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P9025AC FOD Tuning Guide
Introduction
The P9025AC wireless power receiver is a WPC-compliant integrated circuit used to receive wireless power inductively. To
achieve WPC compliance, the Foreign Object Detection (FOD) feature must be enabled and tuned on both the transmitter (Tx)
and Receiver (Rx).
In any wireless power transfer system where a magnetic field is induced to transfer energy, the power transfer flux is also present
outside the Tx and Rx coils. Although this field decays proportionally to the inverse square of the distance, it is typical that these
fields intersect with other permeable materials (such as copper, steel or Lithium Ion batteries). These ferrous materials that are
unrelated to the power transfer but necessary to the product, absorb a portion of the transmitted energy and appear as a system
loss in efficiency. Other ferrous objects that are not part of the system may also be present, such as keys, coins, or other foreign
objects - and they too may absorb energy during operation. As a safety precaution, the Tx will disable power transfer whenever
the losses are measured to be higher than a pre-determined threshold.
Most wireless power systems will have some permeable materials present by design on the Tx and Rx side of the system (such
as the final product casing). This is normal and can be accounted for by tuning the FOD parameters of the system. The P9025AC
has internal OTP registers that are used to configure the FOD parameters required to ignore losses from known system design
objects and only report losses associated with actual foreign objects. Additionally, the P9025AC offers an external global FOD
offset adjustment resistor from FOD2 pin to GND. This resistor can add a positive or negative offset to the reported power by the
device based on the pre-programmed FOD curve.
For WPC-compliant systems, the loss allowed due to foreign objects is 350 mW, not including known losses due to the Tx and
Rx systems. For systems where WPC compliance is not a requirement, FOD can be programmed to accept losses greater than
350 mW, or can be disabled completely.

Getting Started

The P9025AC has two external resistors for changing (tuning) the received power value that is reported to the Tx. The resistor
from pin FOD1 to GND is used to select one of several pre-programmed banks of FOD values. The resistor from pin FOD2 to
GND is an additional offset adjustment and shifts the entire reported received power curve up or down. Details on how to adjust
these values is explained later in this guide.
Before starting to tune the system FOD, careful consideration should be taken to determine to what degree FOD is required in
the application. When WPC compliance is not required, increasing the FOD loss threshold or disabling FOD completely can
significantly reduce the effort and costs associated with tuning. The three options are as follows:
Option #1: Disabling FOD
eliminates the need for tuning completely. Skip to the Disabling FOD section for details on how to disable FOD.
Option #2: "Good Enough" FOD
threshold. This is typical of systems where the Tx and Rx are paired, and where WPC-compliance is not necessary. This
type of tuning can be accomplished in a short time with just a few simple measurements and two external resistors. This
guide will instruct users on how to achieve this.
Option #3: WPC-compliant FOD
centers. This typically requires precision tuning with the help of an FOD expert and special tools. This degree of tuning falls
outside the scope of this guide. IDT will refer customers to a third party support team for tuning and pre-certification testing.
AN-886 REVISION 08/26/15
– some applications will not need any form of FOD, such as fixed location chargers. This
– some applications want FOD to a degree, but do not require a strict FOD detection
– this is for applications that require Qi Certification from one of the WPC certification
1
AN-886
APPLICATION NOTE
©2015 Integrated Device Technology, Inc.

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Summary of Contents for IDT P9025AC

  • Page 1: Getting Started

    Most wireless power systems will have some permeable materials present by design on the Tx and Rx side of the system (such as the final product casing). This is normal and can be accounted for by tuning the FOD parameters of the system. The P9025AC has internal OTP registers that are used to configure the FOD parameters required to ignore losses from known system design objects and only report losses associated with actual foreign objects.
  • Page 2: Fod Tuning Overview

    Unfortunately, the fixed losses are not linear with respect to the load current. Therefore, the P9025AC device has been pre-programmed with multiple FOD curves that can be selected using the resistor on pin FOD1. These FOD1 settings are intended to include the Rx operational losses and other end-product specific metallic material losses, such as the receiver's casing.
  • Page 3: Pre-Programmed Banks (Fod1)

    IDT derived these particular curves based on existing systems with a variety of permeable materials near the Tx and Rx coils. The following curves are the default values stored in the FOD banks of the P9025AC-RNDGI device (refer to the P9025-R-EVK FOD Calculator.xlsx for exact values).
  • Page 4: Global Offset (Fod2)

    FOD1 Power offsets are described in more detail in the next section. Global Offset (FOD2) The P9025AC offers an additional layer of flexibility that allows a global power offset to be added to the RX reported POWER_FOD level. This offset is applied by connecting an external resistor from pin FOD2 to GND and directly affects the received power level that is reported to the transmitter across the load spectrum.
  • Page 5 AN-886 The P9025AC has a 1.8V reference connected by a current mirror to the FOD2 resistor which reflects the current to an internal ADC. The external FOD2 resistor creates a voltage at the ADC input and the offset is proportional to the resistance to GND at the FOD2 pin.
  • Page 6 R4. Third, the resistor from FOD2 to GND on the P9025AC Rx should be set to 20k. This will add +300 mW of offset to the reported power value and make it so that FOD-invoked shutdowns cannot happen when using the P9038, and will be very unlikely when using the P9025AC with other WPC transmitters.
  • Page 7 A on the Measurements tab. The input and output power levels will be calculated for you. Ideally, this should be performed with the final assembled wireless Tx and Rx products being built and the opposite Tx or Rx IDT EVK. Enter these values in the left hand input table labeled First data set.
  • Page 8 To determine custom values, Bank 8 or Bank 9 can be adjusted using the Hexadecimal values on the PR_Banks tab until the selected bank column no longer has red cells. IDT will refer customers to a third party support team for programming the P9025AC with a custom FOD configuration.
  • Page 9 AN-886 be filled in) REVISION 08/26/15 P9025AC FOD TUNING GUIDE...
  • Page 10 Due to the cost associated with these items or services, it is recommended to consider Option #2 if WPC certification is not a hard requirement. IDT will refer customers to a third party support team for tuning and pre-certification testing.
  • Page 11: Revision History

    IDT or any third parties. IDT’s products are not intended for use in applications involving extreme environmental conditions or in life support systems or similar devices where the failure or malfunction of an IDT product can be reasonably expected to significantly affect the health or safety of users.

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