AMIS30622C6228G ON Semiconductor, AMIS30622C6228G Datasheet - Page 45

IC MOTOR DVR MICROSTP I2C 32NQFP

AMIS30622C6228G

Manufacturer Part Number
AMIS30622C6228G
Description
IC MOTOR DVR MICROSTP I2C 32NQFP
Manufacturer
ON Semiconductor
Type
Micro Stepping Motor Driverr
Datasheet

Specifications of AMIS30622C6228G

Applications
Stepper Motor Driver
Number Of Outputs
1
Current - Output
800mA
Voltage - Supply
6.5 V ~ 29 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
32-VSQFP
Operating Supply Voltage
5 V
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Load
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

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AMIS30622C6228G
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SetDualPosition
This command is provided to the circuit by the I
in order to perform a positioning of the motor using two
different velocities. See Section Dual Positioning.
Note: This sequence cannot be interrupted by another
positioning command.
Important: If for some reason ActPos equals
Pos1[15:0] at the moment the SetDualPosition
SetDualPosition
Where:
Vmax[3:0]
Vmin[3:0]
Table 37. SetDualPosition COMMAND FRAME
Byte
0
1
2
3
4
5
6
7
8
Max. velocity for first motion
Min. velocity for first motion and
velocity for the second motion
Command
Content
Address
Data 1
Data 2
Data 3
Data 4
Data 5
Data 6
Data 7
Bit 7
1
1
1
1
2
C master
http://onsemi.com
Bit 6
1
0
1
1
Vmax[3:0]
45
command is issued, the circuit will enter in deadlock state.
Therefore, the application should check the actual position
by a GetFullStatus2 corresponds to the following I
command frame command prior to starting a dual
positioning. Another solution may consist of programming
a value out of the stepper motor range for Pos1[15:0].
For the same reason Pos2[15:0] should not be equal to
Pos1[15:0].
OTP3
Pos1[15:0]
Pos2[15:0]
Bit 5
0
1
1
OTP2
Bit 4
Pos1[15:8]
Pos2[15:8]
Structure
Pos1[7:0]
Pos2[7:0]
0
1
1
First position to be reached during the
Relative position of the second motion
first motion
OTP1
Bit 3
1
1
1
OTP0
Bit 2
0
1
1
Vmin[3:0]
Bit 1
HW
0
1
1
Bit 0
0
0
1
1
2
C

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