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ISL33002IUZ Datasheet(PDF) 10 Page - Intersil Corporation

Part # ISL33002IUZ
Description  I2C Bus Buffer with Rise Time Accelerators and Hot Swap Capability
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Manufacturer  INTERSIL [Intersil Corporation]
Direct Link  http://www.intersil.com/cda/home
Logo INTERSIL - Intersil Corporation

ISL33002IUZ Datasheet(HTML) 10 Page - Intersil Corporation

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ISL33001, ISL33002, ISL33003
10
FN7560.6
July 11, 2014
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Because the signals on each side of the buffer rise
independently, the propagation delay can be positive or negative.
If the input side rises slowly relative to the output (i.e., heavy
capacitive loading on the input and light load on the output) then
the propagation delay tPLH is negative. If the output side rises
slowly relative to the input, tPLH is positive.
For high-to-low transitions, there is a finite propagation delay
through the buffer from the time an external low on the input
drives the NMOS output low. This propagation delay will always
be positive because the buffer connect threshold on the falling
edge is below the measurement points of the delay. In addition
to the propagation delay of the buffer, there will be additional
delay from the different capacitive loading of the buffer.
Figures 23 and 24 show how the propagation delay from high-to-
low, tPHL, is affected by VCC and capacitive loading.
The buffer’s propagation delay times for rising and falling edge
signals must be taken into consideration for the timing
requirements of the system. SETUP and HOLD times may need to
be adjusted to take into account excessively long propagation
delay times caused by heavy bus capacitances.
Pull-Up Resistor Selection
While the ISL33001, ISL33002, ISL33003 2-Channel buffers are
designed to improve the rise time of the bus in passive pull-up
systems, proper selection of the pull-up resistor is critical for
system operation when a buffer is used. For a bus that is
operating normally without active rise time circuitry, using the
ISL33001, ISL33002, ISL33003 buffer allows larger pull-up
resistor values to reduce sink currents when the bus is driving
low. However, choose a pull-up resistor value of no larger than
20kΩ regardless of the bus capacitance seen on the SDA/SCL
lines. The Bus Idle or Stop Bit condition requires valid logic high
voltages to give a valid connection state. Pull-up resistor values
20kΩ or smaller are recommended to overcome the typical
150kΩ impedance of the pre-charge circuitry, delivering valid
high levels.


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