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LT3015ET Datasheet(PDF) 4 Page - List of Unclassifed Manufacturers

Part # LT3015ET
Description  1.5A, Low Noise, Negative Linear Regulator with Precision Current Limit
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Manufacturer  ETC2 [List of Unclassifed Manufacturers]
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LT3015ET Datasheet(HTML) 4 Page - List of Unclassifed Manufacturers

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LT3015
4
3015f
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. The LT3015 is tested and specified for these conditions with the
ADJ pin connected to the OUT pin.
Note 3. Maximum junction temperature limits operating conditions. The
regulated output voltage specification does not apply for all possible
combinations of input voltage and output current. If operating at maximum
output current, limit the input voltage range. If operating at maximum
input voltage, limit the output current range.
Note 4. To satisfy minimum input voltage requirements, the LT3015 is
tested and specified for these conditions with an external resistor divider
(54.9k top, 49.9k bottom) for an output voltage of –2.56V. The external
resistor adds 25μA of DC load on the output.
Note 5. Dropout voltage is the minimum input-to-output voltage
differential needed to maintain regulation at a specified output current. In
dropout, the output voltage is: VIN + VDROPOUT.
ELECTRICAL CHARACTERISTICS The l denotes the specifications which apply over the full operating
temperature range, otherwise specifications are at TA = 25°C.
PARAMETER
CONDITIONS
MIN
TYP
MAX
UNITS
Dropout Voltage
VIN = VOUT(NOMINAL)
(Notes 4, 5)
ILOAD = –1mA
ILOAD = –1mA
ILOAD = –100mA
ILOAD = –100mA
ILOAD = –500mA (DFN/MSOP)
ILOAD = –500mA (DFN/MSOP)
ILOAD = –500mA (DD-PAK/TO-220)
ILOAD = –500mA (DD-PAK/TO-220)
ILOAD = –1.5A (DFN/MSOP)
ILOAD = –1.5A (DFN/MSOP)
ILOAD = –1.5A (DD-PAK/TO-220)
ILOAD = –1.5A (DD-PAK/TO-220)
l
l
l
l
l
l
0.055
0.1
0.17
0.2
0.31
0.41
0.095
0.16
0.16
0.24
0.23
0.32
0.27
0.39
0.39
0.5
0.51
0.68
V
V
V
V
V
V
V
V
V
V
V
V
GND Pin Current
VIN = VOUT(NOMINAL)
(Notes 4, 6)
ILOAD = 0mA
ILOAD = –1mA
ILOAD = –100mA
ILOAD = –500mA
ILOAD = –1.5A
l
l
l
l
l
1.1
1.15
2.9
9.5
35
2.4
2.5
7.0
23
70
mA
mA
mA
mA
mA
Output Voltage Noise
COUT = 10μF, ILOAD = –1.5A, BW = 10Hz to 100kHz
60
μVRMS
ADJ Pin Bias Current
(Notes 2, 7)
VIN = –2.3V
–200
30
200
nA
Shutdown Threshold (Note 11)
VOUT = Off-to-On (Positive)
VOUT = Off-to-On (Negative)
VOUT = On-to-Off (Positive)
VOUT = On-to-Off (Negative)
l
l
l
l
1.07
–1.34
0.5
1.21
–1.20
0.73
–0.73
1.35
–1.06
–0.5
V
V
V
V
SHDN Pin Current (Note 8)
VSHDN = 0V
VSHDN = 15V
VSHDN = –15V
l
l
l
–1.0
0
17
–2.8
10
27
–4.5
μA
μA
μA
Quiescent Current in Shutdown
VIN = –6V, SHDN = 0V
l
0.01
6
μA
Ripple Rejection
VIN - VOUT = –1.5V (Avg), VRIPPLE = 0.5VP-P
fRIPPLE = 120Hz, ILOAD = –1.5A
55
65
dB
Current Limit
VIN = –2.3V, VOUT = 0V
VIN = –2.3V, ΔVOUT = 0.1V
l
l
1.8
1.75
2.0
1.95
2.2
2.15
A
A
Input Reverse Leakage Current
VIN = 30V, VOUT, VADJ, VSHDN = Open Circuit
l
1.55
1.7
mA
Note 6. GND pin current is tested with VIN = VOUT(NOMINAL) and a current
source load. Therefore, the device is tested while operating in dropout.
This is the worst-case GND pin current. GND pin current decreases slightly
at higher input voltages.
Note 7. Positive ADJ pin bias current flows into the ADJ pin.
Note 8. Positive SHDN pin current flows into the SHDN pin.
Note 9. The LT3015 is tested and specified under pulsed load conditions
such that TJ ≅ TA. The LT3015E is guaranteed to meet performance
specifications from 0°C to 125°C junction temperature. Specifications over
the –40°C to 125°C operating temperature range are assured by design,
characterization, and correlation with statistical process controls. The
LT3015I is guaranteed over the full –40°C to 125°C operating junction
temperature range. The LT3015MP is 100% tested and guaranteed over
the full –55°C to 125°C operating junction temperature range.
Note 10. Parasitic diodes exist internally between the OUT, ADJ, SHDN pins
and the IN pin. Do not drive the OUT, ADJ, and SHDN pins more that 0.3V
below the IN pin during fault conditions, and these pins must remain at a
voltage more positive than IN during normal operation.
Note 11. The SHDN threshold must be met to ensure device operation.


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