
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
User’s Guide Model No.RL328 LMR Handheld Part Names & Functions: TOP 1Power/Volume Knob: Rotate it to turn on the transceiver and to adjust the volume. 2. Antenna Connector: Fit the antenna to this MX type connector. FRONT 3. LED: 4. SPEAKER 5. MIC 6. LCD Display 7.UP & DOWN 8.MODE 9.SCAN 10.ENTER SIDE 11. External Speaker/Mic Connector 12.Battery Pack: 13. Release Buckle 14. Priority Button 15. PTT (Push To Talk) Button 16. MON (Monitor) Button Fitting & Removing the Battery Pack : To install the battery pack: 1.Fit the bottom edge of the battery pack into the holes of the transceiver bottom. 2.Push the battery pack down to the transceiver’s aluminum chassis till a chip sound is heard. To remove the battery pack: 1. Keep pressing the release buckle of the battery pack and lift the battery pack up from the transceiver’s body. Charging the Battery Pack: 1 LIFT UP 2 PUSH DOWN 1.) Connect the jack of AC adaptor into the socket of the charging cradle. 2. ) Plug the AC adaptor into the power outlet. 3. ) Insert the radio into the cradle 4.) Charge the radio with standard charger for 10-12 hours; with rapid charger for 2 hours. **Make sure the radio is turned off while charging it. **Do not forget to remove the radio from the charger when the battery is full-charged. DISPLAY SYMBOLS : BCLOPRIDCSBTLOCTS H L VOX 12345678 9 12 13 15 10 11 14 1.) PRI: indicates the pri ority channel. (Dealer Programmable) 2.) BCLO: indicates b usy c hannel l ock o ut function (Dealer Programmable) 3.) BTLO: indicates b usy t one l ock o ut function (Dealer Programmable) 4.) CTS: indicates c ontinuous t one coded s quelched system 5.) DCS: indicates d igital c oded s quelch 6.) : indicates button press tone is active. 7.) : indicated when the keypads have been locked. 8.) : indicates time-out timer function is active. (Dealer Programmable) 9.) : shows battery condition. Replace or recharge the battery pack when this icon displays 2 or fewer segments of the battery. 10.) : indicates the radio is transmitting. 11.) : indicates busy channel. 12.) : indicate the strength of TX or RX signal. 13.)VOX : indicates “VOX” is activated. 14.)H or L : indicates TX output power: H means high; L means low. 15.)Channel Number: Displays channel number 01-99. Basic Operation : Turn the radio On & OFF 1.) Rotate the PWR/VOL knob clockwise till the radio is turned on. The radio gets started to auto test for two second. During auto testing, all icons on LCD will appear. 2.) After auto testing is done, LCD will show channel number and the functions has been activated by your dealer. 3.) Rotate the PWR/VOL knob clockwise to increase its volume or counterclockwise to reduce its volume. 4.) To turn the radio off, rotate the PWR/VOL know counterclockwise to the end.click. Channel Selection RL-328 is allowed to be programmed with 99 Channels. To select a channel, press the UP/DOWN key to select a channel. Receiving RL-328 can be programmed to work channel by channel in “Open traffic” or “Group Mode” (cTCSs or DCS). Group mode prevents other users on the same channel from being heard on your radio. *Open Traffic: In this mode, you will hear all communication transmitted on the channel. When a message is received your squelch will un-mute, you will hear the message. *Group Mode: TCS/DCS (continuous Tone Code Squelch system / Digital Coded Squelch) are particular TX signaling as an access key to work a repeater (encoder) or to unlock the party’s signaling sensitive squelch. In group mode, you will receive only messages coming from parties sending a proper TX signaling. By this way, more radios share the same frequency. Monitor Press and release the “MON” button on the side of the radio to pen the squelch. This allows you to over ride the squelch and the “CTCSS” or “DCS” tones. It is useful to monitor the channel before you transmit to ensure there is no one using the channel when you have CTCSS or DCS tones programmed. Transmitting Before transmitting, monitor the channel you are using to ensure it is not busy. Keep pressing PTT button and start talking at approximately 2 inches from the MIC hole. During transmitting, the LED on the top of the radio will glow red. Release PTT button when you have finished talking. Scan The advanced scan function of RL-328 allows optionally looking for carrier or carrier with CTCSS or DCS. Your dealer can program the channels to be scanned on the scan list. *Normal Scan allows you to scan all the channels you have listed through PC programming. Press SCAN button, you will see the channel numbers cycling continuously. When the radio stops on a “Busy” channel, the SCAN mode will stop and resume after about 5 seconds. If your radio has scanned a channel on which there is a party you want to talk to, you can directly communicate with the party by pressing the PTT button. To stop scanning, press SCAN button again. *Delete a Nuisance channel allows you remove temporarily the channels which you don’t want to hear from the scan list. During scanning, when the radio is locked onto a busy channel, press “ENTER” to remove this channel from the scan list. It won’t be scanned until the radio is turned on again. Mode Setting : Squelch Level Press MODE for one time, LCD shows And then, press UP/DOWN key to increase or decrease squelch level from 0 to 8. 0 means squelch canceling, 8 means tight squelch. Setting the radio to the tight squelch level, you can avoid unwanted signals or noise, but you may not receive a weak signal. So, it will be better for you to select the normal squelch level (default value: 3). Press ENTER to save the setting and get back to operation mode or press MODE to continue setting. VOX Sensitivity Level Press MODE repeatedly (normally twice) till LCD shows Press UP/DOWN key to adjust VOX sensitivity from 0 to 5: 0 means VOX canceling; 1 means the most sensitive (for quiet environment); 5 means the least (for noisy environment). Press ENTER to save the setting and get back to operation mode or press MODE…
Text truncated - open the document above for the full version.
55 44 33 22 11 D D C C B B A A HI/LOW Q810 APC CONTRAL TX5 D803 APC DET AUTO TUNED FILTER IF OUT IF OUT TX5V SW Q809 NOISE SW X701 T5V VCSS Q501 DC/DC U501 VCSS AUTO TUNED SW COMBINE/LIMITER DEV ADJUSTMENT Q504 RIPPLE FILTER VOLUME RX TUNE BEEP LOOP Q502 CHARGEPUMP Q503 FILTER SYNTHERSIZER U502 F-IN Q603Q602 VCO X501 CLOCKDATALOAD ENABLE MOD TCXO MUTE SW MOD SW MOD VCO Q604Q605Q607 Q606 S5V TX/RX SW RIPPLE FILTER Q601 D601 RX LO CF703 F-IN D701 Q701 D703 D706 AUTO TUNED FILTER RF AMP D708 D709 D707 Q703 IF AMP Q702 LO AMP LPF XF701 Q704 D702 D704 MIXER RX TUNE IF AMP 1st IF FILTER XF702RX LO U401 HPFU401 AB LPF C U401 D U401 Q403 MUTE SW PRE-EMPHASIS CTCSS/DCSSIGNAL B TONE BALANCE Q404 TONE AMP U402 Q401 U402 A Q402 MOD VCO MOD TCXO CHSP SWMOD SW A U303 MUTE SW DISC HPF Q301 DE-EMPHASIS U302 LPE AF POWER AMP B U302 U301 MUTE SW Q303 Q302 SQ SW7.5V DTMFBEEP 7.5V U201 +B7.5V S101 5V REGULATOR Q201Q202Q203D203 T5V SWR5V SWS5V SW Q801 MOD VCCS T5V TVR5VRVS5V U707 CF701 D801 D802Q803 Q804 (2nd IF AMP OSC DISC) Q706 D710 Q705 D711 Q707 FINAL AMP ANT SW DRIVE Q802 SQRSSI BUFF Q808 N/W SW BUFF Q807 AFD-IN DISC CHSP SW N/W SW CF702 LPF TX LO 7.5V 7.5V U801 APC AMP Q805 Q806 PE TX LO TX VCORX VCO <Doc> 1 MAIN BOARD BLOCK DIAGRAM Custom 11 Thursday, November 04, 2004 TitleSize Document Number Rev Date: Sheet of Page 11 BLOCK DIAGRAM 55 44 33 22 11 D D C C B B A A U103EEPROM Key pad RESET VCC RESET U101Q107D110 CLOCK SHIFT SHIFT HI/LOW SW TONE DET INTONE FILTER BEEP SQ LEVEL PLL DATA BUS MOD SW PRI PE UNLOCK PTT DET BAT LEVEL MICROPROCESSOR SQ SW TONE OUT MUTE SW VOX DET RSSI U102 TV VOX ENABLE MONI RV CHSP SW PRO X101 9.8304MHZ Q101Q102U104 MIC AMP VOX DET Q103 VOX ENABLE Q104 PTT DET MK101 A U105 TONE OUT CTCSS/DCS SIGNAL B U105 D U105 U105 TONE DET IN CLPF LPF TONE FILTER AFD-IN EXT VOX EN INT VOX EN MOD Q106 BACK LIGHT SW VCCS D107 LED RED LED GREEN COM SEGMENT DISPLY VCCS D106 Q106 REXON Ժ՞ઝݾैٝڶૻֆ Q105 UP DOW MODE SCAN ENT LPF LPF SW SW SW SW SW <Doc> 1 MCU BLOCK DIAGRAM C 11 Thursday, November 04, 2004 TitleSize Document Number Rev Date: Sheet of Page 12
If you have not received all pages, please call the direct phone number. FAX : TEL : Form# : QF0 00334A0 A4 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Gentlemen: This letter is to comply with Section 0.457(d)(2)(i) and 0.459 pertaining to confidential material. We, Rexon Technology Corporation, would like the following documents regarding this submission for FCC ID: I7ORL328U to be kept confidential. 1. Schematics 2. Part List The above material contains trade secrets or technical data, which would customarily be guarded from competitors. We do not want these documents to be accessible to the general public. Sincerely, James Chen / Manager
14. Attachment B – Photos of the EUT l Front View of EUT l Rear View of EUT l Left View of EUT l Right View of Product
FCC ID LABEL 1. FCC ID label drawing 2. FCC ID label location UHF Professional Portable Radio Model : RL328 Serial No. xxxx FCC ID : I7ORL328U Rexon Technology Corp. Made in Taiwan
l Inner View of EUT l View of daughter board l Bottom view of daughter board l l Bottom view of main board
!"#$ % $%&' ( #) *+ ',-./'-./0 0 &1 $+ 020 0 % %&!34&-56&" ) 7!768,'9"#$ 3:)$%9;< 7 #) *+',-./'-./ ) )<= !4/"# !,"# )>!&?&,7"<2 #20 . % ,'0 $ ) $ ) !47" % $)?& < % # $ ) ) $) % . #9#?,#0#?7#'#,#?&& ) + ! "# ) $>% #) %!7" !&"#$ /3: ) $>% $+4,# % 57!7@7" % !&@7"< )#&7# $ % % $ / ) $%&'( <2 # ) 0) .@? )# A 3& 5&!&@7" % ) 0) ).@? # A37 ) ) 9 )$ !B" ;B )#9 %;B #9 #3: ) $ 3B - 43<B3 :<= ? 6 CB 2@326; . 3-=<:<? 4BB .<@?;3? :3- = 3 =6-<B3 D 8 Page 2 ) &6? ? 3?? :3- ?: = =6; 3 3 5=B4:<?B3 3 3 5=B4:<?B3 -<2B3 4B-4 6??BB? 32 : 366< ;<4B@= 33; ( =46; -?<:<B3 C=4 C=4 3E6 ? :<?B3 -2 3: -?<:<B3 C=4 <: -?<:<B3<: -?<:<B3 * 3: ) #) &#?&#,# '#?7#0#9#?,## 2@32) #) 7 !4/"# !," )>!&#?&#,7" 3: ) &% $ #) ?&# ?7#7#,#'#4&47% !4/"% $ $ % $ 0'#% $+ $ 9 ) 3: !&"#1 $ #) ?'#&#?0# ?9#?#&&#&,#&0#'#400' $+ % 0' % $ !4'#40"$ Page 3 3: $ 70 $ $ F &# ) 49#4#4#41 # 7 ) # ?): ,#?&#,&#?&&#,7# ) ,, !7" ) 49#4#4#41# ) A 3: )% '0-./<: # & <: F?&0#,',0# 3: #) ?&,#,#3&0#?&'#,9#,# #<: !," + % + % + +, * <: <: '#'#?&9#' ) 5& &9!<:"5& & *+''0'0-./#) F!5&"#$ 7 <: '008./ 7 <: !4&&" :&!&708./" :7!708./"#) )$ ) $ % + .6 ) )$ ) ;.6 . #<: :7!708./"G) .6 ?)#<: :&!&708./" ) $ 9 (#$ ) 08./) )$ 9 (#$ ) ,08./7 <: 5& #) 5& 1 % 5& &7 % !366<" !5&7"#366< % % )?4 5& % % * !5& 1"# 3,#9# = % !5&7" * Page 4 507 *+ + / !507" % !" % - . ??*++ /507 # # % ## $+ >#4#?B#F 2*+ $ !+ +H@I70 "$ 2 7 …
Text truncated - open the document above for the full version.
– – – –° ° ’ - - - - - - - - - - - - - - - - - “” ’ – – – – –– APPENDIX A-SAR TEST PLOTS Date/Time: 02/16/05 21:46:15 Test Laboratory: SGS Testing Korea UHF_Head DUT: RL328; Type: UHF; Serial: F04090016 Communication System: CW; Frequency: 421 MHz;Duty Cycle: 1:1 Medium: HSL 450MHz Medium parameters used: f = 421 MHz; s = 0.835 mho/m; e r = 44.9; ? = 1000 kg/m 3 Phantom section: Flat Section DASY4 Configuration: - Probe: ET3DV6 - SN1782; ConvF(7.6, 7.6, 7.6); Calibrated: 2004-04-28 - Sensor-Surface: 4mm (Mechanical And Optical Surface Detection) - Electronics: DAE3 Sn567; Calibrated: 2004-04-30 - Phantom: SAM MIC #2000-93 with CRP_835MHz; Type: SAM MIC #2000-93; Serial: TP- 1300 - Measurement SW: DASY4, V4.4 Build 3; Postprocessing SW: SEMCAD, V1.8 Build 130 Low/Area Scan (41x111x1): Measurement grid: dx=20mm, dy=20mm Maximum value of SAR (interpolated) = 4.17 mW/g Low/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 74.8 V/m; Power Drift = -0.2 dB Peak SAR (extrapolated) = 5.96 W/kg SAR(1 g) = 3.91 mW/g; SAR(10 g) = 2.84 mW/g Maximum value of SAR (measured) = 4.08 mW/g 0 dB = 4.08mW/g Date/Time: 02/16/05 21:46:15 Test Laboratory: SGS Testing Korea UHF_Head DUT: RL328; Type: UHF; Serial: F04090016 Communication System: CW; Frequency: 450 MHz;Duty Cycle: 1:1 Medium: HSL 450MHz Medium parameters used: f = 450 MHz; s = 0.859 mho/m; e r = 44.3; ? = 1000 kg/m 3 Phantom section: Flat Section DASY4 Configuration: - Probe: ET3DV6 - SN1782; ConvF(7.6, 7.6, 7.6); Calibrated: 2004-04-28 - Sensor-Surface: 4mm (Mechanical And Optical Surface Detection) - Electronics: DAE3 Sn567; Calibrated: 2004-04-30 - Phantom: SAM MIC #2000-93 with CRP_835MHz; Type: SAM MIC #2000-93; Serial: TP- 1300 - Measurement SW: DASY4, V4.4 Build 3; Postprocessing SW: SEMCAD, V1.8 Build 130 Mid/Area Scan (41x111x1): Measurement grid: dx=20mm, dy=20mm Maximum value of SAR (interpolated) = 3.84 mW/g Mid/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 65.8 V/m; Power Drift = -0.2 dB Peak SAR (extrapolated) = 5.45 W/kg SAR(1 g) = 3.59 mW/g; SAR(10 g) = 2.61 mW/g Maximum value of SAR (measured) = 3.74 mW/g 0 dB = 3.74mW/g Date/Time: 02/16/05 21:46:15 Test Laboratory: SGS Testing Korea UHF_Head DUT: RL328; Type: UHF; Serial: F04090016 Communication System: CW; Frequency: 470 MHz;Duty Cycle: 1:1 Medium: HSL 450MHz Medium parameters used: f = 470 MHz; s = 0.877 mho/m; e r = 43.9; ? = 1000 kg/m 3 Phantom section: Flat Section DASY4 Configuration: - Probe: ET3DV6 - SN1782; ConvF(7.6, 7.6, 7.6); Calibrated: 2004-04-28 - Sensor-Surface: 4mm (Mechanical And Optical Surface Detection) - Electronics: DAE3 Sn567; Calibrated: 2004-04-30 - Phantom: SAM MIC #2000-93 with CRP_835MHz; Type: SAM MIC #2000-93; Serial: TP- 1300 - Measurement SW: DASY4, V4.4 Build 3; Postprocessing SW: SEMCAD, V1.8 Build 130 High/Area Scan (41x111x1): Measurement grid: dx=20mm, dy=20mm Maximum value of SAR (interpolated) = 3.23 mW/g High/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 59.6 V/m; Power Drift = -0.1 dB Peak SAR (extrapolated) = 4.79 W/kg SAR(1 g) = 3.07 mW/g; SAR(10 g) = 2.21 mW/g Maximum value of SAR (measured) = 3.2 mW/g 0 dB = 3.2mW/g Date/Time: 02/17/05 09:30:22 Test Laboratory: SGS Testing Korea UHF_Body DUT: RL328; Type: UHF; Serial: F04090016 Communication System: CW; Frequency: 421 MHz;Duty Cycle: 1:1 Medium: M450 Medium parameters used: f = 421 MHz; s = 0.977 mho/m; e r = 57.9; ? = 1000 kg/m 3 Phantom section: Flat Section DASY4 Configuration: - Probe: ET3DV6 - SN1782; ConvF(7.4, 7.4, 7.4); Calibrated: 2004-04-28 - Sensor-Surface: 4mm (Mechanical And Optical Surface Detection) - Electronics: DAE3 Sn567; Calibrated: 2004-04-30 - Phantom: SAM MIC #2000-93 with CRP_835MHz; Type: SAM MIC #2000-93; Serial: TP- 1300 - Measurement SW: DASY4, V4.4 Build 3; Postprocessing SW: SEMCAD, V1.8 Build 130 Low/Area Scan (41x111x1): Measurement grid: dx=20mm, dy=20mm Maximum value of SAR (interpolated) = 4.75 mW/g Low/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 72.7 V/m; Power Drift = -0.2 dB Peak SAR (extrapolated) = 7.13 W/kg SAR(1 g) = 4.51 mW/g; SAR(10 g) = 3.24 mW/g Maximum value of SAR (measured) = 4.67 mW/g 0 dB = 4.67mW/g Date/Time: 02/17/05 09:30:22 Test Laboratory: SGS Testing Korea UHF_Body DUT: RL328; Type: UHF; Serial: F04090016 Communication System: CW; Frequency: 450 MHz;Duty Cycle: 1:1 Medium: M450 Medium parameters used: f = 450 MHz; s = 1 mho/m; e r = 57.4; ? = 1000 kg/m 3 Phantom section: Flat Section DASY4 Configuration: - Probe: ET3DV6 - SN1782; ConvF(7.4, 7.4, 7.4); Calibrated: 2004-04-28 - Sensor-Surface: 4mm (Mechanical And Optical Surface Detection) - Electronics: DAE3 Sn567; Calibrated: 2004-04-30 - Phantom: SAM MIC #2000-93 with CRP_835MHz; Type: SAM MIC #2000-93; Serial: TP- 1300 - Measurement SW: DASY4, V4.4 Build 3; Postprocessing SW: SEMCAD, V1.8 Build 130 Mid 2/Area Scan (41x111x1): Measurement grid: dx=20mm, dy=20mm Maximum value of SAR (interpolated) = 3.2 mW/g Mid 2/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 54.8 V/m; Power Drift = -0.1 dB Peak SAR (extrapolated) = 4.82 W/kg SAR(1 g) = 3.07 mW/g; SAR(10 g) = 2.2 mW/g Maximum value of SAR (measured) = 3.18 mW/g 0 dB = 3.18mW/g Date/Time: 02/17/05 09:30:22 Test Laboratory: SGS Testing Korea UHF_Body DUT: RL328; Type: UHF; Serial: F04090016 Communication System: CW; Frequency: 470 MHz;Duty Cycle: 1:1 Medium: M450 Medium parameters used: f = 470 MHz; s = 1.02 mho/m; e r = 57.2; ? = 1000 kg/m 3 Phantom section: Flat Section DASY4 Configuration: - Probe: ET3DV6 - SN1782; ConvF(7.4, 7.4, 7.4); Calibrated: 2004-04-28 - Sensor-Surface: 4mm (Mechanical And Optical Surface Detection) - Electronics: DAE3 Sn567; Calibrated: 2004-04-30 - Phantom: SAM MIC #2000-93 with CRP_835MHz; Type: SAM MIC #2000-93; Serial: TP- 1300 - Measurement SW: DASY4, V4.4 Build 3; Postprocessing SW: SEMCAD, V1.8 Build 130 Hi…
Text truncated - open the document above for the full version.
DUT Setup Front side Reverse Side Left Side Right Side Top Side Bottom Side APPENDIX C-DIPOLE VALIDATION PLOTS Date/Time: 02/16/05 19:50:09 Test Laboratory: SGS Testing Korea UHF_Validation DUT: Dipole 450 MHz; Type: D450V2; Serial: D450V2 - SN:1015 Communication System: CW; Frequency: 450 MHz;Duty Cycle: 1:1 Medium: HSL 450MHz Medium parameters used: f = 450 MHz; s = 0.859 mho/m; e r = 44.3; ? = 1000 kg/m 3 Phantom section: Flat Section DASY4 Configuration: - Probe: ET3DV6 - SN1782; ConvF(7.6, 7.6, 7.6); Calibrated: 2004-04-28 - Sensor-Surface: 4mm (Mechanical And Optical Surface Detection) - Electronics: DAE3 Sn567; Calibrated: 2004-04-30 - Phantom: SAM MIC #2000-93 with CRP_835MHz; Type: SAM MIC #2000-93; Serial: TP- 1300 - Measurement SW: DASY4, V4.4 Build 3; Postprocessing SW: SEMCAD, V1.8 Build 130 Validation 2/Area Scan (61x121x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (interpolated) = 1.28 mW/g Validation 2/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 38.8 V/m; Power Drift = -0.0 dB Peak SAR (extrapolated) = 2.11 W/kg SAR(1 g) = 1.21 mW/g; SAR(10 g) = 0.788 mW/g Maximum value of SAR (measured) = 1.29 mW/g 0 dB = 1.29mW/g APPENDIX D-PROBE & DAE CALIBRATION DATA APPENDIX E-DIPOLE CALIBRATION DATA
VERIFICATION OF COMPLIANCE Applicant : REXON TECHNOLOGY CORP. Professional Portable Radio (UHF) - RL328 STROR-05-020 APPLICABLE STANDARDS 1. General Description of EUT 2. General Information of EUT – 3. Test Procedure 3.1 Output Power Conducted FCC 2.1046(a),FCC 90.205 3.2 Radiated Spurious Emissions FCC 2.1053, FCC 90.210 3.3 Conducted Spurious Emissions FCC 2.1051 3.4 Audio Frequency Response FCC 2.1047(a) 3.5 Audio Low Pass Filter Frequency Response FCC 2.1047(a), FCC 90.242(b)(8) 3.6 Modulation Limiting FCC 2.1047(b),22.915(b),90.210 ’ – 3.7 Occupied Bandwidth FCC 2.1049,90.210 3.8 Frequency stability FCC 2.1055,FCC 90.213 3.9 Transient frequency behavior FCC 90.214 Output Power Conducted FCC 2.1046(a), FCC90.205 Test Equipment Used Spectrum Analyzer H/P 8565E Dec. 2005 Signal Generator Agilent E4438C May. 2005 Power Meter Agilent E4416A May. 2005 Power Sensor Agilent E9327A May. 2005 DC Power Supply Agilent 6674A May. 2005 5.Radiated Spurious Emissions FCC 2.1053(a), FCC90.210 Test Equipment Used Spectrum analyzer H/P 8593E Aug. 2005 Signal Generator Agilent 8648D May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dummy Load BIRD 8404 Dec. 2005 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Biconical Antenna Schwarzbeck VHA9103 Jan. 2006 Biconical Antenna EMCO 3104C Feb. 2006 Log-periodic EMCO 3146 Feb. 2006 Anechoic Chamber Seo Young EMC - - Test Equipment Used Spectrum analyzer H/P 8593E Aug. 2005 Signal Generator Agilent 8648D May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dummy Load BIRD 8404 Dec. 2005 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Biconical Antenna Schwarzbeck VHA9103 Jan. 2006 Biconical Antenna EMCO 3104C Feb. 2006 Log-periodic EMCO 3146 Feb. 2006 Anechoic Chamber Seo Young EMC - - Test Equipment Used Spectrum analyzer H/P 8593E Aug. 2005 Signal Generator Agilent 8648D May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dummy Load BIRD 8404 Dec. 2005 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Biconical Antenna Schwarzbeck VHA9103 Jan. 2006 Biconical Antenna EMCO 3104C Feb. 2006 Log-periodic EMCO 3146 Feb. 2006 Anechoic Chamber Seo Young EMC - - Test Equipment Used Spectrum analyzer H/P 8593E Aug. 2005 Signal Generator Agilent 8648D May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dummy Load BIRD 8404 Dec. 2005 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Biconical Antenna Schwarzbeck VHA9103 Jan. 2006 Biconical Antenna EMCO 3104C Feb. 2006 Log-periodic EMCO 3146 Feb. 2006 Anechoic Chamber Seo Young EMC - - Test Equipment Used Spectrum analyzer H/P 8593E Aug. 2005 Signal Generator Agilent 8648D May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dummy Load BIRD 8404 Dec. 2005 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Biconical Antenna Schwarzbeck VHA9103 Jan. 2006 Biconical Antenna EMCO 3104C Feb. 2006 Log-periodic EMCO 3146 Feb. 2006 Anechoic Chamber Seo Young EMC - - Test Equipment Used Spectrum analyzer H/P 8593E Aug. 2005 Signal Generator Agilent 8648D May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dummy Load BIRD 8404 Dec. 2005 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Biconical Antenna Schwarzbeck VHA9103 Jan. 2006 Biconical Antenna EMCO 3104C Feb. 2006 Log-periodic EMCO 3146 Feb. 2006 Anechoic Chamber Seo Young EMC - - Test Equipment Used Spectrum analyzer H/P 8593E Aug. 2005 Signal Generator Agilent 8648D May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dummy Load BIRD 8404 Dec. 2005 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Biconical Antenna Schwarzbeck VHA9103 Jan. 2006 Biconical Antenna EMCO 3104C Feb. 2006 Log-periodic EMCO 3146 Feb. 2006 Anechoic Chamber Seo Young EMC - - Test Equipment Used Spectrum analyzer H/P 8593E Aug. 2005 Signal Generator Agilent 8648D May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dummy Load BIRD 8404 Dec. 2005 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Biconical Antenna Schwarzbeck VHA9103 Jan. 2006 Biconical Antenna EMCO 3104C Feb. 2006 Log-periodic EMCO 3146 Feb. 2006 Anechoic Chamber Seo Young EMC - - Test Equipment Used Spectrum analyzer H/P 8593E Aug. 2005 Signal Generator Agilent 8648D May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dummy Load BIRD 8404 Dec. 2005 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Biconical Antenna Schwarzbeck VHA9103 Jan. 2006 Biconical Antenna EMCO 3104C Feb. 2006 Log-periodic EMCO 3146 Feb. 2006 Anechoic Chamber Seo Young EMC - - Test Equipment Used Spectrum analyzer H/P 8593E Aug. 2005 Signal Generator Agilent 8648D May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dummy Load BIRD 8404 Dec. 2005 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Biconical Antenna Schwarzbeck VHA9103 Jan. 2006 Biconical Antenna EMCO 3104C Feb. 2006 Log-periodic EMCO 3146 Feb. 2006 Anechoic Chamber Seo Young EMC - - Test Equipment Used Spectrum analyzer H/P 8593E Aug. 2005 Signal Generator Agilent 8648D May 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dipole Antenna Schwarzbeck Mess UHAP May. 2005 Dummy Load BIRD 8404 Dec. 2005 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 Horn Antenna Schwarzbeck BBHA9120A Jul. 2006 …
Text truncated - open the document above for the full version.
13. Attachment A – Photos of the test setup
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 4 | 9 | 421 MHz - 470 MHz | 1 W | 16K0F3E | 2.5 ppm |
The PJ2-GPS is the only handheld aviation radio that can be connected to standard aviation headset plugs (twin PJ plugs) and 3.5mm 4 poles headphone plugs without using a special adapter.
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
Bluetooth Dongle
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Bluetooth Headset
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Professional Portable Radio (VHF)
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
FRF - Part 95 Family Radio Face Held Transmitter
Equipment Class
FRF - Part 95 Family Radio Face Held Transmitter