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FXLS8974CF Datasheet(PDF) 13 Page - NXP Semiconductors

Part # FXLS8974CF
Description  3-Axis Low-g Accelerometer
PDF  96 Pages
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Manufacturer  NXP [NXP Semiconductors]
Direct Link  http://www.nxp.com
Logo NXP - NXP Semiconductors

FXLS8974CF Datasheet(HTML) 13 Page - NXP Semiconductors

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NXP Semiconductors
FXLS8974CF
3-Axis Low-g Accelerometer
[3]
tVD;DAT referred to the time for data signal from SCL LOW to SDA output (HIGH or LOW, depending on which one is worse).
[4]
The maximum tHD;DAT could be 3.45 μs and 0.9 μs for Standard-mode and Fast-mode respectively, but must be less than the maximum of tVD;DAT or
tVD;ACK by a transition time.
[5]
tVD;ACK = time for ACK signal from SCL LOW to SDA output (HIGH or LOW, depending on which one is worse).
[6]
A Fast-mode I2C device can be used in a Standard mode I2C system, but the requirement tSU;DAT 250 ns must then be met. Also the acknowledge timing
must meet this set-up time.
[7]
The maximum tf for the SDA and SCL bus lines is specified at 300 ns. The maximum fall time for the SDA output stage tf is specified at 250 ns. The
maximum fall time allows series protection resistors to be connected in between the SDA and the SCL pins and the SDA/SCL bus lines without exceeding
the maximum specified tf.
[8]
In Fast-mode Plus, fall time is specified the same for both output stage and bus timing. If series resistors are used, designers should allow for this
specified fall time when considering bus timing.
aaa-040836
70 %
30 %
70 %
30 %
70 %
30 %
70 %
30 %
70 %
30 %
70 %
30 %
70 %
30 %
Sr
P
S
SDA
SDA
SCL
SCL
S
9th clock
1st clock cycle
9th clock
1 / fSCL
tLOW
tSET
tf
t
tSU:DAT
tSU:STA
tHD:STA
tSU:STO
tVD:ACK
tBUF
tSP
tf
tHIGH
tVD:DAT
tHD:DAT
tr
continued
Figure 4. I2C secondary timing diagram for Standard-mode, Fast-mode and Fast-mode Plus
12.1.1 General I2C operation
There are two signals associated with the I2C-bus: the Serial Clock Line (SCL) and the
Serial Data line (SDA). SDA is a bidirectional signal used for sending and receiving the
data to/from the interface. External pull-up resistors connected to VDD are required for
SDA and SCL. When the I2C-bus is free, SCL and SDA are high.
The maximum practical operating frequency for I2C in a given system implementation
depends on several factors including the pull-up resistor and voltage values and total bus
capacitance (PCB trace + parasitic device capacitances).
The primary starts a transaction on the bus through a start condition (ST) signal, which
is defined as a HIGH-to-LOW transition on SDA line while the SCL line is held HIGH.
After the primary transmits the ST signal, the bus is considered busy. The next byte of
data transmitted contains the secondary address in the first seven bits, and the eighth bit,
the read/write bit, indicates whether the primary is receiving data from the secondary or
transmitting data to the secondary. When an address is sent, each device in the system
compares the first seven bits after the ST condition with its own address. If they match,
the device considers itself addressed by the primary. The ninth clock pulse, following the
secondary address byte (and each subsequent byte) is the acknowledge (ACK). The
transmitter must release the SDA line during the ACK period. The receiver must then pull
FXLS8974CF
All information provided in this document is subject to legal disclaimers.
© NXP B.V. 2022. All rights reserved.
Product data sheet
Rev. 1.5 — 11 March 2022
13 / 96



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