EVAL6229PD STMicroelectronics, EVAL6229PD Datasheet - Page 26

EVAL BOARD FOR L6229PD SOIC

EVAL6229PD

Manufacturer Part Number
EVAL6229PD
Description
EVAL BOARD FOR L6229PD SOIC
Manufacturer
STMicroelectronics
Datasheet

Specifications of EVAL6229PD

Mfg Application Notes
L6235, AN1625 App Note
Main Purpose
Power Management, Motor Control
Embedded
No
Utilized Ic / Part
L6229PD SOIC
Primary Attributes
3-Ph BLDC, 8 ~ 52V Output, PWM Current Control, Brake Function
Secondary Attributes
Over Current, Cross Conduction & Temperature Protection
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-5491

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
EVAL6229PD
Manufacturer:
STMicroelectronics
Quantity:
135
AN1451 APPLICATION NOTE
2.15 Choosing the Stepping Sequence
The device can provide three different sequences to run a stepper motor: full step two phase on (Normal drive),
full step one phase on (Wave drive) and Half step.
If Half Step driving is used, the motor advances by half a step after each clock pulse, obtaining a higher position
resolution and reducing instability due to low-torque regions in certain motors' speed-torque diagrams, when
used in full step mode (see Figure 27).
Figure 27. Torque instability in full step mode.
Using this driving method the torque is affected by ripple, because in odd-numbered states, when both coils are
driven, the total current in the motor windings is double than in even-numbered states.
A way to avoid the high torque ripple in half step mode is to supply to the motor a higher current (by a factor of
reference voltage at the V
Figure 28. Balanced Half Step for low torque ripple.
26/43
2
) during the even numbered states, in which only one winding is energized, simply by applying a
Startup or
Reset
Balanced Half Step
Torque
3
2
1
refA
, V
4
8
refB
pins during these states (see Figure 28) [2].
5
6
7
V
ref A
=V
Clock
I
I
A
B
ref B
1
2
V
3
ref
V
ref
4
* 2
5
Speed
6
7
8
2
higher

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