LTC3108EGN#TRPBF Linear Technology, LTC3108EGN#TRPBF Datasheet - Page 3

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LTC3108EGN#TRPBF

Manufacturer Part Number
LTC3108EGN#TRPBF
Description
IC DCDC CONV STP-UP LV 16SSOP
Manufacturer
Linear Technology
Datasheet

Specifications of LTC3108EGN#TRPBF

Applications
Energy Harvesting
Current - Supply
3mA
Voltage - Supply
20mV ~ 500mV
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
16-SSOP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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PARAMETER
Output Voltage
V
VAUX Quiescent Current
LDO Output Voltage
LDO Load Regulation
LDO Line Regulation
LDO Dropout Voltage
LDO Current Limit
V
VSTORE Current Limit
VAUX Clamp Voltage
VSTORE Leakage Current
V
VS1, VS2 Threshold Voltage
VS1, VS2 Input Current
PGOOD Threshold (Rising)
PGOOD Threshold (Falling)
PGOOD V
PGOOD V
PGOOD Pull-Up Resistance
V
V
V
V
V
V
V
N-Channel MOSFET On-Resistance
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 LTC3108 is tested under pulsed load conditions such that T
T
junction temperature. Specifications over the –40°C to 125°C operating
junction temperature range are assured by design, characterization and
correlation with statistical process controls. The LTC3108I is guaranteed
over the full –40°C to 125°C operating junction temperature range.
Note that the maximum ambient temperature is determined by specific
operating conditions in conjunction with board layout, the rated thermal
package thermal resistance and other environmental factors. The junction
elecTrical characTerisTics
junction temperature range, otherwise specifications are for T
A
OUT
OUT
OUT2
OUT2_EN
OUT2_EN
OUT2
OUT2
OUT2
OUT2
OUT2
. The LTC3108E is guaranteed to meet specifications from 0°C to 85°C
Quiescent Current
Current Limit
Leakage Current
Turn-On Time
Turn-Off Time
Current Limit
Current Limit Response Time
P-Channel MOSFET On-Resistance
OL
OH
Threshold Voltage
Pull-Down Resistance
CONDITIONS
VS1 = VS2 = GND
VS1 = VAUX, VS2 = GND
VS1 = GND, VS2 = VAUX
VS1 = VS2 = VAUX
V
No Load, All Outputs Charged
0.5mA Load
For 0mA to 2mA Load
For VAUX from 2.5V to 5V
I
V
V
VSTORE = 0V
Current into VAUX = 5mA
VSTORE = 5V
V
VS1 = VS2 = 5V
Measured Relative to the V
Measured Relative to the V
Sink Current = 100µA
Source Current = 0
V
(Note 3)
V
(Note 3)
V
C2 = 5V (Note 3)
LDO
OUT
LDO
OUT
OUT2
OUT2_EN
OUT
OUT
= 2mA
= 3.3V, V
= 0V
= 0V
= 3.3V
= 3.3V (Note 3)
= 0V, V
Rising
OUT2_EN
OUT2_EN
The
= 0V
= 0V
J
A
l
= 25°C (Note 2). VAUX = 5V, unless otherwise noted.
OUT
OUT
denotes the specifications which apply over the full operating
Voltage
Voltage
temperature (T
power dissipation (P
where θ
Note 3: Specification is guaranteed by design and not 100% tested in
production.
Note 4: Failure to solder the exposed backside of the package to the PC
board ground plane will result in a thermal resistance much higher than
43°C/W.
Note 5: The absolute maximum rating is a DC rating. Under certain
conditions in the applications shown, the peak AC voltage on the C2 pin
may exceed ±8V. This behavior is normal and acceptable because the
current into the pin is limited by the impedance of the coupling capacitor.
JA
is the package thermal impedance.
J
) is calculated from the ambient temperature (T
D
) according to the formula: T
l
l
l
l
l
l
l
l
l
l
l
l
l
3.234
4.018
2.134
2.30
4.90
0.15
MIN
2.8
2.8
0.4
2.1
0.4
4
5
2.350
3.300
4.100
5.000
0.05
5.25
0.85
0.01
–7.5
0.15
0.15
TYP
100
350
0.2
2.2
0.5
4.5
4.5
0.1
0.1
2.2
0.3
1.3
0.5
11
–9
6
1
1
5
5
J
= T
LTC3108
A
+ (P
3.366
4.182
2.266
MAX
2.40
5.10
5.55
0.45
200
0.2
0.3
1.2
0.1
0.3
2.3
1.3
9
1
7
7
D
A
• θ
) and
JA
°C/W),
UNITS
3108fa

mV
mA
mA
mA
µA
µA
µA
µA
µA
µs
µs
ns
%
%
%
%
Ω
Ω
V
V
V
V
V
V
V
V
V
V
A

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