ATS667LSGTN-T Allegro Microsystems Inc, ATS667LSGTN-T Datasheet - Page 11

3-WIRE TRUE 0-SPEED HI ACCURACY GTS

ATS667LSGTN-T

Manufacturer Part Number
ATS667LSGTN-T
Description
3-WIRE TRUE 0-SPEED HI ACCURACY GTS
Manufacturer
Allegro Microsystems Inc
Type
Special Purposer
Datasheet

Specifications of ATS667LSGTN-T

Sensing Range
70% of Air Gap Trip, 30% of Air Gap Release
Voltage - Supply
4 V ~ 24 V
Current - Supply
12mA
Current - Output (max)
25mA
Output Type
Digital, Open Collector
Features
Gear Tooth Type
Operating Temperature
-40°C ~ 150°C
Package / Case
4-SIP
Operating Supply Voltage (min)
4V
Operating Supply Voltage (typ)
5/9/12/15/18V
Operating Supply Voltage (max)
24V
Output Current
20mA
Package Type
SIP Module(SG)
Pin Count
4
Mounting
Through Hole
Operating Temp Range
-40C to 150C
Operating Temperature Classification
Automotive
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
620-1328-2
ATS667LSG
Undervoltage Lockout
When the supply voltage falls below the undervoltage lockout
voltage, V
state returns to the Power-On State (POS) until sufficient V
is supplied. I
< V
by undervoltage conditions, from propagating to the output of the
IC.
Power Supply Protection
The device contains an on-chip regulator and can operate over a
wide V
lated power supply, transient protection must be added externally.
For applications using a regulated line, EMI/RFI protection may
still be required. Contact Allegro for information on the circuitry
needed for compliance with various EMC specifications. Refer
to figure 6 for an example of a basic application circuit.
Automatic Gain Control (AGC)
This feature allows the device to operate with an optimal internal
electrical signal, regardless of the air gap (within the AG speci-
fication). At power-on, the device determines the peak-to-peak
amplitude of the signal generated by the target. The gain of the IC
is then automatically adjusted. Figure 7 illustrates the effect of
this feature.
Figure 6. Typical circuit for proper device operation.
C
0.1 μF
(Required)
CC
BYPASS
(min). This lockout feature prevents false signals, caused
CC
CC(UV)
range. For devices that must operate from an unregu-
V
CC
CC
levels may not meet datasheet limits when V
, the device enters Reset, where the output
1
VCC
GND
ATS667
4
TEST
True Zero-Speed, High Accuracy Gear Tooth Sensor IC
3
VOUT
2
V
R
C
PULLUP
PULLUP
L
CC
CC
Automatic Offset Adjust (AOA)
The AOA circuitry automatically compensates for the effects of
chip, magnet, and installation offsets. This circuitry is continu-
ously active, including during both power-on mode and running
mode, compensating for any offset drift (within the Allowable
User Induced Differential Offset). Continuous operation also
allows it to compensate for offsets induced by temperature varia-
tions over time.
Running Mode Lockout
The ATS667 has a running mode lockout feature to prevent
switching in response to small signals that are characteristic of
vibration signals. The internal logic of the chip considers small
signal amplitudes below a certain level to be vibration. The out-
put is held to the state prior to lockout until the amplitude of the
signal returns to normal operational levels.
Assembly Description
The ATS667 is integrally molded into a plastic body that has
been optimized for size, ease of assembly, and manufacturability.
High operating temperature materials are used in all aspects of
construction.
Figure 7. Automatic Gain Control (AGC). The AGC function corrects for
variances in the air gap. Differences in the air gap cause differences in
the magnetic field at the device, but AGC prevents that from affecting
device performance, as shown in the lowest panel.
Response, without AGC
Response, with AGC
Internal Differential
Internal Differential
Mechanical Profile
Ferrous Target
Analog Signal
Analog Signal
V+
V+
115 Northeast Cutoff
1.508.853.5000; www.allegromicro.com
Allegro MicroSystems, Inc.
Worcester, Massachusetts 01615-0036 U.S.A.
AG
AG
AG
AG
Large
Small
Small
Large
11

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