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UM11909
P3S0210BQ-ARD evaluation board
Rev. 1.0 — 23 February 2024
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Information
Keywords
Abstract
Content
P3S0210, I3C switch, I3C Level Shifter, Level Translator, P3S0210 user manual, P3S0210BQ-
ARD evaluation board
The P3S0210 is a dual bidirectional I3C-bus 1:2 and 2:1 switch and voltage level translator with
auto direction sensing, that enables bidirectional voltage level translation. This user manual
describes the setup, configuration and operation of the P3S0210BQ-ARD evaluation board.
User manual

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Summary of Contents for NXP Semiconductors P3S0210BQ-ARD

  • Page 1 Abstract The P3S0210 is a dual bidirectional I3C-bus 1:2 and 2:1 switch and voltage level translator with auto direction sensing, that enables bidirectional voltage level translation. This user manual describes the setup, configuration and operation of the P3S0210BQ-ARD evaluation board.
  • Page 2: Introduction

    VCCS. The OE and SEL pins are defined for enable and port selection that are referenced to VCCE. P3S0210BQ-ARD evaluation board can be used for both open-drain as well as push-pull application which allows for I3C-bus and other applications like I C-bus, SMBus and SPI protocols.
  • Page 3: Finding Kit Resources And Information On The Nxp Web Site

    NXP Semiconductors P3S0210BQ-ARD evaluation board 2 Finding kit resources and information on the NXP web site NXP Semiconductors provides online resources for this evaluation board and its supported device(s) on http://www.nxp.com.The information page for P3S0210BQ-ARD evaluation board is at http://www.nxp.com/ P3S0210BQ-ARD.
  • Page 4: Getting Ready

    UM11909 NXP Semiconductors P3S0210BQ-ARD evaluation board 3 Getting ready Working with the P3S0210BQ-ARD evaluation board requires the kit contents. 3.1 Kit contents • Assembled and tested evaluation board in an anti-static bag • Quick Start Guide UM11909 All information provided in this document is subject to legal disclaimers.
  • Page 5: Getting To Know The Hardware

    LDO output voltage. The P3S0210BQ-ARD evaluation board is also designed to be mated and controlled by a standard micro- controller board which equipped with standard Arduino headers. The P3S0210 is then powered by the available 5 V rail from the micro-controller board.
  • Page 6 UM11909 NXP Semiconductors P3S0210BQ-ARD evaluation board Figure 1. P3S0210BQ-ARD evaluation board UM11909 All information provided in this document is subject to legal disclaimers. © 2024 NXP B.V. All rights reserved. User manual Rev. 1.0 — 23 February 2024 6 / 17...
  • Page 7: Connectors And Jumpers

    UM11909 NXP Semiconductors P3S0210BQ-ARD evaluation board I3C/I2C Header VCCP1 (VCCP1x) I3C / I2C Port 1 I3C/I2C Header VCCS (1V8) P3T1755 Addr 0x70 VCCS (2V5) VCCSx VCCS (1V8) PCA9538 Addr 0xC0 NXP P3T1755 I3C / I2C Addr 0x72 VCCS (1V8) P3T1755...
  • Page 8: P3S0210 Vccp1, Vccp2, Vccs, Vcce, Vccr Select Jumper Settings

    UM11909 NXP Semiconductors P3S0210BQ-ARD evaluation board Figure 3. P3S0201BQ-ARD jumper locations 4.2 P3S0210 VCCP1, VCCP2, VCCS, VCCE, VCCR select jumper settings As default, P3S0210 power rails are set as onboard power as shown in Table 1. External power rail can be used by removing the jumper from 2-3, and placing it on 1-2.
  • Page 9: P3S0210 Vccp1, Vccp2, Vccs, Vcce, Vccr Default Voltage Jumper Settings

    The I2C and I3C addresses in Table 4 are the factory default addresses. These addresses can be changed to other addresses via headers. Please see the green footnotes on the P3S0210BQ-ARD evaluation board schematic. 4.6 On-board I2C/I3C pull-up resistor selection On each of the port I2C/I3C interface header, there are on-board pull up resistor on SCL and SDA signals.
  • Page 10: Arduino Headers

    PortS SDA J20 pin 2 4.9 Schematic, board layout and bill of materials The schematic, board layout and bill of materials for the P3S0210BQ-ARD evaluation board are available at http://www.nxp.com/P3S0210BQ-ARD. UM11909 All information provided in this document is subject to legal disclaimers.
  • Page 11: P3S0210 Operation Guide

    UM11909 NXP Semiconductors P3S0210BQ-ARD evaluation board 5 P3S0210 operation guide 1. Unpack the board and power it with the USB2 cable 2. Connect the 1.8V I3C controller to Port1 via J21, or PortS via J20 if 3V3 I3C controller. See schematic for wiring connection.
  • Page 12: Errata List

    UM11909 NXP Semiconductors P3S0210BQ-ARD evaluation board 6 Errata list Table 8. Errata Date Errata Description Demo Impact Solution None None None UM11909 All information provided in this document is subject to legal disclaimers. © 2024 NXP B.V. All rights reserved. User manual Rev.
  • Page 13: Revision History

    UM11909 NXP Semiconductors P3S0210BQ-ARD evaluation board 7 Revision history Table 9. Revision history Document ID Release date Description UM11909 v.1.0 23 February 2024 • Initial version UM11909 All information provided in this document is subject to legal disclaimers. © 2024 NXP B.V. All rights reserved.
  • Page 14: Legal Information

    NXP Semiconductors. In the event that customer uses the product for design-in and use in In no event shall NXP Semiconductors be liable for any indirect, incidental, automotive applications to automotive specifications and standards, punitive, special or consequential damages (including - without limitation - customer (a) shall use the product without NXP Semiconductors’...
  • Page 15 UM11909 NXP Semiconductors P3S0210BQ-ARD evaluation board Tables Tab. 1. VCCP1, VCCP2, VCCS, VCCE, VCCR Tab. 5. On-board I2C/I3C pull-up resistor selection ..9 select jumper settings ........8 Tab. 6. Arduino headers ..........10 Tab. 2. VCCP1, VCCP2, VCCS, VCCE, VCCR Tab. 7.
  • Page 16 UM11909 NXP Semiconductors P3S0210BQ-ARD evaluation board Figures Fig. 1. P3S0210BQ-ARD evaluation board ....6 Fig. 3. P3S0201BQ-ARD jumper locations ....8 Fig. 2. P3S0201 block diagram ........7 UM11909 All information provided in this document is subject to legal disclaimers. © 2024 NXP B.V. All rights reserved.
  • Page 17: Table Of Contents

    UM11909 NXP Semiconductors P3S0210BQ-ARD evaluation board Contents Introduction ............2 Finding kit resources and information on the NXP web site ........3 Collaborate in the NXP community ....3 Getting ready ........... 4 Kit contents ............4 Getting to know the hardware ......5 Connectors and jumpers ........

Table of Contents