Consider the Design and Analysis of Antennas for a modern ...imapsne.org/virtualCDs/2017/2017...
Transcript of Consider the Design and Analysis of Antennas for a modern ...imapsne.org/virtualCDs/2017/2017...
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Consider the Design and Analysis of Antennas for a modern Smartwatch
By Tracey Vincent
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
1. Overview of a modern smart watch. 2. Challenges posed for the antenna design engineer. 3. An example design. 4. Discuss some approaches in relation to: Electromagnetic design and analysis Mechanical design and co-design Meeting regulatory standards
Smart watch design
Examples developed in collaboration between CST, Magus and SIMULIA
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
A modern smart watch Casing and strap
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
A modern smart watch Casing and strap
Must be practical size
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
A modern smart watch Casing and strap
Must be practical size Aesthetics and materials
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
A modern smart watch Casing and strap
Must be practical size Aesthetics and materials
Touchscreen
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
A modern smart watch Casing and strap
Must be practical size Aesthetics and materials
Touchscreen Battery and charging
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
A modern smart watch Casing and strap
Must be practical size Materials and aesthetics
Touchscreen Battery and charging Electronics
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
A modern smart watch Casing and strap
Must be practical size Aesthetics and materials
Touchscreen Battery and charging Electronics Flexibility and functionality
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Concept design
Large screen. Differentiate touch and tap.
Modular strap. Connected to watch body. Interchangeable modules. User customization.
Bluetooth, Wi-Fi, GPS and GSM capable
Wireless charging required.
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Concept design
Standard mating connectors between modules / to watch body. Continuous ground plane, data and power lines
Aluminium/polycarbonate casing Polycarbonate strap/module housing
Maximize data transfer rates achievable between strap modules (>1 Gb/s) Minimize interference risk Adhere to exposure standards Optimise for mechanical reliability and manufacture methods
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Design process
Sub-system EM and RF design
(touchscreen, charging, etc.)
Concept and Mechanical design
(connectors, touchscreen etc.)
Antenna Design
EM Simulation
Mechanical Analysis
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Design process
Sub-system design
(touchscreen, charging, etc.)
Mechanical design
(touchscreen, connectors, etc.)
Antenna Design
EM Simulation
Mechanical analysis
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Concept design - Connectivity WiFi (2.401 – 2.495 GHz) Bluetooth (2.4 – 2.485 GHz)
GPS (1.563 – 1.587 GHz)
GSM/Cellular (e.g. 880 - 960 MHz)
S11 < -10 dB Best possible radiation efficiency
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Fit within the space available Efficient and well matched antennas (power use) Work alongside other electronics/systems Cater for different usage scenarios and environments Adhere to safety standards
Antenna requirements
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Antenna challenges: Space
~75 mm
~70 mm
< 40 mm
< 40 mm
< 8 mm
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Antenna challenges: Space
WiFi (2.401 – 2.495 GHz) Bluetooth (2.4 – 2.485 GHz) GPS (1.563 – 1.587 GHz) GSM (880 - 960 MHz)
Freespace wavelength/2
~70 mm
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Antenna challenges: Space
Metal casing (Aluminum)
Strap module and electronics
Touchscreen with conductive sensing grid
Watch PCB
Battery
Wireless charging coil and circuitry
Metal/polycarbonate underside
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi and Bluetooth antennas
Conformal Bluetooth Antenna for the Watch-Type Wireless
Communication Device Application
Chih-Hsien Wu*(1), Kin-Lu Wong(1), Yuan-Chih Lin (1), and Saou-Wen Su (2) (1)Department of Electrical Engineering
National Sun Yat-Sen University, Kaohsiung 804, Taiwan (2)Technology Research and Development Center
Lite-On Technology Corp., Taipei 114, Taiwan
Design of a Compact UWB Diversity Antenna for WBAN Wrist-Watch Applications
*Seungmin Woo, Jisoo Baek, Hyungsang Park, Dongtak Kim and #Jaehoon Choi Department of Electronics and Computer Engineering, Hanyang University 17
Haengdang-Dong, Seongdong-Gu, Seoul, 133-791, Korea
Published papers
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi / Bluetooth antenna – option 1
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi / Bluetooth antenna – option 1
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Choose application
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Choose application
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Choose application
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Choose antenna
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Choose antenna
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Automatic design
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Adjust specification
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Learn about the antenna limitations
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi / Bluetooth antenna – option 1
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi / Bluetooth antenna – option 2
Conformal Bluetooth Antenna for the Watch-Type Wireless Communication Device Application
Chih-Hsien Wu*(1), Kin-Lu Wong(1), Yuan-Chih Lin (1), and Saou-Wen Su (2)
(1)Department of Electrical Engineering National Sun Yat-Sen University, Kaohsiung 804, Taiwan
(2)Technology Research and Development Center Lite-On Technology Corp., Taipei 114, Taiwan
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi / Bluetooth antenna – option 2
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi / Bluetooth antenna – position
Polycarbonate ‘Windows’
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi / Bluetooth antenna – option 2
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi / Bluetooth antenna – option 2
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi / Bluetooth antenna – option 2
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi and Bluetooth antennas
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi and Bluetooth antennas
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi and Bluetooth antenna
WiFi/Bluetooth
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi and Bluetooth antennas
Watch on arm
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Watch off arm
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi and Bluetooth antennas
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
WiFi and Bluetooth antennas
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
GPS signals are Circularly Polarised Traditionally patch antennas or helix variants are used
for GPS applications Literature and Antenna Magus designs show that these
antennas are too large
GPS antennas
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Inverted-F type antenna designed for GPS housed in the watch body
The GPS antenna is poorly matched and realised circularly polarised gain is poor
Performance varies on or off the wrist
GPS antennas
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
We would like improved axial ratio and efficiency.
A high-performance GPS strap module could be used
Largely immune to usage scenario
GPS antennas GPS
on-board GPS
Module
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
GPS antennas GPS Module GPS on-board
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
What about GSM? At lower frequencies (e.g. GSM 900) more space than is available in the casing is needed
Published papers
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CST – COMPUTER SIMULATION TECHNOLOGY | www.cst.com
Use the strap like a dipole Investigate and design by
simulation with simplified ‘canonical’ models
Will it work with the modular strap?
How will electronics be influenced?
What about GSM?
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What about GSM?
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What about GSM?
For GSM850/900 only 5 of the 6 strap modules should be connected to form the
antenna
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Modelling the environment
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Modelling the environment
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European standard for limbs: SAR (Specific absorption rate) should be less than 4 W/kg
averaged over 10 g
Antenna challenges: Exposure
Transmitter: - 2W peak power - Active for 1/8th
of every second - 0.25W RMS input
power
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Concept design
Large screen. Differentiate touch and tap.
Maximize data transfer rates achievable between strap modules (>1 Gb/s) Minimize interference risk
Bluetooth, Wi-Fi, GPS and GSM capable
Wireless charging required. Optimise mechanical reliability
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Analysis – mechanical reliability Many studies and
optimizations possible Reliability of strap
module connectors Material choices and
manufacture methods
Drop test simulation Etc.
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Analysis - Touch Screen Movement of finger Capacitance Values
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Analysis - Touch Screen Considering deformation due to finger pressure on glass Capacitance Undeformed Capacitance Deformed
Electric field lines
Mechanical and EM co-simulation
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Analysis – Wireless charging
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Analysis – Wireless charging
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YZ cut-plane XZ cut-plane
Magnetic Field @ 6.78MHz
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Analysis - Modular electronics
“Bus”
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Analysis - Modular electronics
“Daisy chain”
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Analysis - Modular electronics
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“Daisy-chain” Achieved Target
Transfer Rate 1.5Gb/s 1Gb/s
Eye Opening 0.3mV 0.2mV
Analysis - Signal Integrity
Eye Diagram – 1.5Gb/s
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Analysis - Signal Integrity
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Each antenna and subsystem design requires assumptions about other system components
An understanding of the interaction between sub-systems and the shared impact of design choices takes time to evolve
Each component design needs to be refined, leveraging understanding of this interaction
An integrated, multi-disciplinary toolset is critical in this process
Designing in a system
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First antenna concepts
IFA-type antennas for
Wifi/Bluetooth and GPS
GSM antenna using the strap
and casing body
High-performance GPS module
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A first design concept
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Thank you