tmp88fw45afg TOSHIBA Semiconductor CORPORATION, tmp88fw45afg Datasheet - Page 175

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tmp88fw45afg

Manufacturer Part Number
tmp88fw45afg
Description
8 Bit Microcontroller Tlcs-870/x Series
Manufacturer
TOSHIBA Semiconductor CORPORATION
Datasheet
14.5.4
Overload protective input CL
Timer 1 interrupt INTTMR1
by driving their respective port inputs active.
PWM synchronizing
clock PWM sync
Overload protective
interrupt INTCLM
This circuit consists of an EMG protective circuit and overload protective circuit. These circuits are activated
Protective Circuit
a. EMG protective circuit
b. Overload protective circuit
Stop MDCNT
the signal on EMG input port goes active (negative edge triggered), the six ports are immediately
disabled high-impedance against output and an EMG interrupt (INTEMG) is generated. The EMG
Control Register (EMGCRA) is used to set EMG protection. If the EMGCRA<EMGST> shows the
value “1” when read, it means that the EMG protective circuit is operating. To return from the EMG
protective state, reset the MDOUT Register bits A to 0 and set the EMGCRA<RTE> to 1. Returning
from the EMG protective state is effective when the EMG protective input has been released back high.
To disable the EMG function, set data “5AH“ and “A5H“sequentially in the EMG disable Register
(EMGREL) and reset the EMGCRA<EMGEN> to 0. When the EMG function is disabled, EMG in-
terrupts (INTEMG) are not generated.
overload protection, set the EMGCRB<CLEN> to 1 to enable the overload protective circuit. The circuit
starts operating when the overload protective input is pulled low.
(EMGCRB<RTTM1>), return by PWM sync (EMGCRB<RTPWM>), or return manually
(EMGCRB<RTCL>). These methods are usable when the overload protective input has been released
back high.
This protective circuit is used for emergency stop, when the EMG protective circuit is enabled. When
The EMG protective circuit is initially enabled. Before disabling it, fully study on adequacy.
The overload protective circuit is set by using the EMG Control Registers (EMGCRA/B). To activate
To return from overload state, there are three methods to use: return by a timer
Figure 14-13 Configuration of the Protective Circuit
u
x
v
y
w
z
control
Reset
7
2
6, 5
EMGCRB
4
3, 2, 1, 0
EMG control register
CL detection
protective
Overload
control
4
Page 161
7, 6, 5, 4
4
EMGCRA
Under
prote-
ction
2 1 0
protective
control
2
EMG
EMG disable code register
7, 6, 5, 4, 3, 2, 1, 0
8
EMGREL
EMG
EMG input
INTEMG
EMG interrupt
u'
x'
v'
y'
w'
z'
TMP88FW45AFG
A to 0
MDOUT
Set "0"

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