
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
® UHF Wireless System Owners Manual Headset Transmitter Handheld Transmitter Presentation Transmitter • AX1 Handheld Transmitter • AL1 Presentation Transmitter • AH1/QE Aerobics Headset Transmitter • AH1/QV Vocal Headset Transmitter • AH1/35X Wind Instrument Transmitter • AR1 Receiver Wind Instrument Transmitter ENGLISH Introduction 1 QuickStart 2 Guided Tour - AR1 Receiver 4 Guided Tour - AX1 Handheld Transmitter 6 Guided Tour - AL1 Body Pack Transmitter 8 Guided Tour - AH1 Headset Transmitter 11 Setting Up and Using Your AirLine System 14 Appendix A: AirLine Wind Instrument System 69 Specifications 73 Channel Plan 75 FRANCAIS Introduction 18 Prise en main 19 Visite guidée – Récepteur AR1 21 Visite guidée – Emetteur main AX1 23 Visite guidée – Emetteur de ceinture AL1 25 Visite guidée – Emetteur serre-tête AH1 28 Configuration et utilisation des systèmes AirLine 31 Annexe A : Système AirLine Wind Instrument 70 Spécifications 73 Tableau de conversion de fréquence 75 Samson Technologies Corp. 575 Underhill Blvd. P.O. Box 9031 Syosset, NY 11791-9031 Phone: 1-800-3-SAMSON (1-800-372-6766) Fax: 516-364-3888 Table of Contents Produced by On The Right Wavelengthfor Samson Technologies Corp. Copyright 2000, Samson Technologies Corp. Printed March 2000 DEUTSCHE Einleitung 35 Schneller Einstieg 36 Übersicht - Empfänger AR1 38 Übersicht - Hand-Sender AX1 40 Übersicht - Gürtel-Sender AL1 42 Übersicht - Kopfbügel-Sender AH1 45 Konfiguration und Betrieb der AirLine-Systeme 48 Anhang A: „AirLine Wind Instrument“-System 71 Technische Daten 73 Frequenzzuordnung der Empfangskanäle 75 ESPANOL Introducción 52 Arranque rápido 53 Recorrido guiado – Receptor AR1 55 Recorrido guiado – Transmisor manual AX1 57 Recorrido guiado – Transmisor de petaca AL1 59 Recorrido guiado – Transmisor de diadema AH1 62 Ajuste y uso de su sistema AirLine 65 Apéndice A: Sistema para instrumentos de viento AirLine 72 Especificaciones 73 Tabla de conversión de frecuencias 75 Welcome to Samson AirLine—the wireless system for the new millenium! Wireless microphone and instrument systems were originally developed to eliminate cables, providing unparalleled freedom of movement. AirLine takes this concept to a new level with transmitters so small, lightweight and aerodynamic, they are nearly invisible, providing a completely “hassle-free” user experience. To create the world’s smallest wireless transmitters, we developed new proprietary technology. Featuring miniaturized circuitry and the ability to operate on a single tiny AAA battery (with 14 hours typical battery life), these transmitters also feature significantly improved wireless reception and sound quality. What’s more, the AR1 micro receiver developed for the AirLine systems is actually smaller than the typical wireless transmitter. There are five different Samson AirLine systems detailed in this manual. All operate in the 801 - 805 MHz UHF frequency range and all contain either an AR1 micro receiver or a UR1 true diversity receiver (from our acclaimed Series One system). The AirLine UHF Microphone System contains an AX1 hand-held transmitter, which plugs into any standard wired dynamic microphone. The AirLine UHF Presentation System contains an AL1 transmitter, which contains a built-in electret condenser microphone and connection for an optional lavalier microphone. The AirLine UHF Performance System combines a feather-light AH1 headset transmitter with a Samson QV headset microphone, while the AirLine UHF Fitness System combines the AH1 with a Samson QE headset microphone. Finally, the AirLine UHF Wind Instrument System combines the AH1 with an Audio-Technica Pro 35X horn microphone. In this manual, you’ll find a more detailed description of the features of all AirLine systems, as well as a guided tour through all components, step-by-step instructions for setting up your system and full specifications. If your AirLine system was purchased in the United States, you’ll also find a warranty card enclosed—don’t forget to fill it out and mail it! This will enable you to receive online technical support and will allow us to send you updated information about this and other Samson products in the future. If your AirLine system was purchased outside of the U. S., contact your local distributor for warranty details. Also, be sure to check out our website (http://www.samsontech.com) for complete information about our full product line. SPECIAL NOTE for U.S. purchasers: Should your AirLine system ever require servicing, a Return Authorizationnumber (RA) is necessary. Without this number, the unit will not be accepted. If your AirLine system was purchased in the United States, please call Samson at 1-800-372-6766 for a Return Authorization number prior to shipping your system. If possible, return the unit in its original carton and packing materials. If your AirLine system was purchased outside of the U. S., contact your local distributor for information. 1 Samson AirLine Introduction ENGLISH If you’ve had some prior experience using wireless systems, these QuickStart instructions will get you up and running with your AirLine system in a matter of minutes! Detailed instructions for setting up and using your AirLine system can be found on page 14 of this manual, and the “Guided Tour” sections on pages 4 - 13 provide full descriptions of all AirLine component controls and displays. 1. Make sure that the supplied AR1 receiver and AX1, AL1 or AH1 transmitter are factory preset to the same channel. 2. Physically place the AR1 where it will be used (if desired, it can be wall-mounted using the supplied holder) and extend its antenna vertically. 3. Set the power switch to your transmitter to the “off” position (away from the arrow) and place a fresh battery in it. Then turn the transmitter back on momentarily; its LED will flash once and then go off if the battery is sufficiently strong. Once battery strength is verified, turn the transmitter off. 4. If you are using an AX1, plug its XLR conne…
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Explataion 1 2 3 4 n of Spurious Limitation AH1 Not use lower frequency than the transmission frequency 800MHz - Direct Oscillation. Emitter coupling which has less spurious is used for between oscillation stage and buffer. Ouput side of the final stage is tuning type which has proper matching. It limits higher harmonic factor. Low pass filter located at the final stage eliminates higher harmonic factor. Utilizing SAW Resonator. VCO etc. process. Pai type 2 stages.
AH1 CIRCUIT FUNCTIONPOWER SUPPLY UNITD3 1SS349 diode DC-DC U3 XC6371A300 IC(DC-DC) DC-DC U2 TK11227 IC (regulator) power supply regulator(2.7V) U5 XC61CN11 IC(detect) LED driver LED1 TLSU1008 LED power supply indicator(LOW) & unavailable indicator AUDIO UNITD2 1SS362 diode modulation AF signal level limit Q5 2SK879 transistor AF mute Q4 2SA1832 transistor AF mute drive U1 TK10690 IC(compander) 1/2 log compander U4 TK17030 IC(opeamp) pre-emphasis RF UNITD1 KV1832E diode frequency adjustment & modulat Q2 FH102 transistor OSC & buffer Q3 2SC5231 transistor output power amplifier VOLTAGE AND CURRENT OF FINAL STAGEcollector voltage Vc=2.7V emitter voltage Ve=0.38V current Ic=3.8mA A_1 Components Function Page 1
00009318001 1SS349-TE85L1 00013918001 1SS362-TE85L1 00015789001 2SA1832(Y)-TE85L1 00014728025 2SC5231-C8/C9-TL1 00011689001 2SK879(Y)-TE85R1 00015793066 3314J-1-5021 00014680025 395-01001 00015802025 A921CY-101M P31 00011205021 C1608CH1H020CT-A1 00011206021 C1608CH1H030CT-A3 00011207021 C1608CH1H050CT-A3 00011209021 C1608CH1H070DT-A1 00010399021 C1608CH1H161JT-A1 00011216021 C1608CH1H330JT-A1 00009393021 C1608CH1H471JT-A3 00013981021 C1608JB1C273KT-N1 00011222021 C1608JB1E103KT-A1 00014355021 C1608JB1H123KT-N1 00013735021 C1608JB1H222KT-A3 00011239021 C1608JF1C104ZT-A2 00015815138 FS-335-TXM11 00012547026 GRM39CH102J25PT2 00014667064 HSJ1122-0100101 00015805025 KV1832ETR1 00013736025 LL1608-FH10NJ2 00013952025 LL1608-FH12NJ1 00013880025 LL1608-FH8N2J2 00013895025 LL1608-FHR10J2 00015812026 POZ2AN-1-103N-T001 00015646026 POZ2AN-1-503N-T001 00011202001 RK73K1JTD100KJ3 00011625001 RK73K1JTD100Ohms6 00011192001 RK73K1JTD10KJ2 00015162001 RK73K1JTD15Ohms1 00011184001 RK73K1JTD1KJ4 00011185001 RK73K1JTD2.2KJ3 00011489001 RK73K1JTD22KJ2 00013688001 RK73K1JTD24KJ1 00011187001 RK73K1JTD3.3KJ3 00011183001 RK73K1JTD330Ohms1 00011196001 RK73K1JTD33KJ1 00011623001 RK73K1JTD33Ohms1 00011197001 RK73K1JTD36KJ1 00011665001 RK73K1JTD4.3KJ3 00011188001 RK73K1JTD4.7KJ1 AH1 P 00015369026 GRM39CH470J50PT16 00011296001 RK73K1JTD470Ohms1 00011198001 RK73K1JTD47KJ1 00011189001 RK73K1JTD5.1KJ1 00011199001 RK73K1JTD51KJ1 00011488001 RK73K1JTD56KJ1 00011191001 RK73K1JTD6.8KJ1 00011666001 RK73K1JTD680Ohms1 00012084001 RK73K1JTD68KJ1 00011697001 RK73K1JTD8.2KJ1 00014673021 SK2-0J475M-RA2 00014677021 SK2-1E105M-RA4 00014674021 SK4-0J106M-RA3 00015810021 SK4-1A107M-RD1 00015811021 SK5-0G476M-RB2 00014672021 SK5-0J156M-RA3 00015791021 SK6-0G336M-RA8 00015792064 SLHA12BP-042 00013867025 TK10690MTL1 00015808025 TK11227BMCL1 00015803025 TK17030MTL1 00015788001 TLSU1008(T04)1 00015806069 XC61CN1102NR1 00015807069 XC6371A300PR1 D3 D2 Q4 Q3 Q5 VR4 T1 L7 C43 C41,C42,C52 C44,C54,C55 C53 C50 C48 C34,C35,C36 C49 C37 C51 C28,C29,C57 C38,C56 X1 C2,C17 C3,C6,C7,C8,C9,C10,C11,C13,C14 C15,C60,C61,C62,C63,C64,C71 CN1 D1 L3,L4 L6 L5,L8 L1,L9 VR3 VR2 R8,R24,R37 R4,R5,R6,R32,R33,R43 R10,R26 R42 R3,R16,R17,R34 R12,R50,R51 R19,R20 R7 R22,R44,R49 R13 R21 R1 R23 R29,R30,R40 R15 Parts R2 R27 R39 R35 R41 R9 R31 R36 R28 C30,C31 C26,C27,C68,C70 C16,C18,C19 C45 C46,C58 C25,C32,C40 C1,C20,C21,C22,C23,C24,C39,C69 SW1,SW2 U1 U2 U4 LED1 U5 U3
Applicant: Samson Technologies FCC ID: CCRAH1M Retlif Testing Laboratories Report No.: R-8512-3 GENERAL INFORMATION REQUIREMENTS Paragraph 2.983(a) Name of Applicant:Samson Technologies Address of Applicant:575 Underhill Blvd. Syosset, NY 11791 Name of Manufacturer:Samson Technologies Paragraph 2.983(b) Equipment Identification:FCC ID: CCRAH1M Paragraph 2.02(c)(1) Necessary Bandwidth Determination: The necessary bandwidth was calculated utilizing the following formula: B n = 2M + 2DM = 32.8 kHz D = 15 kHz B n = 2(32.8) + 2(15) = 95.6 kHz Applicant: Samson Technologies FCC ID: CCRAH1M Retlif Testing Laboratories Report No.: R-8512-3 Paragraph 2.1046 Power Output, Effective Radiated Power Applicant: Samson Technologies FCC ID: CCRAH1M Retlif Testing Laboratories Report No.: R-8512-3 POWER OUTPUT, EFFECTIVE RADIATED POWER (Para. 2.1046) A. Measurement Procedure: The transmitter under test was placed on an 80 cm. high non metallic table on the Open Air Test Site with its antenna polarized vertically. A receive dipole antenna was placed three meters away from the transmitter. The turntable was rotated 360 degrees and the receive antenna was raised and lowered from 1 to 4 meters until a maximum reading was obtained. This reading was recorded. The transmitter under test was replaced with a dipole and signal generator. The signal generator was set to the frequency of the transmitter under test. The level of the signal generator was increased until the level was equal to that previously measured. The required input level from the signal generator in dBm was recorded and converted into milliwatts. This was the Effective Radiated Power of the transmitter. Setup of the test is shown below: B.Test Results: The results for the above test are submitted as a separate attachment named ERP.pdf. Pre Amp lif ier Spectrum Analyzer Broadband Antenna 3 M 4M Tes t Sa mp le Applicant: Samson Technologies FCC ID: CCRAH1M Retlif Testing Laboratories Report No.: R-8512-3 Paragraph 2.1047 Modulation Characteristics Applicant: Samson Technologies FCC ID: CCRAH1M Retlif Testing Laboratories Report No.: R-8512-3 MODULATION CHARACTERISTICS (2.1047) A. Measurement Procedure: An Audio Oscillator was directly coupled to the audio input of the transmitter under test. The RF Output at the antenna terminals was loosely coupled to a modulation meter as shown below. The audio level applied to the input was adjusted from –50dBm to +10dBm at each frequency listed herein. At each test frequency and level, the FM modulation was recorded. Setup of the above test is shown below: B. Test Results: The test data for this method are being submitted as a separate attachment, named modchar.pdf. EXTERNAL ATTENUATOR MODULATION METER AUDIO OSCILLATOR EUT AUDIO Applicant: Samson Technologies FCC ID: CCRAH1M Retlif Testing Laboratories Report No.: R-8512-3 Paragraph 2.1049 Occupied Bandwidth Applicant: Samson Technologies FCC ID: CCRAH1M Retlif Testing Laboratories Report No.: R-8512-3 OCCUPIED BANDWIDTH (PARA.2.1049) A.Measurement Procedure: An audio signal was directly coupled to the audio input of the test sample. The RF output was monitored using a deviation meter. The audio input level was increased to produce a 50% deviation +16dB. The RF output was then loosely coupled through external attenuators to a spectrum analyzer. The occupied bandwidth of the RF carrier, modulated at 50% deviation +16dB, was then measured. The above procedure was performed with the audio input frequencies of 1000, 2500, and 15000 Hz. The modulated signal must be within the template as specified by the applicable paragraph in Part 74. Setup of the test is shown below: B.Test Results: The results for the above test are submitted as a separate attachment named occbw.pdf. Applicant: Samson Technologies FCC ID: CCRAH1M Retlif Testing Laboratories Report No.: R-8512-3 Para. 2.1053 Field Strength of Spurious Radiation Applicant: Samson Technologies FCC ID: CCRAH1M Retlif Testing Laboratories Report No.: R-8512-3 FIELD STRENGTH OF SPURIOUS RADIATION (PARA 2.1053) A.Measurement Procedure: The test sample was then placed on an 80cm high wooden test stand, which was located three meters from the test antenna on an FCC listed test site. The frequency range scanned was from the lowest frequency generated by the test sample to its tenth harmonic. In order to maximize the level of each emission observed from the test sample, the broadband antenna was tuned to the frequency of each emission and the test sample was rotated 360 degrees. To further maximize the each emission observed, the test antenna was both horizontally and vertically polarized, and then was raised and lowered from one to four meters from the ground plane. The limits for all of the spurious emissions was calculated utilizing the measured output power and the following equation: Limit <dB:V/M> = 20 log [{(49.2 x P T ) ½ /3} x 10 6 ] - (43 + 10 log P T ) The above procedure was performed at the lower, middle and upper frequencies of the device’s range. Setup of the test is shown below: B.Test Results: The results for the above test are submitted as a separate attachment named spurious case.pdf. Pre Amplifier Spectrum Analyzer Broadband Antenna 3 M 4 M Tes t Sa mp le Applicant: Samson Technologies FCC ID: CCRAH1M Retlif Testing Laboratories Report No.: R-8512-3 Paragraph 2.1055 Frequency Stability Applicant: Samson Technologies FCC ID: CCRAH1M Retlif Testing Laboratories Report No.: R-8512-3 FREQUENCY STABILITY MEASUREMENTS A.Measurement Procedure (Frequency vs. Voltage): The RF output of the test sample was coupled to a frequency counter through external attenuation. Using a Variable power supply and voltmeter, the input voltage was varied. Measurements were taken with the device being supplied with 85, 100, and 115 percent of its rated input voltage and set to transmit the unmodulated carrier frequency. Setup of the test is shown below: B.Test Results: The results for the above test are submitted as a separate at…
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TABULAR DATA SHEET CUSTOMER: MODEL No.: TEST SAMPLE: SERIAL No.: TEST SPECIFICATION: TEST METHOD: OPERATING MODE: TECHNICIAN:DATE: RETLIF TESTING LABORATORIES NOTES: DATA SHEETOF JOB No.: PARAGRAPH: 800MHz Wireless Transmitter FCC ID:CCRAH1M R-8512-3 The EUT was placed on a tabletop, and the radiated output level was measured with a dipole antenna. After the level was maximized, the EUT was replaced with another dipole and a signal generator. The level of the generator was raised until it matched the level recorded from the EUT and this was considered to be the output power. 2.94.674.41.1U4 250 | | | V 250 803.7 mWattsmWattsdBmdBuVMHz CONVERTED READING Signal Gen. Output Level METER READINGLIMITAntenna Orientation CHANNELCENTER FREQUENCY CONTINUOUSLY TRANSMITTING A CW SIGNAL AT CENTER FREQUENCY/CHANNEL SHOWN BELOW. 2.1046 FCC PART 2 Peter LanannaMay 4, 2000 POWER OUTPUT, EFFECTIVE RADIATED POWER METHOD, PARAGRAPH 2.1046 R-8512-3Samson Technologies AH1N/A 11
TABULAR DATA SHEET CUSTOMER: MODEL No.: TEST SAMPLE: SERIAL No.: TEST SPECIFICATION: TEST METHOD: OPERATING MODE: TECHNICIAN:DATE: RETLIF TESTING LABORATORIES NOTES: DATA SHEETOF JOB No.: PARAGRAPH: Temperature: 23° C. Humidity: 39% UHF Wireless Transmitter R-8512-3 The test sample performed within the limits specified by the above listed specification. 13.7 21.4 26.6 29.1 29.4 29.7 29.7 12.4 20.4 23.0 28.8 29.4 29.6 29.8 11.4 19.1 21.9 28.1 29.0 29.5 29.8 10.6 18.0 21.7 21.0 26.5 28.8 29.6 10.2 17.3 21.7 20.5 20.0 23.8 22.7 9.6 16.4 22.0 21.5 20.3 20.3 21.6 75.0 75.0 75.0 75.0 75.0 75.0 75.0 -50 -40 -30 -20 -10 0 +10 kHzkHzkHzkHzkHzkHzkHzdbm Deviation @ 2 kHz AF Deviation @ 500 Hz AF Deviation @ 1 kHz AF MAXIMUM DEVIATION Deviation @ 1.5 kHz AF Deviation @ 300 Hz AF Deviation @ 100 Hz AF INPUT LEVEL Transmitting on channel U4 (803.75 MHz) 74.861(e)(3)Services, Subpart H; Low Power Auxiliary Stations. FCC Part 74, Subpart H;Experimental Radio, Auxiliary Special Broadcast, & other Program Distributional N. DragottaMay 5, 2000 Modulation Characteristics ( 100 Hz TO 15 KHz ) Para 2.1047 R-8512-3Samson Technologies AH178U400001 FCC ID: CCRAH1M 21 TABULAR DATA SHEET CUSTOMER: MODEL No.: TEST SAMPLE: SERIAL No.: TEST SPECIFICATION: TEST METHOD: OPERATING MODE: TECHNICIAN:DATE: RETLIF TESTING LABORATORIES NOTES: DATA SHEETOF JOB No.: PARAGRAPH: Temperature: 23° C. Humidity: 39% UHF Wireless Transmitter R-8512-3 The test sample performed within the limits specified by the above listed specification. 24.8 25.3 25.4 14.8 12.9 12.8 12.7 31.8 32.5 32.8 19.5 16.9 16.6 16.5 30.9 31.4 31.6 31.6 30.9 30.0 29.8 23.5 27.6 27.8 29.9 29.3 29.2 29.2 15.3 22.3 27.8 29.2 29.4 29.6 29.6 75.0 75.0 75.0 75.0 75.0 75.0 75.0 -50 -40 -30 -20 -10 0 +10 kHzkHzkHzkHzkHzkHzdbm Deviation @ 10 kHz AF Deviation @ 15 kHz AF MAXIMUM DEVIATION Deviation @ 20 kHz AF Deviation @ 5 kHz AF Deviation @ 2.5 kHz AF INPUT LEVEL Transmitting on channel U4 (803.75 MHz) 74.861(e)(3)Services, Subpart H; Low Power Auxiliary Stations. FCC Part 74, Subpart H;Experimental Radio, Auxiliary Special Broadcast, & other Program Distributional N. DragottaMay 5, 2000 Modulation Characteristics ( 100 Hz TO 15 KHz ) Para 2.1047 R-8512-3Samson Technologies AH178U400001 FCC ID: CCRAH1M 22
TABULAR DATA SHEET CUSTOMER: MODEL No.: TEST SAMPLE: SERIAL No.: TEST SPECIFICATION: TEST METHOD: OPERATING MODE: TECHNICIAN:DATE: RETLIF TESTING LABORATORIES NOTES: DATA SHEETOF JOB No.: PARAGRAPH: Tolerance: +/- 0.005% (+/- .040188 MHz) UHF Wireless Transmitter R-8512-3 The test sample performed within the limits specified by the above listed specification. 803.71 | | | | | | | V 803.71 803.7211 803.7394 803.7563 803.7679 803.7741 803.7736 803.7737 803.7673 803.7546 803.7362 803.79 | | | | | | | V 803.79 -30 -20 -10 0 10 20 room temp 30 40 50 803.7737 | | | | | | | V 803.7737 803.75 | | | | | | | V 803.75 Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass 04 | | | | | | | V 04 MHzMHzMHzDegrees C.MHzMHz Upper LimitMeter ReadingTemperaturePass / FailLower LimitAct. Transmit Frequency Channel Frequency Channel Transmitting on channel U4 (803.75 MHz) 74.861 (e) (4)Services, Subpart H; Low Power Auxiliary Stations. FCC Part 74, Subpart H;Experimental Radio, Auxiliary Special Broadcast, & other Program Distributional N. DragottaApril 27, 2000 Frequency Stability ( -30°C to +50°C ) R-8512-3Samson Technologies AH178U400001 FCC ID: CCRAH1M 22
TABULAR DATA SHEET CUSTOMER: MODEL No.: TEST SAMPLE: SERIAL No.: TEST SPECIFICATION: TEST METHOD: OPERATING MODE: TECHNICIAN:DATE: RETLIF TESTING LABORATORIES NOTES: DATA SHEETOF JOB No.: PARAGRAPH: Tolerance: +/- 0.005% (+/- .040188 MHz) Temperature: 23° C. Humidity: 29% UHF Wireless Transmitter R-8512-3 The test sample performed within the limits specified by the above listed specification. ** = At this input voltage, the low battery LED on the unit illuminated. 803.71 803.71 803.71 803.71 803.7735 803.7737 803.7737 803.7735 803.79 803.79 803.79 803.79 1.28 1.50 1.73 **1.15 85 100 115 Battery End Point 803.75 803.75 803.75 803.75 Pass Pass Pass Pass 04 04 04 04 MHzMHzMHzVDC%MHz UPPER LIMITMETER READINGINPUT VOLTAGEPass / FailLOWER LIMITINPUT VOLTAGETRANSMIT FREQUENCY Channel Transmitting on channel U4 (803.75 MHz) 74.861 (e) (4)Services, Subpart H; Low Power Auxiliary Stations. FCC Part 74, Subpart H;Experimental Radio, Auxiliary Special Broadcast, & other Program Distributional N. DragottaApril 27, 2000 Frequency Stability (DC Input Power 85% TO 115% ) R-8512-3Samson Technologies AH178U400001 FCC ID: CCRAH1M 21
Retlif Testing Laboratories R Retlif Job Number R-8512-3 Data Sheet 1 of 1 Test Method: Spurious Case Radiated Emissions, 30 MHz to 9 GHz, Paragraph 2.1053 Customer: Samson Technologies Job No. R-8512-3 Test Sample: UHF Wireless Transmitter Model No.: AH1 FCC ID: CCRAH1M Operating Mode Continuously transmitting at 803.7 MHz Test Specification FCC Part 2, Paragraph 2.1053, Field Strength of Spurious Radiation Technician: Peter Lananna Date: May 17, 2000 Notes: Test Distance: D=3 M; Limit in dBuV= 20 log{[(49.2 x P) 1/2 /D] x 10 6 } - (43+10 log P); P=Power in Watts Detector: Peak Test Freq. Antenna Pol./Height EUT Orientation Meter Reading Correction Factor Corrected Reading Converted Reading Limit MHz (V/H) / Meters Degrees dBuv dB dBuv/m uv/m uv/m 30.00 16,596 | | | | 1607.5 V/1.3 225 76.1 -0.1 76.0 6309.6 | | | | | 2114.4 V/1.0 225 53.5 -7.5 46.0 199.5 | | | | | 3215.1 V/1.0 225 57.3 -7.6 49.7 305.5 | | | | | 4018.5 V/1.5 225 46.2 -4.4 41.8 123.0 | | | | | 4822.4 V/1.0 225 46.3 -3.2 43.1 142.9 | | | | | 5626.0 V/1.0 225 47.3 -2.9 44.4 166.0 | | | | | | | V V 8037.00 16,596 The EUT was scanned from 30 Mhz to 9 Ghz The emissions observed from the EUT do not exceed the specified limits. All emissions not recorded were more than 20dB below the specified limit.
795 Marconi Avenue · Ronkonkoma, New York · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 74.861 | 801.375 MHz - 804.75 MHz | 1.40 mW | 95K6F3E | 0.0050000000 % |

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