCBXO + CXO)]
To determine the value of CL1 and CL2, multiply the capacitive load value CL by 2. Using this result, subtract the
combined values of CPCBXI + CXI to determine the value of CL1 and the combined values of CPCBXO + CXO to
determine the value of CL2. For example, if CL = 10 pF, CPCBXI = 2.9 pF, CXI = 0.5 pF, CPCBXO = 3.7 pF, CXO =
0.5 pF, the value of CL1 = [(2CL) - (CPCBXI + CXI)] = [(2 × 10 pF) - 2.9 pF - 0.5 pF)] = 16.6 pF and CL2 = [(2CL) -
(CPCBXO + CXO)] = [(2 × 10 pF) - 3.7 pF - 0.5 pF)] = 15.8 pF
www.ti.com
TDA4VE-Q1, TDA4AL-Q1, TDA4VL-Q1
SPRSP62 – DECEMBER 2022
Copyright © 2023 Texas Instruments Incorporated
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Product Folder Links: TDA4VE-Q1 TDA4AL-Q1 TDA4VL-Q1



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