
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Tri-Band Wireless Adjustable Signal Booster 3G – 4G Multi-use Signal Booster Kit TRIFLEX-2GO-V for Verizon 2G thru 4G (TRIFLEX-2GO-V) User Guide TRIFLEX-2GO-V MULTIUSE KITS MN-AMP-01 INTRODUCTION 2 PRINCIPLES OF OPERATION 2 SURECALL TRIFLEX-2GO-V PACKAGES3 TRIFLEX-2GO-V BOOSTER HARDWARE5 INSTALLATION 6 PACKAGE CONTENTS 6 SITE SELECTION 6 INSTALLATION INSTRUCTIONS 7 TROUBLESHOOTING 11 FREQUENTLY ASKED QUESTIONS 13 OBTAINING TECHNICAL SUPPORT 13 WARRANTY 14 SPECIFICATIONS 16 SAFETY INFORMATION 17 INTRODUCTION SureCall TriFlex-2Go-V Multi-Use Kit Cellphone-Mate, Inc. Page 2 All rights reserved. Introduction Congratulations on purchasing the SureCall TriFlex-2Go-V kit for 2G-3G, all carriers, and 4G LTE for Verizon, the finest multi-use cellular signal booster available! SureCall adjustable cellular boosters and kits from Cellphone-Mate remove the frustration over dropped calls, limited range, and slow data rates by amplifying incoming and outgoing cellular signals in buildings, offices, and homes. The TriFlex-2Go-V is designed with leading-edge technologies to detect and amplify weak incoming signals your cellular device would otherwise miss and to broadcast a significantly stronger signal back to the cell tower. This guide contains all the information you need to get your SureCall TriFlex-2Go-V booster system up and running. Principles of Operation The SureCall TriFlex-2Go-V is a high-quality bidirectional signal booster that boosts cellular signals for cars, watercraft, motorhomes (RVs), and desktop use. The TriFlex- 2Go-V works with two antennas : x An i nside antenna that communicates with your cell phone. x An outside antenna that communicates with the cell tower. Signals sent from a cell tower are received by the outside antenna, amplified by the booster and then sent to your phone via t he inside antenna. When your phone transmits, the signal is sent to the inside antenna, and t hen sent to the cell tower via the outside antenna. Some cell signal is required for the TriFlex-2Go-V to enhance cellular signal coverage. The weakest cell signal for the TriFlex-2Go-V to work is low -100dBm to high -90dBm. dBm is an abbreviation for the power ratio in decibels of the radio power per one milliwatt. To measure your existing cell signal on an Apple iPhone, dial *3001#12345#*and press Call. In the top-left corner, a number appears instead of bars. For Android devices, you can download several apps to measure exact signal strength. Look up check real signal strength to find a cell signal measurement app. INTRODUCTION SureCall TriFlex-2Go-V Multi-Use Kit Cellphone-Mate, Inc. Page 3 All rights reserved. SureCall TriFlex-2Go-V Packages TriFlex-2Go-V Antenna Kitting Information Vehicle Kit Component Product Number/ Description Gain/Loss Notes Outdoor antenna* CM200 5 dBi Cable attached Coax cable, CM174* 10 feet 2.8 dB/4.9 dB at Cellular/PCS band Indoor patch antenna* CM110W 3 dBi Cable attached Coax cable CM174* 10 feet 2.8 dB/4.9 dB at Cellular/PCS band Marine Kit Component Product Number/ Description Gain/Loss Notes Outdoor antenna* CM288W Galaxy 5412-P 3 dBi 3 dBi Sold in Shakespeare® Aura Marine Kit CM240 cable* CM004-40FN (40 feet) -3.9 dB at 800 MHz -6.0 dB at 1900 MHz Indoor panel antenna* CM248W 7 dB at 800 MHz 10 dB at 1900 MHz CM240 cable* CM004-20FN (20 feet) -1.95 dB at 800 MHz -3.0 dB at 1900 MHz Desktop/RV Kit Component Product Number/ Description Gain/Loss Outdoor antenna* CM288W 3 dBi CM240 cable, outdoor side.* CM004-40FN (40 feet) -3.9 dB at cellular band -6.0 dB at PCS band Right angle antenna* CM120 3 dBi * All equivalent antennas and cables are suitable for use with the TriFlex-2Go -V booster. INTRODUCTION SureCall TriFlex-2Go-V Multi-Use Kit Cellphone-Mate, Inc. Page 4 All rights reserved. Note: For the signal booster to work, the following items are required: x Outside antenna x Cable for connecting the outside antenna to the booster x Signal booster x Inside antenna x Cable for connecting the inside antenna to the booster x Power supply x DC car charger and 18-foot cord x Velcro® and screw-mounting kit x Optional: AC power supply to use booster as an indoor desktop system Warning: Unauthorized antennas, cables, and/or coupling devices are prohibited by FCC new rules. Please contact FCC for details: 1-888-CALL-FCC. Changes or modifications not expressly approved by Cellphone-Mate could void the user’s authority to operate the equipment. INTRODUCTION SureCall TriFlex-2Go-V Multi-Use Kit Cellphone-Mate, Inc. Page 5 All rights reserved. TriFlex-2Go-V Booster Hardware The following figure shows the key hardware components on the TriFlex-2Go-V signal booster. Refer to this figure as you install your SureCall TriFlex-2Go-V components. PCS Dial Outdoor Antenna Connector Indoor Antenna Connector Power Connector (not shown) Power LED (not shown) Alert LEDs Cellular Dial LTE/AWS Dial INSTALLATION SureCall TriFlex-2Go-V Multi-Use Kit Cellphone-Mate, Inc. Page 6 All rights reserved. Installation Package Contents Unpack all package contents and check for damage. For missing or damaged items, contact your reseller. Keep the carton and packing material to store the product or if you need to return it. Site Selection For optimum performance, select a location for your outside antenna th at : x Is under the seat of the vehicle, for example. x Is away from excessive heat, direct sunlight or moisture. x Has proper ventilation. INSTALLATION SureCall TriFlex-2Go-V Multi-Use Kit Cellphone-Mate, Inc. Page 7 All rights reserved. Installation Instructions The TriFlex-2Go-V booster kit is suited for installation in a vehicle, such as a car, boat, or motorhome, or on a desktop. Refer to the figure below when performing the following procedures. Figure 1. Example of Car Installation Figure 2. Example of Marine Installation INSTALLATION SureCall TriFlex-2Go-V Multi-Use Kit Cellphone-Mate, Inc. Page 8 All rights reserved. Step 1. Connect the Outside Antenna 1. Mount the magnetic antenna in location that: …
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48346 Milmont Drive Fremont, CA 94538 Phone: 510-770-0469 Fax: 510-996-7250 www.cellphone-mate.com FCC Authorization 24 th January, 2014 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Agent Authorization To Whom It May Concern: We, Cellphone-mate, the undersigned, hereby authorize Compliance Testing, LLC to act on our behalf in all matters relating to application for Equipment authorization, including the signing of all documents relating to these matters. All acts carried out by Compliance Testing LLC on our behalf shall have the same effect as our own action. We, the undersigned, hereby certify that we are not subject to a denial of federal benefits including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 853(a). This authorization is valid until further written notice from the applicant. Sincerely yours, Hongtao Zhan, CEO Cellphone-Mate Inc. 1888 365 6283 ext. 301
48346 Milmont Drive Fremont, CA 94538 Phone: 510-770-0469 Fax: 510-996-7250 www.cellphone-mate.com FCC Confidential Authorization 20th January, 2014 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Confidentiality Request regarding application for certification of FCC ID: RSNTRIFLEX-2GO-V In accordance with Sections 0.457 and 0.459 of the Commission’s Rules, Cellphone-mate hereby requests long- term confidential treatment of information accompanying this application as outlined below: Block Diagram Schematics Operation Description Parts list The above materials contain proprietary and confidential information not customarily released to the public. The public disclosure of these materials provides unjustified benefits to its competitors in the market. Sincerely, Sincerely Yours, Hongtao Zhan, CEO Cellphone-Mate Inc. 1888 365 6283 ext. 301
Page 1 of 2 FCC ID: RSNTRIFLEX-2GO-V IC ID:N/A CT Project: P1410003 From: Daniel Park Date: 2/12/14 1. Under FCC Rule part 2.1033(c )(9) required power information in “Tune Up” Exhibit. Please provide all the related information. 2.1033(c )(9): “Tune-up procedure over the power range, or at specific operating power levels.” Cellphone-Mate - There is no tune up procedure as stated in cover letter. 2. Please also check with Client that “Tune Up” exhibit should be as “Confidential” after furnish the information of the inquiry #1. If that is the case, please include the “tune up” in the confidentiality letter as well. Cellphone-Mate - There is no tune up procedure as stated in cover letter. 3. Please provide higher resolution photos for the label related exhibits. Especially, the exhibit shows FCC warning label as below. Cellphone-Mate – Please refer to revised label exhibits. 4. At the pages 2&11 of User Manual, it shows Apple iPhone field test mode code. In general, this type of code is “None Disclosure” information. Please confirm whether Client want to publish this information in “User Manual”. Cellphone-Mate - Line 5 the test mode for Apple iPhone is public information. Page 2 of 2 5. From page of 7 to 9 of User Manual regarding in‐car installation instruction, the installation instruction seems not very realistic in terms of separated distance 2‐3ft. within inside antenna and wireless device. Please provide clear guideline how to place booster antenna in the car or limited space to be complied with FCC regulation such that RF exposure to human body from booster and wireless device(s). Or Show MPE calculation for worst case transmission condition could be complied with FCC rule. Cellphone-Mate – The inside antenna can be located in a hands-free cradle with the phone. Preferably, the inside antenna should be located within 2-3 feet of the cell phone at furthest distance for best results 6. Throughout the RF test report, the most of plots are not very clear to read. Please provide higher resolution plots. CT – The resolution of the graphs in the test report is due to inserting digital images into a digital document and viewing the results in a reduced document size. Please have the reviewer increase the document size when reviewing the information in the graphs. 7. At the page 1 of “Theory of Operation” exhibit, the PCS bands are missing. Please verify and correct the table. Also, based on other exhibit, the booster won’t support AWS bands. Please remove from this exhibit. Cellphone-Mate – Please see revised exhibit. 8. “KDB 935210 D02 Signal Boosters Certification v01r01” indicates that applicant must provide “Attestation” with all the below information. Please provide. (c) Attestation (must be non-confidential exhibits, signed by the applicant; signature by test lab, agent, or TCB is not acceptable) should include: (1) Licensee consent for provider-specific booster has been obtained (consent be made available upon FCC/TCB request) (2) NPS and other compliance/safeguard features have been implemented (3) NPS and other compliance/safeguard features are defaulted to be “On” (in operation) (4) NPS and other compliance/safeguard features can not be field reconfigured, disabled or removed (5) Consumer booster is not user programmable, does not need fine tuning or adjustment, does not require professional installation (6) Future software upgrade will not cause non-compliance Cellphone-Mate – Please refer to Attestation letter. Response by: Cellphone-Mate & CTL Submitted by: CTL Date: 2/18/14
Page 1 of 1 FCC ID: RSNTRIFLEX-2GO-V IC ID:N/A CT Project: P1410003 From: Daniel Park Date: 2/19/14 1. Based on Cellphone‐Mate replay, potentially the inside antenna and phone may be located very close distance for in‐car use. Thus, it may create simultaneous RF transmission condition from the booster and phone device(s). In order to show the compliance, the below study should be included. Please let me know if you have any question. Thank you so much. Calculated Power Density of Cellular phone(Uplink) with Predication distance Calculated Power Density of inside antenna(Downlink) with Predication distance Combined Power Density result from the inside antenna and phone Cellphone-Mate - The prediction distance in our MPE report is 20cm that is 7.78 on an inch that is much less than what we have in our manual. The description in our manual is a plain description of a basic install. . Response by: Cellphone-Mate Submitted by: CTL Date: 2/20/14
48346 Milmont Drive Fremont, CA 94538 Phone: 510-770-0469 Fax: 510-996-7250 www.cellphone-mate.com FCC Authorization 24 th January, 2014 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Agent Authorization To Whom It May Concern: We, Cellphone-mate, the undersigned, hereby authorize Compliance Testing, LLC to act on our behalf in all matters relating to application for Equipment authorization, including the signing of all documents relating to these matters. All acts carried out by Compliance Testing LLC on our behalf shall have the same effect as our own action. We, the undersigned, hereby certify that we are not subject to a denial of federal benefits including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 853(a). This authorization is valid until further written notice from the applicant. Sincerely yours, Hongtao Zhan, CEO Cellphone-Mate Inc. 1888 365 6283 ext. 301
48346 Milmont Drive Fremont, CA 94538 Phone: 510-770-0469 Fax: 510-996-7250 www.cellphone-mate.com FCC Confidential Authorization 20th January, 2014 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Confidentiality Request regarding application for certification of FCC ID: RSNTRIFLEX-2GO-V In accordance with Sections 0.457 and 0.459 of the Commission’s Rules, Cellphone-mate hereby requests long- term confidential treatment of information accompanying this application as outlined below: Block Diagram Schematics Operation Description Parts list The above materials contain proprietary and confidential information not customarily released to the public. The public disclosure of these materials provides unjustified benefits to its competitors in the market. Sincerely, Sincerely Yours, Hongtao Zhan, CEO Cellphone-Mate Inc. 1888 365 6283 ext. 301
Page 1 of 2 FCC ID: RSNTRIFLEX-2GO-V IC ID:N/A CT Project: P1410003 From: Daniel Park Date: 2/12/14 1. Under FCC Rule part 2.1033(c )(9) required power information in “Tune Up” Exhibit. Please provide all the related information. 2.1033(c )(9): “Tune-up procedure over the power range, or at specific operating power levels.” Cellphone-Mate - There is no tune up procedure as stated in cover letter. 2. Please also check with Client that “Tune Up” exhibit should be as “Confidential” after furnish the information of the inquiry #1. If that is the case, please include the “tune up” in the confidentiality letter as well. Cellphone-Mate - There is no tune up procedure as stated in cover letter. 3. Please provide higher resolution photos for the label related exhibits. Especially, the exhibit shows FCC warning label as below. Cellphone-Mate – Please refer to revised label exhibits. 4. At the pages 2&11 of User Manual, it shows Apple iPhone field test mode code. In general, this type of code is “None Disclosure” information. Please confirm whether Client want to publish this information in “User Manual”. Cellphone-Mate - Line 5 the test mode for Apple iPhone is public information. Page 2 of 2 5. From page of 7 to 9 of User Manual regarding in‐car installation instruction, the installation instruction seems not very realistic in terms of separated distance 2‐3ft. within inside antenna and wireless device. Please provide clear guideline how to place booster antenna in the car or limited space to be complied with FCC regulation such that RF exposure to human body from booster and wireless device(s). Or Show MPE calculation for worst case transmission condition could be complied with FCC rule. Cellphone-Mate – The inside antenna can be located in a hands-free cradle with the phone. Preferably, the inside antenna should be located within 2-3 feet of the cell phone at furthest distance for best results 6. Throughout the RF test report, the most of plots are not very clear to read. Please provide higher resolution plots. CT – The resolution of the graphs in the test report is due to inserting digital images into a digital document and viewing the results in a reduced document size. Please have the reviewer increase the document size when reviewing the information in the graphs. 7. At the page 1 of “Theory of Operation” exhibit, the PCS bands are missing. Please verify and correct the table. Also, based on other exhibit, the booster won’t support AWS bands. Please remove from this exhibit. Cellphone-Mate – Please see revised exhibit. 8. “KDB 935210 D02 Signal Boosters Certification v01r01” indicates that applicant must provide “Attestation” with all the below information. Please provide. (c) Attestation (must be non-confidential exhibits, signed by the applicant; signature by test lab, agent, or TCB is not acceptable) should include: (1) Licensee consent for provider-specific booster has been obtained (consent be made available upon FCC/TCB request) (2) NPS and other compliance/safeguard features have been implemented (3) NPS and other compliance/safeguard features are defaulted to be “On” (in operation) (4) NPS and other compliance/safeguard features can not be field reconfigured, disabled or removed (5) Consumer booster is not user programmable, does not need fine tuning or adjustment, does not require professional installation (6) Future software upgrade will not cause non-compliance Cellphone-Mate – Please refer to Attestation letter. Response by: Cellphone-Mate & CTL Submitted by: CTL Date: 2/18/14
Page 1 of 1 FCC ID: RSNTRIFLEX-2GO-V IC ID:N/A CT Project: P1410003 From: Daniel Park Date: 2/19/14 1. Based on Cellphone‐Mate replay, potentially the inside antenna and phone may be located very close distance for in‐car use. Thus, it may create simultaneous RF transmission condition from the booster and phone device(s). In order to show the compliance, the below study should be included. Please let me know if you have any question. Thank you so much. Calculated Power Density of Cellular phone(Uplink) with Predication distance Calculated Power Density of inside antenna(Downlink) with Predication distance Combined Power Density result from the inside antenna and phone Cellphone-Mate - The prediction distance in our MPE report is 20cm that is 7.78 on an inch that is much less than what we have in our manual. The description in our manual is a plain description of a basic install. . Response by: Cellphone-Mate Submitted by: CTL Date: 2/20/14
Tune up procedure: There is no need for tune up for this product when in production.
Tune up procedure: There is no need for tune up for this product when in production.
1 FCC§1.1307(b)(1)&§2.1091-RF EXPOSURE 1.1 Applicable Standard According to§1.1310 and §2.1091(Mobile Devices)RF exposure is calculated. Limits for General Population/Uncontrolled Exposure Frequency Range (MHz) Power Density (mW/cm²) Limits for General Population/Uncontrolled Exposure 0.3-1.34 *(100) 1.34-30 *(180/f²) 30-300 0.2 300–1,500 f/1500 1,500–100,000 1 Note: f= frequency in MHz *=Plane-wave equivalent power density 1.2 MPE Prediction 1.2.1 Calculation of MPE at 20 cm distance, Equation from OET Bulletin 65, Edition 97-01 S=PG/4πR² Where: S=power density P=power input to antenna G= maximum power gain of the antenna in the direction of interest relative to an isotropic radiator, subtract antenna’s cable loss, (result is in numeric form) R=distance to the center of radiation of the antenna (20cm in the following calculation) 1.2.2 Calculation formula of G(numeric ) G (numeric)=10 {Maximum Antenna Gain dBi () -Cable LossdB () } 1 10 Where: G(numeric)= Maximum power gain of the antenna in the direction of interest relative to an isotropic radiator, subtract antenna’s cable loss, (result is converted from decibel into numeric form with above equation) 1.3 Test Result 1.3.1 Under the conditions of Vehicle Kit Component(Antenna KIT) Vehicle Kit Component Outdoor Antenna KIT Antenna:CM200 Cable:CM174 -10FT 10Feet Outdoor Antenna Gain Outdoor Cable Loss At 1900MHz (dBi) At 800MHz (dBi) At LTE-V (dBi) At 1900MHz (dB) At 800MHz (dB) At LTE-V (dB) 5 3 3 8.8 4.3 3.8 Indoor Patch Antenna KIT Antenna:CM110W Cable: CM174 -10FT 10Feet Indoor Antenna Gain Indoor Cable Loss At 1900MHz (dBi) At 800MHz (dBi) At LTE-V (dBi) At 1900MHz (dB) At 800MHz (dB) At LTE-V (dB) 3 1.1 1.1 8.8 4.3 3.8 LTE-V UL: Maximum peak output power at antenna input terminal(dBm): 19.3 Maximum peak output power at antenna input terminal(mW): 85.11 Prediction distance(cm): 20 Prediction frequency(MHz): 780.45 Maximum Antenna Gain (dBi): 3 Cable Loss(dB): 3.8 G(numeric): 0.83 Power density at predication frequency and distance(mW/cm²): 0.0141 MPE limit for uncontrolled exposure at predication frequency(mW/cm²): 0.5203 LTE-V DL: Maximum peak output power at antenna input terminal(dBm): -6.3 Maximum peak output power at antenna input terminal(mW): 0.23 Prediction distance(cm): 20 Prediction frequency(MHz): 752.2 Maximum Antenna Gain (dBi): 1.1 Cable Loss(dB): 3.8 G(numeric): 0.54 Power density at predication frequency and distance(mW/cm²): 0.0001 MPE limit for uncontrolled exposure at predication frequency(mW/cm²): 0.5015 Cellular Band UL: Maximum peak output power at antenna input terminal(dBm): 20 Maximum peak output power at antenna input terminal(mW): 100 Prediction distance(cm): 20 Prediction frequency(MHz): 829.188 Maximum Antenna Gain (dBi): 3 Cable Loss(dB): 4.3 G(numeric): 0.74 Power density at predication frequency and distance(mW/cm²): 0.0148 MPE limit for uncontrolled exposure at predication frequency(mW/cm²): 0.5528 Cellular Band DL: Maximum peak output power at antenna input terminal(dBm): -6.8 Maximum peak output power at antenna input terminal(mW): 0.21 Prediction distance(cm): 20 Prediction frequency(MHz): 879.313 Maximum Antenna Gain (dBi): 1.1 Cable Loss(dB): 4.3 G(numeric): 0.48 Power density at predication frequency and distance(mW/cm²): 0.0002 MPE limit for uncontrolled exposure at predication frequency(mW/cm²): 0.5862 PCS Band UL: Maximum peak output power at antenna input terminal(dBm): 20.4 Maximum peak output power at antenna input terminal(mW): 109.65 Prediction distance(cm): 20 Prediction frequency(MHz): 1861.15 Maximum Antenna Gain (dBi): 5 Cable Loss(dB): 8.8 G(numeric): 0.42 Power density at predication frequency and distance(mW/cm²): 0.0091 MPE limit for uncontrolled exposure at predication frequency(mW/cm²): 1.0000 PCS Band DL: Maximum peak output power at antenna input terminal(dBm): -7.4 Maximum peak output power at antenna input terminal(mW): 0.18 Prediction distance(cm): 20 Prediction frequency(MHz): 1960.98 Maximum Antenna Gain (dBi): 3 Cable Loss(dB): 8.8 G(numeric): 0.26 Power density at predication frequency and distance(mW/cm²): 0.0002 MPE limit for uncontrolled exposure at predication frequency(mW/cm²): 1.0000 1.3.2 Under the conditions of Marine Kit Component Component (Antenna KIT) Marine Kit Component Outdoor Antenna KIT Antenna:CM288W or Galaxy 5412-P Cable:CM240 -40FN 40Feet Outdoor Antenna Gain Outdoor Cable Loss At 1900MHz (dBi) At 800MHz (dBi) At LTE-V (dBi) At 1900MHz (dB) At 800MHz (dB) At LTE-V (dB) 4 3 3 6.52 3.98 3.52 Indoor Panel Antenna KIT Antenna:CM248W Cable:CM240 -20FN 20Feet Indoor Antenna Gain Indoor Cable Loss At 1900MHz (dBi) At 800MHz (dBi) At LTE-V (dBi) At 1900MHz (dB) At 800MHz (dB) At LTE-V (dB) 10 7 7 3.56 2.29 2.06 LTE-V UL: Maximum peak output power at antenna input terminal(dBm): 19.3 Maximum peak output power at antenna input terminal(mW): 85.11 Prediction distance(cm): 20 Prediction frequency(MHz): 780.45 Maximum Antenna Gain (dBi): 3 Cable Loss(dB): 3.52 G(numeric): 0.89 Power density at predication frequency and distance(mW/cm²): 0.0141 MPE limit for uncontrolled exposure at predication frequency(mW/cm²): 0.5203 LTE-V DL: Maximum peak output power at antenna input terminal(dBm): -6.3 Maximum peak output power at antenna input terminal(mW): 0.23 Prediction distance(cm): 20 Prediction frequency(MHz): 752.2 Maximum Antenna Gain (dBi): 7 Cable Loss(dB): 2.06 G(numeric): 3.12 Power density at predication frequency and distance(mW/cm²): 0.0001 MPE limit for uncontrolled exposure at predication frequency(mW/cm²): 0.5015 Cellular Band UL: Maximum peak output power at antenna input terminal(dBm): 20 Maximum peak output power at antenna input terminal(mW): 100 Prediction distance(cm): 20 Prediction frequency(MHz): 829.188 Maximum Antenna Gain (dBi): 3 Cable Loss(dB): 3.98 G(numeric): 0.8 Power density at predication frequency and distance(mW/cm²): 0.0159 MPE limit for uncontrolled exposure at predication frequency(mW/cm²): 0.5528 Cellular Band DL: Maximum peak o…
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48346 Milmont Drive Fremont, CA 94538 Phone: 510-770-0469 Fax: 510-996-7250 www.cellphone-mate.com 1 Explanation of MSCL Mobile antenna Booster server antenna Mobile Booster MSCL Indoor Cable Loss Path loss Mobile Antenna Gain Indoor Antenna Gain spatial distance=d Figure 1 MSCL= Path loss + Indoor Cable Loss - Mobile Antenna Gain- Indoor Antenna Gain......① 1.1 Decibel version of free-space propagation loss equation: Path loss (dB) =20Lgf+20LgD+32.45 ......② or Path loss (dB) =20Lgf+20Lgd-27.56 ......③ f (MHz), D (m) , d (km), D=1000d. 1.1.1 Operation Frequency At PCS (1850-1910) f (MHz) =1850 At Cellular (824-849) f (MHz) =824 At LTE (776-787) f (MHz) =776 48346 Milmont Drive Fremont, CA 94538 Phone: 510-770-0469 Fax: 510-996-7250 www.cellphone-mate.com 1.1.2 Minimum Separation Distances for MSCL Calculation or Measurements d (m) Minimum Separation Distances for MSCL Calculation or Measurements d (m) Indoor server antenna types Minimum Separation Distances d (m) Ceiling Mounted (i.e., Dome-type) Antennas 2 Wall Mounted (i.e., Panel or other type) Antennas 1 Table Top Antennas 1 Note: Wall Mounted (i.e., Panel or other type) Antennas: Alternatively, if a manufacturer clearly specifies a minimum separation distance to consumer devices in the installation manual or other user documentation provided with the booster, a reasonable minimum separation distance could be up to 6 feet (or 2 meters) horizontally removed from the antenna. In this case, the user would be required to ensure this minimum separation distance for all CMRS devices authorized for use with this booster. 1.2 Mobile Antenna Gain Mobile Antenna Gain=0dBi 1.3 Indoor Cable Loss And Indoor Antenna Gain Indoor Cable Loss and Indoor Antenna Gain given by TriFlex-2Go-V Antenna Kitting Revised 48346 Milmont Drive Fremont, CA 94538 Phone: 510-770-0469 Fax: 510-996-7250 www.cellphone-mate.com 2 MSCL Calculations 2.1 Vehicle Kit : Path loss =20Lgf+20Lgd-27.56 Band f(MHz) d(m) Constant(dB) Path loss(dB) PCS(1850-1910) 1850 0.4 27.56 29.8 Cellular(824-849) 824 0.4 27.56 22.8 LTE (776-787) 776 0.4 27.56 22.3 MSCL Band Path loss (dB) Indoor Antenna Gain(dBi) Indoor Cable Loss(dB) MSCL(dB) PCS (1850-1910) 29.8 3 8.8 35.6 Cellular (824-849) 22.8 1.1 4.3 26.0 LTE (776-787) 22.3 1.1 3.8 25.0 2.2 Marine Kit: Path loss=20Lgf+20Lgd-27.56 Band f(MHz) d(m) Constant(dB) Path loss(dB) PCS(1850-1910) 1850 0.9 27.56 36.9 Cellular(824-849) 824 0.9 27.56 29.8 LTE (776-787) 776 0.9 27.56 29.3 MSCL Band Path loss (dB) Indoor Antenna Gain(dBi) Indoor Cable Loss(dB) MSCL(dB) PCS (1850-1910) 36.9 10 3.56 30.4 Cellular (824-849) 29.8 7 2.29 25.1 LTE (776-787) 29.3 7 2.06 24.4 2.3 Desk top/RV kit: Path loss=20Lgf+20Lgd-27.56 Band f(MHz) d(m) Constant(dB) Path loss(dB) PCS(1850-1910) 1850 0.6 27.56 33.3 Cellular(824-849) 824 0.6 27.56 26.3 LTE (776-787) 776 0.6 27.56 25.8 48346 Milmont Drive Fremont, CA 94538 Phone: 510-770-0469 Fax: 510-996-7250 www.cellphone-mate.com MSCL Band Path loss (dB) Indoor Antenna Gain(dBi) Indoor Cable Loss(dB) MSCL(dB) PCS (1850-1910) 33.3 3 0.3 30.6 Cellular (824-849) 26.3 1.2 0.3 25.4 LTE (776-787) 25.8 1.2 0.3 24.9 48346 Milmont Drive Fremont, CA 94538 Phone: 510-770-0469 Fax: 510-996-7250 www.cellphone-mate.com
1 FCC§1.1307(b)(1)&§2.1091-RF EXPOSURE 1.1 Applicable Standard According to§1.1310 and §2.1091(Mobile Devices)RF exposure is calculated. Limits for General Population/Uncontrolled Exposure Frequency Range (MHz) Power Density (mW/cm²) Limits for General Population/Uncontrolled Exposure 0.3-1.34 *(100) 1.34-30 *(180/f²) 30-300 0.2 300–1,500 f/1500 1,500–100,000 1 Note: f= frequency in MHz *=Plane-wave equivalent power density 1.2 MPE Prediction 1.2.1 Calculation of MPE at 20 cm distance, Equation from OET Bulletin 65, Edition 97-01 S=PG/4πR² Where: S=power density P=power input to antenna G= maximum power gain of the antenna in the direction of interest relative to an isotropic radiator, subtract antenna’s cable loss, (result is in numeric form) R=distance to the center of radiation of the antenna (20cm in the following calculation) 1.2.2 Calculation formula of G(numeric ) G (numeric)=10 {Maximum Antenna Gain dBi () -Cable LossdB () } 1 10 Where: G(numeric)= Maximum power gain of the antenna in the direction of interest relative to an isotropic radiator, subtract antenna’s cable loss, (result is converted from decibel into numeric form with above equation) 1.3 Test Result 1.3.1 Under the conditions of Vehicle Kit Component(Antenna KIT) Vehicle Kit Component Outdoor Antenna KIT Antenna:CM200 Cable:CM174 -10FT 10Feet Outdoor Antenna Gain Outdoor Cable Loss At 1900MHz (dBi) At 800MHz (dBi) At LTE-V (dBi) At 1900MHz (dB) At 800MHz (dB) At LTE-V (dB) 5 3 3 8.8 4.3 3.8 Indoor Patch Antenna KIT Antenna:CM110W Cable: CM174 -10FT 10Feet Indoor Antenna Gain Indoor Cable Loss At 1900MHz (dBi) At 800MHz (dBi) At LTE-V (dBi) At 1900MHz (dB) At 800MHz (dB) At LTE-V (dB) 3 1.1 1.1 8.8 4.3 3.8 LTE-V UL: Maximum peak…
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| # | Rule Parts | Frequency Range | Power Output | Emission |
|---|---|---|---|---|
| 18 | 24E | 1.93 GHz - 1.99 GHz | 100.00 µW | GXW |
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