HD6413003TF16V Renesas Electronics America, HD6413003TF16V Datasheet - Page 481

MCU 5V 0K PB-FREE 112-QFP

HD6413003TF16V

Manufacturer Part Number
HD6413003TF16V
Description
MCU 5V 0K PB-FREE 112-QFP
Manufacturer
Renesas Electronics America
Series
H8® H8/300Hr
Datasheet

Specifications of HD6413003TF16V

Core Size
16-Bit
Oscillator Type
Internal
Core Processor
H8/300H
Speed
16MHz
Connectivity
SCI
Peripherals
DMA, PWM, WDT
Number Of I /o
50
Program Memory Type
ROMless
Ram Size
512 x 8
Voltage - Supply (vcc/vdd)
2.7 V ~ 5.5 V
Data Converters
A/D 8x10b
Operating Temperature
-20°C ~ 75°C
Package / Case
112-QFP
No. Of I/o's
58
Ram Memory Size
512Byte
Cpu Speed
16MHz
No. Of Timers
11
No. Of Pwm Channels
4
Digital Ic Case Style
QFP
Supply Voltage
RoHS Compliant
Controller Family/series
H8/300H
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-
Program Memory Size
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HD6413003TF16V
Manufacturer:
ITT
Quantity:
12 000
Part Number:
HD6413003TF16V
Manufacturer:
RENESAS
Quantity:
36
Part Number:
HD6413003TF16V
Manufacturer:
RENESAS/瑞萨
Quantity:
20 000
Figure 13-8 shows an example of SCI receive operation in asynchronous mode.
13.3.3 Multiprocessor Communication
The multiprocessor communication function enables several processors to share a single serial
communication line. The processors communicate in asynchronous mode using a format with an
additional multiprocessor bit (multiprocessor format).
In multiprocessor communication, each receiving processor is addressed by an ID. A serial
communication cycle consists of an ID-sending cycle that identifies the receiving processor, and a
data-sending cycle. The multiprocessor bit distinguishes ID-sending cycles from data-sending
cycles.
The transmitting processor starts by sending the ID of the receiving processor with which it wants
to communicate as data with the multiprocessor bit set to 1. Next the transmitting processor sends
transmit data with the multiprocessor bit cleared to 0.
Receiving processors skip incoming data until they receive data with the multiprocessor bit set
to 1. When they receive data with the multiprocessor bit set to 1, receiving processors compare the
data with their IDs. The receiving processor with a matching ID continues to receive further
incoming data. Processors with IDs not matching the received data skip further incoming data
until they again receive data with the multiprocessor bit set to 1. Multiple processors can send and
receive data in this way.
Figure 13-9 shows an example of communication among different processors using a
multiprocessor format.
Figure 13-8 Example of SCI Receive Operation (8-Bit Data with Parity and One Stop Bit)
RDRF
FER
1
Start
bit
0
D0
D1
1 frame
Data
D7
Parity
bit
0/1
RXI
request
Stop
bit
1
461
Start
bit
0
RXI interrupt handler
reads data in RDR and
clears RDRF flag to 0
D0
D1
Data
D7
Parity
bit
0/1
Framing error,
ERI request
Stop
bit
1
Idle (mark)
state
1

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