PC29.07.0100A TAOGLAS | Alldatasheet

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SPE-11-8-066/A 05-August-11 Page 1 of 13 SPECIFICATION Part No. : PC29.07.0100A Product Name : TheStripe™ Penta-band GSM 850/900/1800/1900 & UMTS/WCDMA(3G) 2100 MHz 80mm*30mm PCB Antenna Features : 100mm long, 1.13 mm diameter Miniature Co-axial Cable IPEX MHF I (U.FL) connector Average Efficiency 62% Tested in Freespace ROHS Compliant Photo : REVISION STATUS Version Date Page Revision Description Prepared Approved

01 Jan 03rd 2007 All New format TW Product Centre Ronan Quinlan

SPE-11-8-066/A 05-August-11 Page 2 of 13 1.0Introduction This high performance, low profile, PCB antenna is based on smart TheStripe™ antenna technology. It consists of a PCB antenna and mini coaxial cable . The product is a high gain Penta-band 850/900/1800/1900/2100 antenna suitable for worldwide GSM, UMTS and WCDMA applications. It’s high efficiency (62% average) makes it an ideal choice to pass telecom operator’s testing approvals. The product should be tested in freespace conditions connected to the client’s cellular device. Further optimization can be done upon receipt of the client’s device at a local Taoglas facility.

2.0 Key Antenna Performance Indicators

Taoglas PC29.07.0100A

3.1 Communication System AMPS GSM DCS PCS UMTS/WCDMA

3.2 Frequency Band 850 MHz 900 MHz 1800 MHz 1900 MHz 2100 MHz

3.8 Impedance 50 Ohm

3.9 Radiation Pattern Omni-directional

3.10 Polarization Horizontal

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3.0 Mechanical Specifications

3.1 Dimensions and Drawing

3.2 Cable and Connector

3.2.1 RF Cable

RF Coaxial Cable ψ1.13 ± 0.1mm L = 100 mm Gray Colour 3.2.1 RF Connector Ipex MHF I (Hirose U.FL compatible)

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4.0 Antenna Placement

Antenna designed to for testing when connected outside the client ’s device and placed in freespace conditions, for example on pl astic foam block. Final product can use p re-applied double sided adhesive tape, slot or screwmount

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5.0 Antenna Electrical Characteristics

5.1 Return Loss

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6.0 Environmental Conditions and Reliability

6.1 Environmental Conditions

2.1.1 Operation Temperature -40°C to + 85°C

2.1.2 Storage Temperature -40°C to + 95°C

2.1.3 Relative Humidity 40% to 95%

6.2 Reliability

Test Items Procedure Requirement Thermal Shock Starting at -40 for 30minutes and then cycled to +85 to remain 30minutes (a complete cycle). To repeat 5 complete cycles. (Refer to IEC 68-2-14 Method Na) 1. The value of return loss must be within product specifications after this test. 2. No physical deformation should be evident. Storage Temperature (Cold) Samples must be put into -30°C chamber for 72 hours and samples shall be powered during test. (Refer to IEC 68-2-1 Method Aa) 1. The value of return loss must be within product specifications after this test. 2. No physical deformation should be evident. Storage Temperature (Dry Heat) Samples must be put into +75°C chamber for 72 hours and samples shall be powered during test. (Refer to IEC 68-2-1 Method Ba) 1. The value of return loss must be within product specifications after this test. 2. No physical deformation should be evident. Operating Temperature (Cold) Samples must be put into -20°C chamber for 2 hours and samples shall be powered during test. (Refer to IEC 68-2-1 Method Aa) 1. The value of return loss must met specification during test/after test 2. No mechanical defects after test. Operating Temperature (Dry Heat) Samples must be put into +65°C chamber for 72 hours and samples shall be powered during test. (Refer to IEC 68-2-1 Method Ba) 1. The value of return loss must met specification during test/after test 2. no mechanical defects after test.

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7.0 Antenna Test Procedures and Setup

7.1 Test Procedure for VSWR/Return Loss

7.1.1 STEP 1 Route Cable in Correct Position

7.1.2 STEP 2 Connect Antenna to Module

Connect feed-line to network analyze

7.1.3 STEP 3 - Assemble Antenna in Correct Position

7.1.4 STEP 4 - Assemble Housing

7.2 3D Radiation Pattern Testing

7.2.1 Test Setup Diagram

SPE-11-8-066/A 05-August-11 Page 8 of 13 7.2.2 3D Radiation Patterns

850 MHz

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900 MHz

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1800 MHz

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1900 MHz

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2100 MHz

SPE-11-8-066/A 05-August-11 Page 13 of 13 7.2.3 3D CHAMBER TESTING – TABULAR RESULTS PC-2904-09