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PDF AMIS-30522 Data sheet ( Hoja de datos )

Número de pieza AMIS-30522
Descripción Micro-stepping Motor Driver
Fabricantes AMI SEMICONDUCTOR 
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AMIS-30522 Micro-stepping Motor Driver
Data Sheet
1.0 Introduction
The AMIS-30522 is a micro-stepping stepper motor driver for bipolar stepper motors. The chip is connected through I/O pins and a SPI
interface with an external microcontroller. It has an on-chip voltage regulator, reset-output and watchdog reset, able to supply peripheral
devices. AMIS-30522 contains a current-translation table and takes the next micro-step depending on the clock signal on the “NXT”
input pin and the status of the “DIR” (=direction) register or input pin. The chip provides a so-called “speed and load angle” output. This
allows the creation of stall detection algorithms and control loops based on load-angle to adjust torque and speed. It is using a
proprietary PWM algorithm for reliable current control.
The AMIS-30522 is implemented in I2T100 technology, enabling both high-voltage analog circuitry and digital functionality on the same
chip. The chip is fully compatible with the automotive voltage requirements.
The AMIS-30522 is ideally suited for general-purpose stepper motor applications in the automotive, industrial, medical, and marine
environment. With the on-chip voltage regulator it further reduces the BOM for mechatronic stepper applications.
2.0 Key Features
Dual H-Bridge for 2-phase stepper motors
Programmable peak-current up to 1.6A using a 5-bit current DAC
On-chip current translator
SPI interface
Speed and load angle output
Seven step modes from full step up to 32 micro-steps
Fully integrated current-sense
PWM current control with automatic selection of fast and slow decay
Low EMC PWM with selectable voltage slopes
Active fly-back diodes
Full output protection and diagnosis
Thermal warning and shutdown
Compatible with 5V and 3.3V microcontrollers
Integrated 5V regulator to supply external microcontroller
www.DataShIneteet4gUra.cteomd reset function to reset external microcontroller
Integrated watchdog function
3.0 Ordering information
Table 1: Ordering Information
Part No.
AMIS-30522 ANA
Package
NQFP-32 (7 x 7mm)
Peak Current
1600mA
Temp. Range
-40°C…..125°C
Ordering Code
Tubes
0C522-001-XTD
Ordering Code
Tapes
0C522-001-XTP
AMI Semiconductor – June 2007, M-20684-001
www.amis.com
1

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AMIS-30522 pdf
AMIS-30522 Micro-stepping Motor Driver
Data Sheet
6.3 DC Parameters
The DC parameters are given for VBB and temperature in their operating ranges unless otherwise specified. Convention: currents
flowing in the circuit are defined as positive.
Table 5: DC Parameters
Symbol Pin(s)
Parameter
Remark/Test Conditions
Supply and Voltage Regulator
VBB
IBB
VDD
IINT
ILOAD
VBB
VDD
Nominal operating supply range
Total internal current consumption
Regulated output voltage
Internal load current
Max. output current (external and
internal loads)
IDDLIM
ILOAD_PD
Current limitation
Output current in power down
Unloaded outputs
Unloaded outputs
6V < VBB < 8V
8V < VBB < 30V
Pin shorted to ground
Power-on-Reset (POR)
VDDH
VDDL
VDD
Internal POR comparator threshold
Internal POR comparator threshold
VDD rising
VDD falling
Motordriver
IMDmax,Peak
IMDmax,RMS
Max current through motor coil in
normal operation
Max RMS current through coil in normal
operation
IMDabs
IMDrel
RHS
RLS3
RLS2
MOTXP
MOTXN
MOTYP
MOTYN
RLS1
RLS0
wwIMwpd.DataSheet4U.com
Absolute error on coil current
Error on current ratio Icoilx / Icoily
On-resistance high-side driver,
CUR[4:0] = 0...31
On-resistance low-side driver,
CUR[4:0] = 23...31
On-resistance low-side driver,
CUR[4:0] = 16...22
On-resistance low-side driver,
CUR[4:0] = 9...15
On-resistance low-side driver,
CUR[4:0] = 0...8
Pull-down current
Vbb = 12V, Tj = 27 °C
Vbb = 12V, Tj = 160 °C
Vbb = 12V, Tj = 27 °C
Vbb = 12V, Tj = 160 °C
Vbb = 12V, Tj = 27 °C
Vbb = 12V, Tj = 160 °C
Vbb = 12V, Tj = 27 °C
Vbb = 12V, Tj = 160 °C
Vbb = 12V, Tj = 27 °C
Vbb = 12V, Tj = 160 °C
HiZ mode
Logic Inputs
Ileak DI, CLK Input leakage (3)
VinL NXT, DIR Logic low threshold
VinH CLR, CSB Logic high threshold
Rpd
CLR
TST0
Internal pull-down resistor
Tj = 160 °C
Thermal Warning and Shutdown
Ttw
T (1) (2)
tsd
Thermal warning
Thermal shutdown
Charge Pump
Vcp
Cbuffer
Cpump
Notes:
VCP Output voltage
External buffer capacitor
CPP CPN External pump capacitor
6V< VBB < 15V
15V < VBB < 30V
(1) No more than 100 cumulated hours in life time above Ttw.
(2) Thermal shutdown and low temperature warning are derived from thermal warning.
(3) Not valid for pins with internal pull-down resistor.
Min.
6
4.75
20
50
1
4.0
Typ.
5
Max.
30
8
5.25
Unit
V
mA
V
150 mA
4.25 4.4 V
3.68 V
-10
-7
3.5
120
1600
800
0.45
0.94
0.45
0.94
0.90
1.9
1.8
3.8
3.6
7.5
0.5
mA
mA
10 %
7%
0.56
1.25
0.56
1.25
1.2
2.5
2.3
5.0
4.5
10
mA
1 µA
1.5 V
V
300 k
138
VBB+12.5
180
180
145
Ttw + 20
152
2 * VBB – 2.5
VBB+14
220
220
VBB+15.5
470
470
°C
°C
V
V
nF
nF
AMI Semiconductor – June 2007, M-20684-001
www.amis.com
5

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AMIS-30522 arduino
AMIS-30522 Micro-stepping Motor Driver
Data Sheet
Iy
Start = 0
Step 1
Step 2
Step 3
Ix
Iy
Start = 0
Step 1
IxStep 2
Step 3
1/4th micro step
SM[2:0] = 011
Uncompensated Half Step
SM[2:0] = 101
PC20070604.5
Figure 8: Translator Table: Circular and Square
8.3.2. Direction
The direction of rotation is selected by means of following combination of the DIR input pin and the SPI-controlled direction bit
<DIRCTRL>. (Table 16: SPI Control Register 1)
8.3.3. NXT input
Changes on the NXT input will move the motor current one step up/down in the translator table. Depending on the NXT-polarity bit
<NXTP> (Table 16: SPI Control Register 1), the next step is initiated either on the rising edge or the falling edge of the NXT input.
tNXT_HI
tNXT_LO
www.DataSheet4U.com
NXT
0,5 VCC
tDIR_SET
tDIR_HOLD
DIR VALID
Figure 9: NXT-input Timing Diagram
PC20070609.1
Table 11: Timing Table NXT Pin
Symbol
tNXT_HI
tNXT_LO
tDIR_SET
tDIR_HOLD
Parameter
NXT minimum, high pulse width
NXT minimum, low pulse width
NXT hold time, following change of DIR
NXT hold time, before change of DIR
Min.
2
2
500
500
Typ.
Max.
Unit
µs
µs
µs
µs
AMI Semiconductor – June 2007, M-20684-001
www.amis.com
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