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ATS657LSHTN-T Datasheet(PDF) 3 Page - Allegro MicroSystems

Part # ATS657LSHTN-T
Description  The ATS657 includes an optimized Hall-effect sensing integrated circuit (IC) and rare earth pellet to create a user..
PDF  15 Pages
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Manufacturer  ALLEGRO [Allegro MicroSystems]
Direct Link  http://www.allegromicro.com
Logo ALLEGRO - Allegro MicroSystems

ATS657LSHTN-T Datasheet(HTML) 3 Page - Allegro MicroSystems

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Dynamic, Self-Calibrating, Threshold-Detecting, Differential
Speed and Direction Hall-Effect Gear Tooth Sensor IC
ATS657
3
Allegro MicroSystems, Inc.
115 Northeast Cutoff
Worcester, Massachusetts 01615-0036 U.S.A.
1.508.853.5000; www.allegromicro.com
ELECTRICAL CHARACTERISTICS Valid over operating voltage and temperature ranges, unless otherwise noted
Characteristics
Symbol
Test Conditions
Min.
Typ.1
Max.
Unit2
Supply Voltage
VCC
Operating, TJ < TJ(max)
4.0
–
18
V
Undervoltage Lockout
VCC(UV)
VCC = 0 → >4 V, or >4 → 0 V
–
3.5
4.0
V
Reverse Supply Current
IRCC
VCC = –18 V
–
–
–10
mA
Supply Zener Clamp Voltage
VZ(SUPPLY) ICC = ICC(max) + 3 mA, TA = 25°C
24.0
–
–
V
Supply Zener Resistance
RZ
–<5
–
Ω
Supply Current
ICC(LOW)
Low-current state (Running mode)
5.0
6.5
8.0
mA
ICC(HIGH)
High-current state (Running mode)
12
14.0
16
mA
ICC(SU)(LOW) Startup current level and Power-On mode
5.0
7.0
8.5
mA
ICC(SU)(HIGH) High-current state (Calibration)
12
14.5
16.5
mA
Current Level Difference
∆ICC
ICC(HIGH) – ICC(LOW)
5–
–mA
Power-On Characteristics3
Power-On Time
ton
Speed < 200 Hz
–
–
2.0
ms
Initial Calibration
First Output Pulse with Direction4
NDIR
Speed < 200 Hz, constant rotation direction
–
–
6
Edge
First Output Pulse5
NNONDIR
Speed < 200 Hz, constant rotation direction
–
–
2
Edge
AGC Disable
Nf
Speed < 200 Hz, constant rotation direction
–
–
5
Edge
Vibration Check
NVIBCHECK Speed < 200 Hz, after AGC disable
–
3
–
Edge
Time Until Correct Direction Output on
High-Speed Startup
tHIGHSU
10 kHz startup, B = 300 Gpk-pk
–5
–
ms
Running Mode Calibration6
Non-Direction Pulse Output on Direction
Change
NNONDIR_DC Running mode, direction change
–
1
2
Pulse
First Direction Pulse Output on Direction
Change
NDC
Running mode, direction change
–
2
3
Pulse
DAC Characteristics
Allowable User-Induced Differential
Offset7
BDIFFEXT
Both differential channels
–
±60
–
G
Output Stage
Output Slew Rate
SROUT
RL = 100 Ω, CL = 10 pF; ICC(HIGH) → ICC(LOW),
ICC(LOW) → ICC(HIGH), 10% to 90% points
7
16.0
–
mA/μs
1Typical data is at VCC = 8 V and TA = +25°C, unless otherwise noted. Performance may vary for individual units, within the specified maximum and
minimum limits.
21 G (gauss) = 0.1 mT (millitesla).
3Power-On Time is the time required to complete the initial internal automatic offset adjust; the DACs are then ready for peak acquisition.
4Direction of the first output pulse on the 6th edge may not be correct when undergoing vibration.
5Non-direction pulse output only. See figure 3 for more details.
6Direction pulse will typically occur on the 2nd output pulse after a direction change. This will hold true unless an offset change at zero speed results in
an offset correction event. Note that no output blanking occurs after a direction change.
7The device will compensate for magnetic and installation offsets up to ±60 G. Offsets greater than ±60 G may cause inaccuracies in the output.



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