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STWLC68JRF Datasheet(PDF) 13 Page - STMicroelectronics

Part # STWLC68JRF
Description  Qi-compliant inductive wireless power receiver for 5W applications
PDF  32 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STWLC68JRF Datasheet(HTML) 13 Page - STMicroelectronics

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Power Receiver Interface
The flow-chart visible in Figure 3 reports the whole process leading to a power transfer in Base Power Profile
(BPP), the only power profile supported by STWLC68 due to a maximum output power of 5 W (1.0 A @ 5 V).
Figure 3. Power transfer phases for Baseline Power Profile
Ping
Identification &
Configuration
Power Transfer
Extended Digital Ping
Power Transfer Contract established
Selection
Apply Power Signal
No Response / Abort Digital Ping
Power Transfer Contract Violation /
Unexpected Packet /
Timeout
No Power Transfer Contract /
Unexpected Packet /
Transmission Error / Timeout
Power Transfer Complete
In case of Qi-mode the STWLC68 goes autonomously through Selection, Ping, Identification & Configuration
phases, entering Power Transfer phase if no error occurs. During the Power Transfer phase, the device sends
Received-Power and Control-Error packets periodically as feedback information for the transmitter. If a critical
event like over-voltage, over-current or over-temperature occurs, the STWLC68 automatically sends the End-
Power-Transfer packet.
When the Power Transfer is up and running, the End-Power-Transfer packet (with any response value) or any
custom packet (e.g. Proprietary packet or Charge-Status packet) can be sent to the transmitter simply through
commands via I2C interface. Sending a custom packet may result in a reply (either a data packet or a pattern
response from the transmitter) or no reply at all: if a response is received, the content is captured and stored in
specific I2C registers.
Important notes:
Changing the output voltage must respect the overall system design (selected coil, transmitter type, etc.).
Output load transient response strongly depends on correct design of the output capacitors. Severe load
transients may lead to temporary output voltage collapse due to the overall TX-RX response time.
A minimum output load significantly helps in increasing the signal-to-noise ratio during digital pin and it is
advisable to ensure interoperability with all transmitters. For this purpose, the STWLC68 allows the user
to set a dummy load (reservoir current) that is dynamically managed to fade-out when an output load is
applied.
The initial load at power-up should not exceed 2.5 W, smoothly ramping-up to full power subsequently.
5.8
I2C interface
The STWLC68 can operate fully independently, i.e. without being interfaced with any host controller. In
applications in which the STWLC68 has to be part of the peripherals managed by the host system, the two
SDA and SCL pins could be connected to the existing I²C bus.
Thedevice works as an I²C slave and supports both standard (100 kbit/s) and fast (400 kbit/s) data transfer
modes.
Through the I²C interface, maximum device flexibility is obtained and full access to the internal resources is
possible. The host controller typically polls for device status and power transfer operation, demands for custom
commands execution or reconfigures the default parameters.
STWLC68
I2C interface
DS13131 - Rev 3
page 13/32



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