出展の見どころ
| Integrated Engineering Software Sales Inc. | ||
|
光と画像のセンサ&イメージングEXPO No. S-36 |
||
| 〒R3H0G4 | ||||||||||||||||
| 220-1821 Wellington Ave, Winnipeg | ||||||||||||||||
| URL:https://www.integratedsoft.com/ | ||||||||||||||||
| ● 担当 | ||||||||||||||||
| Sales Department Queenie Wong | ||||||||||||||||
| TEL:1-204-6325636 FAX:1-204-6327780 | ||||||||||||||||
| ● 出展の見どころ | ||||||||||||||||
|
Integrated Engineering Software proudly presents the latest version of the LORENTZ software suite, featuring a comprehensive range of 2D and 3D simulation programs for high-frequency, low-frequency electromagnetic analysis, including magnetic fields, electric fields, and particle trajectory modeling. Customers include research institutes and manufacturers of vacuum devices, electron guns, and sensors.
|
||||||||||||||||
| ● 出展製品 | ||||||||||||||||
|
自動車医療 デモ Lorentz-3EM It can solve 3D Electrostatic and 3D Magnetostatic models separately by using Boundary Element Method or Finite Element Method as per the user’s choice. Electric and Magnetic Fields and voltage distribution can be displayed in contours, arrow plots, and graphs form. After obtaining the field solution(s) the trajectories of the charged particles can be obtained under the influence of electric and/or magnetic fields. Beam optic parameters of the charged particles can be estimated. Capacitance and inductance matrices of the model can also be decided. |
||||||||||||||||
|
自動車医療 デモ Lorentz-3E It can solve 3D Electrostatic models by using Boundary Element Method or Finite Element Method as per the user’s choice. Electric and voltage distribution can be displayed in contours, arrow plots, and graphs form. After obtaining the field solution the trajectories of the charged particles can be obtained under the influence of electric field. Beam optic parameters of the charged particles can be estimated. Capacitance matrix of the model can also be decided. |
||||||||||||||||
|
自動車医療 デモ Lorentz-3M It can solve 3D Magnetostatic models by using Boundary Element Method or Finite Element Method as per the user’s choice. Magnetic flux density distribution can be displayed in contours, arrow plots, and graphs form. After obtaining the field solution the trajectories of the charged particles can be obtained under the influence of magnetic field. Beam optic parameters of the charged particles can be estimated. Inductance matrix of the model can be decided. Magnetic Forces among the different parts of the model and torque about an axis can be calculated. |
||||||||||||||||
|
自動車医療 デモ Lorentz-HF It can solve 3D eddy current models by using Boundary Element Method or Finite Element Method as per the user’s choice. Magnetic flux density distribution can be displayed in contours, arrow plots, and graphs form. After obtaining the field solution the trajectories of the charged particles can be obtained under the influence of magnetic field. Beam optic parameters of the charged particles can be estimated. Inductance matrix of the model can be decided. Magnetic Forces among the different parts of the model and torque about an axis can be calculated. |
||||||||||||||||
|
自動車医療 デモ Lorentz-2EM It can solve 2D and Axi-symmetric Electrostatic and Magnetostatic models separately by using Boundary Element Method or Finite Element Method as per the user’s choice. Electric and Magnetic fields and voltage distribution can be displayed in contours, arrow plots, and graphs form. After obtaining the field solution the trajectories of the charged particles can be obtained under the influence of electric and/or magnetic fields. Beam optic parameters of the charged particles can be estimated. Capacitance and inductance matrices of the model can be decided. |
||||||||||||||||
| ● ブース訪問予約/お問合せフォーム (光関連業界に関するお問合せ以外のご利用はご遠慮ください) | ||||||||||||||||
お問合せメールを送信いたしました。
|
||||||||||||||||
__ |
__ |
|||||||||||||||
