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TUSB320 Datasheet(PDF) 13 Page - Texas Instruments

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Part # TUSB320
Description  USB Type-C Configuration Channel Logic and Port Control
PDF  35 Pages
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

TUSB320 Datasheet(HTML) 13 Page - Texas Instruments

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TUSB320, TUSB320I
www.ti.com
SLLSEN9C – MAY 2015 – REVISED SEPTEMBER 2016
Product Folder Links: TUSB320 TUSB320I
Submit Documentation Feedback
Copyright © 2015–2016, Texas Instruments Incorporated
7.3.1 Unattached Mode
Unattached mode is the primary mode of operation for the TUSB320 device, because a USB port can be
unattached for a lengthy period of time. In unattached mode, VDD is available, and all IOs and I
2C are
operational. After the TUSB320 device is powered up, the part enters unattached mode until a successful attach
has been determined. Initially, right after power up, the TUSB320 device comes up as an Unattached.SNK. The
TUSB320 device checks the PORT pin and operates according to the mode configuration. The TUSB320 device
toggles between the UFP and the DFP if configured as a DRP. In unattached mode, I2C can be used to change
the mode configuration or port role if the board configuration of the PORT pin is not the desired mode. Writing to
the I2C MODE_SELECT register can override the PORT pin only in unattached mode. The PORT pin is only
sampled at reset or power up. I2C must be used after reset to change the device mode configuration.
7.3.2 Active Mode
Active mode is defined as the port being attached. In active mode, all GPIOs are operational, and I2C is read /
write (R/W). When in active mode, the TUSB320 device communicates to the AP that the USB port is attached.
This happens through the ID pin if TUSB320 is configured as a DFP or DRP connect as source. If TUSB320 is
configured as a UFP or a DRP connected as a sink, the OUT1/OUT2 and INT_N/OUT3 pins are used. The
TUSB320 device exits active mode under the following conditions:
Cable unplug
VBUS removal if attached as a UFP
Dead battery; system battery or supply is removed
EN_N pin floated or pulled high
During active mode, I2C cannot be used to change the mode configuration. This can only be done if TUSB320 is
in unattached state.
7.3.3 Dead Battery Mode
During dead battery mode, VDD is not available. CC pins always default to pulldown resistors in dead battery
mode. Dead battery mode means:
TUSB320 in UFP with 5.1-kΩ ± 20% Rd; cable connected and providing charge
TUSB320 in UFP with 5.1-kΩ ± 20% Rd; nothing connected (application could be off or have a discharged
battery)
Upon exiting dead battery mode (VDD is active), the software must perform the following sequence in order for Rp
to be presented on both CC pins:
1. Write a 0x04 to I2C address 0x45.
2. Wait 30ms.
3. Write a 0x00 to I2C address 0x45.
Between steps 1 and 3, the status flags will be set. The software must ignore these flags when performing the
three steps.
NOTE
When VDD is off, the TUSB320 non-failsafe pins (VBUS_DET, ADDR, PORT, ID, OUT[3:1]
pins) could back-drive the TUSB320 device if not handled properly. When necessary to
pull these pins up, it is recommended to pullup PORT, ADDR, INT_N/OUT3, and ID to the
device’s VDD supply. The VBUS_DET must be pulled up to VBUS through a 900-kΩ
resistor.
7.3.4 Shutdown Mode
Shutdown mode for TUSB320 device is defined as follows:
Supply voltage available and EN_N pin is pulled high.
EN_N pin has internal pullup resistor.
The TUSB320 device is off, but still maintains the Rd on the CC pins



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