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ATS665LSG データシート(PDF) 13 Page - Allegro MicroSystems

部品番号 ATS665LSG
部品情報  True Zero Speed, High Accuracy, Gear Tooth Sensor
PDF  17 Pages
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メーカー  ALLEGRO [Allegro MicroSystems]
ホームページ  http://www.allegromicro.com
Logo ALLEGRO - Allegro MicroSystems

ATS665LSG データシート(HTML) 13 Page - Allegro MicroSystems

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ATS665LSG
TRUE ZERO-SPEED GEAR TOOTH SENSOR
POWER DE-RATING
Due to internal power consumption, the junction
temperature of the IC, Tj, is higher than the ambient
environment temperature, Ta. To ensure that the device
does not operate above the maximum rated junction
temperature use the following calculations:
Tj = Ta +
ΔT
Then, at Ta = 150 °C:
= Tj
– Ta
= 165°C - 150°C = 15°C
ΔTmax
max
max
If:
ΔT = P * Rθja
* R
θja
ΔT = P
D
D
Where: P = Vcc * Icc
Then, at Ta = 150°C:
D
=
ΔT
/ R
θja = 15°C / 126°C/W = 119 mW
PDmax
max
∴ ΔT=Vcc * Icc * Rθja
If:
Where
ΔT denotes the temperature rise resulting from
the IC’s power dissipation.
P = Vcc * Icc
D
Then the maximum Vcc at 150°C is therefore:
Tj = Ta +
ΔT
Vccmax = P
/ Icc = 119 mW / 12.0 mA = 9.9 V
Dmax
For the sensor :
This value applies only to the voltage drop across the
665 chip. If a protective series diode or resistor is used,
the effective maximum supply voltage is increased.
Tj(max) = 165°C
R
θja = 126°C/W
Typical Tj calculation:
For example, when a standard diode with a 0.7 V drop is
used:
Ta = 25 °C
Vsmax = 9.9 V + 0.7 V = 10.6 V
Vcc = 5 V
Icc = 7.0 mA
Final Version, Rev 2.0; MN; 19Dec05
Page 13
115 Northeast Cutoff, Box 15036
Worcester, Massachusetts 01615-0036 (508) 853-5000
Copyright © 1993, 1995, 2005 Allegro MicroSystems, Inc.
ATS665LSG Package Power De-Rating Curve
Thermal Resistance = 126°C/Watt, Tjmax = 165°C
0.0
2.0
4.0
6.0
8.0
10.0
12.0
14.0
16.0
18.0
20.0
22.0
24.0
26.0
28.0
30.0
20
40
60
80
100
120
140
160
180
Ambient Temperature [°C]
c
PD = Vcc * Icc = 5 V * 8.0 mA = 40.0 mW
ΔT = P * Rθja = 40.0 mW * 126°C/W = 5.0°C
D
Tj = Ta +
ΔT = 25 °C + 5.0°C = 30.0°C
Maximum Allowable Power Dissipation Calculation
for ATS665:
Assume:
Ta = Tamax = 165 °C
Tj(max) = 165°C
4
Icc = 12.0 mA
If:
4max Icc @ 150C < max Icc @ 25C, see characteristic
data



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