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MH9-HNT2400Data Transmitter

Xetron Corp
Data Transmitter - FCC ID MH9-HNT2400 - Xetron Corp
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Application Details

Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Date of Grant
May 25, 2000
Application Purpose
Original Equipment
Date of Application
Feb 28, 2000
Equipment Note
Data Transmitter
Frequency Range
2407.00000000 - 2477.00000000
Company
Xetron Corp
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Test Report

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Document Text

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

Users Manual

FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400

Users Manual

FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400

Users Manual

FCC ID: MH9-HNT2400 SECTION 6 USER'S MANUAL FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400

Cover Letter(s)

FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400

Cover Letter(s)

March 10, 2000 Federal Communications Commission Equipment Authorization Division 7435 Oakland Mills Road Columbia, MD 21046 To Whom It May Concern: We made a mistake on the electronic 731 form for FCC ID: MH9-HNT2400, EA96890. We listed the frequency range as 2400 - 2483.5 MHz for frequency range. This should have been 2407-2477 MHz. Please correct as appropriate. If you have any questions, please feel free to contact me at (770)741-0717. Sincerely, Timothy R. Johnson

External Photos

SECTION 5 PHOTOGRAPHS FCC ID: MH9-HNT2400 PHOTOS OF THE TESTED EUT The following photos are attached: Photo 1.EUT and Interface Board Used for Testing Photo 2.Top View of EUT and Interface Board Used for Testing Photo 3.Bottom View of Interface Board Used for Testing Photo 4.View Showing EUT Mounted to Interface Board Photo 5.EUT, Top View Photo 6.EUT, Top View Shield Removed Photo 7.EUT, Bottom View FCC ID: MH9-HNT2400 Photo 1.EUT and Interface Board Used for Testing FCC ID: MH9-HNT2400 Photo 2.Top View of EUT and Interface Board Used for Testing FCC ID: MH9-HNT2400 Photo 3.Bottom View of Interface Board Used for Testing FCC ID: MH9-HNT2400 Photo 4.View Showing EUT Mounted to Interface Board FCC ID: MH9-HNT2400 Photo 5.EUT, Top View FCC ID: MH9-HNT2400 Photo 6.EUT, Top View Shield Removed FCC ID: MH9-HNT2400 Photo 7.EUT, Bottom View

ID Label/Location Info

FCC ID: MH9-HNT2400 SECTION 3 LABELING INFORMATION FCC ID: MH9-HNT2400

ID Label/Location Info

April 26, 2000 Mr. Tim Johnson US Tech 3505 Francis Circle Alpharetta, GA. 30201 Dear Tim: This letter is in response to the FCC request for more information regarding labeling of the Hornet radio. All units will contain a FCC Identification label on the shield per the enclosed labeling description. The Operators Manual will be updated to notify all users that all products containing the Hornet radio must be clearly marked with an external label stating the following: β€œContains FCC ID: MH9-HNT2400”. In addition, Xetron will make these labels available to all customers. Sincerely, Larry P. Ochs Product Manager

Test Report

FCC ID: MH9-HNT2400 2.7 Peak Radiated Spurious Emission in the Frequency Range 30 -25000 MHz (FCC Section 15.247(c)) A preliminary scan was performed on the EUT to determine frequencies that were caused by the transmitter portion of the product. Significant emissions that fell within restricted bands were then measured on an OAT’s site. Radiated measurements below 1 GHz were tested with a RBW = 120 kHz. Radiated measurements above 1 GHz were measured using a RBW = VBW = 1 MHz. The results of peak radiated spurious emissions falling within restricted bands are given in Table 4a (low), Table 4b, (mid), Table 4c (high) and Figure 4a-4d (low), Figure 4e-4h (mid) and Figure 4i-4l (high). FCC ID: MH9-HNT2400 Table 4a Peak Radiated Spurious Emissions (Low) Freq. (GHz) Test Data (dBm) @3m Amp. Gain (dB) Antenna Factor (dB) Cable Loss (dB) Results (uV/m) @3m FCC Limits (uV/m) @3m 4.814-54.6*34.234.77.91096.05000 7.221-62.1**33.837.17.8637.95000 9.628-56.1**34.338.69.41695.75000 12.037-65.6**32.541.310.71102.25000 Table 4b Peak Radiated Spurious Emissions (Mid) Freq. (GHz) Test Data (dBm) @3m Amp. Gain (dB) Antenna Factor (dB) Cable Loss (dB) Results (uV/m) @3m FCC Limits (uV/m) @3m 4.861-52.4*34.134.88.01455.55000 7.292-59.4**33.837.27.9873.75000 9.722-54.6**34.438.69.52019.15000 12.154-63.9**32.441.210.71485.75000 Table 4c Peak Radiated Spurious Emissions (High) Freq. (GHz) Test Data (dBm) @3m Amp. Gain (dB) Antenna Factor (dB) Cable Loss (dB) Results (uV/m) @3m FCC Limits (uV/m) @3m 4.954-54.2*34.135.08.31255.25000 7.432-54.7**33.837.47.91545.45000 9.909-55.5**34.538.79.61844.05000 12.387-68.1**32.341.010.7816.25000 * = Data adjusted by + 1 dB for high pass filter ** = Tested at 1 meter to achieve better dynamic range. Data adjusted by + 1 dB for high pass filter and 20 log (1/3) = -9.54 dB for conversion from 1 to 3 meter. SAMPLE CALCULATION: RESULTS (uV/m @ 3m) = Antilog ((-54.6 - 34.2 + 34.7 + 7.9 + 107)/20) = 1096.0 CONVERSION FROM dBm TO dBuV = 107 dB Tester FCC ID: MH9-HNT2400 Signature: Name: Tim R. Johnson FCC ID: MH9-HNT2400 Figure 4a Peak Radiated Spurious Emission 15.247(c) Low FCC ID: MH9-HNT2400 Figure 4b Peak Radiated Spurious Emission 15.247(c) Low FCC ID: MH9-HNT2400 Figure 4c Peak Radiated Spurious Emission 15.247(c) Low FCC ID: MH9-HNT2400 Figure 4d Peak Radiated Spurious Emission 15.247(c) Low FCC ID: MH9-HNT2400 Figure 4e Peak Radiated Spurious Emission 15.247(c) Mid FCC ID: MH9-HNT2400 Figure 4f Peak Radiated Spurious Emission 15.247(c) Mid FCC ID: MH9-HNT2400 Figure 4g Peak Radiated Spurious Emission 15.247(c) Mid FCC ID: MH9-HNT2400 Figure 4h Peak Radiated Spurious Emission 15.247(c) Mid FCC ID: MH9-HNT2400 Figure 4i Peak Radiated Spurious Emission 15.247(c) High FCC ID: MH9-HNT2400 Figure 4j Peak Radiated Spurious Emission 15.247(c) High FCC ID: MH9-HNT2400 Figure 4k Peak Radiated Spurious Emission 15.247(c) High FCC ID: MH9-HNT2400 Figure 4l Peak Radiated Spurious Emission 15.247(c) High FCC ID: MH9-HNT2400 2.8 Average Spurious Emission in the Frequency Range 30 - 25000 MHz (FCC Section 15.247(c)) The results of average radiated spurious emissions falling within restricted bands are given in Table 5a (low), Table 5b, (mid), Table 5c (high) and Figure 5a-5d (low), Figure 5e-5h (mid) and Table 5i-5l (high). FCC ID: MH9-HNT2400 Figure 5a Average Radiated Spurious Emission 15.247(c) Low FCC ID: MH9-HNT2400 Figure 5b Average Radiated Spurious Emission 15.247(c) Low FCC ID: MH9-HNT2400 Figure 5c Average Radiated Spurious Emission 15.247(c) Low FCC ID: MH9-HNT2400 Figure 5d Average Radiated Spurious Emission 15.247(c) Low FCC ID: MH9-HNT2400 Figure 5e Average Radiated Spurious Emission 15.247(c) Mid FCC ID: MH9-HNT2400 Figure 5f Average Radiated Spurious Emission 15.247(c) Mid FCC ID: MH9-HNT2400 Figure 5g Average Radiated Spurious Emission 15.247(c) Mid FCC ID: MH9-HNT2400 Figure 5h Average Radiated Spurious Emission 15.247(c) Mid FCC ID: MH9-HNT2400 Figure 5i Average Radiated Spurious Emission 15.247(c) High FCC ID: MH9-HNT2400 Figure 5j Average Radiated Spurious Emission 15.247(c) High FCC ID: MH9-HNT2400 Figure 5k Average Radiated Spurious Emission 15.247(c) High FCC ID: MH9-HNT2400 Figure 5l Average Radiated Spurious Emission 15.247(c) High FCC ID: MH9-HNT2400 Table 4a Average Radiated Spurious Emissions (Low) Freq. (GHz) Test Data (dBm) @3m Amp. Gain (dB) Antenna Factor (dB) Cable Loss (dB) Results (uV/m) @3m FCC Limits (uV/m) @3m 4.814-68.2*34.234.77.9230.05000 7.221-76.4**33.837.17.8122.25000 9.628-68.3**34.338.69.4415.85000 12.037-81.1**32.541.310.7186.55000 Table 4b Average Radiated Spurious Emissions (Mid) Freq. (GHz) Test Data (dBm) @3m Amp. Gain (dB) Antenna Factor (dB) Cable Loss (dB) Results (uV/m) @3m FCC Limits (uV/m) @3m 4.861-65.5*34.134.88.0322.55000 7.292-73.0**33.837.27.9183.05000 9.722-67.6**34.438.69.5453.15000 12.154-80.7**32.441.210.7193.25000 Table 4c Average Radiated Spurious Emissions (High) Freq. (GHz) Test Data (dBm) @3m Amp. Gain (dB) Antenna Factor (dB) Cable Loss (dB) Results (uV/m) @3m FCC Limits (uV/m) @3m 4.954-67.6*34.135.08.3266.55000 7.432-67.4**33.837.47.9359.85000 9.909-68.0**34.538.79.6440.85000 12.387-84.9**32.341.010.7118.85000 * = Data adjusted by + 1 dB for high pass filter and worse case duty cycle of 20 log (0.2706) = -11.4 dB ** = Tested at 1 meter to achieve better dynamic range. Data adjusted by + 1 dB for high pass filter, worse case duty cycle of 20 log (0.2706) = -11.4 dB, and 20 log (1/3) = -9.54 dB for conversion from 1 to 3 meter. SAMPLE CALCULATION: RESULTS (uV/m @ 3m) = Antilog ((-68.2 - 34.2 + 34.7 + 7.9 + 107)/20) = 230.0 CONVERSION FROM dBm TO dBuV = 107 dB FCC ID: MH9-HNT2400 Tester Signature: Name: Tim R. Johnson 2.9 Power Line Conducted Emissions for Transmitter FCC Section 15.207 The conducted voltage measurements have been carried out in accordance with FCC Section 15.207, with a spectrum analyzer connected to a LISN and the EUT placed into a continuous mode of transmit. The results are given in Table 6. FCC I…

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Test Report

Xetron Corporation FCC Part 15, Certification Application Hornet May 24, 2000 MEASUREMENT/TECHNICAL REPORT COMPANY NAME: Xetron Corporation MODEL: Hornet FCC ID: MH9-HNT2400 DATE: May 24, 2000 This report concerns (check one): Original grant X Class II change_____ Equipment type: Deferred grant requested per 47 CFR 0.457(d)(1)(ii)? yes_____ No X If yes, defer until:_________________ date N.A. agrees to notify the Commission by N.A. date of the intended date of announcement of the product so that the grant can be issued on that date. Report prepared by: United States Technologies, Inc. 3505 Francis Circle Alpharetta, GA 30004 Phone Number: (770) 740-0717 Fax Number: (770) 740-1508 FCC ID: MH9-HNT2400 TABLE OF CONTENTS AGENCY AGREEMENT LETTER OF CONFIDENTIALITY SECTION 1 GENERAL INFORMATION 1.1 Product Description 1.2 Related Submittal(s) SECTION 2 TESTS AND MEASUREMENTS 2.1 Configuration of Tested EUT 2.2 Test Facility 2.3 Test Equipment 2.4 Modifications 2.5 Antenna Description 2.6 Field Strength of Fundamental 2.7 Peak Radiated Spurious Emissions 2.8 Average Radiated Spurious Emissions 2.9 Power Line Conducted Emissions for Transmitter 2.10 Radiated Emissions for Digital Device & Receiver (if Applicable) 2.11 Power Line Conducted for Digital Device & Receiver (if Applicable) SECTION 3 LABELING INFORMATION SECTION 4 BLOCK DIAGRAM(S)/ SCHEMATIC(S) SECTION 5 PHOTOGRAPHS SECTION 6 USER'S MANUAL FCC ID: MH9-HNT2400 LIST OF FIGURES AND TABLES 1)Test Configuration 2) Photograph(s) for Spurious and Fundamental Emissions 3) Peak Power Output 4) Peak Radiated Spurious Emissions 5) Average Radiated Spurious Emissions TABLES 1)EUT and Peripherals 2) Test Instruments 3) Field Strength of Fundamental 4) Peak Radiated Spurious Emissions 5) Average Radiated Spurious Emissions 6) Conducted Emissions Data (Transmitter) 7) Radiated Emissions Data (Digital Device) 8) Conducted Emissions Data (Digital Device) FCC ID: MH9-HNT2400 SECTION 1 GENERAL INFORMATION FCC ID: MH9-HNT2400 GENERAL INFORMATION 1.1Product Description The Equipment Under Test (EUT) is a Xetron Corporation, Model Hornet modular transceiver for the 2.4 GHz band. The unit is designed for point-to-point and point-to- multipoint data links requiring a high degree of portability and low power consumption. The transceiver applications include point of sale, medical, mobile computing, data collection, remote monitoring, and data entry systems. It is a frequency agile design in that four discrete frequencies (channels) are used for data transmission. These multiple frequencies and the use of Carrier Sense Multiple Access (CSMA) enables the unit to have excellent performance in congested environments. Prior to transmission, the radio searches to find a free channel for transmission and then proceeds to establish a link with the destination device. If a channel is not free the radio waits a random period of time before searching again for a free channel. FCC ID: MH9-HNT2400 1.2Related Submittal(s)/Grant(s) The EUT will be used with part of a system to send/receive data. The transceiver presented in this report will be used with another transceiver of like design. The EUT is subject to the following authorizations: a) Certification as a transceiver b) Verification as a receiver and digital device The information contained in this report is presented for the certification & verification authorization(s) for the EUT. FCC ID: MH9-HNT2400 SECTION 2 TESTS AND MEASUREMENTS FCC ID: MH9-HNT2400 TEST AND MEASUREMENTS 2.1 Configuration of Tested System The sample was tested per ANSI C63.4, Methods of Measurement from Low-Voltage Electrical and Electronic Equipment in the Range of 9 kHz to 40 GHz (1992). Conducted and radiated emissions data were taken with the test receiver or spectrum analyzer's resolution bandwidth adjusted to 9 kHz and 120 kHz, respectively. All measurements are peak unless stated otherwise. The video filter associated with the spectrum analyzer was off throughout the evaluation process. Interconnecting cables were manipulated as necessary to maximize emissions. Interconnecting cables were manipulated as necessary to maximize emissions. A block diagram of the tested system is shown in Figure 1. Test configuration photographs for spurious and fundamental emissions are shown in Figure 2. The sample used for testing was received by U.S. Technologies on December 15 in good condition. 2.2 Test Facility Testing was performed at US Tech's measurement facility at 3505 Francis Circle, Alpharetta, GA. This site has been fully described and submitted to the FCC, and accepted in their letter marked 31040/SIT. Additionally this site has also been fully described and submitted to Industry Canada (IC), and has been approved under file number IC2982. 2.3 Test Equipment Table 2 describes test equipment used to evaluate this product. 2.4 Modifications Xetron Corporation had to make a few modifications in order to bring the EUT into compliance with FCC Part 15 limits for the transmitter portion of the EUT (Please refer to letter on following page). No modifications were necessary to bring the EUT into compliance with the Class B Digital Device Requirements. FCC ID: MH9-HNT2400 FCC ID: MH9-HNT2400 FIGURE 1 TEST CONFIGURATION EUT RS 232 Adapter (for Test Purposes Only) AC Adapter 6’ u 6” s 110VAC/60Hz FCC ID: MH9-HNT2400 Test Date:January 25, 2000 UST Project:99-956 Customer:Xetron Corporation Model:Hornet FIGURE 2a Photograph(s) for Spurious and Fundamental Emissions (Front) Photograph Not Available FCC ID: MH9-HNT2400 Test Date:January 25, 2000 UST Project:99-956 Customer:Xetron Corporation Model:Hornet FIGURE 2b Photograph(s) for Spurious and Fundamental Emissions (Back) FCC ID: MH9-HNT2400 Test Date:February 8, 2000 UST Project:99-956 Customer:Xetron Corporation Model:Hornet FIGURE 2c Photograph(s) for Digital Device Conducted Emissions FCC ID: MH9-HNT2400 TABLE 1 EUT and Peripherals PERIPHERAL MANUFACTURER MODEL NUMBER SERIAL NUMBER FCC ID:CABLES P/D EUT X…

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Contact Information

Applicant

R. A. Watson(President)
513 881-3100Fax: 513 881-3200

Technical Contact

United States TechnologiesTimothy R Johnson
[email protected]770-740-0717

3505 Francis Circle Β· Alpharetta, Georgia Β· United States

Non-Technical Contact

United States TechnologiesTimothy R Johnson
[email protected]770-740-0717

Test Firm

US TechSandy McEnery
lll@mm.770-740-0717Fax: 770-740-1508

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.48 GHz-
Confidentiality
Long Term

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