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3.30.22 357-00060-01 Rev A © Inovonics, 2022 - www.inovonics.com EN2221S-60 Location Pendant Installation and Operation Manual 1 Overview The EN2221S-60 series location pendant is small, light and comfortable to wear, and includes a Bluetooth® radio that enables advanced locating features. The location pendant is available in the following configurations: Note: For UL 2560 installations, refer to the EN6080 Area Control Gateway Installation Instructions or the EN6040-T Network Coordinator with Transformer Installation Instructions. 1.1 Inovonics Contact Information If you have any problems with this procedure, contact Inovonics technical services: • E-mail: [email protected]. • Phone: 1.800.782.2709, option 2. 1.2 Maximum Number of Repeaters for a UL 2560 Installation To achieve the 99.99% alarm message reliability required for UL 2560 compliance, system installations must operate within the following limits for end device and repeater counts. 1.3 Pendant Components Figure 1 Pendant components 2 Installation and Startup 2.1 Installation Notes • These products are designed to be maintained by professional technicians. • Products are intended for indoor use. • Do not ship the pendant with the coin cell battery installed when temperatures are below 32°F. Doing so will damage the internal battery and cause the pendant to irretrievably fail. • All products should be manually tested weekly (see section 6, “Test the Transmitter”). 2.2 Coin Cell Battery Installation Caution: If you are installing batteries in multiple devices, keep the batteries from coming into contact with each other to prevent discharge. 1.Place the battery in the battery compartment, ensuring that the positive terminal (+) faces up. 2.Seat the battery door over the battery so that the arrow on the battery door is lined up with the unlocked padlock icon. Figure 2 Battery door in the unlocked position 3.Use the ACC680 alarm clearance card or a quarter to turn the battery door to line up the arrow on the battery door with the arrow under the locked padlock icon. Figure 3 Battery door in the locked position 4.Press the activation button for at least one second. Part #Check-In LocationOther EN2221S-60N60 minutes North America Neck lanyard EN2221S-60W 60 minutes North America Wristband EN2221S-60WL 60 minutes North America Long wristband EN2221S-60AN 60 minutes AustraliaNeck lanyard EN2221S-60AW 60 minutes AustraliaWristband EN2221S-60ZN 60 minutes New Zealand Neck lanyard EN2221S-60ZW 60 minutes New Zealand Wristband For product and installation videos visit us at www.inovonics.com/videos or use the QR code below. End Devices Maximum Repeaters 150397 250386 350375 500360 1000313 2000238 3000184 AActivation buttonBTransmit and alarm clear LED CLow battery LED DBattery doorEAttachment loop B C A D E Unlocked position Locked position 3.30.22 357-00060-01 Rev A © Inovonics, 2022 - www.inovonics.com 2 • The red LED will flash and the pendant will vibrate, indicating that an alarm has been sent. (For more information, see section 3.1, “Send an Alarm” on page 2.) 5.Clear the alarm sent when you activated the pendant per section 3.2, “Clear an Alarm”. 2.3 Register the Transmitter The transmitter sends a check-in message to the receiver or gateway every 60 minutes for the purposes of supervision. The transmitter must be registered and supervised. Caution: The EN2221S-60 location pendant must have a supervision window of no more than 12 hours to avoid not discovering a missing device within 24 hours. Each transmitter has a unique factory-programmed identification number. Refer to the receiver or gateway's installation instructions for details on registering and setting up supervision. 1.When prompted by the receiver or gateway to reset transmitter, press the activation button, and then clear the alarm per section 3.2, “Clear an Alarm”. Caution: The transmitter should be tested after registration to ensure operation. See section 6, “Test the Transmitter”. 2.4 Wear the Transmitter The pendant can be worn in three ways: • Around the neck with the neck lanyard, which is included with the location pendant with neck lanyard. Caution: The neck lanyard included with the pendant is designed with a breakaway feature for user safety. Substitution of a stronger cord or chain may result in injury to the wearer. • On the arm with the wristband, which comes attached on the pendant with wristband. • On the belt, using the optional ACC683 belt loop attachment kit. Neck Lanyard To attach the neck lanyard: 2.Secure the lanyard to the pendant’s attachment loop with a simple girth hitch knot. Figure 4 A simple girth hitch knot 3.Adjust the neck lanyard to the wearer’s neck size. • Pull both slide adjustment tabs on the lanyard to reduce the length of the cord. • Pull both sides of the lanyard cord to increase the length of the cord. Figure 5 Adjust the neck lanyard Wristband The wristband comes attached to the location pendant with wristband. The wristband is a standard 16mm width, allowing for replacement with a wristband of the user’s choice. The standard length wristband is designed to fit wrist circumferences from 5.5 to 7.5 inches; the long wristband is designed to fit wrist circumferences from 6.5 to 9.25 inches. Note: Replacement wristbands must be of a similar thickness to the provided 16mm wristband. Metal expansion bands will not attach reliably to the device. 3 Operate the Transmitter 3.1 Send an Alarm To send an alarm: 1.Press the activation button for at least one second. • When activated, the pendant will vibrate briefly and the red transmission LED will blink rapidly for the first five seconds, and then slowly until the alarm is cleared. 3.2 Clear an Alarm Note: After sending an alarm, an end user can send a subsequent alarm once ten seconds have elapsed, even if the initial alarm has not been cleared on the device. There are two ways to clear an alarm: Using the Alarm Clearance Card Note: The ACC680 alarm clearance card is an optional acces…
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3.30.22 357-00057-02 Rev A © Inovonics, 2022 - www.inovonics.com EN2222S-60 Fall Detect Pendant Installation and Operation Manual 1 Overview The EN2222S-60N fall detect pendant sends an automatic alarm message when sensors indicate that a resident may have fallen, even if the resident is unable to press the alarm button. Note: For UL 2560 installations, refer to the EN6080 Area Control Gateway Installation Instructions or the EN6040-T Network Coordinator with Transformer Installation Instructions. 1.1 Inovonics Contact Information If you have any problems with this procedure, contact Inovonics technical services: • E-mail: [email protected]. • Phone: 1.800.782.2709, option 2. 1.2 Maximum Number of Repeaters for a UL 2560 Installation To achieve the 99.99% alarm message reliability required for UL 2560 compliance, system installations must operate within the following limits for end device and repeater counts. 1.3 Pendant Components Figure 1 Pendant components 2 Installation and Startup 2.1 Installation Notes • These products are designed to be maintained by professional technicians. • Products are intended for indoor use. • Do not ship the pendant with the coin cell battery installed when temperatures are below 32°F. Doing so will damage the internal battery and cause the pendant to irretrievably fail. • All products should be manually tested weekly (see section 6, “Test the Transmitter”). 2.2 Coin Cell Battery Installation Caution: If you are installing batteries in multiple devices, keep the batteries from coming into contact with each other to prevent discharge. 1.Place the battery in the battery compartment, ensuring that the positive terminal (+) faces up. 2.Seat the battery door over the battery so that the arrow on the battery door is lined up with the unlocked padlock icon. Figure 2 Battery door in the unlocked position 3.Use the ACC680 alarm clearance card or a quarter to turn the battery door to line up the arrow on the battery door with the arrow under the locked padlock icon. Figure 3 Battery door in the locked position 4.Press the activation button for at least one second. • The red LED will flash and the pendant will vibrate, indicating that an alarm has been sent. (For more information, see section 3.1, “Send a Resident-Initiated Alarm” on page 2.) 5.Clear the alarm sent when you activated the pendant per section 3.3, “Clear an Alarm”. 2.3 Register the Transmitter The transmitter sends a check-in message to the receiver or gateway every 60 minutes for the purposes of supervision. The transmitter must be registered and supervised. Caution: The EN2222S-60 fall detect pendant must have a supervision window of no more than 12 hours to avoid not discovering a missing device within 24 hours. Each transmitter has a unique factory-programmed identification number. Refer to the receiver or gateway's installation instructions for details on registering and setting up supervision. 1.When prompted by the receiver or gateway to reset transmitter, press the activation button, and then clear the alarm per section 3.3, “Clear an Alarm”. Caution: The transmitter should be tested after registration to ensure operation. See section 6, “Test the Transmitter”. For product and installation videos visit us at www.inovonics.com/videos or use the QR code below. End Devices Maximum Repeaters 150397 250386 350375 500360 1000313 2000238 3000184 AActivation buttonBTransmit and alarm clear LED CLow battery LED DVented battery door EAttachment loop B C A D E Unlocked position Locked position 3.30.22 357-00057-02 Rev A © Inovonics, 2022 - www.inovonics.com 2 2.4 Wear the Transmitter The pendant transmitter is worn around the neck with the neck lanyard. Caution: The neck lanyard included with the fall detect pendant is designed with a breakaway feature for user safety. Substitution of a stronger cord or chain may result in injury to the wearer. Neck Lanyard To attach the neck lanyard: 1.Secure the lanyard to the pendant’s attachment loop with a simple girth hitch knot. Figure 4 A simple girth hitch knot 2.Adjust the neck lanyard to the wearer’s neck size. • Pull both slide adjustment tabs on the lanyard to reduce the length of the cord. • Pull both sides of the lanyard cord to increase the length of the cord. Figure 5 Adjust the neck lanyard 3 Operate the Transmitter 3.1 Send a Resident-Initiated Alarm To send an alarm: 1.Press the activation button for at least one second. • When activated, the pendant will vibrate briefly and the red transmission LED will blink rapidly for the first five seconds, and then slowly until the alarm is cleared. 3.2 Generate an Automatic Fall Alarm An automatic fall alarm is generated without a button activation based on a proprietary algorithm using data from internal sensors. The algorithm takes approximately 30 seconds to complete its calculations and transmit the fall alarm. If a resident returns to their original position after a fall during that 30-second calculation period, no fall alarm will be sent. When a fall alarm transmission is sent, the pendant will vibrate briefly and the red transmission LED will blink rapidly for the first five seconds, and then slowly until the alarm is cleared. Note: The fall alarm message is processed by a cloud application and can only be accessed through an active subscription to that service. Unless there is an active subscription, the fall alarm will be transmitted as a request for assistance in the same manner as a button press alarm to ensure that a caregiver response is provided. However, it will not be specifically identified as a fall event. Caution: Residents should be instructed to always push the activation button on their pendant to request assistance when they are able to do so, even if fall detection is enabled. The automatic fall detection feature is an enhancement to basic functionality and does not detect 100% of falls. Note: The Inovonics fall detection solution may occasionally generate false fall event alarms for …
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Attention: Application Examiner April 18, 2022 Subject: EchoStream Fall Detect Transmitter Applicant: Inovonics Corporation FCC ID: HCQPFA01 IC: 2309A-PFA01 To whom it may concern: This is to inform you that the following new wireless pendant transmitter model is being added to Inovonics product offering of wireless products under the above listed FCC and IC IDs: • EN2222S-60 • EN2221S-60N • EN2221S-60W • EN2221S-60WL All required test documentation and other requested information is included with this submittal for this product. Please contact me directly if there are any questions or concerns. Thank you for your assistance with this submittal. Sincerely, ___________________ Corey Leavitt Senior Regulatory Compliance Engineer Inovonics 397 S. Taylor Ave. Louisville, CO 80027 800.782.2709 ext. 7143 303.209.7143 (direct) 303.209.7243 (fax) www.inovonics.com
Attention: Application Examiner April 18, 2022 Subject: Fall Detect Transmitter Applicant: Inovonics Corporation FCC ID: HCQPFA01 IC ID: 2309A-PFA01 To whom it may concern: Pursuant to Sections 0.457(d) and 0.459 of the FCC Rules, as specified in KDB 726920, request is hereby submitted by Inovonics Corporation to withhold permanently from public review certain portions of this application for equipment certification. In particular, the following sections of the application are to be kept permanently confidential: • Schematics • Detailed Block diagrams • Detailed Operational/Functional Description • Parts List Rationale for request for confidentiality: Inovonics Corporation has invested considerable time and materials in research and development to produce the referenced product. Disclosure of the confidential portions of this application to competitors would not only give them significant competitive advantages in developing similar products, but would also disclose successful implementation of unpublished, leading edge technology developed by Inovonics. Thank you for your assistance with this request. Sincerely, ___________________ Corey Leavitt Senior Regulatory Compliance Engineer Inovonics 397 S. Taylor Ave. Louisville, CO 80027 800.782.2709 ext. 7143 303.209.7143 (direct) 303.209.7243 (fax) www.inovonics.com
External Photos – EN2221S-60N FCC ID: HCQPFA01 IC: 2309A-PFA01 HVIN: 00059-05 External Front View External Back View
External Photos – EN2221S-60W FCC ID: HCQPFA01 IC: 2309A-PFA01 HVIN: 00059-05 External Front View External Back View
External Photos – EN2221S-60WL FCC ID: HCQPFA01 IC: 2309A-PFA01 HVIN: 00059-05 External Front View External Back View
External Photos – EN2222S-60 FCC ID: HCQPFA01 IC: 2309A-PFA01 HVIN: 00059-05 External Front View External Back View
Label Location – EN2221S-60 FCC ID: HCQPFA01 IC: 2309A-PFA01 HVIN: 00059-05 Back Side of Pendant PMNs for all three variants are located in the Installation and Operation Manual (shown below):
Label Location – EN2222S-60 FCC ID: HCQPFA01 IC: 2309A-PFA01 HVIN: 00059-05 Back Side of Pendant PMN is located on the back of the device.
Internal Photos – EN2222S-60 FCC ID: HCQPFA01 IC: 2309A-PFA01 HVIN: 00059-05 Internal Top (Front) View Internal Bottom (Back) View BLE 2402MHz-2450 MHz Ceramic Antenna Echostream 902MHz-927.6 MHz Ceramic Antenna Pressure Sensor Accelerometer
Internal Photos – EN2221S-60 FCC ID: HCQPFA01 IC: 2309A-PFA01 HVIN: 00059-05 Note: Motherboard is the same for all 3 variants: EN2221S-60N, EN2221S-60W, EN2221S-60WL Internal Top (Front) View Internal Bottom (Back) View BLE 2402MHz-2450 MHz Ceramic Antenna Echostream 902MHz-927.6 MHz Ceramic Antenna Pressure Sensor
FCC ID: HCQPFA01 Page 1 of 3 IC: 2309A-PFA01 HVIN: 00059-05 PMN: EN2222S-60, EN2221S-60N, EN2221S-60W, EN2221S-60WL EN2222S-60/EN2221S-60 EchoStream® Mobile Duress Pendant Series Transceiver Calculation of SAR Test Exclusion Threshold Operation Condition: The product has three radio transmission states: STANDBY, SINGLE ALARM, and REPEATED ALARM. Table 1 shows the worse-case on-time for each transmitter is the different states (see Operational Description for on-time calculations). Table 1: Worse-Case Transmitter On-Time for Each Transmitter in Various States. Product State Worst Case Transmitter On-Time in 360 seconds EchoStream 902.4 - 927.6 MHz (sec) Bluetooth Low Energy (BLE) 2402, 2426, and 2480 MHz (sec) STANDBY 0.108 0.0034 SINGLE ALARM 0.756 4.061 REPEATED ALARM 27.216 4.061 The REPEATED ALARM state is the worse-case transmitter on-time over a 360 second period. The worst-case duty cycle is fixed by design and complies with source based time-averaging pursuant to 47 CFR § 2.1093 for exposure derating. Product hardware design prevents simultaneous transmissions in both bands and the SAR Text Exclusion threshold is calculated for each band separately. Worst Case SBTA Factor for 2400-2483 MHz = 4.061 sec/360 sec x 100% = 1.13% Worst Case SBTA Factor for 902.4-927.6 MHz = 27.216 sec/360 sec x 100% = 7.56% The worst-case separation between the transmitter antenna and operator of 5.1 mm is maintained by the transmitter enclosure as shown in Figure 2 of the Operational Description. SAR Exclusion Threshold Calculation: The product could be worn as a neck pendant, on the belt clip, placed in a pocket or mounted for fixed position signaling; the following analysis shows the SBTA SAR power threshold. The gain of the antennas was included when measuring EIRP. The rules allow calculation of conducted power for small devices with permanently attached antennas from radiated emissions data (See KDB 558074D01v05r02 at § 3 and ANSI C63.10(2013) at Clause 11.3). For example, the 915 MHz magnetic loop antenna (H2U64U1H2C0200), the gain is +0.8 dBi. Therefore, the conducted power for 915 MHz is: (EIRP) – (Peak gain). EIRP & RF Conducted measurement taken from NCEE DSS and DTS Test Report. FCC ID: HCQPFA01 Page 2 of 3 IC: 2309A-PFA01 HVIN: 00059-05 PMN: EN2222S-60, EN2221S-60N, EN2221S-60W, EN2221S-60WL For the 2400.0-2483.5 MHz Transmitter: Referencing Section 4.0 of the NCEE DTS Report, worst case RF Conducted power 2 = 4.954 dBm which converts to 3.12 mW. RF Conducted will be used as worst case at 3 mW. For the 902.4-927.8 MHz Transmitter: Referencing Section 4.0 of the NCEE DSS report, worst case RF Conducted power 4 = 15.641 dBm which converts to 36.65 mW. RF Conducted will be used as worst case at 37 mW. Note: Power is calculated not through a per channel duty factor, rather is a total time on vs off time. Product SBTA Power Calculation 3 For the 2400.0-2483.5 MHz transmitter, Maximum RF Power 2 : = 3 mW SBTA Power (w +10% tuneup) = 0.0113 x 3 mW x 1.1 = 0.037 mW For the 902.4-927.8 MHz transmitter, Maximum RF Power 4 : = 37 mW SBTA Power (w +10% tuneup) = 0. 0756 x 37 mW x 1.1 = 3.07 mW SAR Exemption Calculation Referencing FCC SAR Exemption equation for 1-g SAR: [ ( 퐦퐚퐱 퐩퐨퐰퐞퐫 퐨퐟 퐜퐡퐚퐧퐧퐞퐥,퐢퐧퐜퐥퐮퐝퐢퐧퐠 퐭퐮퐧퐞퐮퐩 퐭퐨퐥퐞퐫퐚퐧퐜퐞,풎푾 ) ( 퐦퐢퐧.퐭퐞퐬퐭 퐬퐞퐩퐞퐫퐚퐭퐢퐨퐧 퐝퐢퐬퐭퐚퐧퐜퐞,풎풎 ) ].[ √ 퐟 ( 퐆퐇퐳 ) ]≤ퟑ for 1-g SAR. Using the formula above: For the 2400.0-2483.5 MHz transmitter: 0.037 푚푊 5 푚푚 ⁄ * √ 2.402 = 0.0114 < 3.0 For the 902.4-927.8 MHz transmitter 3.07 푚푊 5 푚푚 ⁄ * √ 0.9024 = 0.583 < 3.0 Conclusion: SAR evaluation not required for this product. FCC ID: HCQPFA01 Page 3 of 3 IC: 2309A-PFA01 HVIN: 00059-05 PMN: EN2222S-60, EN2221S-60N, EN2221S-60W, EN2221S-60WL 1 447498 D01 General RF Exposure Guidance v06, footnote 30 2 See NCEE Report R20210831-20-E2 DTS, page 9. 3 See 47 CFR § 2.1091(d)(2) 4 See NCEE Report R20210831-20-E1 DSS, page 10.
The Nebraska Center for Excellence in Electronics (NCEE) authorizes the above named company to reproduce this report provided it is reproduced in its entirety for use by the company’s employees only. Any use that a third party makes of this report, or any reliance on or decisions made based on it, are the responsibility of such third parties. NCEE accepts no responsibility for damages, if any, suffered by any third party as a result of decisions made or actions based on this report. This report applies only to the items tested. Amended Test Report Prepared for: Inovonics Address: 11000 Westmoor Circle Building 10, Suite 250 Westminster, CO 80021 Product: EN2222S-60 Test Report No: R20210831-20-E1D Approved by: ______________________ Mahendra Karthik Vepuri, NCE EMC Test Engineer, iNARTE Certified EMC Engineer #EMC-041453-E DATE: 13 July 2022 Total Pages: 45 Report Number: R20210831-20-E1D Rev D Prepared for: Inovonics The Nebraska Center for Excellence in Electronics 4740 Discovery Drive Lincoln, NE 68521 Page 2 of 45 REVISION PAGE Rev. No. Date Description 0 31 December 2021 Original – NJohnson Prepared by KVepuri A 20 January 2022 1. Address on the cover page was updated. 2. Section 2.2,4.0,4.1,4.2 and appendix C were modified. - KV/FL B 14 June 2022 1. Section 4.0, 4.6 and appendix C were modified. -KV C 22 June 2022 Model number is updated on manufacturers request-KV D 13 July 2022 Conducted output powers have been added to section 4.0 -KV Report Number: R20210831-20-E1D Rev D Prepared for: Inovonics The Nebraska Center for Excellence in Electronics 4740 Discovery Drive Lincoln, NE 68521 Page 3 of 45 CONT EN TS Revision Page .............................................................................................................................................................. 2 1.0 Summary of test results ....................................................................................................................................... 4 2.0 EUT Description .................................................................................................................................................... 5 2.1 Equipment under test ........................................................................................................................................ 5 2.2 Description of test modes ................................................................................................................................ 6 2.3 Description of support units ............................................................................................................................ 6 3.0 Laboratory description ......................................................................................................................................... 7 3.1 Laboratory description ...................................................................................................................................... 7 3.2 Test personnel ..................................................................................................................................................... 7 3.3 Test equipment.................................................................................................................................................... 8 3.4 GEN ERAL T EST PRO C ED UR E AN D SETU P F OR R AD IO MEA SU R EMNT S ........................ 9 4.0 Detailed results .................................................................................................................................................... 10 4.1 Duty Cycle .......................................................................................................................................................... 12 4.2 Radiated emissions .......................................................................................................................................... 13 4.3 Peak Output Power .......................................................................................................................................... 20 4.4 Bandwidth ........................................................................................................................................................... 21 4.5 Bandedges ......................................................................................................................................................... 22 4.6 Carrier frequency seperation, number of hopping channels, time of occupancy ........................... 23 Appendix A: Sample Calculation ................................................................................................................................... 24 Appendix B – Measurement Uncertainty ...................................................................................................................... 26 Appendix C – Graphs and Tables .................................................................................................................................. 27 REPORT END ..................................................................................................................................................................... 45 Report Number: R20210831-20-E1D Rev D Prepared for: Inovonics The Nebraska Center for Excellence in Electronics 4740 Discovery Drive Lincoln, NE 68521 Page 4 of 45 1.0 SU MMAR Y OF TEST R ESULT S The EUT has been tested according to the following specifications: (1) US Code of Federal Regulations, Title 47, Part 15 (2) ISED RSS-Gen, Issue 5 (3) ISED RSS-247, Issue 2 SUMMARY Standard Section Test Type and Limit Result Remark FCC 15.203 Unique Antenna Requirement Pass PCB antenna FCC 15.35 RSS-Gen, 6.10 Duty cycle of pulsed emissions Pass Pulsed emissions duty cycle was applied FCC 15.209 RSS-Gen, 7.1 Receiver Radiated Emissions Pass Meets the requirement of the limit. FCC 15.247(a)(1)(i) RSS-247, 5.1(c) Minimum Bandwidth, Limit: Min. 250kHz Pass Meets the requirement of the limi…
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ຐࣽިמҽԖज़Ϧљ Unictron Technologies Corporation Website:www.unictron.com THIS DRAWINGS AND SPECIFICATIONS ARE THE PROPERTY OF UNICTRON TECHNOLOGIES CORPORATION AND SHALL NOT BE REPRODUCED OR USED AS THE BASIS FOR THE MANUFACTURE OR SALE OF APPARATUS OR DEVICES W ITHOUT PERMISSION Prepared by : Jane Designed by : Allen Checked by : Mike Approved by烉Herbert TITLE烉5.0 x 3.0 x 0.5 (mm) ISM 915MHz Ceramic Chip Antenna (AA702) Engineering Specification DOCUMENT H2U64U1H2C0200 REV. NO. M PAGE 1 OF 11 H 2 1 4 U H C 2 0 U 6 0 2 0 5.0 x 3.0 x 0.5 (mm) ISM 915 MHz Ceramic Chip Antenna (AA702) Engineering Specification 1. Product Number 2. Features *Stable and reliable in performances *Low profile, compact size *RoHS 2.0 compliance *SMT processes compatible *AEC-Q200 compliant 3. Applications *ISM 915 MHz Band applications *IoT applications *IEEE 802.11ah/ Wi-Fi Certified HaLow technology 4. Description Unictron’s AA702 ceramic chip antenna is designed for ISM 915MHz band applications, covering frequencies 902~928 MHz. Fabricated with proprietary design and processes, AA702 shows excellent performance and is fully compatible with SMT processes which can decrease the assembly cost and improve device’s quality and consistency. ຐࣽިמҽԖज़Ϧљ Unictron Technologies Corporation Website:www.unictron.com THIS DRAWINGS AND SPECIFICATIONS ARE THE PROPERTY OF UNICTRON TECHNOLOGIES CORPORATION AND SHALL NOT BE REPRODUCED OR USED AS THE BASIS FOR THE MANUFACTURE OR SALE OF APPARATUS OR DEVICES W ITHOUT PERMISSION Prepared by : Jane Designed by : Allen Checked by : Mike Approved by烉Herbert TITLE烉5.0 x 3.0 x 0.5 (mm) ISM 915MHz Ceramic Chip Antenna (AA702) Engineering Specification DOCUMENT H2U64U1H2C0200 REV. NO. M PAGE 2 OF 11 5. Layout Guide & Electrical Specifications 5-1. Layout Guide (unitǺmm) Solder Land Pattern: The solder land pattern (gold marking areas) is shown below. Recommendation on matching circuit will be provided according to customer’s installation conditions. Top View Bottom View Grounding pin Signal input CNC routing Ō1mm Transmission Line with 50ȍ Impedance Characteristic ຐࣽިמҽԖज़Ϧљ Unictron Technologies Corporation Website:www.unictron.com THIS DRAWINGS AND SPECIFICATIONS ARE THE PROPERTY OF UNICTRON TECHNOLOGIES CORPORATION AND SHALL NOT BE REPRODUCED OR USED AS THE BASIS FOR THE MANUFACTURE OR SALE OF APPARATUS OR DEVICES W ITHOUT PERMISSION Prepared by : Jane Designed by : Allen Checked by : Mike Approved by烉Herbert TITLE烉5.0 x 3.0 x 0.5 (mm) ISM 915MHz Ceramic Chip Antenna (AA702) Engineering Specification DOCUMENT H2U64U1H2C0200 REV. NO. M PAGE 3 OF 11 5-2. Electrical Specifications (Evaluation Board Dimensions: 80 x 40 mm 2 ) 5-2-1. Electrical Table Characteristics Specifications Unit Outline Dimensions 5.0 x 3.0 x 0.5 mm Ground Plane Dimensions 80 x 40 mm Working Frequency 902~928 MHz VSWR (@ center frequency)* 2 Max. Characteristic Impedance 50 : Polarization Linear Polarization Peak Gain (@915 MHz) 0.8 (typical**) dBi Efficiency 52 (typical**) % *Center frequency means the frequency with the lowest value in return loss of the chip antenna on the evaluation board. **A typical value is for reference only, could be changed due to the system or equipment of measurement is different. 5-2-2. Frequency vs. V.S.W.R. and Total Radiation Gain ຐࣽިמҽԖज़Ϧљ Unictron Technologies Corporation Website:www.unictron.com THIS DRAWINGS AND SPECIFICATIONS ARE THE PROPERTY OF UNICTRON TECHNOLOGIES CORPORATION AND SHALL NOT BE REPRODUCED OR USED AS THE BASIS FOR THE MANUFACTURE OR SALE OF APPARATUS OR DEVICES W ITHOUT PERMISSION Prepared by : Jane Designed by : Allen Checked by : Mike Approved by烉Herbert TITLE烉5.0 x 3.0 x 0.5 (mm) ISM 915MHz Ceramic Chip Antenna (AA702) Engineering Specification DOCUMENT H2U64U1H2C0200 REV. NO. M PAGE 4 OF 11 6. Outline Dimensions of Antenna & Evaluation Board (unit: mm) 6-1. Antenna Dimensions PIN Definitions PIN 1 2 3 Soldering Pad Signal Tuning / Ground N/C ຐࣽިמҽԖज़Ϧљ Unictron Technologies Corporation Website:www.unictron.com THIS DRAWINGS AND SPECIFICATIONS ARE THE PROPERTY OF UNICTRON TECHNOLOGIES CORPORATION AND SHALL NOT BE REPRODUCED OR USED AS THE BASIS FOR THE MANUFACTURE OR SALE OF APPARATUS OR DEVICES W ITHOUT PERMISSION Prepared by : Jane Designed by : Allen Checked by : Mike Approved by烉Herbert TITLE烉5.0 x 3.0 x 0.5 (mm) ISM 915MHz Ceramic Chip Antenna (AA702) Engineering Specification DOCUMENT H2U64U1H2C0200 REV. NO. M PAGE 5 OF 11 6-2. Evaluation Board with Antenna Unit: mm ຐࣽިמҽԖज़Ϧљ Unictron Technologies Corporation Website:www.unictron.com THIS DRAWINGS AND S…
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11000 Westmoor Circle · Westminster · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902.4 MHz - 927.6 MHz | 37.00 mW |

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