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HAL855 Datasheet(PDF) 29 Page - Micronas

Part # HAL855
Description  Programmable Linear Hall-Effect Sensor with Arbitrary Output Characteristic
PDF  42 Pages
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Manufacturer  MICRONAS [Micronas]
Direct Link  http://www.micronas.com
Logo MICRONAS - Micronas

HAL855 Datasheet(HTML) 29 Page - Micronas

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DATA SHEET
HAL855
Micronas
Nov. 26, 2008; DSH000149_003EN
29
4.5. Ambient Temperature
Due to the internal power dissipation, the temperature
on the silicon chip (junction temperature TJ) is higher
than the temperature outside the package (ambient
temperature TA).
At static conditions and continuous operation, the fol-
lowing equation applies:
For typical values, use the typical parameters. For
worst case calculation, use the max. parameters for
IDD and Rth, and the max. value for VDD from the
application.
Example with typical given values:
IDD =0.007 A
VDD =5 V
Rthja = 235 K/W
Tjmax = 170
The current through the output is calculated as follows:
VPull-up = 5 V
RPull-up = 470 Ω
RDS,on =50 Ω
ΔT is calculated as follows:
The maximum ambient temperature TAmax can be
calculated as:
−1080
−17
10
−1150
−16
11
−1180
−15
11
−1270
−14
12
−1290
−13
12
−1360
−12
13
−1430
−11
14
−1460
−10
14
−1540
−915
−1600
−816
−1670
−717
−1740
−618
−1810
−519
−1880
−420
−1950
−321
−2020
−222
−2100
−123
Table 4–1: Temperature compensation, continued
Typ. Temperature Coefficient
of Magnet (ppm/K)
TC
TCSQ
T
J
T
A
T
Δ
+
=
T
Δ
I
DD
V
DD
×
R
thjx
×
I
Out
V
OutLow
×
R
thjx
×
+
=
I
Out
V
Pull
up
–
R
Pull
up
–
R
+
DS on
,
----------------------------------------------
5V
520
Ω
-------------
0.01A
∼
=
=
V
OutLow
I
Out
R
DS on
,
×
0.01A
50
Ω
×
0.5V
==
=
ΔT
0.007A
5V
235
×
K
W
-----
0.01
+
A
0.
× 5V 235
×
K
W
-----
9.4
=
×
=
T
Amax
T
Jmax
T
Δ
–
=



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