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ISL8700IBZ Datasheet(PDF) 9 Page - Intersil Corporation

Part # ISL8700IBZ
Description  Adjustable Quad Sequencer
Download  13 Pages
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Manufacturer  INTERSIL [Intersil Corporation]
Direct Link  http://www.intersil.com/cda/home
Logo INTERSIL - Intersil Corporation

ISL8700IBZ Datasheet(HTML) 9 Page - Intersil Corporation

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9
FN9250.2
March 21, 2008
Applications Usage
Using the ISL870xEVAL1 Platform
The ISL870xEVAL1 platform is the primary evaluation board
for this family of sequencers. See Figure 15 for a photograph
and schematic.The evaluation board is shipped with an
ISL8702 mounted in the left position and with the other
device variants loosely packed. In the following discussion,
test points names are bold on initial occurrence for
identification.
The VIN test point is the chip bias and can be biased from
2.5V to 24V. The VHI test point is for the ENABLE and
FAULT pull-up voltage which are limited to a maximum of
24V independent of VIN. The UV/OV resistor divider is set so
that a nominal 12V on the VMONITOR test point is compliant
and with a rising OV set at 13.2V and a falling UV set at
10.7V. These three test points (VIN,VHI and VMONITOR)
are brought out separately for maximum flexibility in
evaluation.
VMONITOR ramping up and down through the UV and OV
levels will result in the FAULT output signaling the out of
bound conditions by being released to pull high to the VHI
voltage as shown in Figures 6 and 7.
Once the voltage monitoring FAULT is resolved and where
applicable, the SEQ_EN(#) is satisfied, sequencing of the
ENABLE_X(#) outputs begins. When sequence enabled the
ENABLE_A, ENABLE_B, ENABLE_C and lastly
ENABLE_D are asserted in that order and when SEQ_EN is
disabled, the order is reversed. See Figures 8 and 9
demonstrating the sequenced enabling and disabling of the
ENABLE outputs. The timing between ENABLE outputs is
set by the resistor values on the TB, TC, TD pins as shown.
Figure 10 illustrates the timing from either SEQ_EN and/or
VMONITOR being valid to ENABLE_A being asserted with a
10nF TIME capacitor. Figure 11 shows that ENABLE_X
outputs are pulled low even before VIN = 1V. This is critical
to ensure that a false enable is not signaled. Figure 12
shows the time from SEQ_EN transition with the voltage
ramping across the TIME capacitor to TIME Vth being met.
This results in the immediate pull down of the TIME pin and
simultaneous ENABLE_A enabling. Figure 13 illustrates the
immunity of the UV and OV inputs to transients.
FIGURE 6. VMONITOR RISING TO FAULT
FIGURE 7. VMONITOR FALLING TO FAULT
FAULT OUTPUT
VMON RISING
VMON > UV
VMON > OV
LEVEL
LEVEL
VMON FALLING
VMON > OV
VMON > UV
LEVEL
LEVEL
FAULT OUTPUT
ISL8700, ISL8701, ISL8702


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