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PIFE32251B-R47MS 데이터시트(PDF) 49 Page - Texas Instruments

부품명 PIFE32251B-R47MS
상세설명  PMIC for Intel Apollo Lake Platform
PDF  96 Pages
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제조업체  TI1 [Texas Instruments]
홈페이지  http://www.ti.com
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PIFE32251B-R47MS 데이터시트(HTML) 49 Page - Texas Instruments

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TPS65094
www.ti.com
SWCS133C – SEPTEMBER 2015 – REVISED FEBRUARY 2019
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Product Folder Links: TPS65094
Detailed Description
Copyright © 2015–2019, Texas Instruments Incorporated
6.4
Device Functional Modes
6.4.1
Off Mode
When power supply at the VSYS pin is less than VSYS_UVLO_5V (5.4-V nominal) + VSYS_UVLO_5V_HYS (0.2-V
nominal), the device is in off mode, where all output rails are disabled. If the supply voltage is greater than
VSYS_UVLO_3V (3.6-V nominal) + VSYS_UVLO_3V_HYS (0.15-V nominal) while it is still less than VSYS_UVLO_5V +
VSYS_UVLO_5V_HYS, then the internal band-gap reference (VREF pin) along with LDO3P3 are enabled and
regulated at target values.
6.4.2
Standby Mode
When power supply at the VSYS pin rises above VSYS_UVLO_5V + VSYS_UVLO_5V_HYS, the device enters
standby mode, where all internal reference and regulators (LDO3P3 and LDO5) are running, and I2C
interface and PMICEN pin are ready to respond. All default registers defined in Section 6.6, Register
Maps, should now have been loaded from one-time programmable (OTP) memory. Quiescent current
consumption in standby mode is specified in Section 5.5, Electrical Characteristics: Total Current
Consumption.
6.4.3
Active Mode
The device proceeds to active mode when any output rail is enabled either through an input pin as
discussed in Section 6.3.5, Power Sequencing and VR Control, or by writing to the EN bits through I2C.
Output regulation voltage can also be changed by writing to the VID bits defined in Section 6.6, Register
Maps.
6.5
Programming
6.5.1
I
2C Interface
The I2C interface is a 2-wire serial interface developed by NXP™ (formerly Philips Semiconductor) (see
the I2C-Bus Specification and user manual, Rev 4, 13 February 2012). The bus consists of a data line
(SDA) and a clock line (SCL) with pullup structures. When the bus is idle, both SDA and SCL lines are
pulled high. All the I2C compatible devices connect to the I2C bus through open-drain I/O pins, DATA and
CLK. A master device, usually a microcontroller or a digital signal processor, controls the bus. The master
is responsible for generating the SCL signal and device addresses. The master also generates specific
conditions that indicate the start and stop of data transfer. A slave device receives and/or transmits data
on the bus under control of the master device.
The TPS65094x device works as a slave and supports the following data transfer modes, as defined in the
I2C-Bus Specification: standard mode (100 kbps), fast mode (400 kbps), and high-speed mode
(1 Mbps). The interface adds flexibility to the power supply solution, enabling programming of most
functions to new values depending on the instantaneous application requirements. Register contents are
loaded when VSYS higher than VSYS_UVLO_5V is applied to the TPS65094x device. The I
2C interface is
running from an internal oscillator that is automatically enabled when there is an access to the interface.
The data transfer protocol for standard and fast modes are exactly the same, therefore, they are referred
to as F/S-mode in this document. The protocol for high-speed mode is different from F/S-mode, and it is
referred to as H/S-mode.
The TPS65094x device supports 7-bit addressing; however, 10-bit addressing and general call address
are not supported. The default device address is 0x5E.



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