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PCA9512DP Datasheet(PDF) 6 Page - NXP Semiconductors |
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PCA9512DP Datasheet(HTML) 6 Page - NXP Semiconductors |
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6 / 16 page ![]() Philips Semiconductors Product data sheet PCA9512 Level shifting hot swappable I2C and SMBus buffer 2004 Oct 05 6 Resistor Pull-up Value Selection The system pull-up resistors must be strong enough to provide a positive slew rate of 1.25 V/ µs on the SDA and SCL pins, in order to activate the boost pull-up currents during rising edges. Choose maximum resistor value using the formula: R ≤ (VCC(MIN) – 0.6) (800,000)/C where R is the pull-up resistor value in ohms, VCC(MIN) is the minimum VCC voltage and C is the equivalent bus capacitance in picofarads (pF). In addition, regardless of the bus capacitance, always choose R ≤ 16 kΩ for VCC = 5.5 V maximum, R ≤ 24 kΩ for VCC = 3.6 V maximum. The start-up circuitry requires logic HIGH voltages on SDAOUT and SCLOUT to connect the backplane to the card, and these pull-up values are needed to overcome the precharge voltage. See the curves in Figures 5 and 6 for guidance in resistor pull-up selection. 30 20 15 21 5 0 0 100 200 300 400 CBUS (pF) RPULLUP (k Ω) 25 RECOMMENDED PULL-UP RMAX = 24 kΩ RISE-TIME > 300 ns SW02115 Figure 5. Bus requirements for 3.3 V systems 20 15 21 5 0 0 100 200 300 400 CBUS (pF) RPULLUP (k Ω) RECOMMENDED PULL-UP RMAX = 16 kΩ RISE-TIME > 300 ns SW02116 Figure 6. Bus requirements for 5 V systems Minimum SDA and SCL Capacitance Requirements The device connection circuitry requires a minimum capacitance loading on the SDA and SCL pins in order to function properly. The value of this capacitance is a function of VCC and the bus pull-up resistance. Estimate the bus capacitance on both the backplane and the card data and clock buses, and refer to Figures 5 and 6 to choose appropriate pull-up resistor values. Note from the figures that 5 V systems should have at least 47 pF capacitance on their buses and 3.3 V systems should have at least 22 pF capacitance for proper operation of the PCA9512. Although the device has been designed to be marginally stable with smaller capacitance loads, for applications with less capacitance, provisions need to be made to add a capacitor to ground to ensure these minimum capacitance conditions if oscillations are noticed during initial signal integrity verification. |
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