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UNSH61056FRS/GMRS

Andus Technologies Ltd
FRS/GMRS - FCC ID UNSH61056 - Andus Technologies Ltd
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Application Details

Equipment Class
FRF - Part 95 Family Radio Face Held Transmitter
Date of Grant
Nov 04, 2006
Application Purpose
Original Equipment
Date of Application
Nov 04, 2006
Equipment Note
FRS/GMRS
Frequency Range
462.56250000 - 467.71250000
Company
Andus Technologies Ltd
Country
China

Documents & Files

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Users Manual

External Photos

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ID Label/Location Info

Internal Photos

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Operational Description

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Parts List/Tune Up Info

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Schematics

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Test Report

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Test Setup Photos

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Document Text

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

External Photos

EXHIBIT B - EUT PHOTOGRAPHS EUT-Whole View EUT – Front View EUT – Rear View EUT – Left Side View EUT – Right Side View EUT – Bottom View Adapter View (1) Adapter View (2)

Internal Photos

EXHIBIT C - EUT INTERNAL PHOTOGRAPHS EUT –Battery Connection View EUT – Uncovered View EUT –Main board Component View EUT –Main board Solder View EUT-Charge PCB View (1) EUT-Charge PCB View (2) EUT- Dynamotor View (1) EUT- Dynamotor View (2)

Operational Description

DETAILED TECHNICAL SPEC MODEL : H61056 DOCUMENT NO : H61056 DTS_Ver1.0 Detailed Technical Specification Model: H61056 Issue: 1.0 2 Changing History Rev Changing Details Release Date 1.0 1st Release 22 Sep 2006 Detailed Technical Specification Model: H61056 Issue: 1.0 3 I. STANDARD MEASUREMENT CONDITION: A. Standard DC Power 4 AAA internal batteries 6.0 Vdc B. Test Temperature 25 o C ±5 o C C. Standard Audio Frequency 1KHz D. Standard RF Input 1mV E. Standard Ref. Modulation Audio ± 1.5 KHz CTCSS ± 0.4 KHz F. Standard Ref. Audio Output 40mW G. Standard Ref. Audio Load @ SPEAKER 24 Ω Resistive H. Antenna Impedance 50 Ω I. Measurement Channel CH 1 462.56250MHz CH 14 467.71250MHz J. Channel Assignment CH 1 = 462.56250MHz 15= 462.55000MHz 2 = 462.58750MHz 16= 462.57500MHz 3 = 462.61250MHz 17= 462.60000MHz 4 = 462.63750MHz 18= 462.62500MHz 5 = 462.66250MHz 19= 462.65000MHz 6 = 462.68750MHz 20= 462.67500MHz 7 = 462.71250MHz 21= 462.70000MHz 8 = 467.56250MHZ 22= 462.72500MHZ 9 = 467.58750MHZ 10= 467.61250MHZ 11= 467.63750MHZ 12= 467.66250MHZ 13= 467.68750MHZ 14= 467.71250MHZ Detailed Technical Specification Model: H61056 Issue: 1.0 4 K. CTCSS Tone Frequencies CH1 = 67.0Hz 34 = 218.1Hz 67 = 116.75 + 183.0Hz 2 = 71.9Hz 35 = 225.7Hz 68 = 116.75 + 189.5Hz 3 = 74.4Hz 36 = 233.6Hz 69 = 120.875 + 148.75Hz 4 = 77.0Hz 37 = 241.8Hz 70 = 120.875 + 154.0Hz 5 = 79.7Hz 38 = 250.3Hz 71 = 120.875 + 159.5Hz 6 = 82.5Hz 39 = 109.0 + 134.125Hz 72 = 120.875 + 165.0Hz 7 = 85.4Hz 40 = 109.0 + 138.875Hz 73 = 120.875 + 170.875Hz 8 = 88.5Hz 41 = 109.0 + 143.75Hz 74 = 120.875 + 176.875Hz 9 = 91.5Hz 42 = 109.0 + 148.75Hz 75 = 120.875 + 183.0Hz 10 = 94.8Hz 43 = 109.0 + 154.0Hz 76 = 120.875 + 189.5Hz 11 = 97.4Hz 44 = 109.0 + 159.5Hz 77 = 125.125 + 154.0Hz 12 = 100.0Hz 45 = 109.0 + 165.0Hz 78 = 125.125 + 159.5Hz 13 = 103.5Hz 46 = 109.0 + 170.875Hz 79 = 125.125 + 165.0Hz 14 = 107.2Hz 47 = 109.0 + 176.875Hz 80 = 125.125 + 170.875Hz 15 = 110.9Hz 48 = 109.0 + 183.0Hz 81 = 125.125 + 176.875Hz 16 = 114.8Hz 49 = 109.0 + 189.5Hz 82 = 125.125 + 183.0Hz 17 = 118.8Hz 50 = 112.875 + 138.875Hz 83 = 125.125 + 189.5Hz 18 = 123.0Hz 51 = 112.875 + 143.75Hz 84 = 129.5 + 159.5Hz 19 = 127.3Hz 52 = 112.875 + 148.75Hz 85 = 129.5 + 165.0Hz 20 = 131.8Hz 53 = 112.875 + 154.0Hz 86 = 129.5 + 170.875Hz 21 = 136.5Hz 54 = 112.875 + 159.5Hz 87 = 129.5 + 176.875Hz 22 = 141.3Hz 55 = 112.875 + 165.0Hz 88 = 129.5 + 183.0Hz 23 = 146.2Hz 56 = 112.875 + 170.875Hz 89 = 129.5 + 189.5Hz 24 = 151.4Hz 57 = 112.875 + 176.875Hz 90 = 134.125 + 165.0Hz 25 = 156.7Hz 58 = 112.875 + 183.0Hz 91 = 134.125 + 170.875Hz 26 = 162.2Hz 59 = 112.875 + 189.5Hz 92 = 134.125 + 176.875Hz 27 = 167.9Hz 60 = 116.75 + 143.75Hz 93 = 134.125 + 183.0Hz 28 = 173.8Hz 61 = 116.75 + 148.75Hz 94 = 134.125 + 189.5Hz 29 = 179.9Hz 62 = 116.75 + 154.0Hz 95 = 138.875 + 170.875Hz 30 = 186.2Hz 63 = 116.75 + 159.5Hz 96 = 138.875 + 176.875Hz 31 = 192.8Hz 64 = 116.75 + 165.0Hz 97 = 138.875 + 183.0Hz 32 = 203.5Hz 65 = 116.75 + 170.875Hz 98 = 138.875 + 189.5Hz 33 = 210.7Hz 66 = 116.75 + 176.875Hz 99 = 143.75 + 176.875Hz 00 = 0.0Hz L. Measurement CTCSS Frequency CH 12 (100 Hz) Detailed Technical Specification Model: H61056 Issue: 1.0 6 12. MIC sens to activate TX in vox mode a) at vox sens level 1 mv 13 ±2 b) at vox sens level 2 mv 9 ±2 c) at vox sens level 3 mv 4 ±2 III. POWER SUPPLY : UNIT NOMINAL LIMIT 1. BATTERY LIFE (5:5:90 RATIO) HR --- >24 2. STDBY CURRENT mA 25 40 3. CURRENT DRAIN @ RATED AUDIO mA 100 150 @ RATED TX mA 350 400 @ POWER SAVE mA 10 15 @ KEEP ALIVE (unit off) uA 150 600 4. BATTERY LOW INDICATION V 4.8 ±0.1 V 4.6 ±0.1 Flash V 4.3 ±0.1

Parts List/Tune Up Info

Item DescriptionQty MFG 1 Antenna air coil 1 ANT501 2 Chip Cap 0402 size 1pF +/-0.25pF NP01 Panasonic C502 3 Chip Cap 0402 size 1p2F +/-0.25pF NP01 Panasonic C506 4 Chip Cap 0402 size 2pF +/-0.25pF NP02 Panasonic C100 C518 5 Chip Cap 0402 size 2p2F +/-0.1pF NP01 Panasonic C550 6 Chip Cap 0402 size 3pF +/-0.25pF NP03 Panasonic C545 C558 C568 7 Chip Cap 0402 size 3p3F +/-0.25pF NP01 Panasonic C503 8 Chip Cap 0402 size 4pF +/-0.25pF NP05 Panasonic C529 C541 C548 C549C573 9 Chip Cap 0402 size 5pF +/-0.25pF NP02 Panasonic C507 C574 10 Chip Cap 0402 size 5p6F +/-0.25pF NP01 Panasonic C551 11 Chip Cap 0402 size 9pF +/-0.25pF NP03 Panasonic C530 C535 C547 12 Chip Cap 0402 size 10pF +/-5% NP01 Panasonic C24 13 Chip Cap 0402 size 12pF +/-5% NP01 Panasonic C546 14 Chip Cap 0402 Size 18pF +/-5% NP02 Panasonic C513 C571 15 Chip Cap 0402 Size 20pF +/-5% NP02 Panasonic C519 C569 16 Chip Cap 0402 Size 22pF +/-5% NP03 Panasonic C56 C57 C536 17 Chip Cap 0402 Size 27pF +/-5% NP01 Panasonic C508 18 Chip Cap 0402 Size 33pF +/-5% NP07 Panasonic C4 C11 C27 C515 C520 C527 C539 19 Chip Cap 0402 Size 39pF +/-5% NP01 Panasonic C654 20 Chip Cap 0402 size 47pF +/-5% NP01 Panasonic C9 21 Chip Cap 0402 size 68pF +/-5% NP01 Panasonic C607 C58 C514 C517 C521 C526 C534 C538 C542 C553 C563 C565 C566 C567 C583 C605 C617 C648 C651 C577 23 Chip Cap 0402 Size 150pF +/-5% NP02 Panasonic C501 C528 24 Chip Cap 0402 size 330pF +/-5% NP01 Panasonic C615 25 Chip Cap 0402 size 470pF +/-10% X7R2 Panasonic C544 C592 26 Chip Cap 0402 size 560pF +/-10% X7R2 Panasonic C623 C655 27 Chip Cap 0402 size 820pF +/-10% X7R1 Panasonic C602 C6 C8 C14 C15 C17 C18 C19 C20 C26 C49 C505 C509 C511 C525 C557 C611 C631 29 Chip Cap 0402 Size 1n5F +/-10% X7R2 Panasonic C21 C578 30 Chip Cap 0402 Size 4n7F +/-10% X7R3 Panasonic C554 C590 C657 31 Chip Cap 0402 Size 5n6F +/-10% X7R1 Panasonic C656 32 Chip Cap 0402 size 10nF +/-10% X7R6 Panasonic C1 C37 C504 C516 C601 C639 33 Chip Cap 0402 size 18 nF +/-10% X7R1 Panasonic C588 34 Chip Cap 0402 Size 22nF +/-10% X7R5 Panasonic C7 C589 C603 C612 C613 35 Chip Cap 0402 Size 82nF +/-10% X7R1 Panasonic C643 C5 C16 C22 C25 C510 C523 C540 C555 C561 C564 C576 C586 C600 C626 C635 37 Chip Cap 0805 size 100nF +/-10% X7R1 Panasonic C591 38 Chip Cap 0402 size 220nF +80%/-20% Y5V1 Panasonic C585 39 Chip Cap 0402 size 470nF +80%/-20% Y5V2 Panasonic C579 C580 40 Chip Cap 0402 size 470nF +/-10% X5R1 Panasonic C556 41 Chip Cap 0402 size 1uF +80%/-20% Y5V8 Panasonic C12 C23 C575 C582 C610 C622 C649 C650 42 Chip Variable Cap. 2p - 7pF NP0 (TZ03Z070N169)1 Murata VC501A 43 Chip Cap. 1206 size 10uF +80%/-20% Y5V1 Panasonic C522 44 Chip Cap. 0805 size 10uF +80%/-20% Y5V3 Panasonic C543 C632 C637 45 Elect. Cap. 10uF +/-20% 3mmDIA x 5mmH 10V1C606 46 Elect. Cap. 47uF +/-20% 4mm DIA x 5mm H 10V2C3 C638 47 Elect. Cap. 220uF +/-20% 6.3mm DIA x 6mm H 6.3V1C634 48 Chip Pin Diode BA592 SOD323 (=1SS314)4 InfIneon D501 D502 D504 D514 49 Chip Diode 1PS76SB10 SOD323 (=1SS367)2 Philips D4 D12 50 Chip Diode BAS316 SOD323 (=1N4148WS)1 Philips D1 51 Chip Variable Cap. Diode BB535 SOD323 (=1SV214)1 InfIneon D503 52 Chip inductor 0603 size 4n7H +/-0.3N (Darfon HI16084N7SB)1 Darfon L504 53 Chip inductor 0603 size 10nH +/-5% (Darfon HI160810NJB)2 Darfon L510 L511 54 Chip inductor 0603 size 12nH +/-5% (Darfon HI160812NJB)1 DarfonL2 55 Chip inductor 0603 size 15nH +/-5% (Darfon HI160815NJB)1 Darfon L508 56 Chip inductor 0603 size 22nH +/-5% (Darfon HI160822NJB)2 Darfon L501 L503 57 Chip inductor 0603 size 27nH +/-5% (Darfon HI160827NJB)2 Darfon L502 L513 58 Chip inductor 0603 size 47nH +/-5% (Darfon HI160847NJB)1 Darfon L509 59 Chip inductor 0603 size 100nH +/-5% (Darfon HI1608R10JB)1 Darfon L506 60 Chip inductor 0805 size 2u2H +/-10%1 Panasonic L505 61 Chip Air Coil 1.0 x 0.3 x 4T1L507 62 Chip Air Coil 1.0 x 0.4 x 4T1L515 63 Chip Resistor 0402 size 0R 2 Panasonic R12 R100 64 Chip Resistor 0603 size 0R 1 Panasonic L512 65 Chip Resistor 0402 size 10R +/-5%1 Panasonic R44 66 Chip Resistor 0402 size 22R +/-5%3 Panasonic R8 R60 R606 Panasonic Model No. : H61056 Materiel B.O.M. Electrical Revision : 1.1 Location Circuitry Revision : H61056_SCH Ver0.2.sch Date (日期) : 22 17 Chip Cap 0402 Size 100nF +80%/-20% Y5V15 28 Chip Cap 0402 size 1nF +/-10% X7R Chip Cap 0402 size 100pF +/-5% NP019 25-Sep-06 Reference Number : ADBOM- Panasonic Panasonic 36 Prepared by (製作人) : Chi Model No. : H61056 Materiel B.O.M. Revision : 1.1 Circuitry Revision : H61056_SCH Ver0.2.sch Date (日期) : 25-Sep-06 Reference Number : ADBOM- Prepared by (製作人) : Chi 67 Chip Resistor 0402 size 220R +/-5%2 Panasonic R18 R618 68 Chip Resistor 0402 size 330R +/-5%2 Panasonic R51 R503 69 Chip Resistor 0402 size 390R +/-5%1 Panasonic R621 70 Chip Resistor 0402 size 470R +/-5%2 Panasonic R524 R624 71 Chip Resistor 0402 size 680R +/-5%1 Panasonic R16 72 Chip Resistor 0402 size 820R +/-5%1 Panasonic R47 73 Chip Resistor 0402 size 1K +/-5%7 Panasonic R2 R5 R6 R7 R50 R509 R615 74 Chip Resistor 0402 size 1K2 +/-5%2 Panasonic R512 R505 75 Chip Resistor 0402 size 1K5 +/-5%1 Panasonic R1 76 Chip Resistor 0402 size 1K8 +/-5%1 Panasonic R48 77 Chip Resistor 0402 size 2K +/-5%1 Panasonic R49 78 Chip Resistor 0402 size 2K2 +/-5%7 Panasonic R11 R30 R119 R544 R550R602 R609 79 Chip Resistor 0402 size 3K +/-5%1 Panasonic R514 80 Chip Resistor 0402 size 3K9 +/-5%2 Panasonic R14 R521 81 Chip Resistor 0402 size 4K7 +/-5%7 Panasonic R13 R33 R35 R46 R515 R516 R593 82 Chip Resistor 0402 size 5K6 +/-5%2 Panasonic R9 R510 83 Chip Resistor 0402 size 6K8 +/-5%7 Panasonic R3 R39 R513 R551 R607 R613 R620 84 Chip Resistor 0402 size 8K2 +/-5%2 Panasonic R40 R630 85 Chip Resistor 0402 size 10K +/-5%7 Panasonic R31 R501 R519 R525 R557 R612 R619 86 Chip Resistor 0402 size 11K +/-5%1 Panasonic R614 87 Chip Resistor 0402 size 12K +/-5%1 Panasonic R548 88 Chip Resistor 0402 size 15K +/-5%2 Panasonic R22 R584 89 Chip Resistor 0402 size 18K +/-5%1 Panasonic R541 90 Chip Resistor 0402 size 22K +/-5%3 Panasonic R608 R617 R631 91 Chip Resistor 0402…

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Parts List/Tune Up Info

Alignment Procedure Model: H61056 Issue: 1.1 Preparation : VCO shield case has to be mounted onto the board by soldering 2 to 3 points and the DUT has to be fully cooling down before performing any alignment Initial Setting : Temperature --- 25 o C Power Supply --- 6.0V +/- 0.1V Digital Volt Meter --- Range X.XX Volt DUT --- Set to CH1 ; CTCSS = 00 Alignment Procedures : 1) Depress PTT and adjust the space of L515 to obtain Tx CH1 VCO voltage to 0.6V ~ 1.0V @ TP3 2) Check Rx CH1VCO voltage on TP3 should be within 0.3V ~ 1.5V 3) Set DUT to CH14, check Rx CH8 VCO voltage on TP3 should be within 1.5V ~ 2.2V 4) Depress PTT, check Tx CH8 VCO voltage on TP3 should be within 1.5V ~ 2.2V VCO ADJUST Power Supply DUT Digital Volt Meter + - 6.0V TP3 - 50 ohm TP1 RF Gnd Alignment Procedure Model: H61056 Issue: 1.1 Preparation : Fully solder the shield case onto the board and cool it down Initial Setting : DUT --- Set to CH2 ; CTCSS = 00 Modulation Analyzer --- Set to frequency reading Audio Analyzer --- Set to Distortion Mode; Filter = 50Hz / 3KHz SW1 --- Open AF Gen. --- 1KHz sin wave with 150mv output level Alignment Procedures : 1) Depress PTT and adjust VC501/VC501A to obtain 462587.50 KHz ; +/- 0.3KHz 2) Set Mod. Analyzer to Power mode, depress PTT and check Tx Power should be >/= 24.5dBm and the current should be less than 400mA 3) Set Mod. Analyzer to FM mode ( + - Peak /2 ); AF filter = 300Hz/15KHz, Turn SW1 to On. Depress PTT to obtain +/- 2.0 ~ 2.2KHz deviation. 4) Change AF Gen. O/P to 10mV, depress PTT and check Tx Dev. Should be within +/- 0.9 ~ 1.4 KHz and Distortion </= 5%. 5) Change AF Gen. to 10mV; Audio Analyzer to AC level mode, depress PTT and mark the demodulated 1KHz AC level as a reference. 6) Change AF Gen. to 500Hz, depress PTT and compare the demodulated 500Hz AC level with the 1KHz reference in terms of dB should be within -5.5 ~ -9.5 dB. Tx Alignment Modulation Analyzer Audio Signal Generator DUT TP1 SW1 Power Supply W/ I meter 6.0V Audio Demod O/P Analyzer Oscilloscope TP19 Alignment Procedure Model: H61056 Issue: 1.1 Tx Alignment --- Continue 7) Change AF Gen. to 2.5KHz, depress PTT and compare the demodulated 2.5KHz AC level with the 1KHz reference in terms of dB should be within 0 ~ -4.0 dB 8) Depress CALL, check call deviation should be within +/- 1.1 ~ 1.5 KHz. 9) Set SW1 to Off, CTCSS = 01 and Mod. Analyzer filter to 50Hz/3KHz. Depress PTT and check CTCSS 01 Deviation should be within +/- 0.4 ~ 0.8 KHz. 10) Set CTCSS = 38. Depress PTT and check CTCSS 38 Deviation should be within +/- 0.4 ~ 0.8 KHz. 11) Set DUT to VOX mode, check level 1,2,3 should be turn on @ 13,9,4mv +/- 2mv respectively. Alignment Procedure Model: H61056 Issue: 1.1 Initial Setting : DUT --- Set to CH8 ; Vol Level = 5 SSG --- Freq : 467.56250 MHz ; FM modulation : +/- 1.5KHz ; Int. Mod Sig : 1KHz RF O/P Level : -47dBm Audio Analyzer --- Set to AC level mode ; Filter : 300Hz/3KHz DC Oscilloscope --- 1V DC scale Alignment Procedures : 1). Check 1 KHz AC level on the Audio Analyzer is 1V +/- 150mV. and the current consumption should </= 150mA. 2) Change DUT to Vol 5, SSG to Ext. Mod. Mark the 1KHz O/P level as a reference. 3) Change AF Gen. to 500Hz, compare the 500Hz AC level with the 1KHz reference in terms of dB should be within +2 ~ +6 dB. 4) Change AF Gen. to 2.5KHz, compare the 2.5KHz AC level with the 1KHz reference in terms of dB should be within -9 ~ -13 dB. 5) Change the Audio analyzer to Distortion mode, check Distortion should be </= 5% 6) Change Audio Analyzer to SINAD mode, decrease SSG O/P level until the 12dB SINAD reading is obtained. Check the SSG O/P level should be </= -117dBm. Rx Alignment SSG TP1 DC Oscilloscope Oscilloscope DUT TP7 Power Supply W/ I meter 6.0V Audio Analyzer TP20 Alignment Procedure Model: H61056 Issue: 1.1 Rx Alignment --- Continue 7) Decrease SSG O/P level slowly in 0.2dB step until the DC level goes just Low, then increase the level slowly again until the level becomes just Hi. Check the SSG O/P level difference between the Hi & Low points should be within 1 ~ 5 dB and the Hi level should be observed within 6 ~ 13 dB SINAD Alignment Procedure Model: H61056 Issue: 1.1 Initial Settings : DUT --- Set to CH5 ; CTCSS = 00 Modulation Analyzer --- Set to Frequency reading Audio Analyzer --- Set to AC Distortion mode ; Filter 300Hz/15KHz Audio Signal Generator --- 1KHz sinwave ; O/P level = 100mV ; SW1 = Off Test fixture: QA test fixture or equivalent. Testing Procedures : 1) Depress PTT, check frequency should be within 462662.50KHz +/-1000Hz 2) Change Mod. Analyzer to Power mode, depress PTT and check Tx Power level should be >/= ??? (TBD) ; current should be </= 400mA 3) Change Mod. Analyzer to FM mode, DUT CTCSS = 01 & 38 respectively, depress PTT and check the deviation should be within +/- 0.4 ~ 0.8 KHz 4) Set DUT CTCSS = 00; Sw1 = On, depress PTT and check maximum deviation should be </= 2.2 KHz 5) Change AF Gen. to ???mV (TBD) O/P, depress PTT and check deviation should be within +/- 0.9 ~ 1.4 KHz. & the distortion should be </= 5 %. 6) Depress CALL, check call deviation should be within +/- 1.1 ~ 1.5 KHz. Tx Radiation Test Audio Signal Generator Modulation Analyzer DUT Power Supply W/ I meter 6.0V Audio Demod O/P Analyzer Oscilloscope SPK SW1 Alignment Procedure Model: H61056 Issue: 1.1 Initial Settings : DUT --- Set to CH10 ; CTCSS = 00 ; Volume = 5 SSG --- Set freq. to 467.61250 MHz, Int. Mod. +/- 1.5KHz, Int. Mod. Sig. = 1KHz RF O/P level -47dBm Audio Analyzer --- Distortion mode ; Filter 300Hz / 3KHz AF Sig. Gen --- 1Khz sinwave ; Set O/P level to cooperate with SSG Ext.Mod. I/P Test fixture: QA test fixture or equivalent. Testing Procedures : 1) Check maximum speaker O/P level should be >/=???mV (TBD). 2) Change DUT to Vol 5, check distortion to be </= 5% 3) Change Audio Analyzer to SINAD mode, decrease RF O/P level to -???dBm (TBD), Check SINAD reading should be >/= 12dB. 4) Decrease RF O/P level slowly in 0.2 dB step until the 1KHz sinwave is disapp…

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Test Report

Note: The test report is specially limited to the above company and this particular sample only. It may not be duplicated without prior written consent of Bay Area Compliance Lab Corp. (ShenZhen). This report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST or any agency of the US Government. FCC PART 95 EMI MEASUREMENT AND TEST REPORT For Andus Technologies Ltd. No.2-3, 9/F., Transport City Building, 1-7 Shing Wan Road, Tai Wai, Shatin, NT, Hong Kong. FCC ID: UNSH61056 October 17, 2006 This Report Concerns: Original Report Equipment Type: FRS/GMRS Test Engineer: David Zhang Report No.: RSZ06092703 Test Date: October 10-11, 2006 Reviewed By: EMC Manager: Boni Baniqued Prepared By: Bay Area Compliance Lab Corp. (ShenZhen) 6/F, the 3rd Phase of WanLi Industrial Building, ShiHua Road, FuTian Free Trade Zone, ShenZhen, Guangdong 518038, P.R.China Tel: +86-755-33320018 Fax: +86-755-33320008 Andus Technologies Ltd. FCC ID: UNSH61056 Report # RSZ06092703 Page 2 of 24 FCC PART 95 Report TABLE OF CONTENTS GENERAL INFORMATION.......................................................................................................................................3 PRODUCT DESCRIPTION FOR EQUIPMENT UNDER TEST (EUT) ....................................................................................3 OBJECTIVE...................................................................................................................................................................3 RELATED SUBMITTAL(S)/GRANT(S).............................................................................................................................3 TEST METHODOLOGY..................................................................................................................................................3 TEST FACILITY.............................................................................................................................................................3 SYSTEM TEST CONFIGURATION ..........................................................................................................................4 DESCRIPTION OF TEST CONFIGURATION......................................................................................................................4 EQUIPMENT MODIFICATIONS.......................................................................................................................................4 CONFIGURATION OF TEST SETUP.................................................................................................................................5 BLOCK DIAGRAM OF TEST SETUP................................................................................................................................5 SUMMARY OF TEST RESULTS ...............................................................................................................................6 §1.1307(b) (1) RF EXPOSURE.....................................................................................................................................7 STANDARD APPLICABLE..............................................................................................................................................7 MEASUREMENT RESULT: .............................................................................................................................................7 §2.1046, §95.135 and §95.639(d) - RF OUTPUT POWER .........................................................................................8 APPLICABLE STANDARD..............................................................................................................................................8 TEST EQUIPMENT LIST AND DETAILS...........................................................................................................................8 TEST PROCEDURE........................................................................................................................................................8 TEST DATA..................................................................................................................................................................9 §2.1047, and §95.637(a) - MODULATION CHARACTERISTIC ..........................................................................10 APPLICABLE STANDARD............................................................................................................................................10 TEST EQUIPMENT LIST AND DETAILS.........................................................................................................................10 TEST PROCEDURE......................................................................................................................................................10 TEST DATA................................................................................................................................................................10 §2.1049, and § 95.633(a)(c) – OCCUPIED BANDWIDTH ......................................................................................14 APPLICABLE STANDARD............................................................................................................................................14 TEST EQUIPMENT LIST AND DETAILS.........................................................................................................................14 TEST PROCEDURE......................................................................................................................................................14 TEST DATA................................................................................................................................................................14 §2.1053 and §95.635(b)(7) - RADIATED SPURIOUS EMISSION ........................................................................18 APPLICABLE STANDARD............................…

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Test Setup Photos

EXHIBIT D - TEST SETUP PHOTOGRAPHS Radiated Emission - Front View (Above 1GHz) Radiated Emission - Rear View (Above 1GHz) Radiated Emission - Front View (Below 1GHz) Radiated Emission - Rear View (Below 1GHz) Frequency Stability

Contact Information

Applicant

Fusheng Deng
[email protected]852-3422-8878Fax: 852-3003-0187

Test Firm

Bay Area Compliance Laboratory Corp. (Shenzhen)John Chan
[email protected]08675533320018Fax: 08675533320008

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
295B462.5625 MHz - 467.7125 MHz71.00 mW11K0F3E2.5 ppm