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TLV9032DDFR.A 数据表(PDF) 29 Page - Texas Instruments |
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TLV9032DDFR.A 数据表(HTML) 29 Page - Texas Instruments |
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29 / 85 page ![]() 7.2.2.1 Design Requirements The square-wave period is determined by the RC time constant of the capacitor C1 and resistor R4. The maximum frequency is limited by propagation delay of the device and the capacitance load at the output. The low input bias current allows a lower capacitor value and larger resistor value combination for a given oscillator frequency, which can help to reduce BOM cost and board space. R4 must be over several kilo-ohms to minimize loading the output. 7.2.2.2 Detailed Design Procedure The oscillation frequency is determined by the resistor and capacitor values. The following calculation provides details of the steps. Figure 7-10. Square-Wave Oscillator Timing Thresholds First consider the output of Figure Figure 7-9 as high, which indicates the inverted input VC is lower than the noninverting input (VA). This causes the C1 to be charged through R4, and the voltage VC increases until the inverting input is equal to the noninverting input. The value of VA at the point is calculated by Equation 7. VA1= VCC×R2 R2+R1∥R3 (7) if R1 = R2 = R3, then VA1 = 2VCC/ 3 At this time the comparator output trips pulling down the output to the negative rail. The value of VAat this point is calculated by Equation 8. VA2=VCCR2∥R3 R1+R2∥R3 (8) if R1 = R2 = R3, then VA2 = VCC/3 The C1 now discharges though the R4, and the voltage VCC decreases until the voltage reaches VA2. At this point, the output switches back to the starting state. The oscillation period equals to the time duration from for C1 from 2VCC/3 to VCC / 3 then back to 2VCC/3, which is given by R4C1 × ln 2 for each trip. Therefore, the total time duration is calculated as 2 R4C1 × ln 2. The oscillation frequency can be obtained by Equation 9: f=1÷ 2 R4×C1×ln2 (9) 7.2.2.3 Application Curve Figure 7-11 shows the simulated results of an oscillator using the following component values: • R1 = R2 = R3 = R4 = 100kΩ • C1 = 100pF, CL = 20pF • V+ = 5V, V– = GND • Cstray (not shown) from VA TO GND = 10pF www.ti.com TLV9020, TLV9021, TLV9022, TLV9024, TLV9030, TLV9031, TLV9032, TLV9034 SNOSDA3H – JUNE 2020 – REVISED NOVEMBER 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 29 Product Folder Links: TLV9020 TLV9021 TLV9022 TLV9024 TLV9030 TLV9031 TLV9032 TLV9034 |
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