ADM1070ARTZ Analog Devices Inc, ADM1070ARTZ Datasheet - Page 12

ADM1070ARTZ

Manufacturer Part Number
ADM1070ARTZ
Description
Manufacturer
Analog Devices Inc
Datasheet

Specifications of ADM1070ARTZ

Linear Misc Type
Negative Voltage
Family Name
ADM1070
Package Type
SOT-23
Operating Supply Voltage (min)
-18V
Operating Supply Voltage (max)
-80V
Operating Temperature (min)
-40C
Operating Temperature (max)
85C
Operating Temperature Classification
Industrial
Product Depth (mm)
1.6mm
Product Height (mm)
1.15mm
Product Length (mm)
2.9mm
Mounting
Surface Mount
Pin Count
6
Lead Free Status / RoHS Status
Compliant

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ADM1070
FUNCTIONALITY AND TIMING
Live Insertion
The timing waveforms associated with the live insertion of a
plug-in board using the ADM1070 are shown in the following
figures. When the board connects the GND-V
climbs to 48 V. As this voltage is applied, the voltage at the V
Pin ramps above the undervoltage lockout (V
constant 12.3 V and is held at this level with the shunt resistor
and external resistor combination at the V
When UV/OV crosses the undervoltage rising threshold of
0.91 V, it is now inside the operating voltage window and the
–48 V supply must be applied to the load. After a time delay,
t
voltage on the SENSE Pin reaches 100 mV (the analog current
limit) the gate drive is held constant. When the board capaci-
tance is fully charged, the sense voltage begins to drop below
the analog current limit voltage and the gate voltage is free to
ramp up further. The gate voltage eventually reaches its maxi-
mum value of 12.3 V (as set by V
POR
GND-V
, the ADM1070 begins to ramp up the gate drive. When the
SENSE
SENSE
UV/OV
GATE
Figure 5. Timing Waveforms Associated with a
Live Insertion Event
V
OUT
V
EE
GATE
IN
V
OUT
CH1
CH3
Figure 6. Start-Up Sequence
V
10.00V
LKO
5.00V
CH2
T
T
V
UVR
t
POR
100mV M 500 s
IN
).
IN
LKO
Pin.
) of 8.5 V to a
EE
CH1
potential
2.8V
IN
–12–
OVERVOLTAGE AND UNDERVOLTAGE
The waveforms for an overvoltage glitch are shown below.
When UV/OV glitches above the overvoltage rising threshold of
1.97 V, an overvoltage condition is detected and the gate volt-
age is pulled low. UV/OV begins to drop a back toward the
operating voltage window and the gate drive is restored when
the overvoltage falling threshold of 1.93 V is reached. Figure 7
illustrates the ADM1070’s operation in an overvoltage situation.
An undervoltage glitch is dealt with in a similar way. When
V
the gate voltage is pulled low. If UO/UV subsequently rises
back above the undervoltage rising threshold of 0.91 V, then the
gate voltage is restored. Figure 8 illustrates the ADM1070’s
operation in an undervoltage situation.
UV/OV
SENSE
SENSE
Figure 7. Timing Waveforms Associated with an
Overvoltage Glitch
Figure 8. Timing Waveforms Associated with an
Undervoltage Glitch
falls below the undervoltage falling threshold of 0.86 V,
V
V
GATE
UV/OV
GATE
UV/OV
CH1
CH3
CH1
CH3
T
10.00V
10.0V
1.00V
1.00V
T
CH2
CH2
100mV M 200 s
100mV
M 200ms
CH3
1.96V
REV. 0

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