FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Smartec Products, LLC/
  3. 2BSOT-SPT107

2BSOT-SPT107Smart Pet Tag - A tag worn on a pets collar to communicate presence and distance to a Smart Pet Door via UWB technology

Smartec Products, LLC
Smart Pet Tag - A tag worn on a pets collar to communicate presence and distance to a Smart Pet Door via UWB technology - FCC ID 2BSOT-SPT107 - Smartec Products, LLC
Click to zoom

Application Details

Equipment Class
WBT - Wideband Transmitter
Date of Grant
Feb 02, 2026
Application Purpose
Original Equipment
Equipment Note
Smart Pet Tag - A tag worn on a pets collar to communicate presence and distance to a Smart Pet Door via UWB technology
Frequency Range
5925.00000000 - 7250.00000000
Company
Smartec Products, LLC
Country
United States

Documents & Files

Select a file to view

Users Manual

↗

Attestation Statements

↗
↗
↗

Block Diagram

↗

Cover Letter(s)

↗

External Photos

↗

ID Label/Location Info

↗

Internal Photos

↗

Operational Description

↗

RF Exposure Info

↗
↗

Schematics

↗

Test Report

↗

Test Setup Photos

↗

Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

Smart Pet Tag Setup Guide www.pawport.com/support [email protected] Need help? Before assembling or installing this product, read all instruc- tions and safety information. Contains small parts and a coin cell battery. Swallowing or mishandling the battery can cause serious injury, burns, or death. Keep away from children. Improper handling may also cause fire or leakage. Dispose of used batteries in accordance with local laws and recycling regulations. WARNING Hate to read? We feel you! Scan below to view the instructional video and follow along. Pairing a Tag to the Smart Pet Door Scan here to open the Pawport app and add a Tag. If you don’t have the app, you’ll be directed to download it and get started. 123 4 5 6 7 8 What’s included Smart Pet Tag 1 Tag holder 2 Snug mount 3 Hanging mount 4 Split ring 5 Philips head screwdriver *Lift tray for tool 6 CR2050 lithium battery 7 M2 screws ×2 8 Install the battery Using a flathead screwdriver, unscrew the battery cover on the back of the Smart Pet Tag (item 1). Place the battery (item 7) into the Tag with the positive side facing up. Reinstall the battery cover and tighten until snug. This product contains a coin cell battery, which can be a choking hazard and is dangerous if swallowed. Keep battery and Smart Pet Tag out of reach of children and pets during assembly. Dispose of used batteries properly and never incinerate or puncture. WARNING Collar mount options: 1. Hang from your existing collar The Smart Pet Tag comes with the hanging mount (item 4) preinstalled. Simply attach the split ring (item 5) through the hole on the hanging mount and connect it to your pet’s collar ring as you would a regular pet tag. Collar mount options: 2. Clamp to your existing collar For a snug fit, fasten the Smart Pet Tag directly onto your pet’s collar using the snug mount (item 3). First, remove the M2 screws (item 8) from the preinstalled hanging mount using the included screwdriver (item 6). Use these same screws and screwdriver to attach the snug mount in place of the hanging mount. Place your collar between the tag assembly and the snug mount, as shown. Ensure the flat side of the snug mount faces the collar and the “bumps” face outward, as shown. Tighten the screws. Make sure the Smart Pet Tag is securely mounted and not loose on the collar. A loose Tag may become a chewing hazard for your pet or become lost during activity. CAUTION Collar mount options: 3. Snap into a Pawport Collar If you purchased a Pawport Collar for a streamlined fit, refer to the instructions included with the Collar. Collar Setup Guide Pawport Smart Pet Tag Safety, Warranty & Compliance Information Model: 107-0001 WARNINGS READ BEFORE INSTALLATION: Improper installation, use, or maintenance of the Pawport Smart Pet Tag may result in injury, damage to the product, or voided warranty coverage. Please read all informa- tion in this booklet carefully before proceeding. Retain this booklet for future reference and servicing. RISK OF INJURY OR DAMAGE: Keep the Pawport Smart Pet Tag securely attached to your pet’s collar at all times. A loose or improperly attached Tag could result in loss or injury to the pet or others. Ensure the Tag is not placed in a position where it may become a choking hazard or interfere with your pet’s movement. ELECTRICAL & POWER SAFETY The Smart Pet Tag is powered by a user-replace- able coin cell battery. Do not open or disassemble the Tag except when replacing the battery. Use only the recommended replacement battery specified in the user manual. Do not crush, puncture, incin- erate, or expose the battery to extreme heat or flames. Improper handling may cause fire, leakage, explosion, or injury. Keep the battery and Tag out of reach of children and pets. Dispose of the old battery responsibly and in accordance with local regulations for electronic waste. Keep the Tag away from moisture and heat sources. Never attempt to charge or modify internal components. Exposure to water or high temperatures may cause malfunction or damage. TEMPERATURE & STORAGE: Do not expose the Smart Pet Tag to extreme temperatures. Operating or storing the Tag outside the range of 32°F–122°F (0°C–50°C) may cause malfunction or damage. Avoid leaving the Tag in direct sunlight, vehicles, or near heat sources. MOISTURE PROTECTION: The Smart Pet Tag is waterproof but is not intended to be submerged for long periods. Dry off the Tag immediately if exposed to large amounts of water or extreme moisture to maintain proper function. Ensure that the back of the tag enclosure is fully tightened to prevent water from entering into the Tag and damaging the components. Inspect the back cover regularly. PROPER ATTACHMENT: Securely attach the Tag to the pet collar using either the included split ring, snug mount, or hanging mount. Ensure the attachment is firm and will not easily detach during normal pet activity. Loose Tags may be swallowed or pose a choking hazard. CHOKING & SWALLOWING HAZARD • Contains small parts and a coin-cell battery. Swallowing may cause serious injury or death. Keep away from children and pets. • If battery ingestion is suspected, seek immedi- ate medical attention. CALIFORNIA PROPOSITION 65 WARNING WARNING: Cancer and Reproductive Harm – www.P65Warnings.ca.gov INSPECTION & MAINTENANCE: Periodically inspect the Tag for any signs of damage, wear, or malfunction. If the Tag is cracked, damaged, or not functioning properly, discontinue use and replace it. Do not use the Tag if it shows any visible signs of physical damage, corrosion, or wear. Clean only with a soft, damp cloth. Avoid solvents, abrasives, or any harsh chemical cleaners to maintain the integrity of the Tag. CAUTIONS INTENDED USE ONLY: The Smart Pet Tag is designed exclusively for use with the Pawport Smart Pet Door and should only be used as de- scribed in the user manual. Do not use the Tag for any other purpose as it could result in malfunction or void the warranty. DISPOSAL & RECYCLING: • Dispose of us…

Text truncated - open the document above for the full version.

Block Diagram

UWB Pet Tag Board The UWB Pet Tag board is 26mmx26mm board that uses the Spark SR1120 for the UWB transceiver and an MCU to control and configure it. It uses a 32.768 external oscillator for the Real Time clock and is also used to synthesis a 20.48 MHz clock on-chip via a PLL for various operations. It uses a ceramic antenna (- 0.5 dBi average gain) that is mounted on the board. There is an accelerometer used to detect pet movement. The circuit is powered with a CR2050 Lithium coin cell battery. Figure 1 illustrates the block diagram for the UWB Pet Tag Board. It is enclosed in a plastic waterproof casing. CR2050 SR1120 6.2 - 8.24 GHZ Ceramic Antenna STM32G0B1KEU6 3V SPI I2C ACC LIS2DW12TR I2C 3V 3V MCU Figure 1. UWB Pet Tag Board Block Diagram Figure 2. Antena Location

External Photos

Smart Pet Tag External Photos Figure 1. Smart Pet Tag (Isometric View) Figure 2. Smart Pet Tag (Front View) Figure 3.Smart Pet Tag (Back View) Figure 4. Smart Pet Tag (Top Side View) Figure 5. Smart Pet Tag (Bottom Side View) Figure 6. Smart Pet Tag (Left Side View) Figure 7. Smart Pet Tag (Right Side View) Figure 8. Smart Pet Tag and Accessories

ID Label/Location Info

Smart Pet Tag Labeling Figure 1. Smart Pet Tag Label

Internal Photos

UWB Pet Tag Transceiver Board Figure 1. Pet Tag (Battery Cover Removed) Figure 2. Pet Tag (Battery Removed) Figure 3. Pet Tag PCBA (Top View) Figure 4. Pet Tag PCBA (Bottom View)

Operational Description

Pawport- Smart Pet Tag Operation Product Description See website for a more visual description of the product https://pawport.com/. The Smart Pet Tag is used with the Pawport Smart Pet Door and communicates presence and distance via Ultra-Wide Band Transceivers. The door is a smart, motorized pet door for homes that can either slide onto existing pet door frames on the inside or come as a complete system with inside and external doors. The complete system is for people without an existing pet door. It is available in a number of different colors and three different sizes (small, medium and large). All models use the same electronics. Figure 1 shows an installation of the full system. The version that slides onto existing pet doors would be minus the external door. Figure 1. Full System Installation UWB Transceivers Uses and Locations The smart pet doors will open/close when the Smart Pet Tag is in a defined proximity of the doors using very low power UWB transceivers. The pet tag and sensors use the Spark SR1120 for the UWB transceiver, detecting proximity and Time of Flight. The SR1120 operates in the UWB spectrum with the fundamental emissions contained in the 5925−7250 MHz frequency band. It has a UWB PHY layer compliant with IEEE 802.15.4ab draft-clause 33 (see Spark SR1120 datasheet for more detailed operation). Figure 2 shows a high-level block diagram of the complete system (inside and external doors). As discussed previously, the smart pet door can be used with just the inside doors or both the inside and external doors. The external doors are powered from the inside doors and cannot operate on their own. The transceivers are shown in orange and mounted on the boards shown in green. The pet will wear the Pet Tag on its collar which has a UWB transceiver in it. There are 2 UWB transceivers in the inside door. They are both identical boards, just used in different places as shown below. One is orientated to detect pets from the inside of the home and the other is orientated to detect pets from the outside of the home. All transceivers have their own antenna on the board they are located on (no sharing of antennas). All transceivers are operating at the same time. The Pet tag transceiver is adverting all of the time and the 2 transceivers in the door are listening all of the time. When there is an external door installed with the inside door, the UWB external board is used to detect the pet from the outside. The UWB sensor located in the left inside door is disabled. That means that there are only 2 UWB sensors operating for the doors at any given time. ESP32 SR1120 Top Board – 300 - 1001 Bottom Board – 300 - 1002 UWB Sensor Board (Outside Detection) – 300 - 1009 Left Door Right Door DC Motor DC Motor Li - ion Battery Pack USB - C PWR USB - C PWR SR1120 External Motor Board – 300 - 1004 DC Motor DC Motor UWB External Sensor Board – 300 - 1011 300 - 1012 Power and Comms SR1120 UWB Tag Board – 300 - 1007 Pet Tag Electronic Latch Electronic Latch Inside Doors External Doors Cap Touch Buttons LEDs LEDs Power Switch SR1120 UWB Sensor Board (Inside Detection) – 300 - 1009 Left Door Right Door Top Cap 65W USB - C PD Adapter To AC - Mains DC Power to top or bottom USB - C port Figure 2. Pawport High-Level Block Diagram (Complete System) UWB Operation The UWB Pet Tag transmits short burst(~2ms) every 500 milliseconds to advertise its presence. The UWB transceivers in the door are not transmitting continuously. They are setup as hubs that listen for the Pet Tag when it is in range. When the Pet Tag is in range (~150cm or less), the hubs and tag transmit/receive to determine ranging. When the Pet Tag is in a predefined range, the pet doors will open. Just to clarify, only the Pet Tag is continuously transmitting. The transceivers in the doors only transmit when the Pet Tag is in range (~150cm or less). UWB Pet Tag Board The UWB Pet Tag board is 26mmx26mm board that uses the Spark SR1120 for the UWB transceiver and an MCU to control and configure it. It uses a ceramic antenna that is mounted on the board. With an average gain of -0.5dBi. There is an accelerometer used to detect pet movement. It is powered with a CR2050 Lithium coin cell battery. Figure 3 illustrates the block diagram for the UWB Pet Tag Board. It is enclosed in a plastic waterproof casing. STM32G0B1KEU6 3V SPI 3V SR1120 SPI CR2050 3V ACC LIS2DW12TR I2CI2C 3V 6.2-8.24 GHZ Ceramic Antenna Balun & Matching Network Figure 3. UWB Pet Tag Board Block Diagram Figure 4. Antena Location Figure 5. Ceramic Antenna Specifications

RF Exposure Info

Certificates and reports shall not be reproduced except in full, without the written permission of H.B Compliance Solutions, LLC. RF Exposure MPE Report For the Pawport Smart Pet Tag January 15, 2026 Prepared for: Smartec Products, LLC DBA Pawport 2340 W Parkside Lave, H-112 Phoenix, AZ 85027 Prepared By: H.B. Compliance Solutions 5005 S. Ash Avenue, Suite # A-10 Tempe, Arizona 85282 Reviewed By: Hoosamuddin Bandukwala Cert # ATL-0062-E HBCS RF Exposure Report # EMC_25042_4 Page 2 of 4 1. Equipment Overview Product Name: Smart Pet Tag Model(s) Tested: N/A FCC ID: 2BSOT-SPD107 Supply Voltage Input: Primary Power: +120 ac Frequency Range: 5925-7250 MHz No. of Channels: 1 Type(s) of Modulation: OOK Range of Operation Power: -25.09dBm (EIRP) Emission Designator: N/A Channel Spacing(s) N/A Test Item: Pre-Production Type of Equipment: Mobile Antenna Requirement (§15.203) : Type of Antenna: Ceramic Antenna Gain of Antenna: -0.5dBi Environmental Test Conditions: Temperature: 15-35⁰C Humidity: 30-60% Barometric Pressure: 860-1060 mbar Modification to the EUT: None HBCS RF Exposure Report # EMC_25042_4 Page 3 of 4 2. Applicable Standard According to §1.1307 the criteria listed in table 1 shall be used to evaluate the environmental impact of human exposure to radio frequency (RF) radiation as specified in §1.1307(b), except in the case of portable devices which shall be evaluated according to the provisions of §2.1093 of this chapter. Test Limits Evaluated against exposure limits: General Use _X_ or Controlled Use ___ Maximum Permissible Exposure (MPE) f = frequency in MHz* = Plane-wave equivalent power density RF exposure compliance will need to be determined with respect to 1.1307(c) and (d) of the FCC rules. The emissions should be within the limits at 300kHz in the above table. (Use 300kHz limits for 150kHz) HBCS RF Exposure Report # EMC_25042_4 Page 4 of 4 3. Test Results Equation from page 18 of OET Bulletin 65, Edition 97-01 S = PG/4πR² Where, S = power density (mW/cm2) P = output power at the antenna terminal (mW) G = gain of transmit antenna (numeric) R = distance from transmitting antenna (cm) For UWB Transmitter Maximum peak output power = -25.09 (dBm) Maximum peak output power at antenna input terminal = 0.00188 (mW) Antenna gain (typical) = -0.5 (dBi) Maximum antenna gain = 1.0 (numeric) Prediction distance = 20 (cm) Prediction frequency = 6812 (MHz) MPE limit for uncontrolled exposure at prediction frequency = 1.0 (mW/cm^2) Power density at prediction frequency = 0.0000003740 (mW/cm^2) To solve for the minimum mounting distance required; R = √ (PG/4πS) R = √ (0.00189 x 1.0 / 4π x 0.0000003740) = 20 cm (Based on continuous transmission) Therefore, at 20cm the spectral power density is less than the 1.0 mW/cm² limit for uncontrolled exposure. END OF TEST REPORT

RF Exposure Info

Certificates and reports shall not be reproduced except in full, without the written permission of H.B Compliance Solutions, LLC. FCC SAR Exclusion Report For the Pawport Smart Pet Tag January 23, 2026 Prepared for: Smartec Products, LLC DBA Pawport I2340 W Parkside Lane, H-112 Phoenix, AZ 85027 Prepared By: H.B. Compliance Solutions 5005 S. Ash Avenue, Suite # A-10 Tempe, Arizona 85282 Reviewed By: Hoosamuddin Bandukwala Cert # ATL-0062-E HBCS SAR Exclusion Test Report # EMC_25046_4 Page 2 of 5 1. Equipment Overview Product Name: Smart Pet Tag Model(s) Tested: N/A FCC ID: 2BSOT-SPT107 Supply Voltage Input: Primary Power: +120 ac Frequency Range: 5925-7250 MHz No. of Channels: 1 Type(s) of Modulation: OOK Range of Operation Power: -25.09dBm (EIRP) Emission Designator: N/A Channel Spacing(s) N/A Test Item: Pre-Production Type of Equipment: Mobile Antenna Requirement (§15.203) : Type of Antenna: Ceramic Antenna Gain of Antenna: -0.5dBi Environmental Test Conditions: Temperature: 15-35⁰C Humidity: 30-60% Barometric Pressure: 860-1060 mbar Modification to the EUT: None HBCS SAR Exclusion Test Report # EMC_25046_4 Page 3 of 5 2. Applicable Standard Standalone SAR Test Exclusion Consideration According to KDB447498 D01 General RF Exposure Guidance v06 4.3.1. Standalone SAR test exclusion considerations Unless specifically required by the published RF exposure KDB procedures, standalone 1-g head or body and 10-g extremity SAR evaluation for general population exposure conditions, by measurement or numerical simulation, is not required when the corresponding SAR Exclusion Threshold condition, listed below, is satisfied. Limits Table 1: SAR test exclusion threshold 100MHz -6GHz for ≤50MM HBCS SAR Exclusion Test Report # EMC_25046_4 Page 4 of 5 The 1-g and 10-g SAR test exclusion thresholds for 100 MHz to 6 GHz at test separation distances ≤ 50 mm are determined by: where ・ f(GHz) is the RF channel transmit frequency in GHz ・ Power and distance are rounded to the nearest mW and mm before calculation ・ The result is rounded to one decimal place for comparison The test exclusions are applicable only when the minimum test separation distance is ≤ 50 mm and for transmission frequencies between 100 MHz and 6 GHz. When the minimum test separation distance is < 5 mm, a distance of 5 mm is applied to determine SAR test exclusion HBCS SAR Exclusion Test Report # EMC_25046_4 Page 5 of 5 3. Test Results To solve for the EIRP ; General RF Exposure = (0.0018 / 5 mm) x √6.8 GHz = 0 ① SAR 1g extremity requirement: S= 3.0 ② ; ① < ②. Therefore SAR report is not required. Frequency (GHz) Separation Distance (mm) Max Power + Tolerance (dBm) Max Power + Tolerance (mW) SAR Calculation Result Limit for Exclusion threshold SAR Evaluation 6.812 5.0 -25.09 0.00188 0.00 3.0 SAR Exempt Transmit power is less than power indicated in table 1 and the result of the above condition is less than 3. Based on this the transmitter is exempted from SAR evaluation. END OF TEST REPORT

Schematics

123456 123456 A B C D A B C D Date:2025-06-27 Rev:10-00075-02 Size:A4 Id:1/5 Title:PP-TB-E3 File:PP-TB.kicad_sch Sheet: Softgentsp.zo.o. Author:ZbigniewþÿDbrowski<[email protected]> SOFTGENTCONFIDENTIAL MCU{~{RESET}SWCLKSWDIO} BAT{~{MEAS_EN}VOLTAGE} UWB{~{RESET}SCKMOSIMISO~{CS}IRQSHDN} ACC{SCLSDAINT1INT2} UART{RXTX} MCU ACC{SCLSDAINT1INT2} MCU{~{RESET}SWCLKSWDIO} BAT{~{MEAS_EN}VOLTAGE} UART{RXTX} Peripherals Power UWB{~{RESET}SCKMOSIMISO~{CS}IRQSHDN} UWB 123456 123456 A B C D A B C D Date:2025-06-27 Rev:10-00075-02 Size:A4 Id:2/5 Title:MCU File:MCU.kicad_sch Sheet:MCU Softgentsp.zo.o. Author:ZbigniewþÿDbrowski<[email protected]> SOFTGENTCONFIDENTIAL VCC C2 100n TP2 TP1 VCC C1 4u7 VDD 4 PC14 2 PC15 3 PF2 6 VSS 5 VSS 33 PA0 7 PA1 8 PA2 9 PA3 10 PA4 11 PA5 12 PA6 13 PA7 14 PA8 18 PA9 19 PA10 21 PA11 22 PA12 23 PA13 24 PA14 25 PA15 26 PB0 15 PB1 16 PB2 17 PB3 27 PB4 28 PB5 29 PB6 30 PB7 31 PB8 32 PB9 1 PC6 20 U1 STM32G0B1KEU6 C3 100n VCC FID3 WEEElogo FID1 Softgentlogo FID2 ULlogo UART{RXTX} ACC{SCLSDAINT1INT2} MCU{~{RESET}SWCLKSWDIO} BAT{~{MEAS_EN}VOLTAGE} UWB{~{RESET}SCKMOSIMISO~{CS}IRQSHDN} UWB.~{CS} UWB.MISO UWB.MOSI UWB.SHDN MCU.SWCLK MCU.SWDIO ACC.SCL ACC.INT2 ACC.INT1 ACC.SDA UWB.~{RESET} UWB.IRQ MCU.~{RESET} UWB.SCK UART.TX UART.RX Testpoints Fiducials MainMCU Decouplingcapacitors. PlaceclosetoVDD. 123456 123456 A B C D A B C D Date:2025-06-27 Rev:10-00075-02 Size:A4 Id:3/5 Title:UWB File:UWB.kicad_sch Sheet:UWB Softgentsp.zo.o. Author:ZbigniewþÿDbrowski<[email protected]> SOFTGENTCONFIDENTIAL VCC C7 1u C6 100n C8 1u C22 10u C9 10p Y1 32k768 GND 31 GND 32 GND 33 RFP 30 VDD_IO 20 VDD_BAT 21 VDD_ANA 4 ~{RSTN} 16 SCK 11 SPI_IO0/MOSI 12 SPI_IO1/MISO 13 SPI_IO2 14 SPI_IO3 15 ~{CSN} 10 IRQ 9 REG_OUT 22 VDD_PA 23 VDD_CORE_ANA 27 VDD_CORE_DIG 24 VDD_REG 8 RSVD 17 RSVD 25 GND 26 GND 28 SHDN 7 RFN 29 RSVD 1 ANT 6 SYNC 5 XTAL_CLK 18 PLL_CLK 19 XTAL_C1 2 XTAL_C2 3 U2 SR1120 A1 7000AT18A1600E-AEC R1 1M C11 10p C21 100n FB2 120R VCC C5 1u C4 100n BAL_2 4 BAL_1 3 UNBAL 2 GND 1 T1 BD60120N50100AHF C24 6p8 L2 1n R2 1M L1 180n R13 22R C13 6p8 C10 1u C23 10u UWB{~{RESET}SCKMOSIMISO~{CS}IRQSHDN} Z_{50}.TZ_{50}VDD_{BAT} VDD_{ANA} UWB.SHDN Z_{50}.UNBALZ_{100}.BAL2 Z_{100}.BAL1 VDD_{BAT} V_{REG_OUT} UWB.~{RESET} UWB.MISO CLK.XTAL_{INT2} CLK.XTAL_{INT1} UWB.SCK UWB.~{CS} UWB.IRQ UWB.MOSI VDD_{ANA} V_{REG_OUT} VDDfilter. PlaceclosecapacitorstoVDD_IO,VDD_BAT,VDD_ANA. RFsection 100nFonVDD_CORE_ANA,VDD_PA UWBMCU Decouplingcapacitors. Placecloseto VDD_CORE_ANA,VDD_CORE_DIG,VDD_PA. C6 100n C21 100n C13 6p8 A1 7000AT18A1600E-AEC C24 6p8 123456 123456 A B C D A B C D Date:2025-06-27 Rev:10-00075-02 Size:A4 Id:4/5 Title:Peripherals File:peripherals.kicad_sch Sheet:Peripherals Softgentsp.zo.o. Author:ZbigniewþÿDbrowski<[email protected]> SOFTGENTCONFIDENTIAL R11 10k R9 10k 1 2 3 4 J2 UART R10 10k VCC VCC VCC 1 GND 5 ~{RESET} 3 SWCLK 4 SWDIO 2 SWO 6 J1 TC2030-NL C14 100n VCC C12 10u C15 100n NC 5 RES 7 GND_1 6 GND_2 8 VDDIO 10 VDD 9 SCL/SPC 1 SDA/SDI/SDO 4 SDO/SA0 3 CS 2 INT2 11 INT1 12 U3LIS2DW12TR R7 100k R8 10k R6 100k VCC UART{RXTX} ACC{SCLSDAINT1INT2} MCU{~{RESET}SWCLKSWDIO} BAT{~{MEAS_EN}VOLTAGE} ACC.INT1 ACC.INT2 ACC.SDA ACC.SCL UART.TX UART.RX MCU.SWDIO MCU.~{RESET} MCU.SWCLK UART DebugconnectorforMCU Accelerometer addr:0011001b(0x19) U3LIS2DW12TR NC 5 RES 7 GND_1 6 GND_2 8 VDDIO 10 VDD 9 SCL/SPC 1 SDA/SDI/SDO 4 SDO/SA0 3 CS 2 INT2 11 INT1 12 C15 100n R6 100k 123456 123456 A B C D A B C D Date:2025-06-27 Rev:10-00075-02 Size:A4 Id:5/5 Title:Power File:power.kicad_sch Sheet:Power Softgentsp.zo.o. Author:ZbigniewþÿDbrowski<[email protected]> SOFTGENTCONFIDENTIAL C18 1u C20 47u C19 10n FB1 120R R12 2R2 1 32 Q2 CSD25480F3 VCC C17 1u C16 47u 1 J4 1 J3 VCC_{unfiltered}BAT+ ElasticSMDcontactconnectors DesignNote DesignNote CR2032Batteryconnector

Test Report

Certificates and reports shall not be reproduced except in full, without the written permission of H.B Compliance Solutions, LLC. Intentional Radiator Test Report For the Pawport Smart Pet Tag Tested under The FCC Rules contained in Title 47 of the CFR, Part 15.250 Operation of wideband systems within the band 5925-7250MHz January 15, 2026 Prepared for: Smartec Products, LLC DBA Pawport 2340 W Parkside Lane, H-112 Phoenix, AZ 85027 Prepared By: H.B. Compliance Solutions 5005 S. Ash Avenue, Suite # A-10 Tempe, Arizona 85282 Reviewed By: Hoosamuddin Bandukwala Cert # ATL-0062-E Engineering Statement: The measurements shown in this report were made in accordance with the procedure indicated, and the emissions from this equipment were found to be within the limits applicable. I assume full responsibility for the accuracy and completeness of these measurements, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurement made, the equipment tested is capable of operation in accordance with the requirements of Part 15 of the FCC Rules under normal use and maintenance. All results contained herein relate only to the sample tested. HBCS Report # FCC_25046_2 Page 2 of 23 Report Status Sheet Revision # Report Date Reason for Revision Ø January 15, 2026 Initial Issue HBCS Report # FCC_25046_2 Page 3 of 23 Table of Contents EXECUTIVE SUMMARY ............................................................................................ 4 1. Testing Summary ....................................................................................... 4 EQUIPMENT CONFIGURATION ................................................................................ 5 1. Overview ................................................................................................... 5 2. Test Facility ............................................................................................... 6 3. Description of Test Sample ........................................................................ 7 4. Equipment Configuration .......................................................................... 7 5. Support Equipment ................................................................................... 7 6. Ports and Cabling Information ................................................................... 7 7. Method of Monitoring EUT Operation ...................................................... 8 8. Mode of Operation .................................................................................... 8 9. Modifications ............................................................................................ 8 10. Disposition of EUT ..................................................................................... 8 Criteria for Intentional Radiators ............................................................................ 9 1. Radiated Emissions .................................................................................... 9 Emissions Tests Calculations ...................................................................... 10 2. Frequency Stability (Temperature & Voltage) ......................................... 13 3. -10 dB Bandwidth .................................................................................... 15 4. Radiated Spurious Emissions and Restricted Band .................................. 17 6. Peak Emissions in a 50 MHz Bandwidth ................................................... 20 7. Test Equipment ............................................................................................. 22 8. Measurement Uncertainty ............................................................................ 23 HBCS Report # FCC_25046_2 Page 4 of 23 EXECUTIVE SUMMARY 1. Testing Summary These tests were conducted on a sample of the equipment for the purpose of demonstrating compliance with Part 15.250. All tests were conducted using measurement procedure from ANSI C.63.10-2020 as appropriate. Test Name Test Method/Standard Result Comments A/C Powerline Conducted Emissions 15.207 N/A Battery Powered Device. Radiated Emissions at or below 960MHz 15.209, 15.250(d)(4) Pass Frequency Stability 15.250(a) Pass -10 dB Bandwidth 15.250(b) Pass Radiated Spurious Emissions & Restricted Band 15.250(d)(1), (d)(2) 15.209(a), 15.205 Pass Peak Power in 50MHz Bandwidth 15.250(d)(3) Pass HBCS Report # FCC_25046_2 Page 5 of 23 EQUIPMENT CONFIGURATION 1. Overview H.B Compliance Solutions was contracted by Pawport to perform testing on the Smart Pet Tag under quotation number Q25101003. This document describes the test setups, test methods, required test equipment, and the test limit criteria used to perform compliance testing of the Pawport, Smart Pet Tag. The tests were based on FCC Part 15 Rules. The tests described in this document were formal tests as described with the objective of the testing was to evaluate compliance of the Equipment Under Test (EUT) to the requirements of the aforementioned specifications. Pawport should retain a copy of this document and it should be kept on file for at least five years after the manufacturing of the EUT has been permanently discontinued. The results obtained relate only to the item(s) tested. Product Name: Smart Pet Tag Model(s) Tested: N/A FCC ID: 2BSOT-SPT107 Supply Voltage Input: 3 VDC Frequency Range: 5925 MHz -7250 MHz Type(s) of Modulation: OOK Range of Operation Power: Channel Spacing(s) None Test Item: Pre-Production Type of Equipment: Fixed Use Antenna Requirement (§15.203): Type of Antenna: Ceramic Antenna Gain of Antenna: -0.5dBi Environmental Test Conditions: Temperature: 15-35⁰C Humidity: 30-60% Barometric Pressure: 860-1060 mbar Modification to the EUT: None Evaluated By: Staff at H.B. Compliance Solutions Test Date(s): 10/24/2025 till 11/05/2025 HBCS Report # FCC_25046_2 Page 6 of 23 2. Test Facility All testing was performed at H.B. Compliance Solutions. This facility is located at 5005 S. Ash Avenue, Sui…

Text truncated - open the document above for the full version.

Test Setup Photos

1 | P a g e Test Setup Photos Pawport – Project 25046 Test Setup Photo # 1 Test Setup Photo # 2 2 | P a g e Test Setup Photo # 3 Test Setup Photo # 4 3 | P a g e Test Setup Photo # 5 Test Setup Photo # 6 4 | P a g e Test Setup Photo # 7

Contact Information

Applicant

Mike Cargile
[email protected]Fax: N/A

Technical Contact

Smartec Products, LLC OBA PawportMike Cargile
[email protected]

2340 W Parkside Ln · Phoenix, 85027 · United States

Test Firm

H.B. Compliance SolutionsHoosamuddin Bandukwala
[email protected]

Technical Specifications

#Rule PartsFrequency RangePower Output
115.2505.92 GHz - 7.25 GHz-

Other Applications from Smartec Products, LLC

Smart Pet Door - open and close when the pet tag is in a defined proximity using UWB technology. - FCC ID 2BSOT-SPD101 - Smartec Products, LLC
2BSOT-SPD101

Smart Pet Door - open and close when the pet tag is in a defined proximity using UWB technology.

Feb 27, 2026

Equipment Class

WBT - Wideband Transmitter