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    <NewsFeed_Language>English</NewsFeed_Language>
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    <Site_Contact_Email>mpetele@mitcalc.com</Site_Contact_Email>
    <Site_Contact_First_Name>Miroslav</Site_Contact_First_Name>
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    <Site_Description_100>Tolerance analysis of linear, 2D and 3D dimensional chains</Site_Description_100>
    <Site_Description_250>Two programs for the tolerance analysis of linear, 2D and 3D dimensional chains (Worst case, Root Sum Squares, Monte Carlo...). Application is developed in MS Excel, is multi-language and supports Imperial and Metric units.</Site_Description_250>
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    <Site_Keywords>Calculation, Tolerance, tolerances, analysis, worst case, monte carlo, root sum squares, 6 sigma, 3 sigma, deviation, fits, ANSI B4.1, ISO 286, ISO 2768, DIN 7186</Site_Keywords>
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    <Distribution_Permissions>The MITCalc software can be freely distributed over the internet in an unchanged form.</Distribution_Permissions>
    <EULA>LICENSE AGREEMENT Please carefully read the following license agreement. Installation of this software means that you accept all the below mentioned conditions. LICENSE: By purchasing this software you also obtain a non-transferable right from the producer for: - Installation and use of this software on a master computer and another backup computer (notebook, home computer) provided that the computer(s) on which the software is installed is your own or under your control. Only one user can work with this software at any one time. - Installation and use of this software within the prescribed period whilst you are obliged to stop using this software after expiration of the prescribed period. Any attempt to break the protection preventing use of the software after the prescribed period is considered a breach of this agreement and can also be considered a breach of the copyright. - Displaying results. In case your license has expired, you can see results of the calculations which were carried out before expiration of your subscription. TEST PERIOD - DEMO VERSION: As a user, you have the right to test this software for a period of 30 days after installation. Any other use of the software (including competition analysis) is not permitted within the test period. After expiration of this term, you must delete the installed software or purchase a license. EXTENSION, CORRECTIVE PATCHES, NEW VERSIONS: The producer may issue various extension modules, corrective patches or new versions. All these supplements are available by uploading from web pages of the producer (partners of the producer). These extension modules, corrective patches and new versions can be used only within a valid license. OWNERSHIP RIGHTS AND COPYRIGHTS: Ownership rights and copyrights to this software (including all illustrations and document) belong to the producer. ACTIONS WHICH ARE NOT PERMITTED: - Circumventing or deleting in any way protection of those parts of the software which are locked for displaying. - Circumventing or deleting in any way protection preventing unauthorized use of the software. - Copying and using the algorithms and procedures included in this software for the purpose of development of other software. - Any distribution of this software (or its parts) in return for payment. - Providing any information (particularly the Authorization Code) which could lead to unauthorized use of the software by a third party. ACTIONS WHICH ARE PERMITTED: - Changing and modifying those parts of the software which are specified in the documentation to the software. - Translating parts of the software into other languages for your own purposes only. LIABILITY FOR DAMAGE: This technical and engineering software is designed for professional workers. It cannot in any way replace expert opinions or material and safety tests. The producer is, therefore, not responsible for any direct and/or indirect damage caused by errors in the software or due to its incorrect use, even in cases where the producer or his contractual partners is warned that such damage may arise. The user agrees with this level of risks. GUARANTEES: The producer is not responsible for trouble-free operation of the software. The only chance of remedy is that the producer will try to correct any possible defects and resolve the problems at his discretion. Producer MITCalc - Ing. Miroslav Petele; Stolicni 1205/6; 405 01 Decin; Czech Republicwww.mitcalc.com; sales@mitcalc.com; support@mitcalc.com</EULA>
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  <Program_Descriptions>
    <English>
      <Keywords>Calculation, Tolerance, tolerances, analysis, worst case, monte carlo, root sum squares, 6 sigma, 3 sigma, deviation, fits, ANSI B4.1, ISO 286, ISO 2768, DIN 7186</Keywords>
      <Char_Desc_45>Tolerances analysis (1D, 2D, 3D)</Char_Desc_45>
      <Char_Desc_80>Tolerance analysis of linear, 2D and 3D dimensional chains</Char_Desc_80>
      <Char_Desc_250>Two programs for the tolerance analysis of linear, 2D and 3D dimensional chains (Worst case, Root Sum Squares, Monte Carlo...). Application is developed in MS Excel, is multi-language and supports Imperial and Metric units.</Char_Desc_250>
      <Char_Desc_450>Two programs for the tolerance analysis of linear, 2D and 3D dimensional chains, which in addition to the basic analysis (Worst case, Root Sum Squares, Monte Carlo...) also include a solution to some special matters, like analysis of a dimensional chain deformed as a result of temperature change and design of tolerances for a selective assembly. Application is developed in MS Excel, is multi-language and supports Imperial and Metric units.</Char_Desc_450>
      <Char_Desc_2000>Two programs for the tolerance analysis of linear, 2D and 3D dimensional chains
1) Tolerance analysis of linear dimensional chains. 
The program is designed for tolerance analysis of linear (1D) dimensional chains. The program solves the following 
problems: 
- Tolerance analysis, synthesis and optimization of a dimensional chain using the arithmetic "WC" (Worst case) method, possibly the statistical "RSS" (Root Sum Squares) method. 
- Analysis of a dimensional chain deformed as a result of temperature change. 
- Extended statistic analysis of dimensional chain using the "6 Sigma" method. 
- Tolerance analysis of a dimensional chain during selective assembly including optimization of the number of assembled products. 
All solved tasks enable work with standardized tolerance values, both in designing and in optimization of the dimensional chain. 
2) Tolerance analysis of 2-D and 3-D dimensional chains
The program is designed for the tolerance analysis of two-dimensional (2-D) and three-dimensional (3-D) dimensional chains. The program solves the following problems: 
- Tolerance analysis of a dimensional chain using the "Worst case" method. 
- Tolerance analysis of a dimensional chain using the "Monte Carlo" method. 
In designing a dimensional chain, the program enables work with standardized tolerance values. 
Data, methods, algorithms and information from professional literature and ANSI, ISO, DIN and other standards are used in calculation. List of standards: ANSI B4.1, ISO 286, ISO 2768, DIN 7186.Application is developed in MS Excel, is multi-language and supports Imperial and Metric units.
This module is a part of MITCalc - Mechanical and Technical Calculation Package for gear, belt and chain drives, bearings, springs, beam, shaft, bolt connection, shaft connection, tolerances and many others.</Char_Desc_2000>
    </English>
    <Czech>
      <Keywords>toleranční analýza, tolerance, analýza, lineární rozměrový řetězec, prostorový rozměrový řetězec, změna teploty, selektivní montáž, syntéza rozměrového řetězce, optimalizace rozměrového řetězce, 6 sigma, 3 sigma, worst case, RSS, monte carlo</Keywords>
      <Char_Desc_45>Toleranční analýza 1D, 2D, 3D</Char_Desc_45>
      <Char_Desc_80>Toleranční analýza lineárních, rovinných a prostorových rozměrových řetězců</Char_Desc_80>
      <Char_Desc_250>Toleranční analýza lineárních, rovinných a prostorových rozměrových řetězců, které kromě základní analýzy obsahují i řešení některých speciálních věcí.</Char_Desc_250>
      <Char_Desc_450>Pro analýzu lineárních, rovinných a prostorových rozměrových řetězců jsou k dispozici dva programy, které kromě základní analýzy obsahují i řešení některých speciálních věcí, jako je například analýza rozměrového řetězce deformovaného v důsledku změny teploty a návrh tolerancí pro selektivní montáž.</Char_Desc_450>
      <Char_Desc_2000>Pro analýzu lineárních, rovinných a prostorových rozměrových řetězců jsou k dispozici dva programy, které kromě základní analýzy obsahují i řešení některých speciálních věcí, jako je například analýza rozměrového řetězce deformovaného v důsledku změny teploty a návrh tolerancí pro selektivní montáž.
 
Toleranční analýza lineárních rozměrových řetězců.
Program je určen pro toleranční analýzu lineárních (1D) rozměrových řetězců. Program řeší následující úlohy:
- Toleranční analýza, syntéza a optimalizace rozměrového řetězce pomocí aritmetické metody "WC" (Worst case) resp. statistické metody "RSS" (Root Sum Squares).
- Analýza rozměrového řetězce deformovaného v důsledku změny teploty. Rozšířená statistická analýza rozměrového řetězce metodou "6 Sigma".
- Toleranční analýza rozměrového řetězce při selektivní montáži včetně optimalizace počtu sestavených výrobků.
Všechny řešené úlohy umožňují pracovat s normalizovanými hodnotami tolerancí a to jak při návrhu, tak i při optimalizaci rozměrového řetězce.
 
Toleranční analýza rovinných a prostorových rozměrových řetězců.
Program je určen pro toleranční analýzu rovinných (2D) a prostorových (3D) rozměrových řetězců. Program řeší následující úlohy:
- Toleranční analýza rozměrového řetězce metodou "Worst case"
- Toleranční analýza rozměrového řetězce metodou "Monte Carlo"
Při návrhu rozměrového řetězce umožňuje výpočet pracovat s normalizovanými hodnotami tolerancí.
Ve výpočtech jsou použita data, postupy, algoritmy a údaje z odborné literatury a norem ANSI, ISO, DIN a dalších. Seznam použitých norem: ANSI B4.1, ISO 286, ISO 2768, DIN 7186</Char_Desc_2000>
    </Czech>
    <German>
      <Keywords>Berechnungen, Berechnung, Maschinenbau, Berechnungen für Maschinenbau, CAD, Worst case, Root Sum Squares, Monte Carlo, Toleranzanalyse, Analyse von Maßketten, Toleranzvorschläge, Toleranzanalyse linearer, 6 Sigma</Keywords>
      <Char_Desc_45>Toleranzanalyse 1D, 2D, 3D</Char_Desc_45>
      <Char_Desc_80>Toleranzanalyse von linearen, flächiger und räumlicher Maßketten</Char_Desc_80>
      <Char_Desc_250>Für die Toleranzanalyse von linearen, flächiger und räumlicher Maßketten stehen zwei Programme zur Verfügung, die außer der Standardanalyse (Worst case, Root Sum Squares, Monte Carlo...) auch Lösungen für spezielle Probleme beinhalten.</Char_Desc_250>
      <Char_Desc_450>Für die Toleranzanalyse von linearen, flächiger und räumlicher Maßketten stehen zwei Programme zur Verfügung, die außer der Standardanalyse (Worst case, Root Sum Squares, Monte Carlo...) auch Lösungen für spezielle Probleme beinhalten, wie z.B. die Analyse einer durch Temperaturänderungen deformierten Maßkette und eine Ausarbeitung für Toleranzvorschläge bei selektiver Montage.</Char_Desc_450>
      <Char_Desc_2000>Für die Toleranzanalyse von linearen, flächiger und räumlicher Maßketten stehen zwei Programme zur Verfügung, die außer der Standardanalyse (Worst case, Root Sum Squares, Monte Carlo...) auch Lösungen für spezielle Probleme beinhalten, wie z.B. die Analyse einer durch Temperaturänderungen deformierten Maßkette und eine Ausarbeitung für Toleranzvorschläge bei selektiver Montage.
Toleranzanalyse linearer Maßketten. 
Das Programm ist für Toleranzanalyse linearer (1D) Maßketten bestimmt. Es löst folgende Aufgaben: 
Toleranzanalyse, Synthese und Optimierung der Maßkette mit Hilfe der arithmetischen Methode "WC" (Worst case) bzw. der statistischen Methode "RSS" (Root Sum Squares). 
Analyse der Maßkette bei Deformation aufgrund einer Temperaturänderung. 
Erweiterte statistische Analyse der Maßkette mit der Methode "6 Sigma". 
Toleranzanalyse der Maßkette bei selektiver Montage inkl. Optimierung der Anzahl der zusammengesetzter Produkte. 
Bei allen Aufgaben ist es möglich mit normalisierten Toleranzwerten zu arbeiten, und zwar beim Vorschlag, wie auch bei der Optimierung der Maßkette. 
Toleranzanalyse zwei- und dreidimensionaler Maßketten. 
Das Programm ist für Toleranzanalyse ebener (2D) und räumlicher (3D) Maßketten bestimmt. Es löst folgende Aufgaben: 
Toleranzanalyse der Maßkette mit der Methode "Worst Case". 
Toleranzanalyse der Maßkette mit der Methode "Monte Carlo". 
Beim Vorschlag der Maßkette ermöglicht das Programm das Arbeiten mit genormten Toleranzwerten. 
Bei der Berechnung werden Daten, Verfahren, Algorithmen und Angaben aus der Fachliteratur und ANSI, ISO, DIN und weiteren Normen verwendet. Verzeichnis der Normen: ANSI B4.1, ISO 286, ISO 2768, DIN 7186</Char_Desc_2000>
    </German>
    <French>
      <Keywords>calcul, calculation, calculs industriels, calculs techniques, calculs construction mécanique, CAD, CAM, Analyse de la tolérance, worst case, root sum squares, 6 sigma, 3 sigma, 2D, 3D</Keywords>
      <Char_Desc_45>Analyse de la tolérance 1D, 2D et 3D</Char_Desc_45>
      <Char_Desc_80>Analyse de la tolérance des chaînes linéaires, dimensionnelles 2D et 3D</Char_Desc_80>
      <Char_Desc_250>Deux programmes sont disponibles pour l'analyse des chaînes linéaires, dimensionnelles 2D et 3D, qui en plus de l'analyse de base (Worst case, Root Sum Squares, Monte Carlo...) contiennent également la solution a certaines matieres spéciales</Char_Desc_250>
      <Char_Desc_450>Deux programmes sont disponibles pour l'analyse des chaînes linéaires, dimensionnelles 2D et 3D, qui en plus de l'analyse de base (Worst case, Root Sum Squares, Monte Carlo...) contiennent également la solution a certaines matieres spéciales, telle que l'analyse d'une chaîne dimensionnelle déformée sous l'effet de changement de température et la conception des tolérances pour un assemblage choisi.</Char_Desc_450>
      <Char_Desc_2000>Analyse de la tolérance 1D, 2D et 3D.
Deux programmes sont disponibles pour l'analyse des chaînes linéaires, dimensionnelles 2D et 3D, qui en plus de l'analyse de base (Worst case, Root Sum Squares, Monte Carlo...) contiennent également la solution a certaines matieres spéciales, telle que l'analyse d'une chaîne dimensionnelle déformée sous l'effet de changement de température et la conception des tolérances pour un assemblage choisi.
Analyse de la tolérance des chaînes linéaires. 
Ce programme est destiné a l'analyse de la tolérance des chaînes linéaires (1D). Le programme résout les problemes suivants:
Analyse de la tolérance, synthese et optimisation d'une chaîne dimensionnelle a l'aide de la méthode arithmétique "WC" (Worst case), ou de la méthode statistique "RSS" (Root Sum Squares). 
Analyse d'une chaîne dimensionnelle déformée par l'effet du changement de température. 
Analyse statistique élargie d'une chaîne dimensionnelle a l'aide de la méthode de "sigma 6". 
Analyse de la tolérance d'une chaîne dimensionnelle pour un assemblage y compris l'optimisation du nombre de pieces assemblées.
Dans toutes les tâches résolues il est possible de travailler avec des valeurs de la tolérance normalisées, dans la conception tout comme dans l'optimisation d'une chaîne dimensionnelle.
Analyse de la tolérance des chaînes dimensionnelles 2D et 3D.
Ce programme est destiné a l'analyse de la tolérance des chaînes bidimensionnelles (2D) et tridimensionnelles (3D). Le programme résout les problemes suivants:
Analyse de la tolérance d'une chaîne dimensionnelle a l'aide de la méthode de "Worst case". 
Analyse de la tolérance d'une chaîne dimensionnelle a l'aide de la méthode de "Monte Carlo". 
Dans la conception d'une chaîne dimensionnelle, le programme permet de travailler avec des valeurs de la tolérance normalisées.
Liste des normes: ANSI B4.1, OIN 286, OIN 2768, DIN 7186</Char_Desc_2000>
    </French>
  </Program_Descriptions>
</XML_DIZ_INFO>
