
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Confidential and Proprietary of Samsung Telecommunications America MINIBTS INSTALLATION & METHODS Wireless Systems Lab ID: ____ Rev: ____ CHRISTOPHER WHITTLE Installation & Methods MBTS 35175.DOCSamsung Telecommunications AmericaWireless Systems Lab ID: Rev:Confidential and ProprietaryPage 2 of 32 Revision History Revision No.Revision DateReason for ChangeChanged By 0112.03.97Updates from departmentC Whittle 0212.17.97Updates from departmentC Whittle 031-11-98EditS Logan 04UpdatesC Whittle 052-12-98Edit/formatS Logan UpdatesP Sohn 062-18-98EditS Logan 06c2-24-99Format draftS Logan 2-25-99Send draft to KTL RELEASE APPROVALS ENGINEERMANAGER TITLETITLE DATEDATE Installation & Methods MBTS 35175.DOCSamsung Telecommunications AmericaWireless Systems Lab ID: Rev:Confidential and ProprietaryPage 3 of 32 Table of Contents 1INTRODUCTION .......................................................................................................... 5 1.1Purpose ........................................................................................................................................ 5 1.2Scope............................................................................................................................................ 5 1.3Responsibility................................................................................................................................ 5 1.4Warnings....................................................................................................................................... 5 1.4.1Electrostatic Discharge................................................................................................. 5 1.4.2High Voltage Warning .................................................................................................. 5 1.4.3Laser Warning ..............................................................................................................5 1.5Precautions................................................................................................................................... 5 1.6Applicable Standards.................................................................................................................... 6 1.7Design Change Procedure ........................................................................................................... 6 2BTS SYSTEM OVERVIEW / OPERATING CONFIGURATIONS ................................ 6 2.1.1BTS Major Features ..................................................................................................... 7 2.1.1.1RF (Radio Frequency) Interface to/from Mobile PCS Users Function ..... 7 2.1.1.2BSC Wired Interface Function .................................................................. 8 2.1.1.3Samsung BTS Resource Management and Operation/Maintenance Function .................................................................................................... 8 2.1.1.4GPS Receiving Function........................................................................... 8 2.1.2BTS Characteristics...................................................................................................... 8 2.1.3Transmitter Specifications ............................................................................................ 8 2.1.4Receiver Specifications ................................................................................................ 9 2.1.5BTS Power Consumption ............................................................................................. 9 2.1.6BTS Battery Backup System ........................................................................................ 9 2.1.7BTS Environmental Characteristics ............................................................................. 9 2.2Operations Configurations............................................................................................................ 9 2.2.1BTS System Operating Configurations ........................................................................ 9 2.2.2BTS Omni and Sector Configuration ............................................................................ 9 2.2.3Rack Configuration ..................................................................................................... 10 2.3Block Descriptions ...................................................................................................................... 11 2.3.1AFEB .......................................................................................................................... 11 2.3.2BCIN ........................................................................................................................... 11 2.3.3BCMB ......................................................................................................................... 11 2.3.4BSTB .......................................................................................................................... 12 2.3.5CBFB .......................................................................................................................... 12 2.3.6CMDB ......................................................................................................................... 12 2.3.7COMB......................................................................................................................... 12 2.3.8HPAB.......................................................................................................................... 12 2.3.9RXDB.......................................................................................................................... 12 2.3.10XCVB.......................................................................................................................... 12 3INSTALLATION PLANS AND PROCEDURAL GUIDELINES .................................. 12 3.1Entrance Criteria...........................................................................................................…
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FCC ID Label The label is permanently attached to the EUT FCC ID: NP817-4WIDMINI
ELECTRONICS SAMSUNG TELECOMMUNICATIONS AMERICA, INC. 1130 East Arapaho Road Richardson, TX 75081 USA TEL 972-761-7987, FAX 972-761-7909 Expository Statement Indoor Mini-BTS SCBS-1900M1A The Indoor Mini-BTS (Base Station Transceiver) is a 1.9GHz CDMA spread spectrum transceiver providing a radio interface and call processing functions to mobile subscribers, and a metallic T1 interface that flows via various switched into the POTS. The Mini-BTS may be operated in any of three antenna configurations from Omni-sector (single antenna), Dual- sector (two antennas), or Tri-sector (three antennas). The BTS consists of transmitting/receiving antennas (all antennas provided by customer), transceiver, amplifiers, antenna front-end units, mod/demo circuitry, and a T1 interface which is used for bi-directional phone traffic and control-signals. In addition, the Mini-BTS is equipped with a GPS receiver for network synchronization of the CDMA network. Power is delivered to the Mini-BTS via customer supplied rectifiers operating on the secondary side at a nominal 27VDC. The Indoor Mini-BTS is designed to be operated in a controlled environment. Major Functions of BTS 1. Radio Frequency Interface to Mobile Subscriber The radio transmission characteristics including radio channel interval, modulation method, output power characteristics, spurious emission power, and receiving band emission power shall meet the requirements of JSTD-008, SP-3383, SP-3385 (IS-95 Up-Band CDMA). 2. T1 Metallic Interface The Mini-BTS to BSC (Base S tation Transceiver to Base Station Controller) bi- directional T1 interface transmits and receives traffic and control packets. 3. BTS Resource Management and Operation/Maintenance Function BTS provides the following functions for operation and maintenance functions. - Detects system errors and reports the results to the BSC. - Collects statistics information related to call processing and reports it to the BSC. - BTS device self automatic function test - Forward/backward link performance test 4. GPS Receiving Function This function receives the time information and clocks of GPS, and generates reference signal, system clock and even_sec.
ELECTRONICS SAMSUNG TELECOMMUNICATIONS AMERICA, INC. 1130 East Arapaho Road Richardson, TX 75081 USA TEL 972-761-7987, FAX 972-761-7909 Tune up Procedure - Indoor Mini-BTS Tune-up procedure over the power range, or at specific operating power levels. 1. Connect the serial cable to debug connector on the MXBB-1, MXBB-2 2. Execute the terminal program with following option 19200 bps, 8 bit, 1 bit, None 3. Change the attenuation of the XCVU-P (transceiver) using the command. Command)chg_att [attenuation_value] (cf: attenuation_value:0 ~ 600: attenuation 0 ~ 60.0 dB 900 ~ 999: gain 0 ~ +9.9 dB 4. Measure the RF power of the output port placed on the AFEU-P rear panel. 5. Change the attenuation or gain with 0.1dB step using above command.
2 2.0 PCS TUCB_PA VER 2.0 22 W ednesday , D ec ember 02, 1998 Tit leSize Document N umber Rev D at e: S he et of +8 V +5V C +5V C +8VSW +8 V +8 V +5V B +8VSW +1 2V +5V A +5V B +5V B +5V A +8 V +8 V +5V A +8 V +5V C +5V C +8VSW +8 V -1 2 V +8VSW +5V C +8VSW +8VSW +8VSW 116.04MHz 29.01MHz UHF LO 85mA-100mA 125mA 15mA 30mA 15mA 15mA 100mA 100mA 4.95M Hz IF -1dBm -6d Bm -7d Bm -12dBm +17dB m - 26dB m -16dBm +6d Bm +7d Bm +10d Bm -33dBm - 30dB m - 27dB m - 24dB m - 14dB m -5d Bm 0dB m CL=-6dB CG =+10dB CL= -10d Bm BPF IL=-4 dB m ax LPF IL =-1d Bm G =18dB P1=10dBm G =12dB - 37dB m - 18dB m -21dBm -40dBm 30mA AT T I L =- 3. 5dB P1=9dBm - 15dB m G =13dB AT T I L =- 3. 5dB - 29dB m -11dBm T y pi cal = -2.5dB UHF LO 1780-1840M Hz +13d Bm 10M Hz TUCB-PA V2.0 EN41-11017A EN92-01009A PCS01 IL=-19dB P1=10dB m - 22dB m -25dBm -26dBm G =18dB - 21dB m - 18dB m -2 4. 5dB m -1 1. 5dB m -26dBm +6d Bm +10d Bm RX LO65. 05M Hz RF O UT 1930-1990M Hz RX LO1780-1840M Hz G =18dB G =18dB R3530 L9 1. 5U H L101. 5U H R3656 C400.01U F R32 82 ( 1 /8 W ) L44. 7U H R3930 C531nF P3 M CX U24 VNA-25 +- 1 2 3 4 5 6 7 8 R99 18 U21 BPF 1 2 3 4 C113 18 p F U22 BPF 1 2 3 4 P5 MC X C880.01U F P6 M CX U19 AH-1 1 2 3 4 C61 1.2nF R56 180 R92 82 ( 1 /8 W ) U16 MSA-2086 1 2 3 4 R98 18 R106 300 L201U H C1061nF C91 0.01U F R97 18 C1051nF U5 MC 145170D 1 OS C in 1 OS Cout 2 REFout 3 fin 4 Din 5 ENB 6 CLK 7 Dout 8 VDD 16 0V 15 0R 14 PDout 13 Vss 12 LD 11 fV 10 fR 9 Q4BFR-92P L1 4. 7U H R922K C8 1nF C28 47 p F C27 100pF R15300 C26100pF R1318K C7 0.1U F C11 1nF C18 0.1U F C23 150pF R122K R11 2K C2910 p F VC1 S MV1202-12 13 2 C12 0.01U F C240.1U F R22 430 R21 12 R23 430 P2 M CX S A 8025A D K U2 CLOC K 1 DATA 2 STRB 3 VSS D 4 R F IN + 5 RF IN - 6 VCCP 7 REF IN 8 NC 9 NC 10 VDD 20 RF 19 LOC K 18 RF 17 RN 16 VDDA 15 PHP 14 PHI 13 VSS A 12 NC 11 Q5MMB T222 2 U 3 78S L05 Vout 1 GN D 2 GN D 3 NC 4 NC 5 GN D 6 GN D 7 Vin 8 U1 78S L05 Vout 1 GN D 2 GN D 3 NC 4 NC 5 GN D 6 GN D 7 Vin 8 R4 39K C20 0.1U F R5 200K C21 0.1U F C222U F 35V + C1 0.1U F C3 0.1U F C10 1nF C19 0.01U F P1 M CX C14 0.1U F C13 22U F 35V + R19 270 C36 22U F 35V + C33 22U F 35V + C35 0.1U F U25 MC 145170D 1 OS C in 1 OS Cout 2 REFout 3 fin 4 Din 5 ENB 6 CLK 7 Dout 8 VDD 16 0V 15 0R 14 PDout 13 Vss 12 LD 11 fV 10 fR 9 Q11BFR-92P Q9BFG-198 2 14 3 VC2 S MV 1202-12 13 2 C1400.1U F C138 0.01U F R130300 C144 33pF C143 47 p F C14247 p F C139 68 p F C1410.1U F R133 18K C1494.7nF R126 22K L30 2. 2U H C1371nF C1191nF L26 270nH C118 1nF L25 150nH R95 3K C117 1nF R94 1K L22 4. 7U H Q7 MMBT-4403 R91 5. 1 K R84 2. 7 K R83 51 ( 1 /8 W ) L16 330nH C940.01U F R129 3. 9 K R100 18 Y1 VCO VT 1 VCC 3 OUT 2 GN D 4 TP 1 TP TP 2 TP C89100pF TP 3 TP U4 78M05 VO 3 GN D 2 VI 1 C17 0.1U F C16 0.1U F C15 22U F 35V + L3 120nH C3715 p F C3868 p F R107 300 C130 33 p F C122150pF R131 150 C971nF C951nF R47 120 C47220pF C6 22U F 35V + C55 1nF R34 82 ( 1 /8 W ) R59 510 C57 1nF C43 0.01U F R61 300 C3168 p F C62 680pF R42 18 R29 240 U10 MAR-3S M 1 2 3 4 C14533 p F R68 18 L71U H R58510 R52 180 C440.1U F R57 180 C980.1U F C451nF R67 18 R4130 L61U H R62 300 C1011nF C7333 n F D2 MA 4P 2 74C K 2 1 3 C541nF D3MA 4P 2 74C K 1 2 3 L2 180nH L32 100nH U27 LC B P F(33.96MH z ) 1 2 C56 1nF R30 330 C7233 n F R69 30 L81U H R144510 C461nF R146 30 D5 MA 4P 2 74C K 2 1 3 D4MA 4P 2 74C K 1 2 3 R128 1K C173 3.9nF C189 15 p F C179 15 p F C178 15 p F C180 15 p F C192 15 p F C181 15 p F C18268 p F R141 180 R142 180 R140 30 R14 1K C22 2.2U F + C167 33 n F R16 1K C30 0.01U F C34 2.2pF R24 300 R7 10M R123 10M U20 EMRS-25MH 1 1 2 2 3 3 4 5 5 6 6 U11 EMRS-1H 1 1 2 2 3 3 4 5 5 6 6 R44 180 R45 180 C420.1U F C17715 p F C7133 n F C1360.1U F C17033 n F R110 300 R46 120 C1020.1U F R104 300 R53 180 C176 15 p F C121 68 p F R109 300 R105 300 R17 150 C174 15 p F C84120pF C123150pF C17515 p F C51nF C1351nF R108 300 C4 0.1U F R111 300 C60 680pF R60 510 C320.1U F C39 1nF C960.1U F C9 0.1U F C99 22U F 35V + C253.3nF C18315 p F L11 330nH C85120pF L35 100nH L34 100nH C16833 p F R143 100 L31 100nH L33 100nH R145 100 C16956 p F C14822 p F C14622 p FC14722 p F R18 180 R20 680 U6 LM317LM NC 5 Vout 6 Vout 7 NC 8 Vin 1 Vout 2 Vout 3 ADJ 4 C48 0.1U F Q1 SSD2002 PD 5 PD 6 ND 7 ND 8 NS 1 NG 2 PS 3 PG 4 R1 47K C66 1nF U23UP B1509GV SW 1 5 SW 2 6 OUT 7 Vcc2 8 Vcc1 1 IN 2 IN 3 GN D 4 C641nF C63 1nF R90 390 C65 1nF C1201nF C100 15 p F L2368nH C501nF U8MSA-2086 1 2 3 4 R118 150 C58 33 p F R63 1K C6922 p F L13120nH U13FB F332 150MHz SAW BPF 1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 R641K L14 100nH C7033 p F C59 39 p F R65300 R43 18 R66 300 R7982 ( 1 /8 W ) C770.01U F C90 18 p F L17 100nH R82 300 L15 1U H R80 18 C81 22 p F R81 300 C80 22 p F U15 MSA-2086 1 2 3 4 C82 1nF C831nF L3647nH C15010 p F R103 18 R116 300 R117 300 C1310.01U F R85 300 R86 300 R96 18 L12 68nH L28 68nH C12627 p F C12868 p F C12727 p F C129 1nF TP 4 TP U14 A D 811JR -+ 2 7 6 4 3 R33 39K R40 39K R54 18K R55 39K R122 30 C1040.1U F C1160.1U F C1030.1U F C1150.1U F R28 220 RT1 1K (N T C ) t C1241nF R112 10 R113 270 R114 270 U12 I A M-8 200 8 1 2 3 4 5 6 78 C1840.01U F C1250.01U F C410.01U F R119 10 ( 1 /8 W ) C521nF Z2 TR A N S L IN E R102 100 Z1 TR A N S L IN E R87 0 C111 18 p F C86 100pF C19015 p F C92100pF C870.01U F C19115 p F C109 18 p F C930.01U F U17 ERA-5SM 1 2 3 4 U18 ERA-5SM 1 2 3 4 R51 120(1/4W ) R50 120(1/4W ) R88 120(1/4W ) R89 120(1/4W ) C670. 01uF C17133 p F C68 0. 01uF C17233 p F C108 18 p F R147 1K R148 0 SDA 65.05M Hz_EN 65.05MHz_SCL 65. 05MHz LO CK 10M Hz T X_ON UHF _SCL UHF _LO CK SDA UHF _E N 10M Hz SDA 116. 0 4M_E N 1 16. 04M _SCL 116.04M Hz_LO CK 10M Hz F LWR 1 2.0 PCS T UCB_PA VER 2.0 12 W ednesday, December 02, 1998 TitleSize Document Num ber Rev Dat e: Sheet of +5VA +5VA +12V +8V -12V +5VA U31D U28 ADDR1SDAADDR2ADDR0SCL A DDRESS1A DDRESS2PLL_LO CKSCL_BA DDRESS0 SCL_BA DDRESS0A DDRESS1A DDRESS2 -12V_F1-12V_F2AGNDAGNDAGNDAGNDAGNDTX_ON_F TX_ON FLW R_F FLW R PLL_LO CK_F PLL_LO CK ADDR2_F ADDR2 ADDR1_F ADDR1 ADDR0_F ADDR0 +8V_F2+8V_F3+8V_F1 +8V SCL_F SCL SDA SDA-12V + 12V_F +12V AGND U29 74…
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Master: ktlPT24BASE Date: November 2, 1998 KTL Test Report:8L0263E Applicant:Samsung Telecommunications America, Inc. 1130 Arapaho Road Richardson, Tx 75081 Equipment Under Test:Indoor Mini-BTS (E.U.T.) FCC ID:NP817-4WIDMINI In Accordance With:FCC Part 24, Subpart E Broadband PCS Base Station Tested By:KTL Dallas Inc. 802 North Kealy Lewisville, TX 75057-3136 Authorized By: ______________________________________ Tom Tidwell, RF Group Manager Date:_______________________________________ Total Number of Pages: KTL Dallas FCC PART 24, SUBPART E BROADBAND PCS BASE STATION PROJECT NO.:8L0263E EQUIPMENT: Indoor Mini BTS FCC ID:NP817-4WIDMINI Page 2 of 76 Table of Contents Section 1. Summary of Test Results General Summary of Test Data Section 2. General Equipment Specification Specifications Description of Modifications for Class II Permissive Change Modifications Made During Testing Theory of Operation System Diagram Section 3. RF Power Output Test Results Measurement Data Power Over Bandwidth Graphs Section 4. Occupied Bandwidth Occupied Bandwidth (CDMA) Test Results CDMA Input and Output Graphs Occupied Bandwidth (GSM) Test Results GSM Input and Output Graphs Occupied Bandwidth (NADC) Test Results NADC Input and Output Graphs Section 5. Spurious Emissions at Antenna Terminals Test Results Test Data Graphs Section 6. Field Strength of Spurious Test Results Test Data Test Data - Radiated Emissions - Uplink Test Data - Radiated Emissions - Downlink Photographs of Test Setup Pre-Scan Data KTL Dallas FCC PART 24, SUBPART E BROADBAND PCS BASE STATION PROJECT NO.:8L0263E EQUIPMENT: Indoor Mini BTS FCC ID:NP817-4WIDMINI Page 3 of 76 Table of Contents, continued Section 7. Frequency Stability Test Results Measurement Data Graphs Section 8. Test Equipment List Annex A - Test Methodologies RF Power Output Occupied Bandwidth (CDMA) Occupied Bandwidth (GSM) Occupied Bandwidth (NADC) Spurious Emission at Antenna Terminals Field Strength of Spurious Frequency Stability Annex B - Test Diagrams R.F. Power Output Occupied Bandwidth Spurious Emissions at Antenna Terminals Field Strength of Spurious Frequency Stability KTL Dallas FCC PART 24, SUBPART E BROADBAND PCS BASE STATION PROJECT NO.:8L0263E EQUIPMENT: Indoor Mini BTS FCC ID:NP817-4WIDMINI Page 4 of 76 Section 1.Summary of Test Results Manufacturer:Samsung Telecommunication America, Inc. Model No.:Indoor Mini-BTS Serial No.:None General: All measurements are traceable to national standards. These tests were conducted on a sample of the equipment for the purpose of demonstrating compliance with FCC Part 24, Subpart E. New SubmissionProduction Unit Class II Permissive ChangePre-Production Unit P C BEquipment Code THIS TEST REPORT RELATES ONLY TO THE ITEM(S) TESTED. THE FOLLOWING DEVIATIONS FROM, ADDITIONS TO, OR EXCLUSIONS FROM THE TEST SPECIFICATIONS HAVE BEEN MADE. See “ Summary of Test Data”. NVLAP LAB CODE: 100351-0 TESTED BY: _____________________________________ DATE: ___________________ Ron Gaytan, Technician KTL Ottawa Inc. authorizes the above named company to reproduce this report provided it is reproduced in its entirety and for use by the company’s employees only. Any use which a third party makes of this report, or any reliance on or decisions to be made based on it, are the responsibility of such third parties. KTL Ottawa Inc. accepts no responsibility for damages, if any, suffered by any third party as a result of decisions made or actions based on this report. This report applies only to the items tested. KTL Dallas FCC PART 24, SUBPART E BROADBAND PCS BASE STATION PROJECT NO.:8L0263E EQUIPMENT: Indoor Mini BTS FCC ID:NP817-4WIDMINI Page 5 of 76 Summary Of Test Data NAME OF TESTPARA. NO.SPEC.MEAS.RESULT RF Power Output24.232100W17.4 WComplies Occupied Bandwidth (CDMA)24.238PlotsPlotsComplies Occupied Bandwidth (GSM)24.238N/AN/AN/A Occupied Bandwidth (NADC)24.238N/AN/AN/A Spurious Emissions at Antenna Terminals 24.238(a)-13 dBm-15 dBmComplies Field Strength of Spurious Emissions24.238(a)-13 dBm E.I.R.P. -26.3 dBm E.I.R.P. Complies Frequency Stability24.235 ± 0.05 ppm 0.037102 ppmComplies Note:Waveform Quality was measured under voltage and temperature extremes in order to characterize the modulation characteristics as per FCC Part 2.1047 This data is reported with Frequency Stability data. Footnotes For N/A’s: The E.U.T. is a CDMA only base station transmitter. Test Conditions:LAB: Temperature: 24 °C Humidity:52 % OATS: Temperature: 22 °C Humidity:41 % KTL Dallas FCC PART 24, SUBPART E BROADBAND PCS BASE STATION PROJECT NO.:8L0263E EQUIPMENT: Indoor Mini BTS FCC ID:NP817-4WIDMINI Page 6 of 76 Section 2.General Equipment Specification Supply Voltage Input:27 VAC Frequency Range(s):Blocks A,D,B,E,C & F A 1931.250-1943.750 D 1946.250-1948.750 B 1951.250-1963.750 E 1966.250-1968.750 F 1971.250-1973.750 C 1976.250-1988.750 Type of Modulation and CDMAGSMNADC Designator: (F9W)(GXW)(DXW) Emission & Bandwidth Designator: 1M25F9W Output Impedance:50 ohm RF Output (Rated):17.4 Watts (+42.4 dBm) Band Selection: SoftwareDuplexer Change Fullband Coverage KTL Dallas FCC PART 24, SUBPART E BROADBAND PCS BASE STATION PROJECT NO.:8L0263E EQUIPMENT: Indoor Mini BTS FCC ID:NP817-4WIDMINI Page 7 of 76 Description of Modifications For Class II Permissive Change KTL Dallas FCC PART 24, SUBPART E BROADBAND PCS BASE STATION PROJECT NO.:8L0263E EQUIPMENT: Indoor Mini BTS FCC ID:NP817-4WIDMINI Page 8 of 76 Modifications Made During Testing KTL Dallas FCC PART 24, SUBPART E BROADBAND PCS BASE STATION PROJECT NO.:8L0263E EQUIPMENT: Indoor Mini BTS FCC ID:NP817-4WIDMINI Page 9 of 76 System Description The E.U.T. is a base station transmitter that operates in the PCS 1900 frequency blocks. The access method is CDMA and the air interface is designed to the IEC IS-95 standard.. Output power of the transmitter is rated as 17.4 watts. Multiple sectors can be configured with one CDMA channel per sector. The system is intended to operate on the valid CDMA frequency assignments…
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802 N. Kealy · Lewisville, Texas · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 6 | - | 1.98 GHz - 1.99 GHz | 17.4 W | 1M25F9W | 0.037 ppm |

Outdoor BTS
Equipment Class
PCB - PCS Licensed Transmitter
Indoor BTS (Model SCBS-419L)
Equipment Class
PCB - PCS Licensed Transmitter
Indoor BTS (Model SCBS-319L)
Equipment Class
PCB - PCS Licensed TransmitterOutdoor BTS (Model SCBS-319M)
Equipment Class
PCB - PCS Licensed Transmitter
Pico-BTS 10W PRU
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter