TMP86xy48UG/FG Toshiba, TMP86xy48UG/FG Datasheet - Page 182

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TMP86xy48UG/FG

Manufacturer Part Number
TMP86xy48UG/FG
Description
Manufacturer
Toshiba
Datasheet

Specifications of TMP86xy48UG/FG

Package
LQFP64/QFP64
Rom Types (m=mask,p=otp,f=flash)
F/E
Rom Size
32
Ram Size
2K
Driver Led
11
Driver Lcd
-
Spi/sio Channels
1
Uart/sio Channels
1
I2c/sio Channels
1
High-speed Serial Output
2
Adc 8-bit Channels
-
Adc 10-bit Channels
16
Da Converter Channels
-
Timer Counter 18-bit Channel
-
Timer Counter 16-bit Channel
2
Timer Counter 8-bit Channel
2
Motor Channels
-
Watchdog Timer
Y
Dual Clock
Y
Clock Gear
-
Number Of I/o Ports
54
Power Supply (v)
2.7 to 3.6
Description of FLASH memory writing mode
1.
2.
3.
4.
5.
6.
7.
8.
9.
10. The 13th byte is used as a lower bit (Bit7 to bit0) of the password comparison start
The receive data in the 1st byte is the matching data. When the boot program
starts in serial PROM mode, TMP86FM48 (Mentioned as “device” hereafter) waits
for the matching data (5AH) to receive. Upon receiving the matching data, it
automatically adjusts the UART’s initial baud rate to 9,600bps.
“5AH” as an echo back to the controller. If the device can not receive the matching
data, the device does not transmit the echo back data and waits for the matching
data again with changing baud rate. Therefore, the controller should send the
matching data continuously until the device transmits the echo back data. An
external controller should transmit a matching data repeatedly till the device
transmit an echo back data. The transmission number of times of matching data
varies by the frequency of device. For details, refer to Table 2.19.4.
kinds of baud rate modification data shown in Table 2.19.3 are available. Even if
baud rate changing is no need, be sure to send the initial baud rate data (28H:
9,600 bps).
When the 3rd byte data is one of the baud rate modification data corresponding to
the device's operating frequency, the device sends the echo back data which is the
same as received baud rate modification data. Then the baud rate is changed. If
the 3rd byte data does not correspond to the baud rate modification data, the
device stops UART function after sending 3 bytes of baud rate modification error
code: (62H). The changing of baud rate is executed after transmitting the echo
back data.
The receive data in the 5th byte is the command data (30H) to write the FLASH
memory.
When the 5th byte is one of the operation command data shown in Table 2.19.5,
the device sends the echo back data which is the same as received operation
command data (in this case, 30H). If the 5th byte data does not correspond to the
operation command data, the device stops UART function after sending 3 bytes of
operation command error code: (63H).
address. When the receiving is executed correctly (No error), the device does not
send any data. If the receiving error occurs, the device stops UART function after
sending 3 bytes of receiving error code: (A1H or A3H).
address. When the receiving is executed correctly (No error), the device does not
send any data. If the receiving error occurs, the device stops UART function after
sending 3 bytes of receiving error code: (A1H or A3H).
start address. When the receiving is executed correctly (No error), the device does
not send any data. If the receiving error occurs, the device stops UART function
after sending 3 bytes of receiving error code: (A1H or A3H).
address. When the receiving is executed correctly (No error), the device does not
send any data. If the receiving error occurs, the device stops UART function after
sending 3 bytes of receiving error code: (A1H or A3H).
When the device has received the matching data, the device transmits the data
The receive data in the 3rd byte is the baud rate modification data. The seven
The 7th byte is used as an upper bit (Bit15 to bit8) of the password count storage
The 9th byte is used as a lower bit (Bit7 to bit0) of the password count storage
The 11th byte is used as an upper bit (Bit15 to bit8) of the password comparison
86FM48-178
TMP86FM48
2007-08-24

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