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LTC1646IGN Datasheet(PDF) 14 Page - Linear Technology

Part # LTC1646IGN
Description  CompactPCI Dual Hot Swap Controller
PDF  20 Pages
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Manufacturer  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LTC1646IGN Datasheet(HTML) 14 Page - Linear Technology

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LTC1646
14
1646fa
APPLICATIO S I FOR ATIO
(RTOL =
±1%, ±2% or ±5%) and standard sense resistor
values. Equation 7 can be used to calculate the nominal
value from the maximum value found by Equation 6:
R
R
RTOL
SENSE NOM
SENSE MAX
()
()
=
+ ⎛
⎝⎜
⎠⎟
1
100
(7)
Often, the result of Equation 7 may not yield a standard
sense resistor value. In this case, two sense resistors with
the same RTOL can be connected in parallel to yield
RSENSE(NOM).
The last step requires calculating a new value for
ITRIP(MAX)(ITRIP(MAX, NEW)) based on a minimum value for
RSENSE (RSENSE(MIN)) and the upper limit for the circuit
breaker threshold, VCB(MAX). Should the calculated value
for ITRIP(MAX, NEW) be much greater than the design value
for ITRIP(MAX), a larger sense resistor value should be
selected and the process repeated. The new value for
ITRIP(MAX, NEW) is given by Equation 8:
I
V
R
where R
R
RTOL
TRIP MAX NEW
CB MAX
SENSE MIN
SENSE MIN
SENSE NOM
(,
)
()
()
()
(
)
()
•–
=
=
⎝⎜
⎠⎟
8
1
100
Example: A 5V supply exhibits a nominal 5A load with a
maximum load current of 6.8A (ILOAD(MAX) = 6.8A), and
sense resistors with
±5% RTOL will be used. According to
Equation 6, VCB(MIN) = 50mV and RSENSE(MAX) is given by:
R
V
I
mV
A
SENSE MAX
CB MIN
TRIP MAX
()
()
()
.
.
==
=
50
68
0 0074
The nominal sense resistor value is (Equation 7):
R
R
RTOL
SENSE NOM
SENSE MAX
()
()
.
.
=
+ ⎛
⎝⎜
⎠⎟
=
+ ⎛
⎝⎜
⎠⎟
=
1
100
0 0074
1
5
100
0 007
And the new current-limit trip point is Equation 8:
I
V
R
V
R
RTOL
mV
A
TRIP MAX NEW
CB MAX
SENSE MIN
CB MAX
SENSE N M
(,
)
()
()
()
() •–
.
.
==
⎝⎜
⎠⎟
==
0
1
100
65
0 0065
98
Since ITRIP(MAX, NEW) > ILOAD(MAX), a larger value for
RSENSE should be selected and the process repeated again
to lower ITRIP(MAX, NEW) without substantially affecting
ILOAD(MAX).
Output Voltage Monitor
The status of both 5V and 3.3V output voltages is moni-
tored by the power good function. In addition, the PCI_RST#
signal is logically combined on-chip with the HEALTHY#
signal to create LOCAL_PCI_RST# (see Table 4).
Table 4. LOCAL_PCI_RST# Truth Table
PCI_RST#
HEALTHY#
LOCAL_PCI_RST#
LO
LO
LO
LO
HI
LO
HI
LO
HI
HI
HI
LO
If either of the output voltages drop below the power good
threshold for more than 50
µs,theHEALTHY#signalwillbe
pulled high and the LOCAL_PCI_RST# signal will be pulled
low.
Precharge
The PRECHARGE input and DRIVE output pins are in-
tended for use in generating the 1V precharge voltage that
is used to bias the bus I/O connector pins during board
insertion. The LTC1646 is also capable of generating
precharge voltages other than 1V. Figure 8 shows a circuit
that can be used in applications requiring a precharge
voltage less than 1V. The circuit in Figure 9 can be used for
applications that need precharge voltages greater than 1V.
Table 5 lists suggested resistor values for R1 and R2 vs
precharge voltage for the application circuits shown in
Figures 8 and 9.



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