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MP6546GL Scheda tecnica(PDF) 13 Page - Monolithic Power Systems

Il numero della parte MP6546GL
Spiegazioni elettronici  22V, 3A, Peak, 3-Phase BLDC Driver with 1MHz I2C Interface
PDF  24 Pages
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Produttore elettronici  MPS [Monolithic Power Systems]
Homepage  http://www.monolithicpower.com
Logo MPS - Monolithic Power Systems

MP6546GL Scheda tecnica(HTML) 13 Page - Monolithic Power Systems

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MP6546
– 22V, 3A PEAK, 3-PHASE BLDC DRIVER WITH 1MHZ I2C INTERFACE
MP6546 Rev. 1.0
MonolithicPower.com
13
3/20/2023
MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited.
© 2023 MPS. All Rights Reserved.
the corresponding channel. All these changes
only take effect after register 09h is written to a
certain value.
I2C Input Interface
To access the internal register and angle data,
the MP6546 has fast-mode plus I2C mode, which
can support a clock frequency up to 1MHz.
The slave address can be configured via two
methods. The first method is to set ADDR[1:0] in
register 00h to 0. In this scenario, the address is
set by the ADDR pin. The low level represents
0x07h, the middle level represents 0x08h, and
the high value represents 0x09h.
The second method is to set the address using
the register. See the Register Description
section on page 16 for more details.
The
MP6546
supports
multi-slave
bus
connections to support up to three slaves (see
Figure 7). All slaves can monitor the SDA input
data and receive data at the same time with the
broadcasting address. With the mapped address,
only one slave can transmit data through the
SDA data pin, while the other two slaves release
the bus.
System
MCU
Controller
MP6546
#1
MP6546
#2
MP6546
#3
Write UD/Q[9:0],
Read ANGLE[14:0]
I
2C Bus
Gyro
Angle
Sensor
Angle
Sensor
Angle
Sensor
Figure 7: Multi-Slave Bus Connection
D/Q Reference Frame Voltage Control
The MP6546 provides D/Q reference frame rotor
FOC voltage control. The voltage command for
the D/Q reference comes from the main system
MCU via the I2C interface. Then the UA/UB/UC
output is modulated with the SVPWM output.
This controls the three-axis motors via the
system MCU.
Enable and Standby Operation
To reduce the operating current, the IC works in
two modes for flexibility. These modes are
described below.
1. By pulling the EN pin high: Set the
STDBY_EN bit in register 00h then write to
register 10h. Then the IC works in standby
mode to reduce the quiescent current. A
3.3V low-dropout (LDO) regulator can be
shut down or activated via the trimming bit
TRIM_ENP in register 03h.
Write to register 0Fh to force the IC to return
to normal operation. The IC also resumes
normal operation if a negative edge is
detected on the SCL/SCK pin.
2. By pulling the EN pin low: The IC completely
shuts down.
Over-Current Protection (OCP)
The MP6546 has a cycle-by-cycle current limit to
clamp the peak current near a certain threshold.
When the current flowing through the MOSFETs
exceeds this threshold, all low-side MOSFETs
(LS-FETs) turn on to reduce the phase current.
This trigger threshold is selectable. The default
threshold is a 3A peak current, and it scales
down to 75% if the OCP_SEL bit in register 00h
is set to high. The current-limit function can be
disabled by setting OCP_EN in register 00h to 0.
Short-Circuit Protection (SCP)
The MP6546 provides short-circuit protection
(SCP) to prevent IC damage caused by an over-
current condition. When the current through the
MOSFETs exceeds the threshold after the 1µs
blanking time, all MOSFETs turn off. After about
150ms, the IC resumes normal operation. The
default threshold is a 4.5A peak current, and it
scales down to 75% if the OCP_SEL bit in
register 00h is set to high. SCP can be disabled
by setting SCP_EN in register 00h to 0.
Thermal Shutdown (TSD)
The
MP6546
’s die also features thermal
monitoring. If the die temperature exceeds
155°C, all MOSFETs turn off. Once the die
temperature drops below 105°C, operation
automatically resumes.
Over-Voltage Protection (OVP)
VIN is detected to prevent MOSFET breakdown.
If VIN exceeds 18V, all MOSFETs turn off. Once
VIN drops below 16V, operation automatically
resumes. Over-voltage protection (OVP) is



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