参数资料
型号: AS5045-ASST
厂商: ams
文件页数: 29/34页
文件大小: 0K
描述: IC ENCODER PROG 12-BIT 16-SSOP
应用说明: AS5000 Series Magnet Selection Guide
AS5000 Series Magnets for Extended Vertical Range
标准包装: 1
传感范围: 45mT ~ 75mT
类型: 线性,旋转编码器 - 可编程
电源电压: 3 V ~ 3.6 V,4.5 V ~ 5.5 V
电流 - 电源: 21mA
电流 - 输出(最大): 4mA
输出类型: 数字式,PWM,12 位串行
特点: 可编程
工作温度: -40°C ~ 125°C
封装/外壳: 16-SSOP(0.209",5.30mm 宽)
供应商设备封装: 16-SSOP
包装: 标准包装
产品目录页面: 804 (CN2011-ZH PDF)
其它名称: AS5045-ASSTDKR
in fast mode (pin MODE = high) and 0.03 degrees rms (1 sigma) *1 in slow mode (pin MODE = low or
(1 sigma)
AS5045
Data Sheet
17.2 Transition Noise
Transition noise is defined as the jitter in the transition between two steps.
Due to the nature of the measurement principle (Hall sensors + Preamplifier + ADC), there is always a certain degree
of noise involved.
This transition noise voltage results in an angular transition noise at the outputs. It is specified as 0.06 degrees rms
*1
open).
This is the repeatability of an indicated angle at a given mechanical position.
The transition noise has different implications on the type of output that is used:
Absolute output; SSI interface:
The transition noise of the absolute output can be reduced by the user by implementing averaging of
readings. An averaging of 4 readings will reduce the transition noise by 6dB or 50%, e.g. from 0.03°rms to
0.015°rms (1 sigma) in slow mode.
PWM interface:
If the PWM interface is used as an analog output by adding a low pass filter, the transition noise can be reduced
by lowering the cutoff frequency of the filter.
If the PWM interface is used as a digital interface with a counter at the receiving side, the transition noise may
again be reduced by averaging of readings.
*1
: statistically, 1 sigma represents 68.27% of readings, 3 sigma represents 99.73% of readings.
17.3 High Speed Operation
17.3.1 Sampling Rate
The AS5045 samples the angular value at a rate of 2.61k (slow mode) or 10.42k (fast mode, selectable by pin
MODE) samples per second. Consequently, the absolute outputs are updated each 384μs (96μs in fast mode).
At a stationary position of the magnet, the sampling rate creates no additional error.
Absolute Mode
At a sampling rate of 2.6kHz/10.4kHz, the number of samples (n) per turn for a magnet rotating at high speed can be
calculated by
n slow mod e =
n fast mod e =
60
rpm ? 384 μ s
60
rpm ? 96 μ s
The upper speed limit in slow mode is ~6.000rpm and ~30.000rpm in fast mode. The only restriction at high speed is
that there will be fewer samples per revolution as the speed increases (see Table 2 ).
Regardless of the rotational speed, the absolute angular value is always sampled at the highest resolution of 12 bit.
www.austriamicrosystems.com
Revision 1.7
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