
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
1 2 3 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 Type in the word you want. The radio will search and display the closest match. Tait Orca 5020 Conventional Portable Radio User Guide Select Channel mode. Select status label from list. Long press to Select Menu or Exit Menu. When in Menu, short press to Select or to Toggle a function e.g. on/off Menu scroll keys: Forwards and Backwards. Long press is fast scroll. Delete single character, Cancel or Back in Menu. Handset Mode Action List Radio Configuration Write your settings Making Calls 100% Synthetic Paper: Waterproof, Strong, Chemical Resistant, Recyclable. Solvent based ink. Inactivity seconds = Use a standard pencil or ballpoint pen. No solvent based pens. To erase pencil use a rubber eraser. To erase ballpoint pen, use a water moistened cloth. Batteries Use Tait Orca 5000 NiCd/NiMH batteries or Tait Orca Elan/Excel/Eclipse NiCd/NiMH batteries. For more information on batteries, refer to the Battery Care Guide. IMPORTANT Do not put Tait Orca 5000 batteries into older battery chargers. Tait Orca 5000 NiCd/NiMH batteries are ONLY for Tait Orca battery chargers with software version 2.07+. Radio Configuration Your Tait Orca radio has been configured for your requirements by your authorised Tait Dealer or your company administrator. Therefore, some functions will vary in operation or will not be available. The configuration information can be written onto this User Guide. Parts If any parts are damaged or missing, report this to your authorised Tait dealer immediately. Disabled Tones: Beeps on / off Economy Mode Control on / off One Touch Call (First Alpha Symbol) Channel's DTMF Preset Fixed Selcall Sequence Preset Call #1 (Selcall) Preset Call #2 (Selcall) Emergency (Selcall) Nuisance Delete Repeater Talk Around on / off Repeater Access Tone Handset Mode on / off Low Power on / off Keypad Locked Toggle Monitor on / off Disable Monitor Squelch Override on / off Backlighting on / off Night Use on / off Adjust Contrast of Display External Note: Function keys use a toggle action e.g. on/off Short press is less than 1 second Long press is more than 1 second Volume F3 Alpha Symbols Menu Install the Antenna Install the Battery IMPORTANT Long condition the battery. Refer to the Battery Charger User Guide. Getting Started Menu scroll keys: Backwards Forwards Antenna Function Key 1 PTT. Press to Talk, Release to Listen. Standard Microphone Function Key 2 Function Key 3 or Action List Handset Microphone Alphanumeric Keypad Menu, Select, Toggle (on/off) or Send (make call) 16-way Selector On/Off and Volume Speaker Clear, Cancel or Back in Menu LED Channel is busy: Wait Battery 100% charged Battery 60% charged Battery Low DTMF Mode on Monitor Mode on Scroll Handset Mode on Scanning for activity or signal Transmit at normal power Transmit at low power RSSI. Signal strength indicator. Also for contrast indication. (15 maximum) Max.1W Printed in New Zealand First Use of Radio Use a standard pencil or ballpoint pen. No solvent based pens. To erase pencil use a rubber eraser. To erase ballpoint pen, use a water moistened cloth. Radio Configuration Write your settings Queue: Call # of # Channel Select Mode Caller ID Display Long press to unlock Turn on radio, adjust speaker volume, select channel. Delete line of characters. Delete queued calls. Delete SDM. Exit without saving. Short press Long press Short Press Long Press Short Press Long Press Short Press Long Press Select from list. It can be a Channel, Selcall call, DTMF call, Status call, or combination. Short press to make the call. Activity found on channels Repeater Talk Around Menu Set the Scan Group Membership: RSSI. Signal strength indicator: on/off Adjust contrast of display Select version from list: Night use mode: on/off 16-way Selector Emergency Call Numbers Radio Identification Group Information Dial number. Press to make call. Dial number. If buffered, press to make call. To send A, B, C or D commands, press the PTT key whilst pressing 2, 5, 8 or 0. 1.Enter a Short Data Message 3. Enter the Radio Identification 4. Send the SDM Caller identity Call 1 of 7 Software Database Calibration Hardware Short press to delete the last character then a new search is made. Long press to delete all search characters. To exit search, long press once or twice. When the word is displayed, you can also scroll the list. Handset mode: on/off Transmit at low power: on/off Keypad locked DTMF dialling mode: normal/buffered Squelch: city/country Monitor (signalling override): on/off Squelch Override: on/off Long press to unlock Economy mode: on/off DTMF Dial Tone Multi-Frequency. International standard. Tones are used to dial direct to a landline. Example: communicating with telebanking systems. Normal Call = โblankโ Priority Call = P Short Data Message (SDM) = M Status Call = S Yes: Member No: Not a Member Priority 1 Channel Priority 2 Channel 16 Channels maximum. Remove a Channel (N). Set another Channel to P1/P2/T then the current P/T Channel will become Y. Scan Group Membership not for SDM Select a Channel. Then select the CTCSS/DCS sub-audible signalling used on the Channel, from the list. Selcall Calls Deferred Callback for Selcall If busy, the call will be sent when Channel is free: up to 15 tries (if configured). Variable Selcall Short press Select Dial Selcall from F3 Action List or Menu Dial the Selcall number: Preset/Fixed Selcall Long press Short press or Long press Select the appropriate Function Key to make the call. To exit Selcall: Select a Selcall Channel.Select a Selcall Channel. Press PTT to talk. Release PTT to listen. uPreset Call #1 (Selcall) uPreset Call #2 (Selcall) uFixed Selcall Sequence Press PTT to talk. Release PTT to listen. To cancel the call: Change Channel or turn radio off. Emergency Calls and One Touch Selcalls Select the appropriate Function Key to make the call. You may need to Select a Selcall Channel. uEmergency Call (Selcall) uOne Touch Call. This uses the first Alphโฆ
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TELTEST Laboratories Tait Electronics Ltd PO Box 1645 558 Wairakei Road Christchurch New Zealand Phone:(64) (3) 3583399 Fax:(64) (3) 3580432 10 Dec. 99 To whom it may concern TOP-K2220 This equipment meets the requirements of the FCC Rules, Part 90.203(e) and (g), as applicable. Programming of this product's transmit frequencies can be performed ONLY by the manufacturer or by service or maintenance personnel. The operator cannot program transmit frequencies using the equipmentโs external operation controls. Regards Rob Weeks Compliance Laboratory Technician
0123456789 0123456789 ABCDEFGHJ KL MNPQR REV/ISS AMENDMENTS DATE APVD D.O. CHKD DRAWN NO.SHEETS: FILE NAME: TAIT ELECTRONICS IPN: FILE DATE: ISSUE: ID:. 2.SC. PROJECT: DESIGNER: 1 7 ORCA TOP:800/900MHZ SYSTEM DIAGRAM 161003c 220-01610-03 29-Nov-99 C ORCA BRD 02B REFRESHED SAFC957/860 & 0E18U BRD 02/07/99 02C 4 SP.PINS NOW SMD. SEALS NONSMD TS 17-09-99 02D REGENERATE PLC & PLA FILES TS 05-10-99 03A CCN NO.1610/003 BRD 13/10-99 03B VALUE CHANGES CCO. 1610-005 BRD SP CK DW 02/11/99 03C REGENERATED PLA CCO. 1610-006 BRD SP CK DW 29-11-99 93 SHEET 2 POWER-AMP TX-VCO ANTENNA RX-ANT PWR-SET GND +7V5-BATT+5V-AN TX-INHIBIT PIN-SW +7V5-SW GATE-BIAS +5V-TX 246 SHEET 3 RECEIVER RX-ANT SQL-DET SQL-SET RX-DET-AF RSSI RX-LO GND +5V-AN WB/NB DCFB BATTERY+ SPRING PROBE BATTERY- SPRING PROBE DSP AUDIO 252PROCESSOR SHEET 4 RSSIFE-BIASSQL-SETSQL-DET LCK-DET TCXO-MOD /SY-EN SY-CLK SY-DAT PWR-SAVE ACCESORY TX-CNTRL VCO-MOD PWR-SET DGND GND RADIO-TOP INTERFACE-PCB RX-DET-AF +5V-DIG +5V-AN +7V5-SW +7V5-BATT PIN-SW TX-INHIBIT +14V GATE-BIAS WB/NB DCFB +5V-TX R9 470 R10150 PTT TACT SWITCH FUNC-2 TACT FUNC-1 TACT +SPKR SPRING PROBE -SPKR SPRING PROBE vco sheet 6 2922 SHEET 5 SYNTH-VCO TX-VCO LCK-DET TCXO-MOD /SY-EN SY-CLK SY-DAT VCO-MOD PWR-SAVE RX-LO GND TX-COM +7V5-SW +5V-AN +14V PL1 12 WAY SKT INTER 22WAY SIDE ENTRY FLEXI BRD SKT HEX SWITCH RSW1 16WAY BCD SW 1248 CC Q1BC848W Q2BC848W R1 470 R2 470 C1 100N C11 10N C2 47N R4 1K0 R3 1K0 C510N C610N C710N C810N C9 10N C1010N C41N0 C3 100N LK1 LK2 Q5BC857W Q4BC857W R1633 R144K7 R1347K Q3BC848W R1247K R152K2 TP1 TP2 C151N0 C16150P TP3 TP4 TP5 TP6 TP7 TP8 TP9 TP10 TP11 TP12 TP13 TP14 SK3 XXX-XXMRX-XX UP TACT DOWNTACT SWITCH 1P1W 12 R5 2K2 R610 R710 MICMICORPHONE 1 +V 2 GND GREEN D1 DUAL LED 1 2 RED D1DUAL LED 3 4 RV110K LOG POT 45 CW RV110K LOG POT 13 2 TP15 TP17 TP16 R202K2 R17180 R8 330 +7V5-BATT +7V5-ACC PL1 +7V5-ACC 2PL1 RXD 3PL1 TXD 5PL1 EXT-PTT 12PL1 EXT-SPKR 9PL1 GND 1 +5V-AN +7V5-BATT +5V-DIG +5V-AN +7V5-SW +7V5-BATT +5V-AN PL1 EXT-MIC 6 INTER +7V5-SW 10INTER KEY-LATCH 16INTER EXP-LATCH 11INTER KEY-D0 8INTER KEY-D1 9INTER KEY-D2 13INTER SDAT 3INTER SCLK 5INTER RESET 1INTER GND 15 +7V5-SW+5V-DIG PL1 MOD-AUDIO 8 +7V5-SW PL1 SENSE-0 10PL1 SENSE-1 7PL1 RX-DET-AF 4PL1 EXT+SPKR 11 INTER +5V-DIG 18INTER DGND 12 +7V5-BATT +7V5-SW INTER RX-DET-AF 19INTER VOL-MAX 20INTER MOD-AUDIO 22INTER PTT 14INTER TX-AUDIO 21INTER ON 2INTER MISO 4INTER S-DATA-READY 6 +5V-DIG +7V5-ACC INTER P37 17 +5V-DIG INTER GND 7 +5V-TX +5V-TX Accesory ConnectorInterface PCB link LK1 & LK2 if RV1 is not fitted CCN No.1610-001 CCN No.1610-002 VOL-MAX PTT INT-MIC RADIO-TOP KNOB1 KNOB0 PTT FN2 FN1 -SPKR +SPKR VOL-MIN VOL-WIPER VOL-MAX KNOB3 KNOB2 KNOB1 KNOB0 RX-LED TX-LED ACCESORY EXT-PTT RXDTXD EXT-MIC MOD-AUDIO SENSE-0SENSE-1 EXT+SPKREXT-SPKR P37 INTERFACE RESET SCLKSDAT KEY-D2KEY-D1KEY-D0 EXP-LATCHKEY-LATCH TX-AUDIO MISO ON
Date: 01 June 2001 To:FCC Reviewer Copy for: From:Linda Grose Subject:Correction to be made to Form 731 information Dear Sir/Madam Form 731 Correction required FCCID: CASTEL0032 731 Confirmation No: EA101141 Date of Submission: 05/28/2001 Please change the "Equipment will be operated under FCC Rule Part(s):" to be 22 and 90. I had entered just part 90. Thank you Yours faithfully, Linda M. Grose Linda Grose Compliance Coordinator Ph +64 3 358 1026 Fax +64 3 358 3903 Email: [email protected]
TELTEST Laboratories Tait Electronics Ltd PO Box 1645 558 Wairakei Road Christchurch New Zealand Phone:(64) (3) 358 3399 Fax:(64) (3) 358 0432 20 May 2001 To whom it may concern TOP-K2220 FCCID: CASTEL0032 731 Conf No: EA101141 CONFIDENTIALITY REQUEST Reference rule sections 0.457 (d) (ii) and pursuant to rule section 0.459 (a) confidentiality is requested as follows: Specific Information: Schematics The schematics contain trade secret information which is not made routinely available to the public or to our competitors. Disclosure of this information could result in an unfair advantage to our competitors. It should be treated as confidential for the duration of effectiveness of the Grant Of Authorisation. Regards Garry Pringle Compliance Laboratory Technician
To Andy Leimer From S Crompton 6/07/01 Dear Mr Leimer, This memo is in reply to your request for technical information below: To: Stephen Crompton, Tait Electronics Ltd From: Andy Leimer [email protected] FCC Application Processing Branch Re: FCC ID CASTEL0032 Applicant: Tait Electronics Ltd Correspondence Reference Number: 19855 731 Confirmation Number: EA101141 The following is needed to further process this application: 1) Submit a Block Diagram Reply: An Exhibit is uploaded with this letter. 2) Submit a User's manual. The User's Manual should include the appropriate RF exposure information. Reply: An Exhibit is uploaded with this letter 3) Submit Internal Photos with the shielding removed. Reply: An Exhibit is uploaded with this letter 4) Submit an Operational description. Reply: An Exhibit is uploaded with this letter 4) The Service manual says that the Duty Factor is 20%. The SAR report says that the device was tested at a 25% Duty Factor. Please explain this discrepancy. Reply: The Service Manual Duty Factor is the maximum transmission time recommended to the user to avoid overheating of the radio under worst case environmental conditions. The Duty Factor tested by the Test House is the maximum duty cycle expected to result in compliance with RF Safety limits. (Since the recommended duty cycle in the Userโs Guide is 20%, there is an extra margin of safety.) 5) The application is for 896 to 941 MHz. Special Mobile Radio (SMR) for Part 90 covers 896 to 901 MHz. Please explain what Rule covers the 901 to 941 MHz range. Is it 22G? Answer: Please amend application to read 896-901 MHz. Best Regards Steve Crompton.
To: Andy Leimer From: Linda Grose 13/07/01 Re: FCCID: CASTEL0032 Applicant: Tait Electronics Ltd Correspondence Reference Number: 19893 731 Confirmation Number: EA101141 Dear Mr Leimer, This memo is in reply to your request for technical information. The original application was for 896 to 941MHz. This was because of a mistaken belief that the rules that apply to the grants we currently hold for our basestation and mobile equipment would also apply to this hand-portable product. Mobile grant CASTEL0036 gives a frequency range of 896-901 and 935-940MHz (part 90) Base station grant CASTEL0044 gives a frequency range of 890-960MHz, as does CASTEL0045 (parts 22, 90 & 101) Base station grant CAS8IPT881-HS gives a frequency range of 800-901 and 935-960MHz (parts 22, 90 & 94) Base station grant CAS8IPT881 gives a frequency range of 800-960MHz (parts 22, 90 & 94) Based on these previous grants, the sample was tested at 918.1MHz being the approximate middle of the band of interest, as is our practice. The SAR report was commissioned at great expense ($37,000) and to defer this cost it was decided to test the sample at the top, middle and bottom of the frequency band the radio is capable of (896.1, 918.1 and 940.9MHz) so as to ease the use of this report in as many approvals around the world as possible. As you stated in your e-mail, part 90 (SMR) allows operation in the 896-901 and 935-940MHz sub bands. The lowest test frequency in the SAR report (896.1MHz) falls within the 896-901MHz band, and the upper frequency (940.9MHz) is just outside the higher sub band of 935-940MHz. Considering the result of this testing across the complete 45MHz band that the sample is capable of was such a definite pass, I ask that you consider accepting this SAR report for this submission. Regarding the requirement to test the sample to rule part 90 within the band of operation, now 896-901 and 935- 940MHz. As the sample was tested in the middle of the two available frequency areas (918.1MHz), please do consider my request that you also accept this testing as adequate. To clarify: we request 896-901 and 935-940MHz approval under part 90 of the FCC rules. To answer your final question, the radio is set up on the required frequencies by our local subsidiary. The frequencies assigned are determined by licensing agreements and the frequency sub-bands stated on the FCC grant applicable to that product. These frequencies are locked in to the memory of this product and cannot be changed by the end user. This prohibits operation on any other frequency. I do apologise for the confusion caused by the error made in the original submission and the resulting problems. Best regards Linda Grose Compliance Co-ordinator Tait Electronics Ltd
To:Andy [email protected] From:Linda [email protected] Re: FCCID: CASTEL0032 Applicant: Tait Electronics Lt d Correspondence Reference Number: 19932 731 Confirmation Number: EA101141 Dear Mr Leimer Please find following a reply to your inquiry from Chris Zombolas, Technical Director of EMC Technologies Ltd, the Laboratory that performed the SAR testing on our product. Kind re gards Linda Grose Compliance Co-ordinator Tait Electronics Ltd Dear Sir The "Body Worn" position was tested with and without the microphone connected as part of the explorative process. This is explained in section 6.3 of the SAR report. Quote: โNote: These tests were part of the explorative process, therefore these results are ignored for compliance purposes. The Belt-Clip without the Lapel Speaker Microphone connected does not represent a user configuration. It will not be operated in continuous transmit mode without the Lapel Speaker microphone connected.โ The only explanation we can offer for the large difference in the results is that the antenna was being loaded by the close proximity of the "Lapel Speaker Mic Cable". The SAR measurements were all performed at least twice and in some case three times, to ensure that they were repeatable. The photos in the report (Appendix A7 and A8) show that the setup was identical in every other respect. 1. We checked the SAR drift from the DASY3 results and there was only an insignificant difference. (0.09mW/g versus 0.12mW/g). 2. We checked the conducted RF output power drift at the antenna port. The values were 0.14 Watts versus 0.13 Watts. 3. We checked the RF Output power, which may vary due to the use of a different battery, and the only difference was 2.95 Watts versus 2.73 watts. (7.45% difference) 4. We checked the location of the point of maximum SAR and it was unchanged for both set-ups. We thoroughly explored this effect and we can only conclude that it was caused by the close proximity of the cable. The higher value was only obtained with an unlikely user configuration; ie waist position with no "Lapel Mic" connected. This would represent a worst case scenario. It is pertinent to note that the device still complies with the SAR limit. Please contact me if you need further information. Best Regards Chris Zombolas Technical Director EMC Technologies Pty Ltd www.emctech.com.au 57 Assembly Drive Tullamarine (Melbourne) Victoria 3043 Australia ph: +613 9335 3333fax: +613 9338 [email protected]
B - 14 Circuit descriptions 06/01 IPN: M5000-00-101 Circuit descriptions Circuit interface diagrams for the Tait Orca handportable radios are shown in Figure B-1 (TOP B, C, G, H, I, J and K) and Figure B-2 (TOP A only). The Tait Orca handportable has been designed to be totally electronically tuned using the Calibration Application. The titles of tests referred to below are tests available in the calibration system, e.g. Power Level test refers to the Power Level screen in the calibra- tion system. Consult the Calibration Applica- tion online help or Userโs Manual for more information on specific calibration tests. Transmitter The RF power amplifier amplifies transmit RF from the VCO to the output power level (3W 800/900 MHz, 4W UHF/5W VHF). The PA output is fed to the PIN switch, which provides isolation between the transmit and receive paths. An LPF follows the PIN switch and provides attenuation of unwanted high frequency signals. Following the LPF, the signal is fed to the antenna. The output power level is controlled by the microprocessor and associated circuitry, and is initially set by calibrating the radio (Power Level test). Transmit (Tx) audio Tx audio from the microphone is processed by the DSP and associated circuitry into two modulation signals, one required by the TCXO in the synthesiser and the other by the VCO. A digital pot is used to set the overall deviation and modulation balance; these are controlled by calibration (Maximum Deviation and Modulation Balance tests). Receiver RF from the antenna is fed via the LPF and PIN switch into the receiver. The RF passes through the front end tuning circuit, which rejects unwanted frequencies. The front end is electronically tuned, and the front end tuning voltage that sets the centre of the bandpass filter is determined during calibration (Front End Tuning test). The output of the front end tuning stage is fed to the first mixer, and the VCO provides the local oscillator input. The output of the mixer is at the first IF frequency (45.1 MHz UHF/ 21.4 MHz VHF). The IF signal passes through two crystal filters, separated by the IF amplifier. In the Demod IC, the signal passes through the second mixer, producing the second IF (455 kHz). The second IF passes through a ceramic band pass filter and IF amp, which are external to the IC. The second IF is then fed back into the Demod IC for another amplification stage, then through another ceramic band bass filter. The final stage is the phase lock loop (PLL) discriminator in the Demod IC, which produc- es detected audio. A squelch detect circuit detects high frequency audio noise and compares it with a threshold, which is set up by the microprocessor and can be set during calibration (Squelch Thresh- olds test). The RSSI output of the detector circuit provides an analogue indication of the received signal strength. RSSI thresholds are set during calibration (RSSI Thresholds test). Receive (Rx) audio The detected audio is processed by the DSP, amplified and fed to an internal speaker, whose selection is controlled by a line from the 06/01 IPN: M5000-00-101 Circuit descriptions B - 15 microprocessor. The speaker output is always available on the accessory connector, to drive an external speaker. The unprocessed audio from the output of the Demod IC (RX-DET-AF) is also available at the accessory connector. All signalling, such as Selcall, CTCSS, DCS, DTMF and FFSK, and all confidence tones are generated by the DSP. The DSP operates in half-duplex mode. That is, its CODEC input and output is switched between the Tx and Rx audio paths, according to whether the radio is transmitting or receiv- ing. Synthesiser and VCO The synthesiser receives channel frequency information from the microprocessor. It then sets the VCO to the required frequency and maintains its stability using a phase-locked loop. There are one or two VCOs, depending on the radio type. Some bands have one VCO that covers the whole tuning range of the radio plus the IF offset, with its output switched to Tx or Rx. Other bands have a dedicated Tx and Rx VCO. A lock detect output from the synthesiser (LCK-DET) indicates whether the VCO is producing the correct frequency (the radio is in lock). If the frequency is incorrect, the lock detect status prevents the transmitter from operating, and informs the control microproc- essor. The reference frequency for the synthesiser is provided by the TCXO (temperature compen- sated crystal oscillator), which is initially set on frequency using a DC voltage at calibration (TCXO Calibration test). Power supplies +5V-DIG The +5V-DIG supply provides regulated 5 V to the microprocessor and its associated circuit- ry. It is controlled by the on/off switch and a line from the microprocessor. It provides 5 V to all circuitry that requires power when the radio is in economy mode. +5V-AN The +5V-AN supply provides the power to all circuitry that requires 5 V when the radio is not in economy mode, mainly all analog circuitry in the receiver, synthesiser and audio modules. It is controlled by a line from the microproces- sor and is a regulated supply. +5V-TX The +5V TX supply provides power for the exciter stage of the transmitter when the radio is in transmit mode. It is controlled by a line from the microprocessor and is a regulated supply. +7V5-BATT The +7V5-BATT supply is the unregulated voltage supplied to the radio from the battery. +7V5-ACC The +7V5-ACC supply is supplied to the acces- sory connector from the battery through a switch and with some current limiting. +7V5-SW The +7V5-SW switched supply is unregulated voltage supplied to the radio from the battery through a switch. +14V The +14V regulated supply provides the 14 V required by the loop filter in the synthesiser. A switch mode regulator produces this voltage from the +7V5-SW and +5V-AN supplies. B - 16 Circuit descriptions 06/01 IPN: M5000-00-101 +4V3-DEC The +4V3V-DEC supply is derived from the +5V-AN voltage. It is used to power the โฆ
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Tait Orca 5000 Handportable Radios Service Manual Issue 03 April 2001 IPN: 449-51000-03 i04/01 IPN: 449-51000-03 04/01 IPN: 449-51000-03i Contents Part A: Introduction 6 66 6H HH HU UU UY YY YL LL LF FF FL LL LQ QQ QJ J J J 7 77 7D DD DL LL LW W W W 2 22 2U UU UF FF FD D D D K KK KD DD DQ QQ QGS GSGS GSR RR RU UU UW WW WD DD DE EE EO OO OH HH HV V V V $ $$ $ :::WHFKQLFDOVXSSRUW$ :KDWGRHVWKLVPDQXDOFRQWDLQ"$ :KDWLVLQFOXGHGLQWKHFDOLEUDWLRQVHUYLFHNLW"$ 3URJUDPPLQJNLW$ &RQYHQWLRQV$ 7 77 7K KK KH 7 H 7H 7 H 7D DD DL LL LW W W W 2 22 2U UU UF FF FD D D D V VV VH HH HU UU UL LL LH HH HV V V V R RR RI I I I K KK KD DD DQ QQ QG GG GS SS SR RR RU UU UW WW WD DD DE EE EO OO OH HH HV V V V $ $$ $ 3URGXFWFRGHV$ 7KH7DLW2UFD3URGXFW1DPLQJ&RQYHQWLRQ$ 2SHUDWLQJ,QVWUXFWLRQV$ $FFHVVRULHV$ , ,, ,PS PSPS PSR RR RU UU UW WW WD DD DQ QQ QW W W W L LL LQ QQ QI II IR RR RUP UPUP UPD DD DW WW WL LL LR RR RQ Q Q Q $ $$ $ %DVLFVHUYLFLQJSUHFDXWLRQV$ 3URJUDPPLQJ$ &DOLEUDWLQJ$ 7HVWIDFLOLWLHV$ Part B: Radio specifications and circuit descriptions 5 55 5D DD DG GG GL LL LR R R R V VV VS SS SH HH HF FF FL LL LI II IL LL LF FF FD DD DW WW WL LL LR RR RQ QQ QV V V V % %% % *HQHUDOVSHFLILFDWLRQV% 5HFHLYHUSHUIRUPDQFH% 7UDQVPLWWHUSHUIRUPDQFH % 7DLW2UFD0+]&RQYHQWLRQDODQG7UXQNHG5DGLR6SHFLILFDWLRQV% 7DLW2UFD0+]&RQYHQWLRQDODQG7UXQNHG5DGLR6SHFLILFDWLRQV% 7DLW2UFD0+]&RQYHQWLRQDODQG7UXQNHG5DGLR6SHFLILFDWLRQV% 7DLW2UFD0+]&RQYQHWLRQDODQG7UXQNHG5DGLR6SHFLILFDWLRQV% 7DLW2UFD0+]&RQYHQWLRQDODQG7UXQNHG5DGLR6SHFLILFDWLRQV% 7DLW2UFD0+]&RQYHQWLRQDODQG7UXQNHG5DGLR6SHFLILFDWLRQV% 7DLW2UFDโฆ
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Tait Orca 5000 Handportable Radios Service Manual Issue 03 April 2001 IPN: 449-51000-03 i04/01 IPN: 449-51000-03 04/01 IPN: 449-51000-03i Contents Part A: Introduction 6 66 6H HH HU UU UY YY YL LL LF FF FL LL LQ QQ QJ J J J 7 77 7D DD DL LL LW W W W 2 22 2U UU UF FF FD D D D K KK KD DD DQ QQ QGS GSGS GSR RR RU UU UW WW WD DD DE EE EO OO OH HH HV V V V โฆ
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558 Wairakei Road ยท Christchurch ยท New Zealand
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 8 | 9 | 935 MHz - 940 MHz | 3 W | 16K0F3E | 1.5 ppm |

Base Station Transceiver
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Base Station Transceiver
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Mobile Transceiver
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Portable Transceiver
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
Portable Transceiver
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter