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130 2ND AVE N
IIII1l111 130 z i�jj - L/ AJ A OF EL)Jfo ;"c 4119" CITY OF EDMONDS 121 5TH A VENUE NORTH - EDMONDS, WA 98020 PHONE:(425 77425 771-0221 . � 1-0220-FAX: ( STATUS: ISSUED 01/29/2016 Expiration Date: 07/29/2016 Parcel No: 00434400700700 EDMONDS2020 LLC VTI ELECTRIC, INC. VTI ELECTRIC, INC. 307 BELL ST C/O LANCE, STAFFORD C/O LANCE STAFFORD EDMONDS, WA 98020 9922 E MONFGOMERY DR #20 9922 E MONTGOMERY DR 420 SPOKANE VALLEY, WA 99206 SPOKANE VALLEY, WA 99206 (425)640-9000 (509)434-8565 (509)434-8565 LICENSE #: VFIELE1891OT EXP:I 1/15/2017 IiI �TJrLI/ C�l�[�1 uI�1Ze; ►Cy'l:?IXY03011117t". 01 �ZK�1�L�17Sf VALUATION: $0.00 I��iT37 PERMIT TYPE: Commercial PERMIT GROUP: 79 - Fire Alarm GRADING: N CYDS: 0 TYPE OF CONSTRUCTION: RETAINING WALL ROCKERY: OCCUPANT GROUP: OCCUPANT LOAD: FENCE: ( 0 X 0 FT.) CODE: 2012 OTHER: ------- OTFIER DESC: ZONE: NUMBER OF STORIES: 0 VESTED DATE.: NUMBER OF DWELLING UNITS: 0 LOT #: BASEMENT: 0 1 ST FLOOR: 0 2ND FLOOR: 0 IBASEMENT 0 1 ST FLOOR: 0 2ND FLOOR: 0 3RD FLOOR: 0 GARAGE: 0 DECK: 0 OTHER: 0 3RD FLOOR: 0 GARAGE: 0 DECK: 0 OTHER: 0 BEDROOMS:0 BATHROOMS:0 BEDROOMS:0 BATHROOMS:0 REQUIRED: PROPOSED: REQUIRED: PROPOSED: REQUIRED: PROPOSED: HEIGHT ALLOWED:0 PROPOSED:O REQUIRED: PROPOSED: SETBACK NOTES: I AGREE TO COMPLY WITH CITY AND STATE LAWS REGULATINGCONSTRUCTEON AND IN DOINGTHE WORK AUTHORIZED THEREBY, NO PERSON WILL BE EMPLOYED IN VIOLATION OF THE LABOR CODE OF THE STATE OF WASHINGTON RELATINGTO WORKMEN'S COMPENSATION INSURANCE AND RCW 18:27. 14IS APPLICATION IS NOT A PERMIT UNTIL SIGNED BY THE BUILDING OFFICIAL OR HIS/HER DEPUTY AND ALL FEES ARE, PAID. 1y l Released By Date 04 ATTENTION ITIS UNLAWFUL TO USE OR OCCUPY A BUILDING OR STRUCTURE IJNTTL A FINAL INSPECTION HAS BEEN MADE AND APPROVAL OR A CERTIFICATE OF OCCUPANCY HAS BEEN GRANTED. UBC109/ IBCI 10/ IRCI M ONLINE APPLICANT = ASSESSOR OTHER STATUS: ISSUED • BLD20160047 CONDITIONS • Final approval on a projector final occupancy approval must be granted by the Building Official prior to use or occupancy of the building or structure. Check the job card for all required City inspections including final project approval and final occupancy inspections. • Any request for alternate design, modification, variance or other administrative deviation (hereinafter "variance") from adopted codes, ordinances or policies must be specifically requested in writing and be called out and identified. Processing fees for such request shall be established by Council and shall be paid upon submittal and are non-refundable. • Approval of any plat or plan containing provisions which do not comply with city code and for which a variance has not been specifically identified, requested and considered by the appropriate city official in accordance with the appropriate provision of city code or state law does not approve any items not to code specification. • Sound/Noise originating from temporary construction sites as a result of construction activity are exempt from the noise limits of ECC Chapter 5.30 only during the hours of 7:00am to 6:00pm on weekdays and 10:00am and 6:00pm on Saturdays, excluding Sundays and Federal Holidays. At all other times the noise originating from construction sites/activities must comply with the noise limits of Chapter 5.30, unless a variance has been granted pursuant to ECC 5.30.120. • Applicant, on behalf of his or her spouse, heirs, assigns, and successors in interests, agrees to indemnify defend and hold hamlless the City of Edmonds, Washington, its officials, employees, and agents from any and all claims for damages of whatever nature, arising directly or indirectly from the issuance for this permit. Issuance of this permit shall not be deemed to modify, waive or reduce any requirements of any City ordinance nor limit in any way the City's ability to enforce any ordinance provision. • Request final Fire Department Inspection (425) 775-0215. THIS PERMIT AUTHORIZES ONLY THE WORK NOTED. THIS PERMIT COVERS WORK TO BE DONE ON PRIVATE PROPERTY ONLY. ANY CONSTRUCTION ON THE PUBLIC DOMAIN (CURBS, SIDEWALKS, DRIVEWAYS, MARQUEES, ETC.) WILL REQUIRE SEPARATE PERMISSION. PERMIT TIME LIMIT. SEE ECDC 19.00.005(A)(6) BULDING (425) 771-0220 EXT. 1333 1 FNGWEEIIING (425) 771-0220 EXT. 1326 1 FIRE (425) 775-7720 PUBLIC WORKS 425 771-0235 1 PR&TREATM©NT 425 672-5755 RECYCLING 425 275-4801 When calling for an inspection please leave the following information: Permit Number, Job Site Address, Type of Inspection being requested, Contact Name and Phone Number, Date Prefereed, and wbether you Drefer mornin! or afternoon. • F - 3rd Party testing/verification • F-Fire Final — —r Roof - rY Design assumes tile following input New Edmonds Post 900 signals at exterior antennas: Public Sa 1'cty 800 Mllz: -78 dBm Office DAS Level 4 Level 3 Level 2 Leven E I Garage 1 ENS on Design and Installation per NFPA 70 and 72 requircmcnis Exposed cable at risk of damage is to be encased in metal conduit forptotcclion 24 hour battery backup per IFC 2012 requirements as adopted by the City of Edmonds Fire Code I ieadend located in Electrical Room on Level I. RECEIVED JAN 14 2015 DEVELOPMENT SERVICES CTR. CITY OF EDMONDS Z WM�yt� W W 1 LL O ULLJ 0 U Cr U- - mYWW 0 - a z CC 0 00Cr S a� 3:QO Qm New Ed— Pont Oil" Mi— ua Oesgn ptan 20.0 ft Pictagrantskgend © Antenna C4 Sputter Cables_Iegend AL4RPV50 Via RG-142 NM-NM-2- syaWnm inbrmatten taperW 900 - Public Safety 1800 MHz - SMR - Analog / 1 Sectors Mx Eem—P—OfficeMi— U" C r---------------------------+ I Mount BDA with a rite rated board mounted on jthe nearest exposed wall for input and distribution I configuration. j 1 I Grounded 6GA stranded copper with service loop j t within T of BDA for ground bus bar installation. j The DBA. UPS and Lightning arrester will be I grounded to this bar following the N EC. j I I :A dedicated 15A simplex power outlet to j I mn/chargc the BBU located within 4ft of the BDA in a low/no foot traffic area. This is to be I I labeled as an Emergcncy Service Outict. 1 I I 1 BDA and UPS will connect to the alarm panel j t through two Dry Contact NAD Alarm Modules. These will provide supervisory signals should the t I following conditions occur: Power Failure. Low jBattery. or Hardware Failure t 1 I I I I I I i 1 Tv 1 I 1 1 1 1 J ¢ • . „ P1Y N I E . ................ - i F N Oam_ I tt \ lL ccw im—, ar .e, a crx (�'"'c' ©ewec .111'eoofcr �ov.r� I U—C' 0 a.wnsr w .cif evn avrrw m..14•ro amaranaa xeuarrarar •we M'f� rlmuar�nr�an wzMWaoY artsw a rnnwrq 3]iTCB6 riaxa --------•-- ,ieiuemmr ern aw FrraMtmYl YIO Plcto ears genii , © Antenna ® BDA Miscellaneous Cabli3sla- - . _... AL4RPV50 Splitter LOF4-50A C> Via RG-142 NM-NM-2' �}pyylRJ•,YMp \ I � Its 1 •! , �`-�~ yy BotuF[ dr • — C she_ c rya r ZQ.Q n _I No--F.dmna P—Olfce Mi.ed • 9� �_I -1'' 7 800 Public Salary 800 M4Hz - SMR-- Analog 1 e .Sectws Y; attrzots eaae a m r Pictograms legend © Antenna Splitter Cables:legeifd AL4RPV50 RG-142 NM-NM-2' SY4tertn,inpmwtlon:6g9rM Via 1800-Public Safely /800 MHz -SMR- Analog / t Sectors New Ednxmds Pose niricu Mixed Use —2 I" New Edn — OH" Muatl U. Pictagrartis legend:, Antenna C-`a"D(es legend Via AL4RPV50 800 - Pubk Safety 1800 MHz - SMR - Analog / 1 Sfttors F EMiaMe I- OK Musa U- Level 1800 - P.M. Safety 1800 MHz - SMR - Analog I 1 Sectors p tt I �- 11-7-1 r-----1-------L \ ! ` -------- --- , I � Mount 112"Rigid Conduit, properlygrounded � � �---------- �%--� I according to the N EC. reaching 2-3ft above the I ......... jrootlinc with a weather head to fit. The pipe •�= needs to be supported on the underside of the ie a q roof to be as stable as possible and should be I Bran roerxrnr \ cull,`. —`� j exposed below with a minimum of 12" clearance m i I frothe end. This will be the only roof \�\ j penetration �\ ti 411 I , '+ Antenna will be mounted toconduit mast using) h--------}�--------`------, 12' U-Bolts. C'olmcction from antenna to cable t ' needs to be scaled with weather scat \ top c. fsji '__ .•._,i �i r ,` i i 4•� / � V, � , __... \`� �-__ —F r/r— �\�` r•-_.� a •v 1 .._ f_-_-_4._- ------- i----------------- -� - Pictograms Eegend © Antenna Cobras legend Via i LDF4-50A ; ,.t^lomti+tbn lap�ntl 800 - Public Safety / 800 MHz - SMR - Analog / 1 Sectors i raw Ed— lPeost oft" u ed 1 i l Roar lei 91112 15 Pope] ] REC IV® IFIRIF Copy JAN 14 2015 DEVELOPMENI SERVICES CTR. CITY OF DMONDS --- ---- -T YI Use Pope 7 of --- --- ---- T-' F li , It I ri- 1-7f JMD Tl— L4L� F7, fg, ( t�t Sa— II 0 { to 1 1 iFIN J Pt i 4 I — kIW R Naw ENm,Mf Pm OIBca MbaE Uas LereU annms Pope ] al6 II ...—_�I Eli �T c7 �se■ 11yj' �• d� x it FFI E '�,�` © o o �� '�'� c � 1 . �Y<i8��;11}Ilt. @ ...•���rS .�_ 'i ,+:�Ih ►:uiiiiin� _��a i 1l+ ii P R P M�M� 1 I iL't . ; I P I e ' �r � jEt t I r CIF I� eo _�E.!rrr III !I �L1 OCCS li, 1 i 3�� il�al."Q37T i��fr�'�� 1i . i �na:lrnGr�illl Jl som I "aME tritlo'; 1 maM.". 1, N I I eyy _— _Ittltl11111F M_ c . i ER NO lrz� wl� •� tlllllllll 1 �I 0�''Q�.- 0 -- an Ii !AIg sm ,IPA 'lip�m MEMS FL,=Wo Po WA re �_ d�� GAT � ������� �. I �,,�,i,_�ii __� _ r Q7 All" eiqmv -! R 0 um,vt IL-m- ..+.._ ��_—_r��.��� 2 -a ISO', Is IN Now Ed- Pool OM. Mixed U- L..3 Nw Edm P-ORw Mf Uw L.- A - r Link Budget Report Project name: New Edmonds Post Office Mixed Use Design company: 4 2U�5 Project creation date: 9/11/2015 Designer: JAN 1 — n kl*r ANT1 (dBd) CELLMAX-O-CPUSE -0.7 -8.1 - - - - - - - - MS RSSI [dBm] - - -77.4 - - - - - - - MS signal range [feet] - 207.4 - - - - - - - JMP2 RG-142 NM-NM-2' Jumper -0.4 -7. - - - - - - - SPT2 CK-54N - -15.0 -7. - - - - - - - - CBL1 AL4RPV50 19.71 -0.6 8. - - - - - - - SPTO CK-56N -1.9 8.5 - - - - - - - - JMPO RG-142 NM-NM-2' Jumper -0.4 10.4 - - - - - - - BDAO H7S2727 - 80.0 10.8 - - - - - - - JMP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - - - MSCO IS-50NX-C2-MA -0.1 -68.9 - - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - - Donor (ANTO) MCR806 1 10.7 -67. - - - - - - Created on 1/13/2016 Page 1 / 15 ANT2 ANT2 (dBd) CELLMAX-O-CPUSE - -0.7 -9.0 - - - - - - M.S RSSI [dBm] - -78.3 - - - - - - - - MS signal range [feet] - 189.4 - - - - - - CBL8 AL4RPV50 17.31 -0.5 -8.3 - - - - - - SPT6 CK-52N - -7.0 -7.8 - - - - - - - CBL3 AL4RPV50 43.38 -1.1 -0.8 - - - - - - - SPT3 CK-57N -1.1 0.3 - - - - - - - - CBL9 AL4RPV50 69.2 -1.7 1.3 - - - - - - - SPT7 D2-78FN -3.5 3. - - - - - - - CBL2 AL4RPV50 24.59 -0.7 6.5 - - - - - - - SPT2 CK-54N -0.7 7.2 - - - - - - - CBL1 AL4RPV50 19.71 -0.6 8. - - - - - - - SPTO CK-56N - -1.9 8.5 - - - - - - JMPO RG-142 NM-NM-2' Jumper -0.4 10.4 - - - - - - - BDAO H7S2727 80.0 10.8 - - - - - - - - 1MP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - - MSCO IS-50NX-C2-MA -0.1 -68.9 - - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - Donor (ANTO) MCR806 10.7 -67. - - - - - - - - Created on 1/13/2016 Page 2 / 15 ANT3 ANT3 (dBd) CELLMAX-O-CPUSE -0.7 -10.1 - - - - - - - MS RSSI [dBm] - -79.5 - - - - - - - MS signal range [feet] - 169.8 - - - - - - - - CBL4 AL4RPV50 29.47 -0.8 -9.5 - - - - - - - SPT3 CK-57N -10.0 -8.7 - - - - - - - CBL9 AL4RPV50 69.2 -1.7 1.3 - - - - - - - - SPT7 D2-78FN -3.5 3. - - - - - - - CBL2 AL4RPV50 24.59 -0.7 6.15 - - - - - - - SPT2 CK-54N -0.7 7.2 - - - - - - - CBL1 AL4RPV50 19.71 -0.6 8.0 - - - - - - - - SPTO CK-56N -1.9 8.5 - - - - - - - - JMPO RG-142 NM-NM-2' Jumper -0.4 10. - - - - - - - BDAO H7S2727 80.0 10.8 - - - - - - - - JMP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - - - MSCO IS-50NX-C2-MA - -0.1 -68.9 - - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - - Donor (ANTO) MCR806 10.7 -67. - - - - - - - Created on 1/13/2016 Page 3 / 15 ANT4 ANT4 (dBd) CELLMAX-0-CPUSE -0.7 -10.4 MS RSSI [dBm] - -79.7 - MS signal range [feet] - 165.6 JMP3 RG-142 NM-NM-2' Jumper -0.4 -9.7 SPT4 CK-57N -10.0 -9.3 CBL7 AL4RPV50 93.1 -2.3 0.7 SPT1 CK-57N -1.1 2.9 - - - - - - WPM RG-142 NM-NM-2' Jumper -0.4 4. - - - - - - - SPTO CK-56N -6.0 4.4 - - - - - - JMPO RG-142 NM-NM-2' Jumper -0.4 10.4 - - - - - - - BDAO H7S2727 80.0 10.8 - - - - - - JMP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - MSCO IS-50NX-C2-MA - -0.1 -68.9 - - - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8- Donor (ANTO) MCR806 10.7 -67. - - - - - - - - Created on 1/13/2016 Page 4 / 15 ANTS ANT5 (dBd) CELLMAX-0-CPUSE -0.7 -10. - - - - - - MS RSSI [dBm] - -79.4 - - - - - - MS signal range [feet] - 171.0 - - - - - - - - CBL6 AL4RPV50 38.65 -1.0 -9. - - - - - - SPT5 D2-78FN -3.5 -8. - - - - - - - CBL5 AL4RPV50 104.54 -2.5 -4.9 - - - - - - - SPT8 CK-52N -1.6 -2.3 - - - - - - JMP5 RG-142 NM-NM-2' Jumper -0.4 -0.8 - - - - - - - SPT4 CK-57N -1.1 -0. - - - - - - CBL7 AL4RPV50 93.10 -2.3 0.7 - - - - - - SPTl CK-57N -1.1 2.9 - - - - - - - JMP10 RG-142 NM-NM-2' Jumper -0.4 4. - - - - - - - - SPTO CK-56N -6.0 4.4 - - - - - - - JMPO RG-142 NM-NM-2' ' Jumper -0.4 10.4 - - - - - - - - BDAO H7S2727 80.0 10.8 - - - - - - 1MP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - - MSCO IS-50NX-C2-MA - -0.1 -68.9 - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - - Donor (ANTO) MCR806 - 10.7 -67.4 - - - - - - - Created on 1/13/2016 Page 5 / 15 A NT6 ANT6 (dBd) CELLMAX-O-CPUSE -0.7 -9. - - - - - - MS RSSI [dBm] - -78.8 - - - - - - - MS signal range [feet] - 181.8 - - - - - - - 1MP4 RG-142 NM-NM-2' Jumper -0.4 -8.8 - - - - - - - SPTS D2-78FN -3.5 -8.4 - - - - - - CBLS AL4RPV50 104.54 -2.5 -4.9 - - - - - - SPT8 CK-52N -1.6 -2.3 - - - - - - - JMPS RG-142 NM-NM-2' Jumper -0.4 -0.8 - - - - - - SPT4 CK-57N -1.1 -0. - - - - - - - CBL7 AL4RPV50 93.10 -2.3 0.7 - - - - - - - SPT1 CK-57N -1.1 2.9 - - - - - - - JMP10 RG-142 NM-NM-2' Jumper -0.4 4. - - - - - - - SPTO CK-56N -6.0 4. - - - - - - - JMPO RG-142 NM-NM-2' Jumper -0.4 10. - - - - - - - BDAO H7S2727 80.0 10.8 - - - - - - - 1MP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - MSCO IS-50NX-C2-MA -0.1 -68.9 - - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - Donor (ANTO) MCR806 10.7 -67. - - - - - - Created on 1/13/2016 Page 6 / 15 CNT7 ANT7 (dBd) CELLMAX-o-CPUSE - -0.7 - -8.6 - - - - - - MS RSSI [dBm) - -77.9 - - - - - - - MS signal range [feet] - 197.9 - - - - - - - - 1MP6 RG-142 NM-NM-2' Jumper -0.4 -7.9 - - - - - - - SPT9 D2-78FN -3.5 -7.5 - - - - - - - CBL12 AL4RPV50 64.67 -1.6 -4. - - - - - - - - SPT6 CK-52N -1.6 -2. - - - - - - CBL3 AL4RPV50 43.38 -1.1 -0.8 - - - - - - SPT3 CK-57N -1.1 0.3 - - - - - - CBL9 AL4RPV50 69.24 -1.7 1.3 - - - - - - - SPT7 D2-78FN -3.5 3. - - - - - - CBL2 AL4RPV50 24.59 -0.7 6.5 - - - - - - - SPT2 CK-54N -0.7 7.2 - - - - - - - CBL1 AL4RPV50 19.71 -0.6 8. - - - - - - - SPTO CK-56N - -1.9 8.5 - - - - - JMPO RG-142 NM-NM-2' Jumper -0.4 10. - - - - - - - BDAO H7S2727 80.0 10.8. - - - - - - - - JMP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - - MSCO IS-50NX-C2-MA -0.1 -68.9 - - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - - - Donor (ANTO) MCR806 16.7 -67. - - - - - Created on 1/13/2016 Page 7 / 15 ANT8 ANT8 (dBd) CELLMAX-O-CPUSE -0.7 -8.2 - - - - - - - MS RSSI [dBm] - -77.6 - - - - - - MS signal range [feet] - 204.7 - - - - - - - - CBL11 AL4RPV50 62.29 -1.6 -7.6 - - - - - - SPTl CK-57N -10.0 -6. - - - - - - - WHO RG-142 NM-NM-2' Jumper -0.4 4.0 - - - - - - - SPTO CK-56N -6.0 4. - - - - - - - JMPO RG-142 NM-NM-2' Jumper -0.4 10. - - - - - - BDAO H7S2727 80.0 10.8 - - - - - JMP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - MSCO IS-50NX-C2-MA - -0.1 -68.9 - - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - Donor (ANTO) MCR806 10.7 -67. ' - - - - - - Created on 1/13/2016 Page 8 / 15 ANT9 ANT9 (dBd) CELLMAX-0-CPUSE -0.7 -9.2 - - - - - - MS RSSI [dBm] - -78.5 - - - - - - - MS signal range [feet] - 186.0 - - - - - - - JMP7 RG-142 NM-NM-2' Jumper -0.4 -8.5 - - - - - - - SPT11 CK-51N -5.0 -8.2 - - - - - - - CBL14 AL4RPV50 88.72 -2.2 -3.2 - - - - - - - - SPT12 CK-52N -1.6 -1. - - - - - - - JMP9 RG-142 NM-NM-2' Jumper -0.4 0. - - - - - - SPT10 CK-57N -1.1 1. - - - - - - CBL15 AL4RPV50 39.3 -1.0 2. - - - - - - - SPT7 D2-78FN -3.5 3. - - - - - - - CBL2 AL4RPV50 24.59 -0.7 6.5 - - - - - - SPT2 CK-54N -0.7 7.2 - - - - - - CBL1 AL4RPV50 19.71 -0.6 8.0 - - - - - - - SPTO CK-56N -1.9 8.5 - - - - - - 1MPO RG-142 NM-NM-2' Jumper -0.4 10. - - - - - - - - BDAO H7S2727 80.0 10.8 - - - - - - - JMP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - - - MSCO IS-50NX-C2-MA -0.1 -68.9 - - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - - Donor (ANTO) MCR806 10.7 -67.4 - - - - - - - i Created on 1/13/2016 Page 9 / 15 A IUT1 A ANT10 (dBd) CELLMAX-O-CPUSE -0.7 -9.0 - - - - - - MS RSSI [dBm] - -78.4 - - - - - - - MS signal range [feet] - 189.3 - - - - - - - - JMPB RG-142 NM-NM-2' Jumper -0.4 -8. - - - - - - - - SPT10 CK-57N -10.0 -8. - - - - - CBL15 AL4RPV50 39.36 -1.0 2. - - - - - - - SPT7 D2-78FN -3.5 3.0 - - - - - - - CBL2 AL4RPV50 24.59 -0.7 6.5 - - - - - - - SPT2 CK-54N -0.7 7.2 - - - - - - CBL1 AL4RPV50 19.71 -0.6 8. - - - - - - - SPTO CK-56N -1.9 8.5 - - - - - - JMPO RG-142 NM-NM-2' Jumper -0.4 10.4 - - - - - - - BDAO H7S2727 80.0 10.8 - - - - - JMP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - - MSCO IS-50NX-C2-MA -0.1 -68.9 - - - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - Donor (ANTO) MCR806 10.7 -67. - - - - - - Created on 1/13/2016 Page 10 / 15 AIUT11 ANT11 (dBd) CELLMAX-O-CPUSE -0.7 -9. - - - - - - - MS RSSI [dem] - -78.3 - - - - - - MS signal range [feet] - 189.9 - - - - - - - - CBL13 AL4RPV50 29.91 -0.8 -8.3 - - - - - - - SPT9 D2-78FN -3.5 -7.5 - - - - - - - CBL12 AL4RPV50 64.67 -1.6 -4. - - - - - - - SPT6 CK-52N -1.6 -2. - - - - - - CBL3 AL4RPV50 43.38 -1.1 -0.8 - - - - - - - SPT3 CK-57N -1.1 0.3 - - - - - - - CBL9 AL4RPV50 69.2 -1.7 1.3 - - - - - - - SPT7 D2-78FN -3.5 3. - - - - - - - - CBL2 AL4RPV50 24.59 -0.7 6.5 - - - - - - - SPT2 CK-54N -0.7 7.2 - - - - - - - CBL1 AL4RPV50 19.71 -0.6 8. - - - - - - - SPTO CK-56N -1.9 8.5 - - - - - - - - JMPO RG-142 NM-NM-2' Jumper -0.4 10.4 - - - - - - - BDAO H7S2727 ' 80.0 10.8 - - - - - - - JMP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - - MSCO IS-50NX-C2-MA -0.1 -68.9 - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - - - Donor (ANTO) MCR806 - 10.7 -67. - - - - - - - - Created on 1/13/2016 Page 11 / 15 ANT12 ANT12 (dBd) CELLMAX-O-CPUSE - -0.7 -8. - - - - - - - MS RSSI [dBm] - -77.3 - - - - - - - MS signal range [feet] - 209.7 - - - - - - - CBL16 AL4RPV50 34.2 -0.9 -7.3 - - - - - - - SPT12 CK-52N -7.0 -6.4 - - - - - - - - JMP9 RG-142 NM-NM-2' Jumper -0.4 0. - - - - - - - SPT10 CK-57N -1.1 1. - - - - - - - CBL15 AL4RPV50 39.36 -1.0 2.0 - - - - - - - SPT7 D2-78FN -3.5 3. - - - - - - - CBL2 AL4RPV50 24.59 -0.7 6.5 - - - - - - - SPT2 CK-54N -0.7 7.2 - - - - - - - CBL1 AL4RPV50 19.71 -0.6 8. - - - - - - - SPTO CK-56N -1.9 8.5 - - - - - - - - JMPO RG-142 NM-NM-2' Jumper -0.4 10.4 - - - - - - - BDAO H7S2727 80.0 10.8 - - - - - - - JMP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - - - MSCO IS-50NX-C2-MA -0.1 -68.9 - - - - - - - CBLO LDF4-SOA 62.77 -1.4 -68.8 - - - - - - - Donor (ANTO) MCR806 10.7 -67. - - - - - - - Created on 1/13/2016 Page 12 / 15 ANTI q ANT13 (dBd) CELLMAX-O-CPUSE - -0.7 -8.3 - - - - - - MS RSSI [dBm] - -77.7 - - - - - - - MS signal range [feet] - 202.0 - - - - - - - CBL17 AL4RPV50 93.93 -2.3 -7.7 - - - - - - - - SPT11 CK-51N -2.3 -5. - - - - - - - CBL14 AL4RPV50 88.72 -2.2 -3.2 - - - - - - SPT12 CK-52N -1.6 -1. - - - - - - JMP9 RG-142 NM-NM-2' Jumper -0.4 0. - - - - - - - - SPT10 CK-57N -1.1 1. - - - - - - - CBL15 AL4RPV50 39.36 -1.0 2.0 - - - - - - - SPT7 D2-78FN -3.5 3. - - - - - - - CBL2 AL4RPV50 24.59 -0.7 6.5 - - - - - - - SPT2 CK-54N -0.7 7.2 - - - - - - - CBL1 AL4RPV50 19.71 -0.6 8. - - - - - - SPTO CK-56N - -1.9 8.5 - - - - - - - 1MPO RG-142 NM-NM-2' Jumper -0.4 10. - - - - - - - BDAO H7S2727 80.0 10.8 - - - - - - - JMP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - - - MSCO IS-50NX-C2-MA -0.1 -68.9 - - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - - Donor (ANTO) MCR806 10.7 -67. - - - - - - - Created on 1/13/2016 Page 13 / 15 ANT1a ANT14 (dBd) CELLMAX-O-CPUSE - -0.7 -9.4 - - - - - - - MS RSSI [dBm] - -78.8 - - - - - - - MS signal range [feet] - 181.9 - - - - - - - CBL10 AL4RPV50 37.92 -1.0 -8.8 - - - - - - - - SPT8 CK-52N -7.0 -7.8 - - - - - - - JMPS RG-142 NM-NM-2' Jumper -0..4 -0.8 - - - - - - - SPT4 CK-57N -1.1 -0.4 - - - - - - - CBL7 AL4RPV50 93.1 -2.3 0.7 - - - - - - - SPT1 CK-57N -1.1 2.9 - - - - - - - JMP10 RG-142 NM-NM-2' Jumper -0.4 4. - - - - - - - SPTO CK-56N -6.0 4. - - - - - - - JMPO RG-142 NM-NM-2' Jumper -0.4 10.4 - - - - - - - BDAO H7S2727 80.0 10.8 - - - - - - - JMP1 RG-142 NM-NM-2' Jumper -0.4 -69.2 - - - - - - - MSCO IS-50NX-C2-MA 70.1 -68.9 - - - - - - - CBLO LDF4-50A 62.77 -1.4 -68.8 - - - - - - - Donor (ANTO) MCR806 10.7 -67. - - - - - - - - Wnruw OVV IYIIIL - alvi Isotropic offset - nnaw ry n - 2.2 -67. - - - - - - - OffAir- Donor Gain (dBd) MCR806 8.5 -69.5 - - - - - - - Measured RSSI - - -78. - - - - - - - Power out - - -67. - - - - - - - Created on 1/13/2016 Page 14 / 15 MHz - SMR - Analog - Sector N/A / 800 - Public Safety / Analog / 800 MHz - SMR Band / PS - NPSPAC Block / Nb. of channels: 11 / Nb. of sources: 1 MHz - SMR - Analog - Sector N/A / MS RSSI [dBm] (at 98.4 [feet]) / MS signal range [feet] (for -85.0 [dBm)) Created on 1/13/2016 Page 15 / 15 FIRE SERVICE FEATURES vided with emergency lighting, each exit stair that allows reentry, exit stairs pro- viding roof access; elevator information that includes: number of elevator banks, elevator bank designation, elevator car numbers and respective floors that they serve, location of elevator machine rooms, location of sky lobby, location of freight elevator banks; 13.5. Building services and system information that includes: location of mechanical rooms, location of building management system, location and capacity of all fuel oil tanks, location of emergency genera- tor, location of natural gas service; 13.6. Fire protection system information that includes: locations of standpipes, location of fire pump room, location of fire depart- ment connections, floors protected by automatic sprinklers, location of differ- ent types of automatic sprinkler systems installed (e.g., dry, wet, pre -action, etc.); and 13.7. Hazardous material information that includes: location of hazardous material, quantity of hazardous material. 14. Work table. 15. Generator supervision devices, manual start and transfer features. 16. Public address system, where specifically required by other sections of this code. 17. Elevator fire recall switch in accordance with ASME A17.1. 18. Elevator emergency or standby power selector switch(es), where emergency or standby power is provided. SECTION 509 FIRE PROTECTION AND UTILITY EQUIPMENT IDENTIFICATION AND ACCESS 509.1 Identification. Fire protection equipment shall be identified in an approved manner. Rooms containing controls for air-conditioning systems, sprinkler risers and valves, or other fire detection, suppression or control elements shall be identified for the use of the fire department. Approved signs required to identify fire protection equipment and equipment location shall be constructed of durable materials, perma- nently installed and readily visible. 509.1.1 Utility identification. Where required by the fire code official, gas shutoff valves, electric meters, service switches and other utility equipment shall be clearly and �. legibly marked to identify the unit or space that it serves. Identification shall be made in an approved manner, read- ily visible and shall be maintained. 509.2 Equipment access. Approved access shall be provided and maintained for all fire protection equipment to permit immediate safe operation and maintenance of such equip- ment. Storage, trash and other materials or objects shall not be placed or kept in such a manner that would prevent such equipment from being readily accessible. SECTION 510 EMERGENCY RESPONDER RADIO COVERAGE 510.1 Emergency responder radio coverage in new build- ings. All new buildings shall have approved radio coverage for emergency responders within the building based upon the existing coverage levels of the public safety communication systems of the jurisdiction at the exterior of the building. This section shall not require improvement of the existing public safety communication systems. Exceptions: 1. Where approved by the building official and the fire code official, a wired communication system in accordance with Section 907.2.13.2 shall be permit- ted to be installed or maintained in lieu of an approved radio coverage system. 2. Where it is determined by the fire code official that the radio coverage system is not needed. 3. In facilities where emergency responder ^ adio cover- age is required and such systems, -components or equipment required could have a negative impact on the normal operations of that facility, the fire code official shall have the authority to accept an auto- matically activated emergency responder radio cov- erage system. 510.2 Emergency responder radio coverage in existing buildings. Existing buildings shall be provided with approved radio coverage for emergency responders as required in Chapter 11. 510.3 Permit required. A construction permit for the instal- lation of or modification to emergency responder radio cover- age systems and related equipment is required as specified in Section 105.7.5. Maintenance performed in accordance with this code is not considered a modification and does not require a permit. 510.4 Technical requirements. Systems, components, and equipment required to provide emergency responder radio coverage system shall comply with Sections 51 f.4.1 through 511.4.2.5. 510.4.1 Radio signal strength. The building shall be con- sidered to have acceptable emergency responder radio coverage when signal strength measurements in 95 percent of all areas on each floor of the building meet the signal strength requirements in Sections 510.4.1.1 and 510.4.1.2. 510.4.1.1 Minimum signal strength into the build- ing. A minimum signal strength of -95 dBm shall be receivable within the building. 510.4.1.2 Minimum signal strength out of the build- ing. A minimum signal strength of -95 dBm shall be 2012 INTERNATIONAL FIRE CODE® 67 FIRE SERVICE FEATURES received by the agency's radio system when transmit- ted from within the building. 510.4.2 System design. The emergency responder radio coverage system shall be designed in accordance with Sec- tions 510.4.2.1 through 510.4.2.5. 510.4.2.1 Amplification systems allowed. Buildings and structures which cannot support the required level of radio coverage shall be equipped with a radiating cable system, a distributed antenna system with Federal Communications Commission (FCC) -certified signal boosters, or other system approved by the fire code offi- cial in order to achieve the required adequate radio cov- erage. 510.4.2.2 Technical criteria. The fire code official shall maintain a document providing the specific tech- nical information and requirements for the emergency responder radio coverage system. This document shall contain, but not be limited to, the various frequencies required, the location of radio sites, effective radiated power of radio sites, and other supporting technical information. 510.4.2.3 Secondary power. Emergency responder radio coverage systems shall be provided with an approved secondary source of power. The secondary power supply shall be capable of operating the emer- gency responder radio coverage system for a period of at eas ws. When primary power is lost, the power supply to the emergency responder radio cover- age system shall automatically transfer to the secondary pow r supply. 510.4.2.4 Signal booster requirements. If used, signal boosters shall meet the following requirements: 1. All signal booster components shall be contained in a National Electrical Manufacturer's Associa- tion (NEMA) 4-type waterproof cabinet. 2. Battery systems used for the emergency power source shall be contained in a NEMA 4-type waterproof cabinet. 3. The signal booster system and battery system shall be electrically supervised and monitored by a supervisory service, or when approved by the fire code official, shall sound an audible signal at a constantly attended location. 4. uipment_shall-haye_ECC certification prior to installation. 510.4.2.5 Additional frequencies and change of fre- quencies. The emergency responder radio coverage system shall be capable of modification or expansion in the event frequency changes are required by the FCC or additional frequencies are made available by the FCC. 510.5 Installation requirements. The installation of the pub- lic safety radio coverage system shall be in accordance with Sections 510.5.1 through 510.5.5. 510.5.1 Approval prior to installation. Amplification systems capable of operating on frequencies licensed to any public safety agency by the FCC shall not be installed without prior coordination and approval of the fire code official. 510.5.2 Minimum qualifications of personnel. The mini- mum qualifications of the system designer and lead instal- lation personnel shall include: 1. A valid FCC -issued general radio operators license; and 2. Certification of in -building system training issued by a nationally recognized organization, school or a certificate issued by the manufacturer of the equip- ment being installed. These qualifications shall not be required where dem- onstration of adequate skills and experience satisfactory to the fire code official is provided. 510.5.3 Acceptance test procedure. When an emergency responder radio coverage system is required, and upon completion of installation, the building owner shall have the radio system tested to ensure that two-way coverage on each floor of the building is a minimum of 90 percent. The test procedure shall be conducted as follows: 1. Each floor of the building shall be divided into a grid of 20 approximately equal test areas. 2. The test shall be conducted using a calibrated porta- ble radio of the latest brand and model used by the agency talking through the agency's radio com- munications system. 3. Failure of a maximum of two nonadjacent test areas shall not result in failure of the test. 4. In the event that three of the test areas fail the test, in order to be more statistically accurate, the floor shall be permitted to be divided into 40 equal test areas. Failure of a maximum of four nonadjacent test areas shall not result in failure of the test. If the system fails the 40-area test, the system shall be altered to meet the 90 percent coverage requirement. 5. A test location approximately in the center of each test area shall be selected for the test, with the radio enabled to verify two-way communications to and from the outside of the building through the public agency's radio communications system. Once the test location has been selected, that location shall represent the entire test area. Failure in the selected test location shall be considered failure of that test area. Additional test locations shall not be permitted. 6. The gain values of all amplifiers shall be measured and the test measurement results shall be kept on file with the building owner so that the measurements can be verified during annual tests. In the event that the measurement results become lost, the building owner shall be required to rerun the acceptance test to reestablish the gain values. 7. As part of the installation a spectrum analyzer or other suitable test equipment shall be utilized to .: ensure spurious oscillations are not being generated by the subject signal booster. This test shall be con - fib 2012 INTERNATIONAL FIRE CODE® FIRE SERVICE FEATURES ducted at time of installation and subsequent annual inspections. 510.5.4 FCC compliance. The emergency responder radio coverage system installation and components shall also comply with all applicable federal regulations includ- ing, but not limited to, FCC 47 CFR Part 90.219. 510.6 Maintenance. The emergency responder radio cover- age system shall be maintained operational at all times in accordance with Sections 510.6.1 through 510.6.3. 510.6.1 Testing and proof of compliance. The emer- gency responder radio coverage system shall °belin*pected ajidste gt &annuaByror henever strut- tt�a`lr anges �r tineluding& ddirions Qr remtliat cou.il maatenally dhangw ter rigin�d1rformance tests. Testinrshall consist of the following: 1. In -building coverage test as described in Section 510.5.4. 2. Signal boosters shall be tested to ensure that the gain is the same as it was upon initial installation and acceptance. 3. Backup batteries and power supplies shall be tested under load of a period of one hour to verify that they will properly operate during an actual power outage. If within the 1-hour test period the battery exhibits symptoms of failure, the test shall be extended for additional 1-hour periods until the integrity of the battery can be determined. 4. All other active components shall be checked to ver- ify operation within the manufacturer's specifica- tions. 5. At e conclusion of the testing, a report, which shall verify compliance with Section 510.5.4, shall be submitted to the fire code official. 510.6.2 Additional frequencies. The building owner shall modify or expand the emergency responder radio coverage system at their expense in the event frequency changes are required by the FCC or additional frequencies are made available by the FCC. Prior approval of a public safety radio coverage system on previous frequencies does not exempt this section. 510.6.3 Field testing. Agency personnel shall have the right to enter onto the property at any reasonable time to conduct field testing to verify the required level of radio coverage. 2012 INTERNATIONAL FIRE CODE® 69 .l Product Specifications 00 AHDREWe ' A CommScope Company AL4RPV-50 AL4RPV-50, HELIAX@ Plenum Rated Air Dielectric Coaxial Cable, corrugated aluminum, 1/2 in, off white PVC jacket j mil. r •�- .� ..-. � �- � i � ] This.pro8'uct is part of,the CommScope Wtred"for Wireless'"" Solution CHARACTERISTICS Construction Materials Jacket Material Dielectric Material Flexibility Inner Conductor Material Jacket Color Outer Conductor Material Dimensions Nominal Size Cable Weight Diameter Over Jacket Inner Conductor OD Outer Conductor OD Electrical Specifications Cable Impedance Capacitance do Resistance, Inner Conductor do Resistance, Outer Conductor do Test Voltage Inductance Insulation Resistance Jacket Spark Test Voltage (rms) Operating Frequency Band Peak Power Power Attenuation Pulse Reflection Velocity Environmental Specifications Installation Temperature www.commscope.com/andrew RECEIVED JAN 14 2015 OEVELOPMENT SERVICES CTR. PVC CITY OF EDMONDS PE spline Standard Copper -clad aluminum wire Off white Corrugated aluminum FIRE Copy, 1/2 in 0.21 kg/m 1 0.14 Ib/ft 15.926 mm 1 0.627 in 4.5720 mm 1 0.1800 in 14.046 mm 1 0.553 in 50 ohm t2 ohm 76.0 pF/m 1 23.0 pF/ft 1.570 ohms/km 1 0.480 ohms/kft 1.570 ohms/km 1 0.480 ohms/kft 4000 V 0.190 pH/m I 0.058 uH/ft 100000 MOhm 5000 V 1 - 6000 MHz 40.0 kW 2.325 0.5% 86.5% -20 °C to +60 °C (-4 OF to +140 OF) ©2011 CommScope, Inc. All rights reserved. All trademarks identified by ® or 11 are registered trademarks or trademarks, respectively, of CommScope.All specifications are subject to change. page 1 of 4 See www.commscope.com/andrew for the most current information. 5/3/201 1 r Product Spec-ifications AL4RPV-50 Operating Temperature -20 °C to +85 °C (-4 OF to +185 OF) Storage Temperature -20 °C to +85 °C (-4 OF to +185 OF) General Specifications Brand Mechanical Specifications Bending Moment Flat Plate Crush Strength Minimum Bend Radius, Multiple Bends Minimum Bend Radius, Single Bend Number of Bends, minimum Tensile Strength HELIAX® 6.8 N-m 1 5.0 ft lb 1.4 kg/mm 1 80.0 lb/in 127.00 mm i 5.00 in 64.00 mm 1 2.50 in 15 159 kg i 350 lb Standard Conditions Attenuation, Ambient Temperature 20 °C i 68 OF Average Power, Ambient Temperature 40 °C 1 104 OF Average Power, Inner Conductor Temperature 100 °C j 212 OF Return Loss/VSWR Frequency Band VSWR Return Loss (dB) 806-960 MHz 1.25 19.00 1700-2200 MHz 1.25 19.00 AHDREW® A CommScope Company www.cor6mscope.com/andrew ©201 1 CommScope, Inc. All rights reserved. All trademarks identified by ® or TM are registered trademarks or trademarks, respectively, of CommScope.All specifications are subject to change See www.commscope.com/andrew for the most current information. page 2 of 4 5/3/2011 Product Specifications AL4RPV-50 Attenuation ANDREW® A CommScope Company Frequency (MHz) Attenuation (dB/100 m) Attenuation (dB/100 ft) Average Power (kW) 0.5 0.152 0.046 40.00 1 0.216 0.066 35.37 1.5 0.264 0.081 28.84 2 0.306 0.093 24.95 10 0.691 0.211 11.04 20 0.985 0.3 7.75 30 1.213 0.37 6.29 50 1.581 0.482 4.83 88 2.126 0.648 3.59 100 2.274 0.693 3.35 108 2.368 0.722 3.22 150 2.821 0.86 2.70 174 3.054 0.931 2.50 200 3.292 1.003 2.32 300 4.104 1.251 1.86 400 4.808 1.466 1.59 450 5.134 1.565 1.49 500 5.445 1.659 1.40 512 5.517 1.682 1.38 600 6.032 1.839 1.26 700 6.583 2.007 1.16 800 7.105 2.166. 1.07 824 7.227 2.203 1.06 894 7.574 2.308 1.01 960 7.892 2.405 0.97 1000 8.081 2.463 0.94 1250 9.207 2.806 0.83 1500 10.256 3.126 0.74 1700 11.053 3.369 0.69 1800 11.439 3.487 0.67 2000 12.192 3.716 0.63 2100 12.559 3.828 0.61 2200 12.92 3.938 0.59 2300 13.276 4.046 0.57 2500 13.975 4.259 0.55 2700 14.656 4.467 0.52 3000 15.649 4.77 0.49 3400 16.928 5.159 0.45 3700 17.859 5.443 0.43 4000 18.768 5.72 0.41 5000 21.671 6.605 0.35 6000 24.42 7.443 0.31 * Values typical, guaranteed within 5% Regulatory Compliance/Certifications Agency Classification UL/ETL Certification CATVP www.commscope.com/andrew 02011 CommScope, Inc. All rights reserved. All trademarks identified by ® or Tm are registered trademarks or trademarks, respectively, of CommScope.All specifications are subject to change. page 3 of 4 See www.commscope.com/andrew for the most current information. 5/3/201 1 0000 Product Specifications, OANDREWe A CommScope Company AL4RPV-50 RoHS 2002/95/EC Compliant ISO 9001:2008 Designed, manufactured and/or distributed under this quality management system RoHS www.commscope.com/andrew ©201 1 CommScope, Inc: All rights reserved. All trademarks identified by ® or TM are registered trademarks or trademarks, respectively, of CommScope.All specifications are subject to change. page 4 of 4 See www.commscope.com/andrew for the most current information. 5/3/201 1 Product Specifications COMMSCOPE. POWERED BYOREW. LDF4-50A LDF4-50A, HELIAX® Low Density Foam Coaxial Cable, corrugated copper, 1/2 in, black PE jacket Construction Materials Jacket Material PE Outer Conductor Material Corrugated copper Dielectric Material Foam PE Flexibility Standard Inner Conductor Material Copper -clad aluminum wire Jacket Color Black Dimensions Nominal Size 1/2 in Cable Weight 0.15 Ib/ft 0.22 kg/m Diameter Over Dielectric 12.954 mm 0.510 in Diameter Over Jacket 15.875 mm 0.625 in Inner Conductor OD 4.8260 mm 0.1900 in Outer Conductor OD 13.970 mm 0.550 in Electrical Specifications Cable Impedance Capacitance do Resistance, Inner Conductor do Resistance, Outer Conductor do Test Voltage Inductance Insulation Resistance Jacket Spark Test Voltage (rms) Operating Frequency Band Peak Power Pulse Reflection Velocity Environmental Specifications Installation Temperature Operating Temperature Storage Temperature General Specifications Brand Mechanical Specifications Bending Moment Flat Plate Crush Strength 50 ohm ±1 ohm 23.1 pF/ft j 75.8 pF/m 0.450 ohms/kft 1 1.480 ohms/km 0.820 ohms/kft 2.690 ohms/km 4000 V 0.190 pH/m 1 0.058 pH/ft 100000 Mohms•km 8000 V 1 - 8800 MHz 40.0 kW 0.5% 88% -40 °C to +60 °C (-40 OF to +140 OF) -55 aC to +85 °C (-67 OF to +185 OF) -70 °C to +85 °C (-94 OF to +185 OF) HELIAX@ 3.8 N-m j 2.8 ft lb 110.0 lb/in j 2.0 kg/mm ©2014 CommScope, Inc. All rights reserved. All trademarks identified by 0 or TM are registered trademarks, respectively, of CommScope. page 1 of 3 All specifications are subject to change without notice. See www.commscope.com for the most current information. Revised: July 26, 2013 January 6, 2014 Product Specifications LDF4-50A Minimum Bend Radius, Multiple Bends Minimum Bend Radius, Single Bend Number of Bends, minimum Number of Bends, typical Tensile Strength 127.00 mm 5.00 in 50.80 mm 2.00 in 15 50 113 kg 1 250 lb Note Performance Note Values typical, unless otherwise stated Standard Conditions Attenuation, Ambient Temperature 20 °C 68 OF Average Power, Ambient Temperature 40 °C 104 OF Average Power, Inner Conductor Temperature 100 °C j 212 OF Return Loss/VSWR COMMSCOPEa POWERED BYOREW, Frequency Band VSWR Return Loss (dB) 806-960 MHz 1.13 24.30 1700-2000 MHz 1.13 24.30 Attenuation Frequency (MHz) Attenuation (dB/100 m) Attenuation (dB/100 ft) Average Power (kW) 0.5 0.149 0.045 40.00 1 0.211 0.064 36.11 1.5 0.259 0.079 29.46 2 0.299 0.091 25.50 10 0.672 0.205 11.35 20 0.954 0.291 7.99 30 1.172 0.357 6.51 50 1.521 0.463 5.02 88 2.031 0.619 3.76 100 2.169 0.661 3.52 108 2.256 0.688 3.38 150 2.673 0.815 2.85 174 2.887 0.88 2.64 200 3.103 0.946 2.46 300 3.835 1.169 1.99 400 4.462 1.36 1.71 450 4.749 1.447 1.61 500 5.021 1.53 1.52 512 5.085 1.55 1.50 600 5.533 1.686 1.38 700 6.009 1.831 1.27 800 6.456 1.968 1.18 824 6.56 1.999 1.16 894 6.855 2.089 1.11 960 7.124 2.171 1.07 1000 7.284 2.22 1.05 1250 8.226 2.507 0.93 1500 9.093 2.771 0.84 1700 9.744 2.97 0.78 1800 10.058 3.066 0.76 ©2014 CommScope, Inc. All rights reserved. All trademarks identified by 0 or TM are registered trademarks, respectively, of CommScope. page 2 of 3 All specifications are subject to change without notice. See www.commscope.com for the most current information. Revised: July 26, 2013 January 6, 2014 Product Specifications LDF4-50A 2000 10.666 2100 10.961 2200 11.251 2300 11.535 2500 12.09 2700 12.627 3000 13.407 3400 14.401 3700 15.118 4000 15.815 5000 18.01 6000 20.055 8000 23.826 8800 25.244 * Values typical, guaranteed within 5% Regulatory Compliance/Certifications 3.251 3.341 3.429 3.516 3.685 3.849 4.086 4.389 4.608 4.82 5.489 6.113 7.262 7.694 COMMSCOPEa POWERED BY TNDREW. 0.72 0.70 0.68 0.66 0.63 0.60 0.57 0.53 0.50 0.48 0.42 0.38 0.32 0.30 Agency Classification ROHS 2011/65/EU Compliant China•RoHS SJ/T 11364-2006 Below Maximum Concentration Value (MCV) ISO 9001:2008 Designed, manufactured and/or distributed under this quality management system ©2014 CommScope, Inc. All rights reserved. All trademarks identified by ® or TM are registered trademarks, respectively, 6f CommScope. page'3 of 3 All specifications are subject to change without notice. See www.commscope.com for the most current information. Revised: July 26, 2013 January 6, 2014 Product Specifications COMMSCOPE® POWERED BY TNpREw L4TNM-PSA Type N Male Positive StopTM for 1/2 in AL4RPV-SO, LDF4-50A cable e This product is part of the CommScope Wired for Wireless@ Solution General Specifications Interface N Male Body Style Straight Brand HELIAX@ I Positive StopTM Harmonized System (HS) Code 854420 (Coaxial cable and other coaxial electric conductors) Mounting Angle Straight Electrical Specifications Connector Impedance 50 ohm Operating Frequency Band 0 - 8800 MHz Cable Impedance 50 ohm 3rd Order IMD, typical -116 dBm @ 910 MHz 3rd Order IMD Test Method Two +43 dBm carriers RF Operating Voltage, maximum (vrms) 707.00 V do Test Voltage 2000 V Outer Contact Resistance, maximum 0.30 mOhm Inner Contact Resistance, maximum 2.00 mOhm Insulation Resistance, minimum 5000 MOhm Average Power 0.6 kW @ 900 MHz Peak Power, maximum 10.00 kW Insertion Loss, typical 0.05 dB Shielding Effectiveness -130 dB @2014 CommScope, Inc. All rights reserved. All trademarks identified by @ or TM are registered trademarks, respectively, of CommScope. page I of 3 All specifications are subject to change without notice. See www.commscope.com for the most current information. Revised: November 18, 2013 January 6, 2014 Product Specifications COMMSCOPE® L4TN/VFPSA POWERED sr �NpREW. Outline Drawing rain) Mechanical Specifications Outer Contact Attachment Method Ring -flare Inner Contact Attachment Method Captivated Outer Contact Plating Trimetal Inner Contact Plating Silver Attachment Durability 25 cycles Interface Durability 500 cycles Interface Durability Method IEC 61169-16:9.5 Connector Retention Tensile Force 890 N 1 200 Ibf Connector Retention Torque 5.42 N-m 48.00 in lb Insertion Force 66.72 N 15.00 Ibf Insertion Force Method MIL-C-39012C-3.12, 4.6.9 Coupling Nut Proof Torque 176.26 N-m 1 1560.00 in lb Coupling Nut Retention Force 444.82 N 1 100.00 Ibf Coupling Nut Retention Force Method MIL-C-39012C-3.25, 4.6.22 Dimensions Nominal Size 1/2 in Diameter 22.35 mm 0.88 in Length 76.70 mm 3.02 in Weight 94.71 g 1 0.21 lb Environmental Specifications Operating Temperature -55 °C to +85 °C (-67 OF to +185 OF) Storage Temperature -55 °C to +85 °C (-67 OF to +185 OF) ©2014 CommScope, Inc All rights reserved All trademarks identified by ® or TM are registered trademarks, respectively, of CommScope page 2 of 3 All specifications are subject to change without notice. See www.commscope.com for the most current information. Revised: November 18, 2013 January 6, 2014 Product Specifications COMMSCOPE® L4TNM-PSA POWERED BY NOREW. Immersion Depth 1 m Immersion Test Mating Unmated Immersion Test Method IEC 60529:2001, IP68 Water Jetting Test Mating Unmated Water Jetting Test Method . IEC 60529:2001, IP66 Moisture Resistance Test Method MIL-STD-20217, Method 106F Mechanical Shock Test Method MIL-STD-202, Method 213, Test Condition I Thermal Shock Test Method MIL-STD-202F, Method 107G, Test Condition A-1, Low Temperature -55 °C Vibration Test Method IEC 60068-2-6 Corrosion Test Method MIL-STD-1344A, Method 1001.1, Test Condition A Return Loss/VSWR Frequency Band VSWR Return Loss (dB) 45-1000 MHz 1.02 39.00 1010-2200 MHz 1.03 37.00 2210-3000 MHz 1.05 33.00 3010-4000 MHz 1.09 27.00 4010-6000 MHz 1.25 19.00 6010-8000 MHz 1.33 17.00 Regulatory Compliance/Certifications Agency Classification RoHS 2011/65/EU Compliant by Exemption China RoHS SJ/T 11364-2006 Above Maximum Concentration Value (MCV) ISO 9001:2008 Designed, manufactured and/or distributed under this quality management system * 00 * Footnotes Immersion Depth Immersion at specified depth for 24 hours Insertion Loss, typical 0.05V-freq (GHz) (not applicable for elliptical waveguide) ©2014 CommScope, Inc. All rights reserved. All trademarks identified by ® or TM are registered trademarks, respectively, of CommScope. page 3 of 3 All specifications are subject to change without notice. See www.commscope.com for the most current information. Revised: November 18, 2013 January 6, 2014 PUBLIC SAFETY 800 MHz DIGITAL REPEATERS PS800 MHz • Class A Product Features Channel Selective, software programmable • Fully digital repeater, FPGA based • Auto diagnostic • Uplink and downlink squelch, per channel and per time slot • User adjustable gain control, UL and DL independent, per channel • Automatic Gain Control, per channel and per time slot • Weatherproof enclosure, IP67/NEMA4X • NFPA compliant as optional • Built-in input and output spectrum analyzer Applications • For P25, TETRA, DMR, NXDN and Conventional systems • Indoor coverage: tunnels and mobile fast -deploy communication units • Outdoor coverage: oil rigs, stadiums, dense urban areas, rural areas, cliffs DHS Series DHS30 Digital Repeater 0 ' Xcjl V(oHS MADE IN USA Specification Value Type Digital Repeater (without Antenna Feedback Cancellation) Frequency range 806-824 / 851-869 MHz Passband BW. min Channel Selective (90KHz, 45KHz, 30KHz, 20KHz, and 15KHz BW) Number of Passband Channel Selective (90KHz, 45KHz, 30KHz, 20KHz, and 15KHz BW), 1 to 12. Expandable up to 24 channels. (See option DS-12) Gain, maximum 85dB Passband ripple +/- 2.0 dB Gain, manual control a 28dB range, digitally controlled in 1 d6 steps o Antenna isolation Max Gain + 15dB Composite output power, DL a See table below o Composite output power, UL +21 dBm L 3 IMD <-13dBm `s Noise figure 6.OdB max at maximum gain Impedance 500 Group delay Channel Selective 90KHz, 14µS o 0 t Channel Selective 45KHz, 23µS E S Channel Selective 30KHz, 32µS E Channel Selective 20KHz, 45µS a Channel Selective 15KHz, 55µS o N Maximum input power, no damage OdBm (UL) Y� N E -20dBm (DL) Connectors � .0o N(f) as standard o a VSWR at operating frequencies 1.5:1 max EUplink squelch function Yes, user selectable, to avoid UL noise when no carriers present, by time slot and by o „ 0 channel (Channel Selective model only) m„ o a a Self diagnostic platform oLLLL Microprocessor based North America Latin America Europe Headquarters Commercial Office Commercial Office f f plew® 7331 N.W. 54th Street. Miami, FL 33166. US Sargento Cabral 1242. 5006 Cordoba. Argentina Calle Medes, 4-6, Local. 08023 Barcelona. Spain Ph: +1 305 884 8991 Fax: +1 305 884 4041 Ph: +54 3514568 263 • Fax: +54 351 456 2507 Ph: +34 93 5519746 www.fiplex.com • info@fipiex.com PUBLIC SAFETY 800 MHz DIGITAL REPEATERS DHS Series PS800 MHz • Class A Specifications Value Alarms Yes, amplifiers status, power amplifiers status, power supply failure, temperature, AGC, RF overload. Local management and supervising Local access via USB and Ethernet Remote management and supervising Remote access via Ethernet or wireless modem, SNMP or WEB server. RoHS compliance Yes Supply 110/220 VAC, 50/60 Hz, 120W, optional -48VDC Housing IP67 / NEMA4X Temperature range -130to 1310 F • -250to +55° C Cooling Natural convection Mounting Wall mounting Model DHS30 DHS37 Composite output power +30dBm +37dBm Power consumption 110W 210W Dimension 15.3 x 15.3 x 3.5 inches 20.2 x 18.2 x 9 inches 390 x 390 x 90 mm 514 x 462 x 230 mm Weight 40 Ibs • 18 kg 55 Ibs • 25 kg Options Description RM-CT Rack mount brackets DS-12 Expansion board for 800MHz, 12 channels NFPA NFPA compliant, VSWR and DRY contact .o S• .n 5 O L_ 3 C O . C C OJ C y O O C u L C u O O E E t o a X x a' °1 a� S � `o w Y � A� v E c O A _ C O pi °p `E N A O 1° m x X x v w m O O ii iL WARNING: This is NOT a CONSUMER device. It is designed for installation by FCC LICENSEES and QUALIFIED INSTALLERS. You MUST have an FCC LICENCE or express consent of an FCC Licensee to operate this device. Unauthorized use may result in significant forfeiture penalties, including penalties in excess of $100,000 for each continuing violation North America Latin America Europe Headquarters Commercial al Cabral Commercial Office �f ple�® 7331 N.W. 54th Street. Miami, FL 33166. US Sargento Cabral 1242. 5006 Cordoba. Argentina Calle Medes, 4-6, Local. 08023 Barcelona. Spain Ph: +1 30S 884 8991 • Fax: +1 305 884 4041 Ph: +54 351 4568 263 • Fax: +S4 351 456 2507 Ph: +34 93 551 9746 www.fiplex.com • info@fiplex.com MCR Broadband Corner Reflector Antennas Series With a higher front -to -back ratio (unwanted signal rejection) the MCR806 delivers superior performance in areas of concentrated RF signals. Features • 8.5 dB forward gain to aim signal in desired direction. • Covers the entire band without tuning. • RG-213/U cable with mate connector. • Rugged construction. Antenna Electrical Specifications Factory Bandwidth Horizontal Vertical Model Frequency r Gain 1.5.1 Benmwidth Benmwidth Front -to -Back Range Frequency y � 1/2 ter Ratio Power Power MCR806 8 MHz 0 835 MHz d'B 90 MHz 45' 56' 23 dB Mechanical Specifications Weight Equivalent Lateral Thrust Bending Model Dimensions (Mass) Flat Plate 0 Rated Wind Moment at Area Rated Wind MCR806 14" H x 14" W 3.8 lbs 1.92 ftz 71 Ibs 41.4 ft-lbs (355.6 x 355.6 mm) (1.7 kg) Alm'" IEN tAft 6' MCR806 �P CTEL Technical Data Maximum Power: 100 watts Nominal Impedance: 50 ohms Construction Material: 6061-T6 aluminum panels ESD Protection: DC grounded Wind Survival: 100 mph Termination: 24" jumper with N male connector Mounting Hardware: 1-1/4" U bolts (supplied) Maximum Mount Pipe Diameter: 1-1/4" PCTEL, Inc. WEB: wwlwr.antenna.pcte[-cvm Product Specifications COMMSCOPE® POWERED BY aNOREW i i CELMAX-&CPUSE Cell -Max"' Omni In -building Antenna, 698-960 MHz and 1710-2700 MHz This product is part of the CommScope Wired for Wireless@ Solution Electrical Specifications Frequency Band, MHz Gain, dBi Beamwidth, Horizontal, degrees VSWR I Return Loss, dB Input Power per Port, maximum, watts Polarization Impedance , General Specifications Antenna Type Omni Application Indoor Operating Frequency Band 1710 - 2700 MHz 1 698 - 960 MHz Brand Cell -Maxim Mount Type Thru-hole ceiling mount (optional) Package Quantity 1 Pigtail Cable KSR195, plenum rated Mechanical Specifications 698-800 800-960 1710-2700 1.5 1.5 5.0 360 360 .360 1.8 1 10.9 1.5-1 14.0 1.5 1 14.0 50 50 50 Vertical Vertical Vertical .50 ohm 50 ohm 50 ohm Color White Connector Interface N Female Pigtail Length 315.0 mm 1 12.4 in Radome Material ABS, UV resistant Environmental Specifications A Operating Temperature -40 °C to +60 aC (-40 OF to +140 OF) Relative Humidity Up to 100% Dimensions Height 85.00 mm 1 3.35 in Outer Diameter 186.0 mm 1 7.3 in Net Weight 0.3 kg 1 0.7 lb Packed Dimensions Height 135.00 mm 1 5.31 in Length 195.0 mm 1 7.7 in Width 195.0 mm 1 7.7 in Shipping Weight 0.4 kg 1 0.9 lb ©2014 CommScope, Inc. All rights reserved. All trademarks identified by 0 or TM are registered trademarks, respectively, of CommScope. page 1 of 2 All specifications are subject to change without notice. See www.commscope.com for the most current information. Revised: August 12, 2013 January 6, 2014 Product Specifications COMMSCOPE® CELLI W4D-CPUSE POWERED BY TANpREw Regulatory Compliance/Certifications Agency Classification RoHS 2011/65/EU Compliant by Exemption ISO 9001:2008 Designed, manufactured and/or distributed under this quality management system ©2014 CommScope, Inc. All rights reserved. All trademarks identified by O or TM are registered trademarks, respectively, of CommScope. page 2 of 2 All specifications are subject to change without notice. See www.commscope.com for the most current information. Revised: August 12, 2013 January 6, 2014 GMicrolab $ Saver Product Line ♦ 5 to 30 dB Coupling Values ♦ Good Directivity VSWR & Loss ♦ Wideband Cellular to WiMAX ♦ 50 Watt Average Power ♦ ROHS Compliant ♦ Effective as Tappers for DAS In -Building Systems Directional Coupler, CK-50N series Dual Section, Wideband, Microstrip Coupler 698 - 2700 MHz, N connectors Rev. A Microlab CK-50N series of N type Directional Couplers, is a multi section, quarter wave, microstrip design for indoor ap- plications covering all wireless bands from 698 to 2,700 MHz. Units couple off a defined fraction of signal from 5 to 20 dB with minimal reflections or loss. The wide frequency range allows use with multiband antennas and leaky cable systems and in wireless base stations. With minimal solder joints and an air dielectric, the dissipative loss has been minimized and reliability enhanced. These Directional Couplers may also be used as Unequal Dividers or Tappers, which are usually specified by the power ratio between outputs. For convenience these are shown in the table. (01/13) Model Number Coupling dB nom. Flatness Coupled dB Loss, d6 Dissipative Loss, dB *Power Ratio/dB between Outputs CK-51N 5 ± 0.6 ± 0.3 1.65 <0.6 7:3 3.35 dB CK-56N 6 ± 0.6 ± 0.3 1.25 <0.6 3:1 4.75 d6 CK-52N 7 ± 0.8 ± 0.4 0.97 <0.6 4:1 6.00 dB CK-57N 10 ± 0.8 ± 0.5 0.45 <0.6 9:1 9.55 d6 CK-53N 13,± 0.9 ± 0.6 0.21 <0.6 20:1 13.0 dB CK-54N 15 ± 0.9 ± 0.6 0.140 <0.6 30:1 14.7 dB CK-58N 20 ± 0.9 ± 0.6 0.045 <0.6 100:1 19.9 dB CK-59N 30 ± 1.0 ± 0.6 0.004 <0.6 1000:1 30.0 dB 8 d6 and other coupling values available to special order. *Power Ratio/d6 between outputs is approximate 0 Frequency Range: Directivity: Input VSWR: Power Handling: Impedance: Environment: Finish: Weight: Connectors: Mounting: 698 to 2,700 MHz 19 dB minimum <1.2 5:1 50W avg.* 50Q nominal -201- +70*C, Indoor Passivated aluminum 7.5 oz., 210g nom. N (f), triplate Optional Kit to order *Power may also be limited by feeding into poorly matched loads overloading the internal 1W termination. Microlab, A Wireless Telecom Group Company, 25 Eastmans Road, Parsippany, NJ 07054 Tel: (973) 386-9696 • sales@microlab.fxr.com • www.microlab.fxr.com • Fax: (973) 386-9191