
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Königswinkel 10 D -32825 Blomberg, Germany Phone+49 (0) 52 35 95 00-0 Fax+49 (0) 52 35 95 00-20 [email protected] www.phoenix-testlab.de 20 November2006 Altmaier-KT Bank:Stadtsparkasse BlombergGeneral Manager:Dr.-Ing.Holger AltmaierLegal Form:GmbH Routing Code:476 512 25Headquarter:Blomberg/Lippe Account No.:113 720Register of Companies:Amtsgericht Lemgo HRB 5233 Swift-Code:WELA DE D1 BLOOur VAT-No.:DE 162977933 Additional declaration part according to FCC 15.247 for Bluetooth TM devices 1.Output power and channel separation of a Bluetooth device in different operating modes The different operating modes (data mode, acquisition mode) of aBluetooth device don’tinfluence the output power and the channel spacing. There is only one transmitter which is driven by identical input parameters concerning thesetwo parameters. Only a different hopping sequence will be used. For this reason the check of these RF parameters in one operatingmode is sufficient. 2.Frequency rangeof a Bluetooth device Hereby we declare that the maximum frequency of this device is : 2402– 2480 MHz. This is according to Bluetooth Core Specifications (+ critical errata) for devices which will be operated in the USA. This was checked during the BluetoothQualification tests (Test Case: TRM/CA/04-E). Other frequency ranges (e.g. Spain, France,Japan) which are allowed according the Core Specification are not supported by this device. 3.Co-ordination of the hopping sequence in data mode to avoid simultaneous occupancy by multiple transmitters Bluetoothunits, which want to communicate with other units must be organised in a structure called piconet. This piconet consists of max. 8 Bluetooth units. One unit is the master and the other seven are slaves. The master co-ordinatesthefrequency occupation in this piconet for all units. As the masterhop sequence is derived from this BDaddresswhich is unique for each Bluetooth device, additional masters intending to establish new piconets will always use different hop sequences. FCC Federal Communications Commission PHOENIX TESTLAB GmbH • Königswinkel 10 • D-32825 Blomberg - 2 - 4.Examples of hopping sequences Example of a 79 hopping sequence indata mode: 40, 21, 44, 23, 42, 53, 46, 55, 48, 33, 52, 35, 50, 65, 54, 67, 56, 37, 60, 39, 58, 69, 62, 71, 64, 25, 68, 27, 66, 57, 70, 59, 72, 29, 76, 31, 74, 61, 78, 63, 01, 41, 05, 43, 03, 73, 07, 75, 09, 45, 13, 47, 11, 77, 15, 00, 64, 49, 66, 53, 68,02, 70, 06, 01, 51, 03, 55, 05, 04 5.Equally average use of frequencies in data modeand behaviour for short transmissions The generation of the hopping sequence in connection mode depends essentially on two input values: 1.LAP/UAP of the master of the connection 2.Internal master clock The LAP (loweraddresspart) are the 24 LSB ́s of the 48 BD_ADRESS. The BD_ADRESS is an unambiguous number of every Bluetoothunit. UAP (upperaddress part) are the 24 MSB ́s of the 48 BD_ADRESS. The internal clock of a Bluetooth unit is derived from a free running clock which is never adjusted and is never turned off. For synchronisation with other units only offset are used. It has no relation to time of the day. Its resolution is at least half the RX/TX slot length of 312.5 μs. The clock has a cycle of about one day (23h30). In most case it is implemented as a 28 bit counter. For the deriving of the hopping sequence the entire LAP (24 bits), 4 LSB ́s (4 bits) (Input1) and the 27 MSB ́s of the clock (Input2) are used. With this input values different mathematic procedures (permutations, additions, XOR-operations) are performed to generate the sequence. This will be done at the beginning of every new transmission. Regarding short transmissions theBluetooth system has the following behaviour: The first connection between the two devices established, a hopping sequence was generated. For transmitting the wanted data the complete sequence was not use. The connection ended. The second connection will be established. A new hopping sequence is generated. Due to the fact that the Bluetooth clock has a different value, because the period between the two transmissions is longer (and cannot be shorter) than the minimum resolution of the clock (312.5μs). Thehopping sequence will always differ from the first one. - 3 - 6.The receiver input bandwidthand behaviour for repeated single and multiple packets The inputbandwidthof the receiver is 1 MHz. In every connection one Bluetooth device is the master and the other one is the slave. The master determines the hopping sequence (see Clause5.). The slave follows this sequence. Both devices shift between RX and TX time slot according to the clock of the master. Additionally the type of connection (e.g. single or multislot packet) is set up at the beginning of the connection. The master adapts its hopping frequency and its TX/RX timing according to the packet type of the connection. Also the slave of the connection will use thesesettings. Repeating of a packet has no influence on the hopping sequence. The hopping sequence generated by the master of the connection will be followed in any case. That means, a repeated packet will not be send on the same frequency, it is send on the next frequency of the hopping sequence. 7.Dwell time in data mode The dwell time of the 0.3797 s with in a 30second period in data mode is independent from the packet tape (packet length). The calculation for a30 second period is a follows: Dwell time = time slot length * hop rate / number of hopping channels * 30s Dwell time = 625μs * 1600 1/s / 79 * 30s = 0.3797s (in a 30s period) For multislot packet the hopping is reduced according to the length of the packet. Example for a DH5 packet (with a maximum length of 5 timeslots) Dwell time = 5 * 625μs * 1600 1/5 * 1/s / 79 * 30s = 0.3797s (in a 30s period) This is according theBluetoothCore Specifications V 1.0B (+critical errata) for all Bluetooth devices. Therefore all Bluetooth devices comply with theFCC dwell time requirement in data mode. This was checkedd…
Text truncated - open the document above for the full version.
2010-09-14 Reference: connectBlue ab residence: malmö VAT no. se 556589-0851-01 Norra vallgatan 64 se-211 22 malmö sweden tel.+46 (0)40-6307100 fax.+46 (0)40-237137 e-mail: [email protected] http://www.connectBlue.com page 1 of 1 Attn: Reviewing Engineer Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 RE: CONFIDENTIALITY REQUEST FOR FCC ID PVH0939 Model name: Class I OEM Bluetooth Unit, Type number: cB-0939 To Whom It May Concern: This letter serves as an official request for confidentiality under the FCC Rule Section 0.457 and 0.459 . . We have requested that the block diagram, schematic diagram and the Users/Integration manual (highly technical for OEM integration only – module is nonconsumer device), required to be submitted with this application to be withheld from public review. The reason for this request is that these documents are company proprietary information that should never get into the possession of competitors, which would be harmful for our business. Please contact me if there is any information you may need. Regards, Mats Andersson, CTO connectBlue
2010-09-14 Reference: cBProject-0502-18 (3) connectBlue ab residence: malmö VAT no. se 556589-0851-01 Norra Vallgatan 64 3V se-211 22 malmö sweden tel.+46 (0)40-6307100 fax.+46 (0)40-237137 e-mail: [email protected] http://www.connectBlue.se page 1 of 2 Attn: Reviewing Engineer Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 RE: PART 15 UNLICENSED MODULAR TRANSMITTER APPROVAL To Whom It May Concern: We, connectBlue AB, hereby requests a Limited Modular Approval of our OEM-Bluetooth module, described as follows: Brand name: connectBlue AB Model name: cB-0939 Type number: cB-0939 FCC ID: PVH0939 In FCC Public Notice DA 00-1407 released June 26,2000 there are eight numbered requirements that our OEM-Bluetooth module type cB-0939 complies with. 1. The modular transmitter must have its own shielding. The modular transmitter has its own shielding as shown on the photo exhibits. 2. The modular transmitter must have buffered modulation/data inputs The module has a memory management unit inside of the IC (U1). It buffers the data inputs from UART and SPI terminal. 3. The modular transmitter must have its own power supply regulation The IC contains an own voltage regulation (U4, U10). In case of changes in the supply voltage VCC (for example caused by temperature changes or other effects), the internal voltage will be stabilized. 4. The modular transmitter must comply with the antenna requirements of Section 15.203 and 15.204c The module is either equipped with on-board chip antenna or unique (UFL) antenna connector. For further details please refer to the antenna data sheet included in the filing. 5. The modular transmitter must be tested in a stand-alone configuration The EUT was tested in a stand-alone configuration. 2010-09-14 Page 2 of 2 6. The modular transmitter must be labelled with its own FCC ID number The EUT will be labelled with its own FCC ID number. The label is specified in Exhibit D. If the module is installed inside of an end-product, the label will not be visible. In this case the OEM customer will be instructed to how to apply the exterior label. 7. The modular transmitter must comply with any specific rule or operating requirements applicable to the transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements. The EUT is compliant with all applicable FCC rules. Detail instructions are given in the product Users Guide 8. The modular transmitter must comply with any applicable RF exposure requirements. The maximum measured power output is 55 mW (17,4 dBm), the maximum antenna gain is + 3,4 dBi = numeric gain 2,2 (acc to FCC test report). The maximum permissible exposure is defined in 47 CFR 1.1310 with 1 mW/cm². The maximum permitted level is calculated using the general equation: S = P*G / 4pR² P = 55 mW, G = 2,2 (numeric gain; + 3,4 dBi = linear power gain relative to the isotropic radiator), R = 20 cm p = 3,1416 Solving for S, the power density at 20 cm is 0,024 mW/cm². So the 1mW/cm² limit is kept.
datasheet m70cxr V2.0.doc roof antenna for bluetooth roof installation planTec® – bluetooth Bestellnr.: m70cxr 0300 00 xx xx 76,0 mm 20,7 mm 13,6 mm Gewinde M 16 The planar antennas of the latest technology offers you decisive advantages: roof installation, not only for car, truck and bus installation on all plain surfaces possible (application at container, automatic machines and railroads...) waterproof with two independent washers in mounted condition flat design (approx. 20 mm high ), no additional rod antennas necessary other cable lengths or connectors on request at car wash no disassembly necessary waterproof IPX6 and IPX9K TECHNICAL DATA: GSM: frequency range: 2400 - 2500 MHz VSWR: < 2,0 typical gain: 1,0 dB typical power max.: ≤ 10 watt dimensions and connectors: connection (standard): 3m RF-cable RG 174 with connector GSM/FME(f) (other cable-length or connectors on request) dimensions (∅/h): approx. 75 mm / 20 mm temperature range: from –40°C up to +85°C
Ex-IT 2400 MHF 28 Applications M2M-communications Telemetric Automated Meter Reading Alarms Specification Frequency:2400 -2485 MHz VSWR:< 3:1 (on ProAnt demo box) Gain:Max: 2 dBi Height: 28 mm, excluding cable and thread. Diameter:12 mm Temperature:-30 to +85°C RoHS compliant
Ex-IT 2400 MH F 70-001 A pplications M 2M - com m unications Te le m e tric A utom ate d M e te r Re ading A larm s Spe cification Fre q ue ncy:2400 - 2485 M H z VSWR:< 2:1 (on ProA nt de m o b ox) G ain:M ax: 3 dBi H e ig h t: 70 m m , e xcluding cab le and th re ad. Width :9 ,5 m m Te m pe rature :- 30 to + 85°C
Ex-IT 2400 28-00x A pplications M 2M - com m unications Te le m e tric A utom ate d M e te r Re ading A larm s Spe cification Fre q ue ncy:2400 - 2485 M H z VSWR:< 3:1 (on ProA nt de m o b ox) G ain:M ax: 3 dBi Le ng th : 28 m m Width :8 m m Te m pe rature :- 30 to + 85°C
Ex-IT 2400 SMA 70-00x A pplications M 2M - com m unications Te le m e tric A utom ate d M e te r Re ading A larm s Spe cification Fre q ue ncy:2400 - 2485 M H z VSWR:< 2:1 (on ProA nt de m o b ox) G ain:M ax: 3 dBi H e ig h t: 107 m m , Ex- IT 2400 SM A 70- 001. 83 m m , Ex- IT 2400 SM A 70- 002 Width :10 m m Te m pe rature :- 30 to + 85°C Ex-IT 2400 SM A 70-001 Ex-IT 2400 SM A 70-002
O utSide™ 2400 Spe cification Fre q ue ncy:2400 - 2485 M H z VSWR:< 3:1 G ain:M ax: 3 dBi D im e nsion: 50 m m diam e te r, h e ig h t 30 m m M ounting : Scre w on SM A jack conne ctor. Te m pe rature :- 30 to + 85°C A pplications M 2M - com m unications Te le m e tric A utom ate d M e te r Re ading A larm s
InSide™ 2400 Spe cification Fre q ue ncy:2400 - 2485 M H z VSWR:< 2:1 (on ProA nt de m o b oard) G ain:M ax: 3 dBi D im e nsion: 27 x 12 m m (triang ular), th ick ne ss 1 m m M ounting : 1 adh e sive tape , 3M 467 Inte rface :10 cm coaxial w ith U.FL IPEX conne ctor (oth e r options upon re q ue st) Te m pe rature :- 30 to + 85°C Re g iste re d Com m unity D e sig n: 683354- 0002 RoH S Com pliant A pplications M 2M - com m unications Te le m e tric A utom ate d M e te r Re ading A larm s
Application Note Application Note 2.4 GHz Mica SMD Antenna Rev : FE 010315-C / June 19 2002 Rev : FE 010315-C/June 19 2002 2.4 GHz Mica SMD Antenna 2 (7) Subject to changes without prior notice Features - Designed for 2.4 GHz ( Bluetooth TM , WLAN 802.11b, Home RF) - Intended for SMD mounting - Supplied in tape on reel Applications - Mobile phones - PDAs - Headsets - Laptops - PC Cards - CF Cards Description The Mica antenna is intended for use with all 2.4 GHz applications. The antenna requires a groundplane, i.e your device acts as an active part of the antenna and thus demand careful consideration concerning its placement. General data Mica 2.4 GHz 3030A5645-01 Product name Article No 2.4 - 2.5 GHz Polarization Linear Impedance Operating temperature - 40 to 85 o C Weight 50 Ω 0.4 g Antenna type SMD Frequency 2.7 dBi Peak Gain* 70 % Efficiency* -27.34 --22.33 -17.31 -12.3 -20 -10 0 10 -30 -20 -10 0 -20 -15 -10 -5 0 5 X Y Z 10 20 -7.28 -2.27 2.74 10 15 20 25 20 dBi Radiation Pattern 2.45 GHz Voltage Standing Wave Ratio 2.4 2.45 2.5 GHz VSWR 1:1 3:1 * HP9770 Network Analyzer 2:1 VSWR* >2:1 * Mica reference board Rev : FE 010315-C/June 19 2002 2.4 GHz Mica SMD Antenna 3 (7) Subject to changes without prior notice Mica 2.4 GHz test board characteristics & RF performance The testboard is designed for evaluation purposes for Mica 2.4 GHz SMD antenna. The card has the same size as a typical PCMCIA card and is fitted with a SMA connector. Test board matching Radiation patterns -35 dBi -25 dBi -15 dBi -5 dBi 5 dBi 15 dBi 30 210 60 240 90 270 120 300 150 330 1800 2.40 GHz 2.45 GHz 2.50 GHz X Y -35 dBi -25 dBi -15 dBi -5 dBi 5 dBi 15 dBi 30 210 60 240 90270 120 300 150 330 180 0 2.40 GHz 2.45 GHz 2.50 GHz X Z -35 dBi -25 dBi -15 dBi -5 dBi 5 dBi 15 dBi 30 210 60 240 90270 120 300 150 330 180 0 2.40 GHz 2.45 GHz 2.50 GHz Y Z XY- Plane XZ- Plane Series resistor 0 Ohm The antenna on the test board does not require any matching. A zero Ohm resistor is used as a series component. Note! Component matching will be necessary for other applications. Component values values will vary depending on size of PCB board, surrounding components etc. 0 Test board dimensions (mm) YZ- Plane Rev : FE 010315-C/June 19 2002 2.4 GHz Mica SMD Antenna 4 (7) Subject to changes without prior notice Antenna Dimensions G F S1 S2 L H I J K L M N X = Year YY = Week No. Article No. W G F S1S2 I K L M N O P Copper area Soldering pads Transparent area Antenna Foot print GFS1S2ILKM Ground Feed SolderSolder Dimensions in millimeters NOP 1.2 ±0.11.2 ±0.11.2 ±0.1 1.2 ±0.13.2 ±0.1 1.0 ±0.1 5.5 ±0.17.7 ±0.10.75±0.10.5 ±0.10.5±0.1 Length WHGFS1 S2ILKML WidthHeightGroundFeedSolder Dimensions in millimeters J 1.2 ±0.11.2 ±0.1 3.2 ±0.13.35 ±0.13.6 ±0.120.5 ±0.21.0 ±0.1 5.5 ±0.1 7.7 ±0.11.2 ±0.10.55 ±0.25 N 0.2 ±0.1 Rev : FE 010315-C/June 19 2002 2.4 GHz Mica SMD Antenna 5 (7) Subject to changes without prior notice Typical config. 1 Typical config. 2 Component types Inductor Capacitor Electrical interface t W Copper area Soldering pads Transparent area C Proposed land dimensions Module Strip line DC Block Component Component Component The matching network has to be individually designed using one, two or three components. t W C Transmission line: Unique dimensioning according to your PCB * Component matching: Inductor and capacitor values according to your specific device* Transmission line: Unique dimensioning according to your PCB * Rev : FE 010315-C/June 19 2002 2.4 GHz Mica SMD Antenna 6 (7) Subject to changes without prior notice Application example 2.4 GHz Module Front Surface 1 2 3 6 7 Y Y C C D 7 Back Surface General The antenna is of a quarter wave type and is dependent of the groundplane area to complete the antenna function. The antenna performance is also dependent of the size of the groundplane. 1.Placement of the antenna The antenna shall be placed on a groundplane area, preferably at the edge of the PCB oriented as above. Ground plane shall be avoided in the Y- direction. 2.Placement of 2.4 GHz module To avoid losses in the strip line, the module shall be placed as close to the antenna as possible. 3.Strip line The strip line must be dimensioned according to your specific PCB. ( see fig 1). No crossing strip lines are allowed between the strip line and its ground plane. 4.Via connections To avoid spurious effects, via connections must be made to analogue ground. 5.Component matching Component values are depending on antenna placement, PCB dimensions and location of other components. 6.DC Block Might be needed depending on RF Module configuration. 7.Clearance Front surface: Minimum clearence to other components, C = 2-5 mm, D = 4-7 mm. Back surface: Components allowed. 8.Casing material No metal casing or plastics using metal flakes shall be used, avoid also metallic based paint or laquer. W t h Ground Strip line No crossing strip lines 4 5 Fig. 1 Note !Incorrect implementation of the antenna will affect the performance. Contact gigaAnt for implementation services. Rev : FE 010315-C/June 19 2002 2.4 GHz Mica SMD Antenna 7 (7) Subject to changes without prior notice Packaging SECTION Y-Y Ko Bo REF 3 P2 T D0 D1 E1 W S0 F P1 A0 Y Y P0 0.20 + - 0.05 R 0.75 S0FE1POP1P2A0D1D0W 32 ±0.3 Dimensions in millimeters B0K0 28.4 ±0.1 14.2 ±0.1 1.75 ±0.1 4.0 ±0.1 8.0 ±0.1 2.0 ±0.1 4 ±0.1 21 ±0.1 3.7 ±0.1 0.3 ±0.05 1.5 +0.1 Min 2.0 T Contact information Europe Mail: [email protected] Tel: +46 46 286 21 86 USA Mail: [email protected] Tel: +1 919 719 27 48 ASIA Mail: [email protected] Tel: +65 890 6200 Or your local gigaAnt representative www.gigaAnt.com Ordering Code 30 30 A5645 - 01 Antenna Family -SMD Technology -PCB Drawing No.
Specifications subject to change without notice. 3425 N.44 th Street, LINCOLN, NE 68504 USA SALES PHONE: 800.228.4563 PHONE: 402.467.4491 • FAX: 402.467.4528 www.centurion.com • [email protected] Copyright 2004 Centurion Wireless Technologies, Inc. All Rights Reserved Specifications: Versatile and easy to use antenna for 2.4 to 2.5 GHz Bluetooth and IEEE 802.11 devices Designed for easy connection to radio cards Utilizes Centurion’s patented PCB Microsphere technology Has a ground plane incorporated into the resonator structure, therefore no additional ground plane is required to radiate efficiently Frequency Range 2.4 – 2.5 GHz Gain 2 dBi Polarization Linear Impedance 50 ohms VSWR <2.5:1 Dimensions (L x W x H) 1.88" x .5"x .032" Weight 2 g Cable & Connector: Model # Part # Cable Connector NanoBlue-IP04 MAF94045 100mm, Ø 1.13mm IPEX MHF NanoBlue MAF94102 100mm, RG-178 Flying Lead NanoBlue a – 9/05/05 NanoBlue Model Number: NanoBlue Internal Antenna – Embedded Azimuth Plane 2.45 GHz Elevation Plane Phi = 90 2.45 GHz Elevation Plane Phi = 0 2.45 GHz 1.88"
OutSide™ 2400 Specification Frequency:2400 - 2485 MHz VSWR:< 3:1 Gain:Max: 3 dBi Dimension: 36 x 18 mm, height 16 mm Interface:U.FL IPEX or MMCX on 7 cm cable. Mounting: 2 x 3 mm screws or adhesive tape. Temperature:-30 to +85°C RoHS compliant Applications M2M-communications Telemetric Automated Meter Reading Alarms
37 Rubber Duck/Portable Antenna Series (Pat.Pend.) For 802.11 - 2.4 GHz Applications Frequency:2.4 - 2.485 GHz Gain:2.5 dBi max for 1/2 wave, 0 dBi max for 1/4 wave Bandwidth@2:1 VSWR:85 MHz or better Impedance:50 Ohm nominal Whip Length: 1/2 wave straight4 inches 1/2 wave right angle5.75 inches 1/4 wave stub1.25 inches Specifications PSTN series in PVC radome PSTG0-2400HS Stubby PSWN Series The halfwave antennas require no ground plane for operation. This makes the antenna ideal for use with products with no metal groundplane. They can even be used with products containing all plastic cases. The 2.5 dB gain antenna also compensates for typical system losses that occur at these frequencies. Connectors available include male TNC or SMA. Right angle connector models are available for side mounting applications. The PSTN & PSWN series uses a flexible PVC cover, and the HSTN series uses flexible Santoprene. The new Knuckle PSKN series allows adjustment between right angle and straight. The quarterwave model PSTG0-2400HS antenna for 2.4 GHz provides enhanced performance with the minimum of size. It uses a hard ABS radome and is colored in black with a textured finish. The antenna is fitted with a male SMA. This antenna's performance is ground plane dependent, for best performance it should be mounted on a metal box or PC board. Halfwave 2.5 dB gain styles with flexible radome Quarterwave stubby style with hard ABS radome Wireless LAN (2.4 GHz), Wireless Data Capture & Surveillance applications Sleek profile, with a variety of connector styles Model Numbers - 1/2 Wave Straight Antennas ModelFrequencyRadomeConnector PSTN3-2400S2.4-2.49 GHz FlexibleMale SMA PSTN3-2400T2.4-2.49 GHz FlexibleMale TNC PSTN3-2400N2.4-2.49 GHz FlexibleMale N HSTN3-2400T2.4-2.49 GHz FlexibleMale TNC HSTN3-2400S2.4-2.49 GHz FlexibleMale SMA Model Numbers - 1/4 Wave Stub Antennas ModelFrequencyRadomeConnector PSTG0-2400HS 2.4-2.49 GHz Hard ABS SMA Model Numbers - 1/2 Wave Right Angle Antennas ModelFrequencyStyleConnector PSWN3-2400S2.4-2.49 GHz FlexibleSMA PSWN3-2400T2.4-2.49 GHz FlexibleTNC Model Numbers - 1/2 Wave Knuckle Antennas ModelFrequencyStyleConnector PSKN3-2400S2.4-2.49 GHz FlexibleSMA PSKN3-2400T2.4-2.49 GHz FlexibleTNC Maximum Power:10 Watts Whip Material: PSTN3 SeriesPVC jacket over dipole PSKN3 SeriesBlack polyurethane over dipole HSTN3 SeriesSantoprene over dipole 1/4 wave StubABS radome over radiator Connector:See above Special configurations available upon request, please consult factory for details. HSTN Series Product Specifications US Office & Headquarters: 3900-B River Road, Schiller Park, IL 60176 Tel: 800-648-2800 or 847-671-6690 Fax: 847-671-6715 UK Office: 106 Anglesey Business Park, Hednesford, Staffs. WS12 1NR UK Tel: (+44) 1543-878343 Fax: (+44) 1543-871714 Visit our web page at www.mobilemark.com. Specifications subject to change without notice (6/2003). New! PSKN Series with Adjustable Knuckle
TECHNICAL DATA SHEET 1 / 3 STRAIGHT DIPOLE SMA 2.4GHZ PACKAGING 25 R380.500.139 OMNIDIRECTIONAL ANTENNA Series : ANTENNA Issue : 0740 A In the effort to improve our products, we reserve the right to make changes judged to be necessary. All dimensions are in mm .. pnao TECHNICAL DATA SHEET 2 / 3 STRAIGHT DIPOLE SMA 2.4GHZ PACKAGING 25 R380.500.139 OMNIDIRECTIONAL ANTENNA Series : ANTENNA Issue : 0740 A In the effort to improve our products, we reserve the right to make changes judged to be necessary. ELECTRICAL CHARACTERISTICS Frequency : ...................................... 2.4-2.485 GHz Nominal Impedance : ...................... 50 Ω VSWR : ............................................ 2 Max Gain (Overall gain) :........................ 2 dBi Radiation PatternOmni-directional in the horizontal plane Polarization :.................................... VERTICAL Power withstanding : ....................... 1 W Connector type : .............................. Reverse SMA Plug (Male) (gold plated) MECHANICAL CHARACTERISTICS Plastic radome :................................ HYTREL G 3548 L Color : .............................................. BLACK Ingress Protection : .......................... IP 54 Weight :............................................ 10.2 g Overall length : ............................... 61.1 mm Flexibility : ...................................... 100 Cycles ± 180° Pull Force : ...................................... 68 N Torque Resistance : ......................... 18 N.cm Flammability : ................................. UL94-HB Drop test resistance : ....................... 5 ft drop to concrete (x30) mounted of a 800 g handheld terminal TECHNICAL DATA SHEET 3 / 3 STRAIGHT DIPOLE SMA 2.4GHZ PACKAGING 25 R380.500.139 OMNIDIRECTIONAL ANTENNA Series : ANTENNA Issue : 0740 A In the effort to improve our products, we reserve the right to make changes judged to be necessary. TESTS MECHANICAL Test report n° 2003-13-9245 ENVIRONMENTAL CHARACTERISTICS Operating temperature : ....................... -20/+50 ° C Storage temperature : ........................... -40/+70 ° C TESTS ENVIRONMENTAL Test report n° 2003-19-8353 In accordance with the DEF STAN 00-35 PACKAGING StandardUnitOther 25‘W’ optionContact us
horizontal vertical Radiation Pattern HUBER+SUHNER ® OMNI ANTENNA FOR WIRELESS COMMUNICATION SOA 2400/360/6/0/V Technical Data Electrical Properties Frequency range 2400 - 2500 MHz Impedance 50 Ω VSWR < 1.8 Polarization linear, vertical Gain 6.0 dBi 3 dB beamwidth horizontal 360° Downtilt 0° Lightining protection DC grounded Max. power 25 W Mechanical & Environmental Properties Dimensions Ø 22 x 250 mm (Ø 0.87” x 9.84”) Weight 0.3 kg (0.66 lbs.) Radome material fibre glass UL94 Back/base plane material aluminium 2002/95/EC (RoHS) compliant Operating temperature range - 40°C to + 80°C Storage temperature range - 40°C to + 80°C Windload 3 N at 160km/h (100mph) Available Types Article no. 1324.17.0043 84004596 N female (nato green) 1324.17.0047 84008543 N female (RAL 7035, light grey) Mast mount (9091.99.0173 bracket + 2 metal bands) included Documents 01.02.0777 security instruction Document no.: 01.02.1087 Uncontrolled Copy Issue no.: 6 Issued/Checked/Released: 4159/4174/09.2004 Supersedes: 07.2006 Last amended: 4417/08.2006 WAIVER! It is exclusively in written agreements that we provide our customers with warrants and representations as to the technical contained specifications and/or the fitness for any particular purpose. The facts and figures herein are carefully compiled to the best of our knowledge, but they are intended for general informational purposes only. HUBER+SUHNER is certified according to ISO 9001 and ISO 14001 HUBER+SUHNER – Excellence in Connectivity Solutions HUBER+SUHNER AG RF Technology 9100 Herisau, Switzerland Phone +41 (0)71 353 41 11 Fax +41 (0)71 353 47 51 www.hubersuhner.com HUBER+SUHNER ® OMNI ANTENNA FOR WIRELESS COMMUNICATION SOA 2400/360/6/0/V Dimensions (mm) 250 268 Ø 22
Document no.: 01.02.1317 Uncontrolled Copy Issue no.: 2 Issued/Checked/Released: 4417/4253/03.2006 Supersedes: 02.2006 Last amended: 4417 Page 1/1 WAIVER! It is exclusively in written agreements that we provide our customers with warrants and representations as to the technical contained specifications and/or the fitness for any particular purpose. The facts and figures herein are carefully compiled to the best of our knowledge, but they are intended for general informational purposes only. HUBER+SUHNER is certified according to ISO 9001 and ISO 14001 HUBER+SUHNER – Excellence in Connectivity Solutions HUBER+SUHNER AG RF Technology 9100 Herisau, Switzerland Phone +41 (0)71 353 41 11 Fax +41 (0)71 353 47 51 www.hubersuhner.com horizontal vertical Radiation Pattern HUBER+SUHNER ® OMNI ANTENNA FOR WIRELESS COMMUNICATION SOA 2400/360/3/20/V_C Technical Data Electrical Properties Frequency range 2400 - 2500 MHz Impedance 50 Ω VSWR 1.5 Polarization linear, vertical Gain 3.0 dBi 3 dB beamwidth horizontal 360° 3 dB beamwidth vertical 85° Downtilt 20° Max. power 75 W (CW) at 25°C Mechanical Properties Dimensions Ø 86 x 43 mm (Ø 3.39” x 1.69”) Weight 0.3 kg (0.66 lbs.) Housing material aluminium Radome material ASA Radome color RAL 7035 (light grey) Operating temperature range - 40°C to + 80°C Storage temperature range - 40°C to + 80°C Windload 10 N at 160 km/h (100 mph) Environmental requirements EN 50155 Available Types Article no. 1324.99.0033 84021073 SMA male pigtail (EF 316 D, 1.5 m) 1324.99.0036 84024448 MCX-angle male pigtail (EF 316 D, 1.5 m) Mounting Hardware Ceiling mounting material included. Documents 01.02.0777 security instruction
Specifications subject to change without notice. 3425 N.44 th Street, LINCOLN, NE 68504 USA SALES PHONE: 800.228.4563 PHONE: 402.467.4491 • FAX: 402.467.4528 www.centurion.com • [email protected] Copyright © 2005 Centurion Wireless Technologies, Inc. All Rights Reserved Specifications: ½ wave coaxial dipole Clutch allows 360º rotation Flexible element FCC Part 15 compliant polarized connector Frequency 2.4 – 2.5 GHz Polarization Vertical MMCX 1.0 dBi SMA 2.0 dBi Gain SMRP 1.0 dBi Nominal Impedance 50 ohms VSWR 1.5:1 max at resonance RF Power Handling 50 watts Size (Length) 8cm Temperature Range -40° to +80°C Drop Test 1M Connectors: Model # Part # Connector WCR2400-MMCX WCR2400MMCX MMCX Straight WCR2400-SMA WCR2400SMA SMA-Male WCR2400-SMRP WCR2400SMRP RP-SMA-Male (gold) WCRb – 12/30/05 WCR Model Number: WCR2400 External Antenna – Connector Mount 10 cm 8 cm Azimuth WCR2400MMCX Elevation WCR2400MMCX
Specifications subject to change without notice. 3425 N.44 th Street, LINCOLN, NE 68504 USA SALES PHONE: 800.228.4563 PHONE: 402.467.4491 • FAX: 402.467.4528 www.centurion.com • [email protected] Copyrigh…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 55.00 mW |

WLAN and Bluetooth Module
Equipment Class
DTS - Digital Transmission System
WLAN & Bluetooth Module
Equipment Class
DTS - Digital Transmission System
Wireless Communication System Module
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Wireless Communication System Module
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Bluetooth module
Equipment Class
DTS - Digital Transmission System