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LT1963 датащи(PDF) 3 Page - Linear Technology

номер детали LT1963
подробное описание детали  800mA Single Resistor Rugged Linear Regulator with Monitors
PDF  28 Pages
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производитель  LINER [Linear Technology]
домашняя страница  http://www.linear.com
Logo LINER - Linear Technology

LT1963 датащи(HTML) 3 Page - Linear Technology

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LT3089
3
3089f
For more information www.linear.com/LT3089
The l denotes the specifications which apply over the full operating
temperature range, otherwise specifications are at TJ = 25°C. (Note 2)
ELECTRICAL CHARACTERISTICS
PARAMETER
CONDITIONS
MIN
TYP
MAX
UNITS
SET Pin Current
ISET
VIN = 2V, ILOAD = 3mA
2V ≤ VIN ≤ 36V, 3mA ≤ ILOAD ≤ 800mA
l
49.5
48.75
50
50
50.5
51.25
µA
µA
Offset Voltage
VOS
(VOUT – VSET)
VIN = 2V, ILOAD = 3mA
VIN = 2V, ILOAD = 3mA
l
–1.5
–3.5
0
0
1.5
3.5
mV
mV
ISET Load Regulation
∆ILOAD = 3mA to 800mA
–0.1
nA
VOS Load Regulation
∆ILOAD = 3mA to 800mA
(Note 7)
DF, FE Packages
l
–0.5
–3
mV
R Package
l
–1.5
–4
mV
Line Regulation
∆ISET
∆VOS
∆VIN = 2V to 36V, ILOAD = 3mA
∆VIN = 2V to 36V, ILOAD = 3mA
1.5
0.001
nA/V
mV/V
Minimum Load Current (Note 3)
2V ≤ VIN ≤ 36V
l
1.1
3
mA
Dropout Voltage (Note 4)
ILOAD = 100mA
ILOAD = 800mA
l
1.21
1.47
1.65
V
V
Internal Current Limit
VIN = 5V, VSET = 0V, VOUT = –0.1V
l
0.8
1
A
ILIM Programming Ratio
l
155
175
210
mA/kΩ
ILIM Minimum Output Current Resistance
300
Ω
IMON Full-Scale Output Current
ILOAD = 800mA
l
130
160
190
µA
IMON Scale Factor
100mA ≤ ILOAD ≤ 800mA
200
µA/A
IMON Operating Range
l
VOUT – 40V
VOUT + 0.4V
V
TEMP Output Current (Note 9)
TJ > 5°C
1
µA/°C
TEMP Output Current Absolute Error (Note 9)
0°C <TJ ≤ 125°C
125°C <TJ ≤ 150°C
–10
–15
10
15
µA
µA
Reference Current RMS Output Noise (Note 5)
10Hz ≤ f ≤ 100kHz
5.7
nARMS
Error Amplifier RMS Output Noise (Note 5)
ILOAD = 800mA, 10Hz ≤ f ≤ 100kHz, COUT =10µF,
CSET = 0.1µF
27
µVRMS
Ripple Rejection
VRIPPLE = 0.5VP-P, ILOAD = 0.1A, CSET = 0.1µF,
COUT=10µF, VIN = VOUT(NOMINAL) + 3V
f = 120Hz
f = 10kHz
f = 1MHz
75
90
75
20
dB
dB
dB
Thermal Regulation, ISET
10ms Pulse
0.003
%/W
Note 1: Stresses beyond those listed under Absolute Maximum Ratings
may cause permanent damage to the device. Exposure to any Absolute
Maximum Rating condition for extended periods may affect device
reliability and lifetime.
Note 2: Unless otherwise specified, all voltages are with respect to VOUT.
The LT3089 is tested and specified under pulse load conditions such
that TJ ≈ TA. The LT3089E is tested at TA = 25°C and performance is
guaranteed from 0°C to 125°C. Performance of the LT3089E over the
full –40°C and 125°C operating temperature range is assured by design,
characterization, and correlation with statistical process controls. The
LT3089I is guaranteed over the full –40°C to 125°C operating junction
temperature range. High junction temperatures degrade operating
lifetimes. Operating lifetime is degraded at junction temperatures greater
than 125°C.
Note 3: Minimum load current is equivalent to the quiescent current of
the part. Since all quiescent and drive current is delivered to the output
of the part, the minimum load current is the minimum current required to
maintain regulation.
Note 4: For the LT3089, dropout is specified as the minimum input-to-
output voltage differential required supplying a given output current.
Note 5: Adding a small capacitor across the reference current resistor
lowers output noise. Adding this capacitor bypasses the resistor shot
noise and reference current noise; output noise is then equal to error
amplifier noise (see Applications Information section).
Note 6: Diodes with series 400Ω resistors clamp the SET pin to the
OUT pin. These diodes and resistors only carry current under transient
overloads.
Note 7: Load regulation is Kelvin sensed at the package.
Note 8: This IC includes overtemperature protection that protects the
device during momentary overload conditions. Junction temperature
exceeds the maximum operating junction temperature when
overtemperature protection is active. Continuous operation above the
specified maximum operating junction temperature may impair device
reliability.
Note 9: The TEMP pin output current represents the average die junction
temperature. Due to power dissipation and thermal gradients across the
die, the TEMP pin output current measurement does not guarantee that
absolute maximum junction temperature is not exceeded.



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