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DA9313 датащи(PDF) 36 Page - Renesas Technology Corp

номер детали DA9313
подробное описание детали  High Efficiency Dual Cell Switched Capacitor Divider
PDF  58 Pages
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производитель  RENESAS [Renesas Technology Corp]
домашняя страница  http://www.renesas.com
Logo RENESAS - Renesas Technology Corp

DA9313 датащи(HTML) 36 Page - Renesas Technology Corp

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DA9313
High Efficiency Dual Cell Switched Capacitor Divider
Datasheet
Revision 3.5
23-Feb-2022
CFR0011-120-00
36 of 57
© 2022 Renesas Electronics
12 Control Interface
I2C is always enabled in ACTIVE/SLEEP and IOs run on either VDDIO or VCORE, see section 11.7.
DA9313 can be software controlled through an I2C serial control interface. Data are shifted into or out
of DA9313 under the control of the host processor that also provides the serial clock. In a normal
application case the interface is only configured once from OTP values, which are loaded during the
initial start-up of DA9313. In this phase the I2C address is loaded from OTP.
The LOCK_REG register provides a software-controlled write protection (soft lock) of selected
registers from 0xE0 to 0x2F, the registers remain readable. This feature prevents malicious or
accidental writes to these critical registers from damaging the device. This soft lock is intended for
control by the system driver during device configuration on power up.
NOTE
The soft lock will reassert during all power cycles.
12.1 I2C Communication
DA9313 has an OTP configurable device write address (default: 0xD0) and an OTP configurable
device read address (default: 0xD1). The 4 MSB of the I2C device address can be OTP configured in
the register field IF_BASE_ADDR1.
The SCL port functions as the I2C clock and the SDA port carries the bi-directional I2C data.
NOTE
SDA and SCL must be connected to GND if I2C is not being used. The slave SDA and SCL must always be
connected to GND.
The I2C interface is open-drain supporting multiple devices on a single line. The bus lines have to be
pulled high by external pull-up resistors (2
kΩ to 20 kΩ range). The devices connected to the I2C
SDA can only drive the bus line low to ground. As a result two devices cannot conflict if they drive the
bus simultaneously. In Standard/Fast mode the highest frequency of the bus is 400 kHz. The exact
frequency can be determined by the application and does not have any relation to the DA9313
internal clock signals. DA9313 does not initiate any clock arbitration or slow down the clock. An
automatic I2C reset can be triggered via control I2C_TO_EN if the clock signal stays low for more
than 35 ms.
The interface supports an operation compatible to Standard, Fast, Fast-Plus and High Speed mode
of the I2C-bus specification Rev 4 [1]. The operation in High Speed mode at 3.4 MHz requires mode
changing in order to switch spike suppression and slope control characteristics compatible to the I2C-
bus specification. The High Speed mode can be enabled on a transfer by transfer basis by sending
the master code (0000 1XXX) at the begin of the transfer.DA9313 does not make use of clock
stretching and delivers read data, without additional delay, up to 3.4 MHz.
Alternatively the interface can be configured to continuously use High Speed mode via PM_IF_HSM
(OTP configurable), so that the master code is not required at the beginning of every transfer. This
reduces the communication overhead on the bus but limits the attachable slaves to the bus to
compatible devices.
The communication on the I2C bus always takes place between two devices, one acting as the
master and the other as the slave. The DA9313 will only operate as a slave.
The master or standalone device has stored the device address in register IF_BASE_ADDR1.
NOTE
When DA9313 is operating in master/slave mode, the I2C bus is referenced to 4 V.



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