Ceramic Monopole Antenna Ground cleared under antenna. Pulse Part Number: W3000
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- Lionel Ward
- 5 years ago
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1 Features Multipurpose for various frequencies Omni directional radiation Low profile Compact size W x L x H (7 x 1.6 x 1.6 mm) Low weight (86 mg) Lead free materials Fully SMD compatible Lead free soldering compatible Tape and reel packing RoHS compliant product Applications Bluetooth, WLAN, WiFi IEEE b/g ZigBee IEEE GHz WLAN 2.4 GHz ISM Band System 868 MHz ISM Band Systems GPS GHz Electrical +25 C Note: Electrical characteristics depend on test board (GP) size and antenna positioning on GP and ground clearance area size. Matching and tuning circuit component values are case depended.
2 Monopole GHz Typical performance Board Frequency Range [MHz] Avg Gain [dbi] Max Gain [dbi] Efficiency [%] / [db] Return loss min. [db] Impedance [Ω] Operating Temperature [ C] Case #1 11x40mm -3.5 (Peak) -3.9 (Band edges 0.1 (Peak) -0.2 (Band 50/-3 (Peak) 45/-3.5 (Band -12 Case #2 20x30mm (Peak) -4.1 (Band 0.3 (Peak) 0 (Band 50/-3 (Peak) 45/-3.5 (Band to +85 Case #3 37x80mm -2.7 (Peak) -2.9 (Band 2.0 (Peak) 1.7 (Band 70/-1.55 (Peak) 65/-1.9 (Band -18 Monopole 2.4 GHz Typical performance Board Frequency Range [MHz] Avg Gain [dbi] Max Gain [dbi] Efficiency [%] / [db] Return loss min. [db] Impedance [Ω] Operating Temperature [ C] Case #1 11x40mm Case #2 20x30mm -4.1 (Peak) -3.7 (Band -4.0 (Peak) -4.3 (Band 2.5 (Peak) 2.1 (Band 2.2 (Peak) 1.5 (Band 65/-0.3 (Peak) 55/-0.6 (Band 52/-2.9 (Peak) 46/-3.4 (Band to +85 ISM 868 MHz Typical performance Board Frequency Range [MHz] Avg Gain [dbi] Max Gain [dbi] Efficiency [%] / [db] Return loss min. [db] Impedance [Ω] Operating Temperature [ C] Case #1 20x40mm Vertical 858 Case # x40mm Horizontal -6.5 (Peak) -7 (Band -6.5 (Peak) -6.8 (Band -1.8 (Peak) -2.5 (Band -1.4 (Peak) -2 (Band 29/-5.4 (Peak) 25/-6 (Band 30/-5.3 (Peak) 28/-5.55 (Band to +85
3 Terminal Configuration and Dimensions Ag metallization contact pad area (2x) 1.36± ±0.20 Pads 1 & ± ± ± ±0.10 Ag metallization Antenna features No. 1 2 Terminal name Feed / GND Feed / GND Terminal Dimensions 1.00 x 1.36 mm 1.00 x 1.36 mm Antenna is symmetrical. Either of terminals 1 or 2 can be feed / GND
4 Packing Form
5 Antenna PWB Layout Specifications Ground cleared under antenna, clearance area x 6.00 mm Matching and tuning component values depend on application and surrounding mechanics / materials. Feed line should be designed to match 50 Ω characteristic impedance, depending on PWB material and thickness. Recommended test board layout for electrical characteristic measurement, test board outline size 11 x 40 mm. Recommended PWB manufacturing tolerances according to standard: IPC-A-600, revision G PWB layout for W3000 Monopole Antenna Note: All dimensions are in metric system.
6 PWB Pad Dimensions
7 GPS Antenna Case #1 Board Size 40 x 11 mm Recommended antenna position on PWB for W3000 MONOPOLE Antenna
8 GPS Antenna Case #1, Test Set Up and Measurement Performance Ground cleared under antenna, clearance area x 6.00 mm. Typical Electrical Characteristics (T=25 C) Measured on the 11 x 40 mm test board with matching circuit. Measured in antenna position1 on PWB layout, see previous page. Typical Return Loss S11/ impedance, free space efficiency and gain. 27 nh 4.7 nh 3.9 nh PRm GPS GHz Case #1 11 Feb :44:05 CH1 S11&MLOG 5 db/ref 0 db CH1Markers db GHz db GHz db GHz Rad Eff [%] GPS GHz Case #1 80 % 70 % 60 % 50 % Rad Eff [db] Cor 40 % PRm Del Cor CENTER GHz GPS GHz #1 24 Feb :55:57 CH1 S11&M 1 U FS SPAN 400 MHz Ω Ω GHz Ω Ω nh GHz Ω Ω GHz Linear Max Gain [dbi] 30 % 20 % 10 % 0 % GPS GHz Case # GPS GHz Case # Rad Eff [%] Max Gain [dbi] Rad Eff [db] Avg Gain [db] Average Gain [db] CENTER GHz SPAN 400 MHz RHCP Max Gain [dbic] RHCP [dbic] RHCP Avg Gain [dbic] RHCP Avg Gain [dbic]
9 GPS Antenna Case #1 Typical Free Space Radiation Patterns XZ-PLANE ZY-PLANE XY-PLANE
10 GPS Antenna Case #2 Board Size 20x30 Recommended antenna position on PWB for W3000 MONOPOLE Antenna
11 GPS Antenna Case #2, Test Set Up and Measurement Performance Ground cleared under antenna, clearance area x 6.00 mm. 18 nh 3.3 nh Typical Electrical Characteristics (T=25 C) Measured on the 30 x 20 mm test board with matching circuit. Measured in antenna position1 on PWB layout, see previous page. Typical Return Loss S11/ impedance, free space efficiency and gain. 3.9 nh GPS GHz Case #2 24 Feb :56:26 CH1 S11&MLOG 5 db/ref 0 db CH1Markers db GHz db GHz db GHz Rad Eff [%] GPS GHz Case #2 80 % 70 % 60 % 50 % Rad Eff [db] Cor 40 % Cor CENTER GHz GPS GHz #2 24 Feb :56:33 CH1 S11&M 1 U FS SPAN 400 MHz Ω Ω GHz Ω Ω pf GHz Ω Ω GHz Linear Max Gain [dbi] 30 % 20 % 10 % 0 % GPS GHz Case # GPS GHz Case # Rad Eff [%] Max Gain [dbi] Rad Eff [db] Avg Gain [db] Average Gain [db] CENTER GHz SPAN 400 MHz RHCP Max Gain [dbic] RHCP [dbic] RHCP Avg Gain [dbic] RHCP Avg Gain [dbic]
12 GPS Antenna Case #2 Typical Free Space Radiation Patterns XZ-PLANE ZY-PLANE XY-PLANE
13 GPS Antenna Case #3 Board Size 37 x 80 mm Recommended antenna position on PWB for W3000 MONOPOLE Antenna
14 GPS Antenna Case #3, Test Set Up and Measurement Performance Ground cleared under antenna, clearance area x 6.00 mm. 12 nh 5.6 nh Typical Electrical Characteristics (T=25 C) Measured on the 30 x 20 mm test board with matching circuit. Measured in antenna position1 on PWB layout, see previous page. Typical Return Loss S11/ impedance, free space efficiency and gain. 3.9 nh GPS GHz Case #3 24 Feb :57:25 CH1 S11&MLOG 5 db/ref 0 db CH1Markers db GHz db GHz db GHz Rad Eff [%] GPS GHz Case #3 80 % 70 % 60 % 50 % Rad Eff [db] Cor 40 % 30 % 20 % 10 % 0 % GPS GHz Case #3 Rad Eff [%] Rad Eff [db] CENTER GHz GPS GHz #3 24 Feb :55:57 CH1 S11&M 1 U FS Cor 12 3 SPAN 400 MHz Ω Ω GHz Ω Ω pf GHz Ω Ω GHz Linear Max Gain [dbi] GPS GHz Case # Max Gain [dbi] Avg Gain [db] Average Gain [db] CENTER GHz SPAN 400 MHz RHCP Max Gain [dbic] RHCP [dbic] RHCP Avg Gain [dbic] RHCP Avg Gain [dbic]
15 GPS Antenna Case #3 Typical Free Space Radiation Patterns XZ-PLANE ZY-PLANE XY-PLANE
16 WiFi Antenna Case #1 Board Size 40 x 11 mm Recommended antenna position on PWB for W3000 MONOPOLE Antenna
17 WiFi Antenna Case #1, Test Set Up and Measurement Performance Ground cleared under antenna, clearance area x 6.00 mm. 4.7 nh 3.3 nh 0.5 pf Typical Electrical Characteristics (T=25 C) Measured on the 11 x 40 mm test board with matching circuit. Measured in antenna position1 on PWB layout, see previous page. Typical Return Loss S11/ impedance, free space efficiency and gain. 2.4 GHz WiFi Case #1 19 Oct :52:24 CH1 S11 LOG 6 db/ref 0 db CH1Markers db GHz db GHz 2.4 GHz WiFi #1 11 Oct :52:35 CH1 S11 1 U FS Ω Ω GHz Ω 78 Ω GHz ph PRm Cor Cor START MHz STOP MHz START MHz STOP MHz 2.4 GHz WiFi Case #1 2.4 GHz WiFi Case #1 Rad Eff [%] 70 % 60 % 50 % 40 % 30 % 20 % 10 % Rad Eff [db] Max Gain [dbi] Average Gain [dbi] Rad Eff [%] Rad Eff [db] Max Gain Avg. Gain
18 WiFi Antenna Case #1 Typical Free Space Radiation Patterns XZ-PLANE ZY-PLANE XY-PLANE
19 WiFi Antenna Case #2 Board Size 20 x 30 mm Recommended antenna position on PWB for W3000 MONOPOLE Antenna
20 WiFi Antenna Case #2, Test Set Up and Measurement Performance Ground cleared under antenna, clearance area x 6.00 mm. 4.7 nh 3.3 nh Typical Electrical Characteristics (T=25 C) Measured on the 30 x 20 mm test board with matching circuit. Measured in antenna position1 on PWB layout, see previous page. Typical Return Loss S11/ impedance, free space efficiency and gain. 1.5 pf 2.4 GHz WiFi Case #2 19 Oct :48:18 CH1 MLOG 6 db/ref 0 db CH1Markers db GHz db GHz 2.4 GHz WiFi #2 11 Feb :47:36 CH1 S11 1 U FS CH1Markers Ω Ω GHz Ω Ω GHz nh Cor Cor START MHz STOP MHz START MHz STOP MHz 2.4 GHz WiFi Case #2 2.4 GHz WiFi Case #2 70 % Rad Eff [%] 60 % 50 % 40 % 30 % 20 % 10 % 0 % Rad Eff [db] Linear Max Gain [dbi] Average Gain [dbi] Rad Eff [%] Rad Eff [db] Max Gain Avg. Gain
21 WiFi Antenna Case #2 Typical Free Space Radiation Patterns XZ-PLANE ZY-PLANE XY-PLANE
22 ISM 868 MHz Antenna Case #1 Board Size 20 x 40 mm Recommended antenna position on PWB for W3000 MONOPOLE Antenna
23 2.7 nh 5.6 nh 1.5 pf 18 nh 3.3 nh 3.9 nh 18 nh 4.7 nh 3.9 nh ISM 868 MHz Antenna Case #1, Test Set Up and Measurement 4.7 nh 3.3 nh Performance 12 nh 5.6 nh 0.5 pf 3.9 nh 27 nh 4.7 nh 3.9 nh Typical Electrical Characteristics (T=25 C) Measured on the 20 x 40 mm test board with matching circuit. Measured in antenna position1 39 nh 0 Ω on PWB layout, see previous page. Typical Return Loss S11/ impedance, 4.7 nh 3.3 nhfree space efficiency and 6.8 gain. nh 1.5 pf 27 nh 0 Ω 3.9 nh PRm Del Cor ISM 868 MHz Case #1 24 Mar :05:57 CH1 S11&MLOG 5 db/ref 0 db CH1Markers db 858 MHz db 868 MHz db 878 MHz ISM 868 MHz #1 24 Mar :06:06 Matching Component (optional shunt) Ω Ω 858 MHz Feed contact Ω Ω pf 868 MHz CH1 S11&M 1 U FS Ω Ω Ground 878 area MHz Ground contact Ground via hole Ground area should be surrounded with Ground PRm via holes Del Cor Feed line 50 Ohm Any type of 50 Ohm feed line can be used. Inner layers on feedline area need to designed to give E 50 Ohm characteristics to feed line. A B C D F G H CENTER 869 MHz SPAN 200 MHz CENTER 869 MHz SPAN 200 MHz ISM 868 MHz Case #1 ISM 868 MHz Case #1 Rad Eff [%] 50 % 45 % 40 % 35 % 30 % 25 % 20 % 15 % 10 % 5 % 0 % Rad Eff [db] Linear Max Gain [dbi] Average Gain [dbi] Rad Eff [%] Rad Eff [db] Max Gain Avg. Gain
24 ISM 868 MHz Antenna Case #1 Typical Free Space Radiation Patterns XZ-PLANE ZY-PLANE XY-PLANE
25 ISM 868 MHz Antenna Case #2 Board Size 20 x 40 mm Recommended antenna position on PWB for W3000 MONOPOLE Antenna
26 2.7 nh 5.6 nh 1.5 pf 18 nh 3.3 nh 3.9 nh 18 nh ISM 868 MHz Antenna Case #2, Test Set Up and Measurement Performance 4.7 nh 3.3 nh 0.5 pf 12 nh 5.6 nh 3.9 nh 27 nh Typical Electrical Characteristics (T=25 C) Measured on the 20 x 40 mm test board with matching circuit. Measured in antenna position1 on 4.7 nh 3.3 nh PWB layout, see previous page. Typical Return Loss S11/ impedance, free space efficiency and gain 39 nh 0 Ω 6.8 nh 27 nh 1.5 pf PRm Del Cor ISM 868 MHz Case #2 24 Mar :07:15 CH1 S11&MLOG 5 db/ref 0 db CH1Markers db 858 MHz db 868 MHz db 878 MHz PRm Del Cor ISM 868 MHz #2 24 Mar :07:23 CH1 S11&M 1 U FS Ω Matching Component Ω (optional 858 MHz shunt) Ω Ω pf 868MHz Feed contact Ω Ω 878 MHz Ground contact E Ground a Ground v Ground are via holes Feed line Any type o layers on fe 50 Ohm ch A B C D F G H CENTER MHz SPAN MHz CENTER MHz SPAN MHz ISM 868 MHz Case #2 ISM 868 MHz Case #2 Rad Eff [%] 50 % 45 % 40 % 35 % 30 % 25 % 20 % 15 % 10 % 5 % 0 % Rad Eff [db] Linear Max Gain [dbi] Average Gain [dbi] Rad Eff [%] Rad Eff [db] Max Gain Avg. Gain
27 ISM 868 MHz Antenna Case #2 Typical Free Space Radiation Patterns XZ-PLANE ZY-PLANE XY-PLANE
28 For More Information, Please Contact FI Kempele Finland Tel Fax (sales) Domicile: Kempele Business ID: Pulse World Wide Headquarters World Trade Drive San Diego, CA U.S.A. Tel Fax This is a Preliminary product application notes. Products mentioned on this application notes are in development and in the process of being qualified. These products are not fully released nor are they in production. Features, specifications and performance of products offered are subject to change without notice. Other brand and product names mentioned herein may be products and/or registered trademarks of their respective ones. For current info on this product, please contact the Pulse San Diego office. Copyright, All rights reserved.
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