3 Firmen mit Ergebnissen für "align"

FARO Swiss Holding GmbH

https://www.faro.com  

8200 Schaffhausen, Freier Platz 10 / Newton 5004

 +41 52 560 03 10
 info@faro.com

We are an imaging company — and an imagining company. We imagine a better, more insightful and capable world realized through 3D digital means and measurement technologies. From the beginning, we’ve been helping our customers make better decisions more quickly and accurately than anyone in the industry. We believe if it can be dreamed, it can be measured. And if it can be measured, it can be realized. PhotoCore is the subsidiary of FARO Technologies and is specialized in photogrammetry and imaging technology.

FARO Swiss Holding GmbH

Freier Platz 10

8200 Schaffhausen

4 Ergebnisse für "align" unter FARO Swiss Holding GmbH

조선 산업 | FARO

... -thirds water. Designing seaworthy vessels where all parts align — while eliminating scrap and rework ... business in a world that’s two-thirds water. Designing seaworthy vessels where all parts align — while ...

BuildIT Construction에서 동시에 여러 포커스 스캐너로 스캔 - FARO® 지식 기반

... 번들 등록이 권장됩니다.  상단 도구 모음에서 Align(정렬)을 클릭한 다음 Bundling Registration(번들링 등록)을 클릭합니다. Devices(장치)와 Points ... 시작하려면 Checkmark(선택 표시) 를 클릭합니다. 표적을 등록에 사용하는 경우 자동화 프로그램이 스캔을 처리하고 등록한 후 번들 등록이 권장됩니다.  상단 도구 모음에서 Align ...

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ANSYS Switzerland GmbH

http://www.ansys.com  

8005 Zürich, Technoparkstrasse 1 / Zeppelin 3003

 +41 44 500 93 60

ANSYS ist der weltweit führende Anbieter von technischen Simulationslösungen und entwickelt, vertreibt und unterstützt Software für Engineering Simulation. Was ANSYS auszeichnet und von anderen professionellen Berechnungsprogrammen abhebt, ist unter anderem seine Multiphysikfähigkeit. Es kann neben Mechanik und Heattransfer ebenso Fluidynamik, Akustik und Elektromagnetik berechnet werden. Auch die gleichzeitige gekoppelte Behandlung dieser physikalischen Aspekte in einer Simulation ist abgedeckt.

ANSYS Switzerland GmbH

Technoparkstrasse 1

8005 Zürich

6 Ergebnisse für "align" unter ANSYS Switzerland GmbH

3 Amazing Structural Analysis Examples for Engineers | Ansys

... for Additive Manufacturing These bicycle frame parts need to align if they are to fit into the ... Manufacturing These bicycle frame parts need to align if they are to fit into the assembly. This can be a ...

How MBSE is Used in Aerospace Engineering

... beyond our atmosphere, direct it to perform precise maneuvers in orbit, and align cross-functional teams ... spacecraft beyond our atmosphere, direct it to perform precise maneuvers in orbit, and align cross-functional ...

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Zurich Instruments AG

http://www.zhinst.com  

8005 Zürich, Technoparkstrasse 1 / Edison 2006

 +41 44 515 04 10
 info@zhinst.com

Zurich Instruments makes instrumentation for quantum computing and periodic signal measurements. Over 170 employees help to advance science by offering expert service and a wide product portfolio: Quantum computing control systems, lock-in amplifiers, phase-locked loops, arbitrary waveform generators, impedance analyzers, digitizers, and boxcar averagers. We are a part of Rohde & Schwarz company.

Zurich Instruments AG

Technoparkstrasse 1

8005 Zürich

5 Ergebnisse für "align" unter Zurich Instruments AG

锁相检测技术的原理 - 苏黎世仪器

... ,得到 X 和 Y 两个输出,分别称为同相分量和正 交分量。通过下列公式将 X 和 Y 笛卡尔坐标转换为 极坐标,即可轻松得到幅值 R 和相位 ϴ。 \[\begin{ align*}  &\Theta ... = atan2(Y,X) \end{ align*}\] 请注意,为了使相位角输出范围覆盖全部四个象限, 即 (−π, π],我们用 atan2 替代 atan。 如 Figure 2 (b)所示,为了以两个不同相 ... 。 \[\begin{ align*}  &R=\sqrt{X^2+Y^2},\\  &\Theta = atan2(Y,X) \end{ align*}\] (1) 请注意,为了使相位角输出范围覆盖全部四个象限, 即 ... { align*}  V_S(t)&=\sqrt{2}R\cdot cos(\omega_St+\Theta) \\  &= \frac{R}{\sqrt{2}}e^{+i(\omega_st+\Theta ...

锁相检测技术的原理 - 苏黎世仪器

... ,得到 X 和 Y 两个输出,分别称为同相分量和正 交分量。通过下列公式将 X 和 Y 笛卡尔坐标转换为 极坐标,即可轻松得到幅值 R 和相位 ϴ。 \[\begin{ align*}  &\Theta ... = atan2(Y,X) \end{ align*}\] 请注意,为了使相位角输出范围覆盖全部四个象限, 即 (−π, π],我们用 atan2 替代 atan。 如 Figure 2 (b)所示,为了以两个不同相 ... 经可调低通滤波器 滤波,得到 X 和 Y 两个输出,分别称为同相分量和正 交分量。通过下列公式将 X 和 Y 笛卡尔坐标转换为 极坐标,即可轻松得到幅值 R 和相位 ϴ。 \[\begin{ align ... *}  &R=\sqrt{X^2+Y^2},\\  &\Theta = atan2(Y,X) \end{ align*}\] (1) 请注意,为了使相位角输出范围覆盖全部四个象限, 即 (−π, π],我们用 ...

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