HT45R37V Holtek Semiconductor Inc., HT45R37V Datasheet - Page 42

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HT45R37V

Manufacturer Part Number
HT45R37V
Description
C/r-f Type 8-bit Otp Mcu
Manufacturer
Holtek Semiconductor Inc.
Datasheet

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A/D Transfer Function
As the device contain a 12-bit A/D converter, its
full-scale converted digitised value is equal to FFFH.
Since the full-scale analog input value is equal to the
AV
AV
tion between the analog input value and the digitised
output value for the A/D converter.
Except for the digitised zero value, the subsequent digit-
ised values will change at a point 0.5 LSB below where
they would change without the offset, and the last full
scale digitised value will change at a point 1.5 LSB below
the AV
Serial Interface Function
The device contains a Serial Interface Function, which
includes both the four line SPI interface and the two line
I
nication with external peripheral hardware. Having rela-
tively simple communication protocols, these serial
interface types allow the microcontroller to interface to
external SPI or I
Flash or EEPROM memory, etc. The SIM interface pins
are pin-shared with other I/O pins therefore the SIM in-
terface function must first be selected using a configura-
tion option. As both interface types share the same pins
and registers, the choice of whether the SPI or I
is used is made using a bit in an internal register.
SPI Interface
The SPI interface is often used to communicate with ex-
ternal peripheral devices such as sensors, Flash or
EEPROM memory devices etc. Originally developed by
Motorola, the four line SPI interface is a synchronous
serial data interface that has a relatively simple commu-
nication protocol simplifying the programming require-
ments when communicating with external hardware
devices.
Rev. 1.00
2
C interface types, to allow an easy method of commu-
DD
DD
/4096. The diagram show the ideal transfer func-
voltage, this gives a single bit analog input value of
DD
level.
2
C based hardware such as sensors,
Ideal A/D Transfer Function
2
C type
42
The communication is full duplex and operates as a
slave/master type, where the MCU can be either master
or slave. Although the SPI interface specification can
control multiple slave devices from a single master,
here, as only a single select pin, SCS, is provided only
one slave device can be connected to the SPI bus.
SPI Interface Operation
The SPI interface is a full duplex synchronous serial
data link. It is a four line interface with pin names SDI,
SDO, SCK and SCS. Pins SDI and SDO are the Serial
Data Input and Serial Data Output lines, SCK is the Se-
rial Clock line and SCS is the Slave Select line. As the
SPI interface pins are pin-shared with normal I/O pins
and with the I
first be enabled by selecting the SIM enable configura-
tion option and setting the correct bits in the
SIMCTL0/SIMCTL2 register. After the SPI configuration
option has been configured it can also be additionally
disabled or enabled using the SIMEN bit in the
SIMCTL0 register. Communication between devices
connected to the SPI interface is carried out in a
slave/master mode with all data transfer initiations being
implemented by the master. The Master also controls
the clock signal. As the device only contains a single
SCS pin only one slave device can be utilised.
The SPI function in this device offers the following fea-
tures:
Full duplex synchronous data transfer
Both Master and Slave modes
SPI Master/Slave Connection
2
C function pins, the SPI interface must
October 20, 2009
HT45R37V

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