LT4250HCS8#PBF Linear Technology, LT4250HCS8#PBF Datasheet - Page 11

IC CONTRLR HOTSWAP NEG 48V 8SOIC

LT4250HCS8#PBF

Manufacturer Part Number
LT4250HCS8#PBF
Description
IC CONTRLR HOTSWAP NEG 48V 8SOIC
Manufacturer
Linear Technology
Type
Hot-Swap Controllerr
Datasheet

Specifications of LT4250HCS8#PBF

Applications
General Purpose
Internal Switch(s)
No
Voltage - Supply
-20 V ~ -80 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (0.154", 3.90mm Width)
Output Voltage
1.2V
Internal Switch
No
Supply Voltage Range
18V To 80V
Digital Ic Case Style
SOIC
No. Of Pins
8
Operating Temperature Range
0°C To +70°C
Msl
MSL 1 - Unlimited
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Manufacturer
Quantity
Price
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Part Number:
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Manufacturer:
LINEAR/凌特
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20 000
Company:
Part Number:
LT4250HCS8#PBF
Manufacturer:
LINEAR/凌特
Quantity:
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APPLICATIONS INFORMATION
Undervoltage and Overvoltage Detection
The UV (Pin 3) and OV (Pin 2) pins can be used to detect
undervoltage and overvoltage conditions at the power sup-
ply input. The UV and OV pins are internally connected to
analog comparators with 130mV and 20mV of hysteresis
respectively. When the UV pin falls below its threshold or
the OV pin rises above its threshold, the GATE pin is im-
mediately pulled low. The GATE pin will be held low until
UV is high and OV is low.
The undervoltage and overvoltage trip voltages can be
programmed using a three resistor divider as shown in
Figure 11. With R4 = 549k, R5 = 6.49k and R6 = 10K, the
undervoltage threshold is set to 38.5V (with a 43V release
from undervoltage) and the overvoltage threshold is set
to 71V. The resistor divider will also gain up the hysteresis
at the UV pin and OV pin to 4.5V and 1.2V at the input
respectively.
PWRGD/PWRGD Output
The PWRGD/PWRGD output can be used to directly enable
a power module when the input voltage to the module is
within tolerance. The LT4250L has a PWRGD output for
modules with an active low enable input, and the LT4250H
has a PWRGD output for modules with an active high
enable input.
When the DRAIN voltage of the LT4250H is high with
respect to V
Figure 11. Undervoltage and Overvoltage Sensing
V
V
UV
OV
EE
= 1.255
= 1.255
(Figure 12) or the GATE voltage is low, the
(
(
R4 + R5+ R6
R4 + R5+ R6
–48V RTN
(SHORT PIN)
R5 + R6
–48V RTN
R6
–48V
)
)
R4
R5
R6
3
2
UV
OV
LT4250L/LT4250H
V
V
DD
EE
4
8
4250 F11
–48V RTN
(SHORT PIN)
–48V
–48V RTN
internal transistor Q3 is turned off and I
the PWRGD pin one SAT drop (≈0.3V) above the DRAIN
pin.Transistor Q2 sinks the module’s pull-up current and
the module turns off.
When the DRAIN voltage drops below V
voltage is high, Q3 will turn on, shorting the bottom of
I
the module pulls the PWRGD pin high and enables the
module.
When the DRAIN voltage of the LT4250L is high with
respect to V
pull-down transistor Q2 is off and the PWRGD pin is in a
high impedance state (Figure 13). The PWRGD pin will be
pulled high by the module’s internal pull-up current source,
turning the module off. When the DRAIN voltage drops
below V
and the PWRGD pin will pull low, enabling the module.
The PWRGD signal can also be used to turn on an LED
oroptoisolator to indicate that the power is good as shown
in Figure 14.
Gate Pin Voltage Regulation
When the supply voltage to the chip is more than 18V,
the GATE pin voltage is regulated at 13.5V above V
The gate voltage will be no greater than 18V for supply
voltages up to 80V.
1
* DIODES INC. SMAT70A
*
to DRAIN and turning Q2 off. The pull-up current in
R4
R5
R6
DL
3
2
Figure 12. Active High Enable Module
UV
OV
ΔV
LT4250H
and the GATE voltage is high, Q2 will turn on
+
GATE
EE
V
GH
3
+
GATE
V
4
or the GATE voltage is low, the internal
1
V
EE
DL
R1
+
+
SENSE
2
4
5
LT4250L/LT4250H
C1
V
I
DD
1
GATE
Q1
V
EE
6
Q3
R2
8
PWRGD
Q2
R3
DRAIN
C2
DL
1
C3
7
1
and Q2 clamp
+
and the GATE
4250 F12
ENABLE MODULE
ACTIVE HIGH
V
V
IN
ON/OFF
IN
+
11
V
V
OUT
OUT
4250lhfa
+
EE
.

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