SAW Products. SAW Products

Similar documents
PX-990 Crystal Oscillator Ultra Low Noise and G-Sensitivity

VX-990 Voltage Controlled Crystal Oscillator Ultra Low Noise and G-Sensitivity

TX-705 Temperature Compensated Crystal Oscillator

High Temperature Electronics

VTC2 Series Voltage Controlled Temperature Compensated Crystal Oscillator

Performance Specifications. Parameter Min Typ Max Units Condition. ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm

Performance Specifications

OX-175 Ultra Low Noise Oven Controlled Crystal Oscillator

OX-171 Oven Controlled Crystal Oscillator

VTC4 series Voltage Controlled Temperature Compensated Crystal Oscillator

Surface Acoustic Wave Devices - Challenges for Technology Development

VS-507 Voltage Controlled SAW Oscillator

OX-200 Oven Controlled Crystal Oscillator

HT RTCXO High Temperature Low Power Real Time Clock Crystal Oscillators

TX-707 Low g-sensitivity Temperature Compensated Crystal Oscillator

VX-500 Voltage Controlled Crystal Oscillator

VS-800 Ultra-Low Jitter High Frequency VCSO

PX-702 PX-570 PX-420

VT-860 Temperature Compensated Crystal Oscillator

TX-801 Temperature Compensated Crystal Oscillator

Performance Specifications

TX-500 Temperature Compensated Crystal Oscillator

PS-701 SAW Oscillator

MX-600 Microprocessor Controlled Crystal Oscillator High Precision

VS-708 Single Frequency VCSO

VT-800 Temperature Compensated Crystal Oscillator Previous Vectron Model VTC4

VS-504 Dual Frequency VCSO High Frequency

PX-570 High Temperature Crystal Oscillator

PX-422 Hybrid TTL Clock Oscillator

VX-503 Voltage Controlled Crystal Oscillator

VVC1 VVC2 Voltage Controlled Crystal Oscillator

MX-503 Microprocessor Controlled Crystal Oscillator High Precision

TX-700 Temperature Compensated Crystal Oscillator

VT-501 Temperature Compensated Crystal Oscillator Previous Vectron Model VTD3

VX-505 Voltage Controlled Crystal Oscillator Extended Temperature

PX-421 Crystal Oscillator

VCC4 series 1.8, 2.5, 3.3, 5.0 volt CMOS Oscillator

Note. Figure1. The Temperature Stability ranges of various oscillator types

VX-706 Voltage Controlled Crystal Oscillator

VC-827 Differential (LVPECL, LVDS) Crystal Oscillator

VC-711 Differential (LVPECL, LVDS) Crystal Oscillator

VT-701 Temperature Compensated Crystal Oscillator Previous Vectron Model VTC2

EX-421 Evacuated Miniature Crystal Oscillator

VX-701 Voltage Controlled Crystal Oscillator

VSS4 series 3.3 Volt Spread Spectrum CMOS Oscillator

OX-221 Oven Controlled Crystal Oscillator

VX-805 Voltage Controlled Crystal Oscillator

VCC6-L/V 2.5 or 3.3 volt LVDS Oscillator

MD-403 I2C InterfaceOven Controlled Crystal Oscillator

Description. Block Diagram. Complementary Output. Output. Crystal. Oscillator. E/D or NC

MD-261 MD-261. Features. Applications. Block Diagram. GNSS (GPS and GLONASS) Disciplined Oscillator Module

VC-820 CMOS Crystal Oscillator

VC-708 VC-708. LVPECL, LVDS Crystal Oscillator Data Sheet Ultra Low Phase Noise. Description

Keywords: ISM, RF, transmitter, short-range, RFIC, switching power amplifier, ETSI

VCO-600A Voltage Controlled Saw Oscillator

PRODUCT SELECTION GUIDE

HT-MM900A Military Temperature Oscillator

VCC6-Q/R Series 2.5 and 3.3 volt LVPECL Crystal Oscillator

Using High-Directivity Couplers in Isolatorless Cellular Phone PA Control

VC-801 CMOS Crystal Oscillator Previous Vectron Model VCC4

MV-9300A 1-80 MHz High Performance VCXO

VV-701 Voltage Controlled Crystal Oscillator Previous Vectron Model VVC1/VVC2

Block Diagram. Figure 1. Functional Block Diagram

A Review of High Frequency Passive Component Technologies (Thin-Film, Thick-Film, Discretes & PMC) for RF Design Applications

VCA1 series 3.3, 5.0 volt CMOS Oscillator

VCC M CMOS Crystal Oscillator

Session 3. CMOS RF IC Design Principles

VX-705 Voltage Controlled Crystal Oscillator

Performance Specifications. Frequency Stabilities Supply Voltage (Vs) ma ma. RF Output

TRANSPORTATION COMMUNICATION SOLUTIONS

FILTRONETICS INC. Quality Technology by Quality People

VCC4 series 1.8, 2.5, 3.3, 5.0 volt CMOS Oscillator

VS-500A Voltage Controlled Saw Oscillator

Linear-In-dB RF Power Detector In W-CDMA User Equipment

INVENTION DISCLOSURE- ELECTRONICS SUBJECT MATTER IMPEDANCE MATCHING ANTENNA-INTEGRATED HIGH-EFFICIENCY ENERGY HARVESTING CIRCUIT

Description. Block Diagrams. Figure 1b. Crystal-Based Multiplier w/saw

MHz. Performance Specifications

Co-existence. DECT/CAT-iq vs. other wireless technologies from a HW perspective

RF/Microwave Filters. Product & Capabilities Overview

Networks International Corp. NIC Overview NETWORKS INTERNATIONAL CORPORATION. P: (913) F: (913)

V-Type Voltage Controlled Crystal Oscillator (VCXO)

SINCLAIR TECHNOLOGIES TRANSPORTATION COMMUNICATION SOLUTIONS

RADIO RECEIVERS ECE 3103 WIRELESS COMMUNICATION SYSTEMS

Performance Specifications

Design of a BAW Quadplexer Module Using NI AWR Software

VS-751 VS-751. Dual Frequency VCSO. Description. Features. Applications. Block Diagram. Vcc COutput Output SAW 1 SAW 2. Vc FS Gnd

ICS PCI-EXPRESS CLOCK SOURCE. Description. Features. Block Diagram DATASHEET

Power Reduction in RF

Description. Block Diagram LD (10) VMON (5) Phase Detector & LD (9) FIN 4 CFOUT 1 GND (3, 7, 11, 12) Figure 1. Functional block diagram

Microwave Filters Product & Capabilities Overview

J-Type Voltage Controlled Crystal Oscillator

Miniaturization Technology of RF Devices for Mobile Communication Systems

Anaren 0805 (B0809J50ATI) balun optimized for Texas Instruments CC1100/CC1101 Transceiver

Design of Duplexers for Microwave Communication Systems Using Open-loop Square Microstrip Resonators

Application Note SAW-Components

Subminiature Multi-stage Band-Pass Filter Based on LTCC Technology Research

Application Alley. Automated Test Equipment - Reed Relays. Pulsed High Current Testing Applications use Reed Relays PARTNER SOLVE DELIVER

ELECTRO TECHNIK. Phone: ELECTRO TECHNIK

Table 1. large-capacity battery for extended usage time. It also supports the USB 3.0 SuperSpeed standard to enable highspeed

PCI-EXPRESS CLOCK SOURCE. Features

Transcription:

SAW Products SAW Products SAW Modules SAW IF, RF and Integrated Multi-Band Filter Solutions Frequency Range from 30 MHz to 2.7 GHz High-Q SAW Resonators and Narrow-Band Filters High Volume Cost-Efficient Manufacturing Capabilities www.vectron.com

How Do SAW Filters Work? Surface Acoustic Wave (SAW) devices deploy Inter-Digital Transducers (IDTs) to convert electrical signals (MHz range) to mechanical acoustic waves (μm-range) and back again to electrical signals. The conversion makes use of piezoelectric properties to generate and detect acoustic waves. These acoustic wavelengths are 100,000 times shorter than electro-magnetic signals of the same frequency. Therefore, highly miniaturized filters can be realized for Radio Frequency (RF) signal processing. To find the perfect solution for your individual application, a wide variety of SAW design techniques is used. These range from very narrow-band (low loss) designs to very wide-band (low shape factor) designs. INPUT IDT OUTPUT IDT R G R L Vin SAW SAW SAW absorber Piezoelectric substrate SAW absorber SAW Filter Impedance Matching Networks The frequency response of Inter-Digital Transducers in a SAW device can be understood as a combination of a static capacitance between IDT fingers and a highly frequency-dependent, dynamic response related to the electroacoustic conversion. Depending on the strength of the dynamic part of the response and the employed design approach, some SAW filters require impedance matching networks to compensate their capacitive behavior in order to achieve their optimum frequency response. Intermediate Frequency (IF) filters regularly require such reactive matching networks (typically two-element L/C-networks), while RF filters for frontend applications are typically designed to operate in a pre-defined impedance environment (e.g. 50, 100, 200 ) without external circuitry. Vectron can provide SAW Filters with integrated balun (conversion balanced single-ended) functionality and solutions for different terminating impedances at input and output ports (e.g. 50 200 ). Further to these common impedance levels, special solutions to match customized and complex terminating impedances or highimpedance level open-collector circuits are available.

Power Handling Capabilities Increased signal power level is a key approach when good signal to noise ratio in RF transmission systems or outstanding noise floor in oscillator signals is required. While small size is one of the key advantages of Surface Acoustic Wave (SAW) filters compared to competing technologies, the combination of high power levels and small size results in high power densities and therefore risk of premature failure for highly miniaturized solutions. A SAW device s power handling capability depends on numerous factors, such as the employed design approach, the device s center frequency, the exposure signal s frequency and modulation scheme and its duty cycle or the ambient temperature. Vectron s innovative high-power technology significantly reduces degradation effects of micro-acoustic stress caused by high RF signal power, therefore allows realizations of SAW filters with substantially improved power handling capabilities and superior life time and helps system designers to achieve their performance goals. Standard SAW IDT after extended high power exposure IDT in Vectron s high power technology after comparable exposure Advantages of Vectron International Vectron International has been a key supplier of micro-acoustic electronic components like SAW filters, SAW resonators and monolithic crystal filters (MCF) since the early 1990s. We work closely with our customers to understand the application to develop the optimum solution that meets your requirements. Our design capabilities and cost-optimized production facilities allow us to offer components for high volume and high performance markets. Vectron s Commitment to Quality Vectron is, and will remain, a world-class supplier to its global market and will apply innovative, forward-looking ethical principles in complying with the requirements of that market. We are highly committed to recognizing the needs of our customers and to responding to those needs with superior quality, service, responsiveness and specification compliance. All of our employees are dedicated to these principles with total customer satisfaction and continual improvement as their constant goal.

IF Filters To achieve high-performance heterodyne RF transceiver systems, highly selective filters for the Intermediate Frequency (IF) stage are mandatory. For such filters, system designers focus on highly linear amplitude and phase response within the desired filter pass band as well as the steepest possible roll-off to achieve maximum adjacent channel suppression. Vectron uses a large variety of different SAW filter design approaches to fulfill these requirements for all kinds of applications, in line with moderate insertion attenuation to limit amplification requirements and power consumption in the IF stage. Extensive use of resonant and recursive design approaches in the digital world, the latter is known as Infinite Impulse Response (IIR) filters ensure maximum performance in combination with minimum size, whereas other design approaches equivalent to Finite Impulse Response (FIR) filters allow for realization of filter shape factors (ratio of stop-band and pass-band width) very close to the theoretical limit, i.e. even below 1.05. Vectron s SAW IF filters are found in all kinds of high-performance RF systems, from Communications to Military and Space systems, in Medical and Industrial electronics, and in countless other applications. Hundreds of readily developed IF filter solutions in frequency ranges between 30 MHz and 1 GHz, covering fractional bandwidth ranges between 0.01 % and >50 %, are available off the shelf. Selected examples at a center frequency of 200MHz are shown below. RF Filters The strong influence of a front end filter s insertion attenuation on the transceiver system s performance requires the application of low-loss filter design principles, utilizing various kinds of electrically or acoustically coupled high-q SAW resonators. Vectron uses numerous design techniques to realize the required solutions. While filter solutions consisting of a network of one-port SAW resonators offer advantages in terms of minimum insertion attenuation and RF power handling capabilities, filter principles using acoustically coupled resonators are chosen for high out-of-band rejection and for applications requiring integrated impedance transformation (e.g. 50 200 ) or balun (single-ended balanced) functionality. Combinations of both approaches ensure optimum design-to-application. Besides a comprehensive, constantly growing portfolio of RF frontend filters for Communication applications, e.g. most LTE frequency bands, Vectron also offers highly temperature-stable filters for narrow-band RF filtering applications, covering fractional bandwidth ranges of less than 0.1 %. Such devices are widely used in Professional Communication applications, Military Radio systems and Test and Measurement applications, in functionality both as filtering devices and as high-q frequency-determining components for high-frequency oscillators.

Integrated Filter Solutions The complexity of RF transceiver systems is increasing with the integration of numerous frequency bands into one radio unit. Vectron is offering multi-band SAW filter solutions to cope with the challenges resulting from decreasing guard bands between radio channels and multi-channel usage within single radios. Besides selected diplexer and duplexer solutions, Vectron is offering custom-designed discrete or integrated filter bank solutions to support radios with multiple transmission bands with constant absolute or constant relative channel bandwidths. Fixed Absolute Bandwidth Fixed Relative Bandwidth Industrial, Scientific and Medical Applications The need for high power efficiency in many RF systems for ISM (Industrial, Scientific, and Medical) applications requires SAW filters with low insertion attenuation. To achieve this, resonant or recursive SAW filter design principles are applied, allowing to achieve lowest insertion attenuation or steep filter transitions. A variety of solutions for ISM and MICS (Medical Implant Communication Service) band applications are readily available, suiting different filtering requirements in terms of insertion attenuation, stop-band rejection and transition regions. Highperformance resonators in the respective ISM and MICS bands, to support SAW-based oscillator applications, are available as well. Product Center Frequency/MHz Bandwidth/ MHz Insertion Attenuation/ db Package size / mm 2 TFS403A 403.5 3.0 5.5 3.8x3.8 TFS403B 403.5 3.0 2.5 3.8x3.8 TFS403G 403.5 3.0 3 2.5x2.0 TFS403L 403.5 3.0 4.0 2.0X1.6 TFS433V 433.92 0.32 3.0 3.8x3.8 TFS433Z 433.92 0.32 3.0 5.0x5.0 TFS868C 868.30 0.50 5.5 3.8x3.8 TFS868H 868.30 0.40 3.8 3.8x3.8 TFS915L 915.0 0.70 5.5 3.8x3.8 TFS915P 915.0 26.0 2.9 3.8x3.8

Navigation Applications Vectron offers a comprehensive family of RF front-end and inter-stage filters for Global Navigation Satellite Systems (GNSS) applications, supporting the full range of single- and multi-mode (GPS, Glonass, Galileo, Beidou) and single- and multi-band (lower / upper L-band) system applications. GNSS Band f start f stop Single-Band Solution Multi-Band Solutions Diplexers E5a 1164 1189 TFS1176 TFS1188 E5b 1189 1214 TFS1204A TFS1191 B2 1192.14 1222.14 L2 1215 1237 TFS1227B TFS1227C G2 1237 1254 TFS1245A B3 1248.52 1288.52 E4 1254 1258 TFS1237 TFS1237C TFS1225D TFS1209 TFS1191B TFS1255A TFS1238 TFS1225C TDX1210 TDX1227 E6 1260 1300 TFS1278A L-band 1525 1559 TFS1542D SAR 1544 1545 B1 1555.42 1595.42 TFS1575Z E2 1559 1563 L1 1563 1587 TFS1575D TFS1575Z TFS1590 L1 C/A 1574.22 1576.62 TFS1575AD E1 1587 1591 G1 1593 1610 TFS1601A TFS1590C TF- S1575AG TFS1580A TFS1581 TFS1581B TDX1210 TDX1227 Systems GPS Glonass Beidou Galileo Others se - single-ended (unbalanced operation) bal - balanced (differential operation) A comprehensive range of IF filters for professional navigation systems, designed for high isolation between signals in multi-mode systems, is available off the shelf. Oscillator and Narrow-Band Filtering Applications Vectron offers a unique portfolio of narrow-band, high-q and temperature- and aging-stable filters and resonators in frequency ranges up to 2.5 GHz, suiting professional and high-reliability requirements for narrow-band filtering or extreme precision SAW-based oscillator applications. 0.05 0.045 0.04 0.035 0.03 conductance / S 0.025 0.02 0.015 0.01 0.005 0 1746 1746.5 1747 1747.5 1748 1748.5 1749 1749.5 1750 1750.5 frequency / MHz

SAW Filters for Wireless and Telecommunication Applications Vectron offers a comprehensive portfolio of available SAW filter solutions for today s Communication systems. Within the 4th generation mobile telecommunication standard LTE, RF filter solutions for most bands are available in high reliability packaged versions, with more solutions under development. All RF filter products are optimized towards lowest insertion attenuation, and steepest filter transitions, to support highest signal-to-noise ratio requirements. LTE Band Center Freq. uplink / MHz Center Freq. downlink / MHz Mode Bandwidth / MHz Military and Space Applications Filter Uplink Filter Downlink 1 1950 2140 FDD 60 TFS1950B TFS2140D 2 1880 1960 FDD 60 TFS1880 TFS1960 3 1747.5 1842.5 FDD 75 TFS1747 TFS1842 4 1732.5 2132.5 FDD 45 TFS1732A - 5 836.5 881.5 FDD 25 TFS836G TFS881D 7 2535 2655 FDD 70 TFS2535D TFS2655A 8 897.5 942.5 FDD 35 TFS897D TFS942G 9 1767.4 1862.4 FDD 35 - TFS1864 10 1740 2140 FDD 60 TFS1747 TFS2140D 11 1437.9 1485.9 FDD 20 - TFS1489 12 707 737.5 FDD 18 TFS707 TFS737 13 782 751 FDD 10 TFS781A TFS751 14 793 763 FDD 10 TFS793-15 1910 2610 FDD 20 TFS1910B - 16 2017.5 2592.5 FDD 15 TFS2017B TFS2595A 17 710 740 FDD 12 TFS707 TFS740 18 822.5 867.5 FDD 15 TFS826 TFS867A 19 837.5 882.5 FDD 15 - TFS881D 23 2010 2190 FDD 20 TFS2010-24 1643.5 1542 FDD 34 TFS1643 TFS1542A 33 1910 - TDD 20 TFS1910B - 34 2017.5 - TDD 15 TFS2017B - 35 1880 - TDD 60 TFS1880-36 1960 - TDD 60 TFS1960-38 2595 - TDD 50 TFS2595A - 39 1900 - TDD 40 TFS1900-41 2593 - TDD 194 TFS2593A - A wide variety of SAW IF filters for multiple Communication applications, ranging from khzbandwidth narrow-band signals to full-band LTE IF filtering applications, is available in various frequency ranges, supporting popular chipset designs. Please visit www.vectron.com for a comprehensive selection of our SAW solutions for Wireless and Telecommunications applications. Surface-Mount, Through-Hole and Connector-Type Packages available Qualification according to MIL-STD-883 and / or pre-defined (e.g. ESCC 3502) or custom Space Qualification Plans Ruggedized SAW Modules with Internal Matching High-Reliability versions of standard designs available The Military & Space family of Vectron SAW Products offers highest reliability levels for harsh and mission-critical environments. With each application having unique requirements, Vectron offers not only a wide range of packaging technologies for ruggedized applications, but also the full range of SAW device designs covering a center frequency range from 30 MHz to 2.7 GHz. Additional to multi-layer ceramic and metal can assembly technologies, package designs with integrated matching circuitry in electrically and environmentally isolated cavities offer superior electrical performance in combination with outstanding environmental reliability.

SAW Products World-Wide Locations United States VI Hudson, Corporate Headquarters 267 Lowell Road, Suite 102 Hudson, NH 03051 Tel: 1.888.328.7661 Fax: 1.888.329.8328 VI Mount Holly Springs 100 Watts Street Mount Holly Springs, PA 17065 Tel: 1.717.486.3411 Fax: 1.717.486.5920 VI Cincinnati 4914 Gray Road Cincinnati, OH 45232 Tel: 1.513.542.5555 Fax: 1.513.542.5146 Vectron International Europe VI Neckarbischofsheim Landstrasse, D-74924 Neckarbischofsheim, Germany Tel: +49 (0) 7268.8010 Fax: +49 (0) 7268.801281 VI Teltow Potsdamer Strasse 18 D-14513 Teltow, Germany Tel: +49 (0) 3328.35085.22 Fax: +49 (0) 3328.4784.30 Asia VI Shanghai 68 Yin Cheng Road(C), 22nd Floor One LuJiaZui Pudong, Shanghai 200120, China Tel: +86 21 61946886 Fax: +86 21 61633598 VI Singapore 56 Serangoon North Avenue 4, #06-01 Singapore, 555851 Tel: +65 65551926 Fax: +65 65554377 Helping customers Innovate, Improve & Grow www.vectron.com Rev# 007 August, 2016