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TLE7186F датащи(PDF) 25 Page - Infineon Technologies AG

номер детали TLE7186F
подробное описание детали  System IC for B6 motor drives
PDF  39 Pages
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производитель  INFINEON [Infineon Technologies AG]
домашняя страница  http://www.infineon.com
Logo INFINEON - Infineon Technologies AG

TLE7186F датащи(HTML) 25 Page - Infineon Technologies AG

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TLE7186F
Description of Modes, Protection and Diagnostic Functions
Data Sheet
25
Rev. 1.2, 2016-01-28
Sleep Mode:
The sleep mode is entered if the device is in the Go-to-sleep Mode and the VDD voltage is lower than
V
DDsleep.
The complete chip is deactivated beside the wake-up function (see Wake-up Mode). This mode is designed for
lowest current consumption from the power net of the car. The passive clamping is active. For details see the
description of passive clamping, see Chapter 9.2.15.
The only way to leave the Sleep Mode is to go to the Wake-up Mode.
Wake-up Mode:
The TLE7186F wakes up if INH (=KL15) is high or if IFMA is low and
V
VS is higher than VVSLO.
In this mode all supplies are ramping up. As soon as the internal 5V is available, a so called wake-up timer starts
to run. If the IC reaches this state, the wake-up will continue even if the wake-up signals at INH or IFMA disappear.
The PWM interface (IFMA) is active as soon as the VDD voltage is sufficiently high. During this time it is expected
that the supplies are powered up and the µC sets the RGS to high. All external MOSFETs are switched off actively
or passively. When the wake up timer is expired the IC goes into the Error mode.
In this mode all errors will be ignored beside Over Temperature Shut Down or
V
S Under Voltage Lockout.
Error Mode
The Error Mode can be reached in 3 different ways:
1. The device is in Wake-up Mode and the wake up timer expires
2. The device is in Normal Mode and one or more of the following errors occur: VREG Under Voltage Shut Down,
VDD Under Voltage Shut Down, Over Current Shut Down, VDH Over Voltage Shut Down, IOV Over Voltage
Shut Down, Short Circuit Detection or SCDL Open Detection.
3. The device is in Normal Mode with OT-Prewarning and one or more of the following errors occur: VREG Under
Voltage Shut Down, VDD Under Voltage Shut Down, Over Current Shut Down, VDH Over Voltage Shut Down,
IOV Over Voltage Shut Down, Short Circuit Detection or SCDL Open Detection.
In this mode an Error is set at the ERROR Pin and all external MOSFETs are actively switched off as long as the
bootstrap voltages allows it. The interface is active. VDHS switch is on and the current sense functions are
working. VDD and VREG are active. Passive clamping is not active.
The Error mode can be left in the following ways:
1. If no error is present, the IC can be sent to Normal Mode by a reset with the RGS pin.
2. If a VREG Under Voltage Shut Down occurs and no Over Temperature Prewarning is present, the device will
go to VREG Shut-down Mode.
3. If VDD Under Voltage Shut Down occurs or a VREG Under Voltage Shut Down together with a Over
Temperature Prewarning occurs, the device will go into Deadlock Mode.
4. If Over Temperature Prewarning is present, the IC can be sent to Normal Mode with OT-Prewarning by a reset
with the RGS pin.
Normal Mode
The Normal Mode can be reached in two different ways:
1. The device is in Error Mode, no error is present and a reset is performed by the RGS pin.
2. The device is in Normal Mode with OT-Prewarning, the chip temperature is below the OT-Prewarning level and
a reset is performed by the RGS pin.
In the Normal Mode all functions are active and available with the regular limitations of the bootstrap principle. The
gate drive output stages can be controlled with the input pins.
The Normal Mode can be left in 5 ways:
1. The devices goes to the Go-To-Sleep Mode by setting RGS to low for a time longer than
t
sleep.
2. If a Over Temperature Prewarning occurs the device goes into the Normal Mode with OT-Prewarning.



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