参数资料
型号: A1645LK-I2
厂商: Allegro Microsystems Inc
文件页数: 9/14页
文件大小: 356K
描述: IC SENSOR HALL EFFECT AC 4-SIP
产品培训模块: Current Sensor
标准包装: 500
传感范围: 120mV 跳闸,120mV 释放
类型: 专用型
电源电压: 4 V ~ 24 V
电流 - 电源: 8.4mA
输出类型: 数字,开路集电极
工作温度: -40°C ~ 150°C
封装/外壳: 4-SIP
供应商设备封装: 4-SIP
包装: 散装
Two-Wire True Zero-Speed Miniature Differential
Peak-Detecting Sensor IC with Continuous Calibration
A1642
9
Allegro MicroSystems, LLC
115 Northeast Cutoff
Worcester, Massachusetts 01615-0036 U.S.A.
1.508.853.5000; www.allegromicro.com
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-
 cation). During calibration, the device determines the peak-to-
peak amplitude of the signal generated by the target. The gain of
the device is then automatically adjusted. Figure 5 illustrates the
effect of this feature.
Automatic Offset Adjust (AOA)
The AOA is patented circuitry that automatically compensates
for the effects of chip, magnet, and installation offsets. (For
capability, see Dynamic Offset Cancellation, in the Operat-
ing Characteristics table.) This circuitry is continuously active,
including both during calibration mode and running mode,
compensating for offset drift. Continuous operation also allows
it to compensate for offsets induced by temperature variations
over time.
Digital Peak Detection
A digital DAC tracks the internal analog voltage signal V
PROC
,
and is used for holding the peak value of the internal analog
signal. In the example shown in  gure 6, the DAC would  rst
track up with the signal and hold the upper peaks value. When
V
PROC
 drops below this peak value by B
OP
, the device hyster-
esis, the output would switch and the DAC would begin tracking
the signal downward toward the negative V
PROC
 peak. Once the
DAC acquires the negative peak, the output will again switch
states when V
PROC
 is greater than the peak by the value B
RP
. At
this point, the DAC tracks up again and the cycle repeats. The
digital tracking of the differential analog signal allows the device
to achieve true zero-speed operation.
Figure 5. Automatic Gain Control (AGC). The AGC function corrects for
variances in the air gap. Differences in the air gap affect the magnetic
gradient, but AGC prevents that from affecting device performance, as
shown in the lowest panel.
N
N
S
S
AG
Small
AG
Large
AG
Small
AG
Large
Internal Differential
Analog Signal
Response, with AGC
Internal Differential
Analog Signal
Response, without AGC
V+
V+
Target
Ring Magnet
Figure 6: Peak Detecting Switchpoint Detail
Device
Output Current
B
RP
Internal
Differential
Analog Signal
V+
I+
B
OP
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