LM26CIM5-SPA National Semiconductor, LM26CIM5-SPA Datasheet - Page 4

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LM26CIM5-SPA

Manufacturer Part Number
LM26CIM5-SPA
Description
THERMOSTAT TRIP @ 75C, SMD, SOT23-5
Manufacturer
National Semiconductor
Datasheet

Specifications of LM26CIM5-SPA

Ic Output Type
Voltage
Sensing Accuracy Range
± 3°C
Supply Current
20µA
Supply Voltage Range
2.7V To 5.5V
Sensor Case Style
SOT-23
No. Of Pins
5
Svhc
No SVHC (15-Dec-2010)
Operating
RoHS Compliant
Temperature Sensing Range
-55°C To +110°C
Rohs Compliant
Yes

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Active-Low/High
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is
functional, but do not guarantee specific performance limits. For guaranteed specifications and test conditions, see the Electrical Characteristics. The guaranteed
specifications apply only for the test conditions listed. Some performance characteristics may degrade when the device is not operated under the listed test
conditions.
Note 2: When the input voltage (V
maximum package input current rating limits the number of pins that can safely exceed the power supplies with an input current of 5mA to four. Under normal
operating conditions the maximum current that pins 2, 4 or 5 can handle is limited to 5mA each.
Note 3: The maximum power dissipation must be derated at elevated temperatures and is dictated by T
ambient thermal resistance) and T
given in the Absolute Maximum Ratings, whichever is lower. For this device, T
package types when board mounted follow:
Note 4: The human body model is a 100pF capacitor discharge through a 1.5kΩ resistor into each pin. The machine model is a 200pF capacitor discharged
directly into each pin.
Note 5: See the URL ”http://www.national.com/packaging/“ for other recommendations and methods of soldering surface mount devices.
Note 6: Typicals are at T
Note 7: Limits are guaranteed to National's AOQL (Average Outgoing Quality Level).
Note 8: Care should be taken to include the effects of self heating when setting the maximum output load current. The power dissipation of the LM26 would
increase by 1.28mW when I
temperature of about 0.32°C due to self heating. Self heating is not included in the trip point accuracy specification.
Note 9: The 1µA limit is based on a testing limitation and does not reflect the actual performance of the part. Expect to see a doubling of the current for every
15°C increase in temperature. For example, the 1nA typical current at 25°C would increase to 16nA at 85°C.
Part Number Template
The series of digits labeled xyz in the part number LM26CIM-xyz, describe the set point value and the function of the output as
follows:
The place holders xy describe the set point temperature as shown in the following table.
The value of z describes the assignment/function of the output as shown in the following table:
For example:
Active-high open-drain and active-low push-pull options are available, please contact National Semiconductor for more information.
the part number LM26CIM5-TPA has T
output.
the part number LM26CIM5-FPD has T
output.
x (10x)
0
0
1
1
A
B
C
D
E
H
K
F
L
J
J
Open-Drain/ Push-
= T
OUT
y (1x)
A
=3.2mA and V
= 25°C and represent most likely parametric norm.
H
K
J
L
-
-
-
-
-
-
A
I
) at any pin exceeds the power supply (V
Pull
(ambient temperature). The maximum allowable power dissipation at any temperature is P
0
0
1
1
OUT
Temperature (°C)
=0.4V. With a thermal resistance of 250°C/W, this power dissipation would cause an increase in the die
OS
US
−5
−4
−3
−2
−1
−0
= 85°C, and programmed as an active-low open-drain overtemperature shutdown
= −5°C, and programmed as an active-high, push-pull undertemperature shutdown
0
1
2
3
SOT23-5, MA05B
Package Type
OS/US
0
1
0
1
I
< GND or V
Jmax
4
= 150°C. For this device the typical thermal resistance (θ
Value of z
250°C/W
I
> V
θ
C
D
A
B
x (10x)
+
JA
), the current at that pin should be limited to 5mA. The 20mA
N
P
R
S
V
X
Y
T
Z
Jmax
Digital Output Function
Active-Low, Open-Drain, OS output
Active-Low, Open-Drain, US output
Active-High, Push-Pull, OS output
Active-High, Push-Pull, US output
(maximum junction temperature), θ
y (1x)
N
R
P
S
T
V
-
-
-
D
= (T
Temperature (°C)
Jmax
–T
A
JA
)/θ
10
11
12
4
5
6
7
8
9
) of the different
JA
JA
or the number
(junction to

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