forte_en.pdf - 第24页
Page 24 MSP430 / CC430 without TEST Pin, JTAG Interface Fig.20: MSP430 / CC430 microcontroller, no TEST pin, JTAG interface 1) Pin P feeds the device with 6.5V during t he fuse programming. If the fuse is n ot to be pr…

Page 23
AT89C51CC01UA
Fig.17: Mikrokontrolér AT89C51CC01UA
1) The ALE pin do not have to be connected, when it is
unconnected on the programmed device or when it is
in log.1.
Cypress PSoC
Fig.18: Cypress PsoC microcontroller
1) The way of entering in the programming mode
should be set in the FORTE programmer settings
window. Devices without an XRST pin can only use
initialization through the power-on reset (by power
supply). Devices with an XRST pin may use both
methods, but the method using the reset signal for
initialization is better as it can be used in
combination with an external power supply.
2) Algorithm programming in the FORTE
programmer settings window should be set in
accordance with the power supply cable used.
MSP430 / CC430 with TEST Pin,
JTAG Interface
Fig.19: MSP430 / CC430 microcontroller, TEST pin, JTAG
interface
1) If the oscillator calibration values are saved in the
information memory and this memory is not going to
be re-programmed (erased) during programming, the
device should be programmed with the Cal Int. RC
(=calibrated internal RC oscillator) option selected in
the FORTE programmer settings window. In the
other cases Not Cal Int. RC (=not calibrated internal
RC oscillator) should be selected.

Page 24
MSP430 / CC430 without TEST
Pin, JTAG Interface
Fig.20: MSP430 / CC430 microcontroller, no TEST pin, JTAG
interface
1) Pin P feeds the device with 6.5V during the fuse
programming. If the fuse is not to be programmed,
this pin does not have to be connected.
2) The MSP430F5xxx and CC430 devices lock in a
different way, i.e. pin P stays disconnected. Even the
100 R resistor can be left out in such a case.
3) If the oscillator calibration values are saved in the
information memory and this memory is not going to
be re-programmed (erased) during the programming
process, the device should be programmed with the
Cal Int. RC (=calibrated internal RC oscillator)
option selected in the FORTE programmer
settings window. In other cases Not Cal Int. RC
(=not calibrated internal RC oscillator) should be
selected.
MSP430 / CC430, SBW Interface
Fig.21: MSP430 / CC430 microcontroller, SBW interface
1) Pin P feeds the device with 6.5 V during the fuse
programming. If the fuse is not to be programmed,
this ping does not have to be connected.
2) The MSP430F5xxx and CC430 devices lock in a
different way, i.e. pin P stays disconnected. Even the
100 R resistor can be left out in such a case.
3) If the oscillator calibration values are saved in the
information memory and this memory is not going to
be re-programmed (erased) during the programming
process, the device should be programmed with the
Cal Int. RC (=calibrated internal RC oscillator)
option selected in the FORTE programmer
settings window. In the other cases Not Cal Int. RC
(=not calibrated internal RC oscillator) should be
selected. There is no need to select the oscillator for
the MSP430F5xxx and CC430 devices.
4) Speed in the FORTE programmer settings window
should be slow down if any external capacitor is
connected to the device's reset pin.
5) The FORTE programmer also erases the Segment A of
the information memory with the EraseSegmentA
option selected.

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TI (Chipcon) CCxxxx
Fig.22: (Chipcon) CCxxxx microcontroller
STM8
Fig.23: STM8 microcontroller
ARM with SWD interface
Fig.24: ARM with SWD interface
1) ARM microcontrollers which do not have SWD
interface are programmed via
JTAG interface.
2) Renesas ARM MCUs with OSIS fuse will lock by
programming of the changed OSIS value. When the
correct OSIS value is filled for a locked MCU, then it is
possible to communicate with the MCU. When the
MCU is erased with the correct value filled, the OSIS
lock will disable.
LPCxxxx, UART interface
Fig.25: LPCxxxx, UART interface
1) UART programming support is implemented for some
LPCxxxx MCUs as an alternative interface to SWD.