Proceedings of the 45th annual Symposium on Frequency Control 1991: 29 - 31 May 1991, Los Angeles Airport Marriott Hotel, Los Angeles, California
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Format: | Tagungsbericht Buch |
Sprache: | English |
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New York, NY
Inst. of Electrical and Electronics Engineers
1991
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Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | 721 S. Ill., graph. Darst. |
ISBN: | 0879426586 0879426594 0879426608 |
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111 | 2 | |a Symposium on Frequency Control |n 45 |d 1991 |c Los Angeles, Calif. |j Verfasser |0 (DE-588)5076994-7 |4 aut | |
245 | 1 | 0 | |a Proceedings of the 45th annual Symposium on Frequency Control 1991 |b 29 - 31 May 1991, Los Angeles Airport Marriott Hotel, Los Angeles, California |
264 | 1 | |a New York, NY |b Inst. of Electrical and Electronics Engineers |c 1991 | |
300 | |a 721 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
500 | |a Literaturangaben | ||
650 | 4 | |a Oscillators, Crystal |v Congresses | |
650 | 4 | |a Radio frequency |v Congresses | |
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655 | 7 | |0 (DE-588)1071861417 |a Konferenzschrift |y 1991 |z Los Angeles, Calif. |2 gnd-content | |
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adam_text | TABLE
OF
CONTENTS
PLENARY
SESSION PAGE
Award Presentations
.................................................................................................. 1
PIEZOELECTRIC CRYSTALS
Movement of Dislocations in Quartz
.............................................................................. 2
R.A. Murray, US Army LABCOM
An Analytical Study of Electrodiffusion (Sweeping) of Synthetic Quartz Crystals
......................... 9
J. Asahara, K. Nagai, K. Hamaguchi, H.
Sone
&
S.
Такі,
Toyo
Communication
Equipment Co., Ltd., Japan
Thermal Expansion of Alpha Quartz
............................................................................... 22
J.A. Kosinski, J.G. Gualtieri
&
A. Ballato,
US Army LABCOM
Influence of Convective Flows on the Growth of Synthetic Quartz Crystals
................................ 29
V.A. Klipov
&
N.N. Shmakov, Research Department of
FONON,
USSR
Sweeping and Irradiation Effects on Hydroxyl Defects in Crystalline Quartz
.............................. 37
H. Bahadur, National Physical Laboratory, India
Assessment of Material Perfection and Observation of Vibration Modes in Lithium
Tantalate
by
Х
-Ray Topography
.................................................................................... 58
A. Zarka, B. Capelle
&
Y. Zheng,
Université
P.
&
M. Curie; J.
Détaint,
J.
Schwartzel
&
С.
Joly,
CNET;
D.
Cochet-Muchy,
Crismatec,
France
Evaluation of Nonlinear Elastic Coefficient Causing Frequency Shifts in AT-Cut Resonators
........... 72
Y. Hirose
&
Y. Tsuzuki, libkohama National University, Japan
RESONATORS
-
BAW.
SAW. THIN FILM. FILTERS
The Aging of Bulk Acoustic Wave Resonators, Filters and Oscillators (Invited)
......................... 77
J.R.
Vig,
US Army LABCOM
&
T.R. Meeker, Consultant
Influence
of Surface Catalytic Reactions on Crystal Unit Aging
.............................................. 102
P.I. Aseev, V.B. Grouzinenko
&
A. Rodichev, Scientific-Research Institute
Phonon , USSR
Bulk Wive Quartz Resonators Fabricated by a Hollow Cathode RF Plasma Etching Technique
......... 106
S. Schreiter, Technical University of Chemnitz, Germany
&
D.Y. Yankov, Institute
of Solid State Physics, Bulgaria
Automated
Х
-Ray Sorting Machine for Round Quartz Blanks
................................................ 114
H. Bradaczek,
Freie Universität
Berlin, Germany
A Very Low Profile, Shock-Resistant, Surface-Mountable Quartz Crystal Unit
............................ 117
R.C Smythe, Pieao
Technology
Inc.; J. Greenstein, Coleman Research Corporation;
J. Lipeles,
International Dynamice
Corporation
Suppression of
Uœ
Unwanted Response of an SC-Cut Crystal Unit
.......................................... 124
M. Koyama, S. Mizuno
&
M. Okazaki, Nihon Dempa Kogyo Co., Ltd. Japan
TT-Cut
Torsionai
Quartz
Crystal
Resonator...................................................................... I30
H. Kawashima
&
M. Nakazato, Seiko Electronic
Components Ltd., Japan
Thickness-Shear Mode Shapes & Mass-Frequency
Influence Surface
of a Circular and
Electroded AT-Cut Quartz
Resonator
..............................................................................
I37
Y-K-Yong, J.T.
Stewart, Rutgers University;
J. Détaint,
CNET; A.
Žarka,
N.
Capelle
&
Y.
Zheng,
Université P.
&
M. Curie, France
A Simple
Model
for Quartz
Resonator Low Level
Drive
Sensitivity.........................................
148
L.
Dworsky
&
R.
Kinsman,
Motorola
Two-Dimensional Equations for Guided EM Waves in Dielectric Plates Surrounded
by Free Space
.......................................................................................................... 156
P.C.Y. Lee
&
IS. Yang, Princeton University
Optimization of AT Berlinite
&
Quartz Thickness Shear Devices for VHF Filter Applications
.......... 166
J. Détaint,
H. Carra,
J. Schwartzel, C.
Joly,
CNET; B. Capelle, A. Zarka
&
Y.
Zheng,
Université P.
&
M. Curie;
E.
Philippot, Université du Languedoc, France
Monolithic Filters Using Strong Piezoelectrics
.................................................................. 181
S.A.
Sakharov, I.M. Larionov
&
V.A. Issaev, Scientific-Research Inst., PHONON ,
USSR
Inflection Temperature of Contoured AT-Cut Resonators
...................................................... 184
J. Dutka, Crystek Corp., J. Erasmus, Consultant
&
J.H. Sherman, Jr., Consultant
Load Resonant Measurements of Quartz Crystals
............................................................... 191
Đ.
Rose, Sounders
&
Associates, Inc.
Fundamental Properties of Thin Film Resoaators
.............,................................................. 201
K.M.
Lakin, TFR Technologies, Inc.
High Frequency Oscillators Using Cointegrated
BAW
Thin-Film Piezoelectrics with
Microwave BJTS
...................................................................................................... 207
S.G. Burns,
R
J. Weber
& S.D.
Braymen, Iowa State University
Piezoelectric Resonators Based
œ
Single Crystals of Strong Piezoelectrics
................................. 212
V.B.
Окжшкжко
&
V.V. Bezdelkm, Scientific-Research Institute PHONON ,
USSR
A Comparison of Predicted and Measured Properties of Doubly-Rotated Lithium
Tbtrabonte
ШтвжЬжш
..................»......................................................................,,..., 217
A. Ballato,
1.
Korinad
&
T.
Шжгѕк,
US Army LABCOM;
S.
Mallikariun,
Monmoulh
College
Aa
Analysis of
йш
Influence of Design Parameters on the Resonant Frequency and Q-Factor
of Surface Transverse %fcve (STW) Resonators
.................................................................. 222
E. Biglcsr»
CNRS,
France;
В.
A. Auld, Stanford
University;
E.
Ritz &
E. Sang,
TdtóronJx
I GHz
Verfölge
Costrolteđ
Oscillator Using
s SSBW/BGW
Combined Mode Resonator Filter
.......... 230
I.D.
Avraœov,
Institute of Solid State Physics, Bulgaria
........................................... 239
J.W.
Andera», Siwtek
Iac.
Grating Assisted SAW Directional Couplers
...................................................................... 247
G. Golan, I. Charavy, M. Zilberstein, A. Seidman
& N.
Croitoru, Tel Aviv
University, Israel
PIEZOELECTRIC SENSORS
Quartz Resonator Sensors in Extreme Environments (Invited)
................................................ 254
E.P. EerNisse
&
R.W. Ward, Quartztronics, Inc.
Piezoelectric Vibratory Gyroscope Using Flexural Vibration of a Triangular Bar
......................... 261
S. Fujishima, T. Nakamura
&
K. Fujimoto,
Murata Mfg.
Co., Ltd., Japan
Solder Bond Applications in a Piezoelectric Sensor Assembly
................................................ 266
P.T. Vianco
&
J.A.
Rejent,
Sandia
National Laboratories
ACCELERATION SENSITIVITY
Acceleration Effects in Crystal Filters
—
A Tutorial
............................................................ 281
R.C.
Smy
the, Piezo Technology Inc.
The Increase in the In-Plane Acceleration Sensitivity of the Piano-Convex Resonator
Due to its Thickness Asymmetry
................................................................................... 289
H.F. Tiersten
&
Y.S. Zhou, Rensselaer Polytechnic Institute
An Analysis of the Normal Acceleration Sensitivity of Contoured Quartz Resonators
Stiffened by Identical Top and Bottom Quartz Cover Plates Supported by Clips
........................... 298
Y.S. Zhou
&
H.F. Tiersten,
Rensselaer Polytechnic Institute
Frequency
Shiñ
Calculations for Quartz Resonators
............................................................ 309
L.D. Clayton
&
E.P. EerNisse, Quartztronics Inc.
SAW Oscillators with Low Vibration Sensitivity
................................................................ 321
Т.Е.
Parker, J.A. Greer
&
G.K.
Montrées,
Raytheon Research Division
A Low Noise Vibration Isolated Airborne Radar Synthesizer
................................................. 330
A. Vulcan
&
M. Bloch, Frequency Electronics, Inc.
CRYSTAL OSCILLATORS
Computation of Oscillator Open-Loop Bode Plots
.............................................................. 336
D.E.
Phillips, Rockwell International Corporation
High Precision Nonlinear Computer Modelling Technique for Quartz Crystal Oscillators
............... 341
R.
Brendel, F.
Djian,
CNRS
&
E.
Robert, CNES, France
Oscillator Insights Based on Circuit
Q
............................»............................................... 352
R.L. Clark, Pern State University
Analysis of Start-Up Characteristics of Crystal Oscillators
.................................................... 360
J-Q.
Lu,
Sony LSI Design Corporation
&
Y. Tsuzuki, Yokohama National University,
Japan
Oscillator
Design
Using
S
Parameters and a Predetermined Source or Load
................................ 364
RJ. Weber, Iowa State University
Universal, Computer Facilitated, Steady State Oscillator, Closed Loop Analysis Theory
and Some
UHF
and Microwave Applications
.................................................................... 368
B.
Parzen,
Consultant
Quartz Crystal Oscillators with Direct Resonator Heating
..................................................... 384
B. Long
&
G. Weaver, Piezo Crystal Company
Performance Tests on an MCXO Combining ASIC and Hybrid Construction
.............................. 393
A. Benjaminson,
General Technical Services, Inc.
&
B. Rose, Q-Tech Corporation
Frequency-Temperature Considerations for Digital Temperature Compensation
............................ 398
R.L. Filler, US Army LABCOM
Digital TCXO Using Delta Modulation
........................................................................... 405
M. Watanabe, Nihon Dempa Kogyo Co., Ltd.; Y. Sakuta
&
Y. Sekine, Nihon
University, Japan
Temperature Compensated Crystal Oscillator Employing New Shape GT Cut Quartz
Crystal Resonator
..................................................................................................... 410
H. Kawashima
&
K. Sunaga, Seiko Electronic Components Ltd., Japan
Voltage Controlled Temperature Compensated Crystal Oscillator Using 2-Port Crystal Resonator
...... 418
Y. Ueno, Nihon Dempa Kogyo Co. Ltd.
&
H. Sbimizu, University of Electro-
Communications, Japan
BVA-Type Quartz Oscillator for Spacecraft
....................................................................... 426
J.R. Norton, Johns Hopkins University
A Space Oscillator with Cylindrical Oven and Symmetry
...................................................... 431
M. Mourey
&
RJ. Besson,
Ecole Nationale Supérieure de Mécanique et des
Microtechniques, France
A
Space-Qualified Frequency Synthesizer
........................................................................ 442
M.J.
Reinhart,
Johns Hopkins University
High-Stability Quartz Oscillators on Interaally-Heated Quartz Resonators with AT and SC Cuts
....... 447
Y.L. Vorokhovsky
&
B.G. Drakhlis, MORION Mfg. Co., USSR
SUreRCONDUCTING AND LOW
TEMPERATORE
RESONATORS AND OSCILLATORS
Higb-Tempemture Superconducting Resonators (Invited)
...................................................... 452
J.N, Hoilenhorat, R.C, Taber, L.S. Cutler, Hewlett-Packard Laboratories;
T.L. Bagwell, Hewlett-Packard;
N.
Newman, Conductus, Inc.
Superconducting Thin-Film YBa^CUjO Resonators and Filters
............................................. 460
D.E.
Oates, W.G. Lyons
& A.C.
Anderson, Massachusetts Institute of Technology
A High-T^ Superconducting Resonator for a Compact Hydrogen
Maser..................................... 467
D.B. Opie,
H.E. Schone,
College of William
&
Mary;
M. Hein, G.
Müller,
H.
Piel,
H.-P. Schneider,
University of
Wuppertal,
Germany; V.
Fölen, A. Frank,
W.M. Golding
&
S.
Wňf,
Naval Research
Laboratory
High-Tc Superconducting
Microstrip
Resonators and Filters on LaA103
..................................... 477
J.H. Takemoto, CM. Jackson, R. Hu, H.M. Manasevit,
С
Petite-Hall, J.F. Burch,
D.C. St. John, A. Lee
& K.P.
Daly, TRW Space and Technololgy Group
Superconducting Stabilized
Х
-Band
Oscillators
.................................................................. 482
R. Cadotte, A. Rachlin, R. Babbit
&
W. Wilber, US Army LABCOM
Combined Stability of Hydrogen
Maser
and Superconducting Cavity
Maser
Oscillator
................... 491
R.T. Wang
&
GJ. Dick, Jet Propulsion Laboratory
Analysis of a Low Noise Tunable Oscillator Based on a Tunable Sapphire Loaded
Superconducting Cavity
.............................................................................................. 495
М.Б.
Tobar
&
D.G. Blair, University of Western Australia
LASERS AND THEIR APPLICATIONS. OPTICALLY PUMPED STANDARDS
Laser Frequency Stability Requirements for Coherent Space Communications
............................. 500
C
-С.
Chen
&
M.Z. Win, Jet Propulsion Laboratory
Stabilization of Oscillator Phase Using a Fiber-Optic Delay-Line
............................................ 508
R.T. Logan, Jr., L. Maleki
&
M. Shadaram, Jet Propulsion Laboratory
Prototype of an Optically Pumped Cesium Beam Frequency Standard
....................................... 513
K. ffisadome
&
M. Kihara, NTT Transmission Systems Laboratories, Japan
Miniature Optically Pumped Cesium Standards
.................................................................. 521
L.L. Lewis, Ball Communications Systems Division
Single Ion Optical Frequency Standard (Invited)
................................................................ 534
J.C. Bergquist, W.M. Itano,
DJ. Wineland,
F.
Diedrich, F.Eisner
&
M.G. Raizen, NIST
Intensity and Frequency Noise in Semiconductor Lasers (Invited)
........................................... 539
K.J.
Váhala,
California Institute of Technology
A Survey of Optical Techniques with an Emphasis on Frequency Control (Phase Stability)
Aspects (Invited)
..................................................................................................... 540
H.T.M. Wang, Hughes Research Laboratories
ATOMIC FREQUENCY STANDARDS AND PRECISION TIMING
Frequency Pulling in Cesium Beam Frequency Standards Due to Delta
M
= +_ 1
(SIGMA)
Transitions
............................................................................................................. 544
L.S. Cutler,
CA. Flory
&
R.P.
Gifíard,
Hewlett-Packard Laboratories; A. DeMarchi,
Politecnico di
Torino, Italy
A New High-Performance Cesium Beam Tube Compensated for Ramsey Pulling
......................... 554
L.F. Mueller, D.B. Dull
&
J.A.
Kusters,
Hewlett-Packard Company
Prospects
in Improvement of Accuracy Performances of Passive Atomic Frequency Standards
......... 562
A.G. Gevorkyan
&
V.S. Zholnerov, Leningrad Scientific Research
Radiotechnical
Institute, USSR
Compact Rectangular-Cylindrical Cavity for Rubidium Frequency Standard
............................... 567
E. Eltsufin, A. Stern
&
S.
Fel,
Time
&
Frequency Ltd., Israel
Ultra-Stable Hg+ Trapped Ion Frequency Standard
............................................................. 572
J.D.
Prestage, R.L.
Tjoelker, G.J. Dick
&
L. Maleki, Jet Propulsion Laboratory
Hydrogen
Maser Performance
at the United States Naval Observatory and the Naval
Research Laboratory
..................................................................................................
582
E. Powers, A. Gifford, Naval Research Laboratory
&
P. Wheeler, United States
Naval Observatory
Barometric Pressure-Induced Frequency Offsets in Hydrogen
Masers....................................... 586
R.
A. Dragonette
&
J.J. Suter, Johns Hopkins University
Atomic Frequency Standards for Satellite
Radionavigation
Systems
......................................... 591
Y.G. Gouzhva, A.G. Gevorkyan
&
V.V. Korniyenko, Leningrad Scientific Research
Radiotechnical
Institute, USSR
Deep Space Tracking and Frequency Standards (Invited)
...................................................... 594
J.S. Border
&
E.R. Kursinski, Jet Propulsion Laboratory
Interim Report on the Geographic Dependency and Latitude Effects Study
................................. 608
R. Beard, A. Gifford
&
S. Stebbins, U.S. Naval Research Laboratory; S.
Rasmussen,
Dept.
of Defense; T. Bartholomew, The Analytical Sciences Corporation
Automatic Hierarchy Control Over Stratum
1
Redundant Time
&
Frequency Systems
................... 626
E. Peled, M. Zelitzki
&
A. Nemesh,
Тіпає
&
Frequeny Ltd., Israel
NOISE, FREQUENCY STABILITY. LOW NOISE SOURCES
Phase Noise Modeling in Frequency Dividers (Invited)
....................................................... 629
W.F. Egan, ESL, Inc.
High Spectral Purity Frequency Sources Using Low Noise Regenerative Frequency Dividers
.......... 636
J. Grostombert,
M. Olivia·, CNRS,
France; E. Rubiola, Politechnico
di
Torino, Italy
Effects of Cavity
Q
and Coupling on Oscillator Noise Measurements
....................................... 640
C. Cook, Johns Hopkins University
Ultralinear
Small-Angle Phase Modulator
........................................................................ 645
J. Lowe
&
F.L. mils, NIST
Stochastic Resonance: A Signal
+
Noise in a Two State System (Invited)
................................. 649
F. Moss, University of Missouri at St. Louis
About Sum of Signals and
ite
Possible Use in Time
&
Frequency Systems..
............................... 659
A. Stern, Time
&
Frequency Ltd.
,
Israel
A Frequency-Domain View of Tune-Domain Characterization of Clocks and Tin» and
Frequency Distribution Systems
.................................................................................... 557
D.W.
Allea»
M.A.
Шѕѕ
&
J.L.
Jespers«, NIST
Status of Frequency
«od
Timing Reference Signal Transmission by Fiber Optics
.......................... 679
G.F. Dates
&
R.T.
Log», Jet
Propulsion Laboratory
Determination
of the Limiting Factors in the Absolute Phase Noise of an L-Band
Dielectric Resonator Oscillator
..................................................................................... 687
M. Mizan, R.C. McGowan, T. Lukaszek
&
A. Ballato,
US Army LABCOM
Ultra-Low-Noise,
8.3
GHz Dielectric Resonator Oscillator
................................................... 693
M. Mizan
&
R. McGowan, US Army LABCOM
LATE
SUBMISSION
PAPERS
Cooled, Ultra-High Q, Sapphire Dielectric Resonators for Low Noise, Microwave Signal
Generation
............................................................................................................. 700
M.M. Driscoll, J.T. Haynes,
S.S. Hotwitz, R.A.
Jelen, Westinghouse
Electronics Systems Group; R.W. Weinert, J.R. Gavaler, J. Talvacchio, G.R. Wagner,
Westinghouse
Science
&
Technology Center; K. A. Zaki
&
Х
-P.
Liang, University of
Maryland
Frequency and Timing Requirements for Space Exploration (Invited)
...................................... 707
L. Maleki, Jet Propulsion Laboratory
A Wide Range (55O-7OOMHz) Monolithic Timing Recovery Circuit
........................................ 712
E.M. Frymoyer
&
B. Lai, Hewlett Packard Company
AUTHOR INDEX
.................................................................................................... 716
SPECIFICATIONS AND STANDARDS RELATING TO FREQUENCY CONTROL
............... 718
PROCEEDINGS AVAILABILITY INFORMATION
........................................................ 721
AUTHOR INDEX
Allan,
D.W.
667
EerNisse, E.P.
254,309
Kusters, J.A.
554
Andersen, J.W.
239
Egan, W.F.
629
Anderson,
A.C.
460
Eisner,
F.
534
Lai, B.
712
Asaban,
J.
9
Eltsufin, E.
567
Lakin, K.M.
201
Aseev, P.I.
102
Erasmus, J.
184
Larionov, I.M.
181
Auld, B.A.
222
Lee, A.
477
Avnunov, LD
230
Fel,
S.
567
Lee, P.CY.
156
Filler, R.L.
398
Lewis, L.L.
521
Babbit, R.
482
Flory, CA.
544
Liang, X-P.
700
Bagwell, T.L.
452
Fölen, V.
467
Lipeles, J.
117
Bahadur, H.
37
Frank, A.
467
Logan, Jr.,
R.T.
508,679
Ballato,
A.
22,217,687
Frymoyer, E.M.
712
Long,
В.
384
Bartholomew, T.
608
Fujimoto, K.
261
Lowe, J.
645
Beard, R.
608
Fujishima, S.
261
Lu, J-Q.
360
Benjaminson,
A.
393
Lukaszek,
T.
217,687
Bergquist, J.C.
534
Gavaler, J.R.
700
Lutes,
G.F.
679
Besson, R.J.
431
Gevorkyan, A.G.
562,591
Lyons, W.G.
460
Bezdelkin, V.V.
212
Giffard, R.P.
544
Bigler,
E.
222
Gifford, A.
582,608
Maleki,
L.
508,572,707
Blair, D.G.
495
Golan, G.
247
Mallikarjun, S.
217
Bloch, M.
330
Golding, W.M.
467
Manasevit, H.M.
477
Border, J.S.
594
Gouzhva, Y.G.
591
McGowan, R.C.
687,693
Bradaczek, H.
114
Greenstein,
I.
117
Meeker,
T. R.
77
Bray men,
S.D.
207
Greer, J.A.
321
Mizan, M.
687,693
Brendel,
R.
341
Groslambert,
J.
636
Mizuno, S.
124
Burch, J.F.
477
Grouzineako,
V.B.
102,212
Montrées, G.K.
321
Burns, S.G.
207
Gualtierí, J.G.
22
Moss,
F.
649
Mourey, M.
431
Cadotte, R.
482
Hamaguchi,
К.
9
Muller,
G.
467
Capelle, B.
58,166
Haynes, J. T.
700
Mueller, L.F.
554
Capelle,
N.
137
Hein, M.
467
Murray,
R.
Α.
2
Carni,
H.
166
Hirose,
Y.
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Charuvy, I.
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Hisadome,
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|
any_adam_object | 1 |
author_corporate | Symposium on Frequency Control Los Angeles, Calif |
author_corporate_role | aut |
author_facet | Symposium on Frequency Control Los Angeles, Calif |
author_sort | Symposium on Frequency Control Los Angeles, Calif |
building | Verbundindex |
bvnumber | BV006028136 |
callnumber-first | T - Technology |
callnumber-label | TK2799 |
callnumber-raw | TK2799 |
callnumber-search | TK2799 |
callnumber-sort | TK 42799 |
callnumber-subject | TK - Electrical and Nuclear Engineering |
classification_rvk | ZN 1900 |
classification_tum | ELT 438f |
ctrlnum | (OCoLC)25147626 (DE-599)BVBBV006028136 |
dewey-full | 621.3841 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.3841 |
dewey-search | 621.3841 |
dewey-sort | 3621.3841 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Conference Proceeding Book |
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genre | (DE-588)1071861417 Konferenzschrift 1991 Los Angeles, Calif. gnd-content |
genre_facet | Konferenzschrift 1991 Los Angeles, Calif. |
id | DE-604.BV006028136 |
illustrated | Illustrated |
indexdate | 2024-07-09T16:38:55Z |
institution | BVB |
institution_GND | (DE-588)5076994-7 |
isbn | 0879426586 0879426594 0879426608 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-003793962 |
oclc_num | 25147626 |
open_access_boolean | |
owner | DE-91 DE-BY-TUM DE-83 |
owner_facet | DE-91 DE-BY-TUM DE-83 |
physical | 721 S. Ill., graph. Darst. |
publishDate | 1991 |
publishDateSearch | 1991 |
publishDateSort | 1991 |
publisher | Inst. of Electrical and Electronics Engineers |
record_format | marc |
spelling | Symposium on Frequency Control 45 1991 Los Angeles, Calif. Verfasser (DE-588)5076994-7 aut Proceedings of the 45th annual Symposium on Frequency Control 1991 29 - 31 May 1991, Los Angeles Airport Marriott Hotel, Los Angeles, California New York, NY Inst. of Electrical and Electronics Engineers 1991 721 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Literaturangaben Oscillators, Crystal Congresses Radio frequency Congresses Oszillator (DE-588)4132814-0 gnd rswk-swf Frequenzstabilität (DE-588)4155413-9 gnd rswk-swf (DE-588)1071861417 Konferenzschrift 1991 Los Angeles, Calif. gnd-content Frequenzstabilität (DE-588)4155413-9 s DE-604 Oszillator (DE-588)4132814-0 s Digitalisierung TU Muenchen application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=003793962&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Proceedings of the 45th annual Symposium on Frequency Control 1991 29 - 31 May 1991, Los Angeles Airport Marriott Hotel, Los Angeles, California Oscillators, Crystal Congresses Radio frequency Congresses Oszillator (DE-588)4132814-0 gnd Frequenzstabilität (DE-588)4155413-9 gnd |
subject_GND | (DE-588)4132814-0 (DE-588)4155413-9 (DE-588)1071861417 |
title | Proceedings of the 45th annual Symposium on Frequency Control 1991 29 - 31 May 1991, Los Angeles Airport Marriott Hotel, Los Angeles, California |
title_auth | Proceedings of the 45th annual Symposium on Frequency Control 1991 29 - 31 May 1991, Los Angeles Airport Marriott Hotel, Los Angeles, California |
title_exact_search | Proceedings of the 45th annual Symposium on Frequency Control 1991 29 - 31 May 1991, Los Angeles Airport Marriott Hotel, Los Angeles, California |
title_full | Proceedings of the 45th annual Symposium on Frequency Control 1991 29 - 31 May 1991, Los Angeles Airport Marriott Hotel, Los Angeles, California |
title_fullStr | Proceedings of the 45th annual Symposium on Frequency Control 1991 29 - 31 May 1991, Los Angeles Airport Marriott Hotel, Los Angeles, California |
title_full_unstemmed | Proceedings of the 45th annual Symposium on Frequency Control 1991 29 - 31 May 1991, Los Angeles Airport Marriott Hotel, Los Angeles, California |
title_short | Proceedings of the 45th annual Symposium on Frequency Control 1991 |
title_sort | proceedings of the 45th annual symposium on frequency control 1991 29 31 may 1991 los angeles airport marriott hotel los angeles california |
title_sub | 29 - 31 May 1991, Los Angeles Airport Marriott Hotel, Los Angeles, California |
topic | Oscillators, Crystal Congresses Radio frequency Congresses Oszillator (DE-588)4132814-0 gnd Frequenzstabilität (DE-588)4155413-9 gnd |
topic_facet | Oscillators, Crystal Congresses Radio frequency Congresses Oszillator Frequenzstabilität Konferenzschrift 1991 Los Angeles, Calif. |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=003793962&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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