参数资料
型号: AMIS30623C6238G
厂商: ON Semiconductor
文件页数: 19/61页
文件大小: 0K
描述: IC MOTOR DRIVER/CTLR 20-SOIC
标准包装: 38
应用: 步进电机驱动器
评估套件: 可供
输出数: 1
电流 - 输出: 800mA
电源电压: 6.5 V ~ 29 V
工作温度: -40°C ~ 165°C
安装类型: 表面贴装
封装/外壳: 20-SOIC(0.295",7.50mm 宽)
供应商设备封装: 20-SOIC
包装: 管件
AMIS ? 30623
Condition
R2 VBAT
OPEN
R2 VBAT
R2 GND
t
DriveLS
DriveHS
Tsw = 1024 m s
Tsw_on = 128 m s
t
t
“R” ? Comp
R th
t
HW2_Cmp
t
State
t
Figure 11. Timing Diagram Showing the Change in States for HW2 Comparator
R2VBAT
A resistor is connected between VBAT and HW2. Every
1024 m s S BOT is closed and a current is sensed. The output
of the I ? R converter is low and the HW2_Cmp output is
high. Assuming the previous state was floating, the internal
logic will interpret this as a change of state and the new state
will be high (see also Table 15). The next time S BOT is closed
the same conditions are observed. The previous state was
high so based on Table 15 the new state remains unchanged.
This high state will be interpreted as HW2 address = 1.
OPEN
In case the HW2 connection is lost (broken wire, bad
contact in connector) the next time S BOT is closed, this will
be sensed. There will be no current, the output of the
corresponding I ? R converter is high and the HW2_Cmp
will be low. The previous state was high. Based in Table 15
one can see that the state changes to float. This will trigger
a motion to secure position after a debounce time of 64 ms,
which prevents false triggering in case of micro ?
interruptions of the power supply.
R2GND
If a resistor is connected between HW2 and the GND, a
current is sensed every 1024 m s when S TOP is closed. The
output of the top I ? R converter is low and as a result the
HW2_Cmp output switches to high. Again based on the
stated diagram in Table 15 one can see that the state will
change to Low. This low state will be interpreted as HW2
address = 0.
External Switch SWI
As illustrated in Figure 12 the SWI comparator is almost
identical to HW2. The major difference is in the limited
number of states. Only open or closed is recognised leading
to respectively ESW = 0 and ESW = 1.
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