The document discusses ISO 9001:2000 certification, providing information on certificate forms, checklists, and procedures. It also lists additional quality management resources including eBooks, templates, forms, interview questions, and KPIs. The main section describes Harris's certification to ISO 9001 and AS 9100 standards by Det Norske Veritas since 1994, demonstrating their commitment to quality management systems.
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The document discusses ISO 9001 certification bodies and provides information on forms, checklists, and procedures related to ISO 9001 certification. It also lists various quality management tools like Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. Finally, it provides a list of additional topics related to ISO 9001 certification bodies that can be downloaded in PDF format.
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The document provides information about ISO 9001 and ISO 14001 quality and environmental management standards, including forms, checklists, and procedures. It also lists various quality management tools like Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. Additional topics related to ISO 9001 and ISO 14001 certification are also listed that can be downloaded as PDFs.
The document discusses ISO 9001 and provides an overview of its contents and requirements for quality management. It also describes several quality management tools used in ISO 9001, including Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. Additional related topics about ISO 9001 certification, requirements, training, and other aspects are also listed.
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The document provides information about ISO 9001 certification including forms, checklists, and procedures needed for an ISO 9001 certified company. It also lists various quality management tools used in ISO 9001 such as Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. Additional topics related to ISO 9001 certification requirements and standards are also listed.
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The document provides an overview of ISO 9001 quality management standards and procedures, outlining the contents and requirements of the standard. It also describes several quality management tools used in ISO 9001 including Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. Additional links are provided for free resources on implementing ISO 9001 requirements and certification.
This document provides information about SABS ISO 9001 certification including forms, checklists, and procedures. It lists additional quality management resources and tools such as eBooks, templates, quality KPIs, and forms. The rest of the document describes quality management tools including Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. It concludes with other related topics to SABS ISO 9001 certification.
The document provides information about ISO 9001 certification in New Zealand, including forms, checklists, and procedures for ISO 9001 NZ. It also lists quality management tools like Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. The document contains additional topics related to ISO 9001 certification in New Zealand that can be downloaded as PDFs.
The document provides information about ISO 9001 including forms, checklists, and procedures to implement the quality management standard, which outlines processes for achieving consistent performance and benchmarking quality across operations. It also lists quality management tools like Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts that can be used for process improvement. Additional topics related to ISO 9001 certification are also referenced for further reading.
The document provides information about ISO 9001 and ISO 14001 standards including forms, checklists, and procedures. It lists various quality management tools used in ISO standards like Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. The document also provides additional downloadable PDF resources related to ISO 9001 and ISO 14001 certification requirements, training, auditing, and implementation.
This document provides an overview of ISO 9001 and quality management tools. It defines ISO 9001 and lists related terms and definitions. Six common quality management tools are described in detail: Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. Each tool's purpose and key aspects are explained. Finally, other topics related to ISO 9001 definition are listed for reference.
The document discusses ISO 9001 certification bodies and provides information on forms, checklists, and procedures related to ISO 9001 certification. It also lists various quality management tools like Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. Finally, it provides a list of additional topics related to ISO 9001 certification bodies that can be downloaded in PDF format.
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Palm Beach Atlantic University is facing a $3 million budget deficit. In response, the university has laid off seven employees, increased tuition for undergraduate students by 5% ($1,150) to $22,400 annually, and scaled back institutional scholarships by $519,841. Officials cut $3.45 million from the budget by reducing travel, faculty development budgets, and employee benefits. Despite the cuts and tuition increase, officials aim to continue hiring faculty and strengthening academic programs. Enrollment numbers fell short of projections, contributing to the revenue shortfall.
The document provides an overview of useful resources for ISO 9001 including free ebooks, templates, forms, and interview questions to assist with implementation. It also outlines the contents of ISO 9001 books, detailing how to apply the quality assurance standards to design processes and prepare for an audit. Quality management tools like Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts are also explained.
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This document provides information about ISO 9001 in Malaysia, including templates, forms, procedures and other resources. It outlines the 10 main steps to become ISO 9001 certified in Malaysia, such as appointing a quality management representative, developing documented procedures, conducting internal audits and undergoing external certification audits. Quality management tools that can be used for ISO 9001 implementation are also described, including Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets and control charts.
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This document provides information about ISO 9001 and AS9100 quality management standards. It discusses FTI receiving certification to ISO 9001:2008/AS9100C, which assures customers they will receive high quality, aerospace-compliant products and services. The standards help standardize quality expectations and reduce costs. The document also lists quality management tools like Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts that can be used to identify factors affecting quality and monitor processes.
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This document provides an overview of quality management tools that can be used for ISO 9001 requirements, including Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. It describes the purpose and methodology for each tool to identify sources of variation and determine if manufacturing processes are in statistical control.
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The document discusses ISO 9001 training courses, providing information on course content, quality management tools covered in training like Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets and control charts. It also lists additional topics related to ISO 9001 training courses and certification requirements. The training course is intended to help attendees understand quality management and its importance for business.
The document discusses internal audit checklists for ISO 9001. It provides an overview of internal audits as routine processes companies use to measure business processes and ensure they meet ISO standards. The document also lists several quality management tools used in internal audits, including Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. It concludes with additional related topics about ISO 9001 certification requirements and standards.
This document provides information about ISO 9001 lead auditor certification, including forms, checklists, and procedures related to the certification. It also lists additional resources on topics like ISO 9001 implementation, templates and forms, quality management KPIs, and interview questions. The document discusses contents of ISO 9001 lead auditor certification and other related topics like the certification, requirements, training, auditing, and manual. It provides an overview of quality management tools like Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts.
The document provides information about obtaining ISO 9001 certification including forms, checklists, and procedures for the certification process. It lists several quality management tools used in ISO 9001 such as Ishikawa diagrams, histograms, Pareto charts, scatter plots, check sheets, and control charts. Other related topics about ISO 9001 certification are also listed such as requirements, training, auditing, and manuals.
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1. Iso 9001:2000certificate
In this file, you can ref useful information about iso 9001:2000 certificate such as iso 9001:2000
certificate forms, checklist for iso 9001:2000 certificate, iso 9001:2000 certificate procedures …
If you need more assistant for iso 9001:2000 certificate, please leave your comment at the end of
file.
Other useful material for iso 9001:2000 certificate:
• qualitymanagement123.com/12-free-ebooks-for-ISO-9001-implementation
• qualitymanagement123.com/free-98-ISO-9001-templates-and-forms
• qualitymanagement123.com/top-84-quality-management-KPIs
• qualitymanagement123.com/185-free-quality-management-forms
• qualitymanagement123.com/75-ISO-9001-interview-questions-and-answers
I. Contents of iso 9001:2000 certificate
==================
Harris has held an ISO 9001 registration in portions of the organization since October 1994. Third
party registration by Det Norske Veritas (DNV) has been maintained since that time, which provides a
registered Quality Management System and facility for our customers. DNV is one of the leading
providers of assessment and certification services for Quality Systems, both in the U.S. and
worldwide. The entire Harris Quality Management System was certified by DNV to the ISO 9001
quality system standard in September 2000. In September 2003, the Certificate was successfully
updated to ISO 9001:2000.
In June of 2007, GCSD expanded the scope of the Quality Management System Certification to AS
9100. The AS 9100 Standard includes all of the requirements contained in ISO 9001:2000 plus the
requirements identified by the International Aerospace and Defense Industry to meet their
expectations for Aerospace and Defense products and services. The current AS 9100 certificate was
approved by DNV to the revision C requirements on January 2012. The Certification by DNV is
accredited by the ANAB (ANSI-ASQ National Accreditation Board). The Quality System has also been
validated to ISO 9001 by the Defense Contract Management Agency (DCMA). These certifications
provide customers with confidence in the credibility of the Harris Quality System to the highest
internationally recognized standards.
The presence of an AS 9100/ISO 9001 Quality System substantiates that Harris meets the
requirements for aerospace and defense business processes ranging from Design and Development to
Production, Hardware and Software, including Purchasing, Process Control, Calibration, Corrective and
Preventive Action, etc. The recognition of Harris as an AS 9100/ISO 9001-compliant organization is
another clear demonstration of our overall commitment to excellence and continuous improvement.
2. ==================
III. Quality management tools
1. Ishikawa diagram
Ishikawa diagrams (also called fishbone diagrams,
herringbone diagrams, cause-and-effect diagrams, or
Fishikawa) are causal diagrams created by Kaoru
Ishikawa (1968) that show the causes of a specific
event.[1][2] Common uses of the Ishikawa diagram are
product design and quality defect prevention, to identify
potential factors causing an overall effect. Each cause or
reason for imperfection is a source of variation. Causes
are usually grouped into major categories to identify these
sources of variation. The categories typically include
ï‚· People: Anyone involved with the process
ï‚· Methods: How the process is performed and the
specific requirements for doing it, such as policies,
procedures, rules, regulations and laws
ï‚· Machines: Any equipment, computers, tools, etc.
required to accomplish the job
ï‚· Materials: Raw materials, parts, pens, paper, etc.
used to produce the final product
ï‚· Measurements: Data generated from the process
that are used to evaluate its quality
ï‚· Environment: The conditions, such as location,
time, temperature, and culture in which the process
operates
2. Histogram method
3. A histogram is a graphical representation of the
distribution of data. It is an estimate of the probability
distribution of a continuous variable (quantitative
variable) and was first introduced by Karl Pearson.[1] To
construct a histogram, the first step is to "bin" the range of
values -- that is, divide the entire range of values into a
series of small intervals -- and then count how many
values fall into each interval. A rectangle is drawn with
height proportional to the count and width equal to the bin
size, so that rectangles abut each other. A histogram may
also be normalized displaying relative frequencies. It then
shows the proportion of cases that fall into each of several
categories, with the sum of the heights equaling 1. The
bins are usually specified as consecutive, non-overlapping
intervals of a variable. The bins (intervals) must be
adjacent, and usually equal size.[2] The rectangles of a
histogram are drawn so that they touch each other to
indicate that the original variable is continuous.[3]
3. Pareto chart
A Pareto chart, named after Vilfredo Pareto, is a type
of chart that contains both bars and a line graph, where
individual values are represented in descending order
by bars, and the cumulative total is represented by the
line.
The left vertical axis is the frequency of occurrence,
but it can alternatively represent cost or another
important unit of measure. The right vertical axis is
the cumulative percentage of the total number of
occurrences, total cost, or total of the particular unit of
measure. Because the reasons are in decreasing order,
the cumulative function is a concave function. To take
the example above, in order to lower the amount of
late arrivals by 78%, it is sufficient to solve the first
three issues.
The purpose of the Pareto chart is to highlight the
most important among a (typically large) set of
4. factors. In quality control, it often represents the most
common sources of defects, the highest occurring type
of defect, or the most frequent reasons for customer
complaints, and so on. Wilkinson (2006) devised an
algorithm for producing statistically based acceptance
limits (similar to confidence intervals) for each bar in
the Pareto chart.
4. Scatter plot Method
A scatter plot, scatterplot, or scattergraph is a type of
mathematical diagram using Cartesian coordinates to
display values for two variables for a set of data.
The data is displayed as a collection of points, each
having the value of one variable determining the position
on the horizontal axis and the value of the other variable
determining the position on the vertical axis.[2] This kind
of plot is also called a scatter chart, scattergram, scatter
diagram,[3] or scatter graph.
A scatter plot is used when a variable exists that is under
the control of the experimenter. If a parameter exists that
is systematically incremented and/or decremented by the
other, it is called the control parameter or independent
variable and is customarily plotted along the horizontal
axis. The measured or dependent variable is customarily
plotted along the vertical axis. If no dependent variable
exists, either type of variable can be plotted on either axis
and a scatter plot will illustrate only the degree of
correlation (not causation) between two variables.
A scatter plot can suggest various kinds of correlations
between variables with a certain confidence interval. For
example, weight and height, weight would be on x axis
and height would be on the y axis. Correlations may be
positive (rising), negative (falling), or null (uncorrelated).
If the pattern of dots slopes from lower left to upper right,
it suggests a positive correlation between the variables
being studied. If the pattern of dots slopes from upper left
to lower right, it suggests a negative correlation. A line of
best fit (alternatively called 'trendline') can be drawn in
5. order to study the correlation between the variables. An
equation for the correlation between the variables can be
determined by established best-fit procedures. For a linear
correlation, the best-fit procedure is known as linear
regression and is guaranteed to generate a correct solution
in a finite time. No universal best-fit procedure is
guaranteed to generate a correct solution for arbitrary
relationships. A scatter plot is also very useful when we
wish to see how two comparable data sets agree with each
other. In this case, an identity line, i.e., a y=x line, or an
1:1 line, is often drawn as a reference. The more the two
data sets agree, the more the scatters tend to concentrate in
the vicinity of the identity line; if the two data sets are
numerically identical, the scatters fall on the identity line
exactly.
5. Check sheet
The check sheet is a form (document) used to collect data
in real time at the location where the data is generated.
The data it captures can be quantitative or qualitative.
When the information is quantitative, the check sheet is
sometimes called a tally sheet.
The defining characteristic of a check sheet is that data
are recorded by making marks ("checks") on it. A typical
check sheet is divided into regions, and marks made in
different regions have different significance. Data are
read by observing the location and number of marks on
the sheet.
Check sheets typically employ a heading that answers the
Five Ws:
ï‚· Who filled out the check sheet
ï‚· What was collected (what each check represents,
an identifying batch or lot number)
ï‚· Where the collection took place (facility, room,
apparatus)
ï‚· When the collection took place (hour, shift, day
of the week)
6. ï‚· Why the data were collected
6. Control chart
Control charts, also known as Shewhart charts
(after Walter A. Shewhart) or process-behavior
charts, in statistical process control are tools used
to determine if a manufacturing or business
process is in a state of statistical control.
If analysis of the control chart indicates that the
process is currently under control (i.e., is stable,
with variation only coming from sources common
to the process), then no corrections or changes to
process control parameters are needed or desired.
In addition, data from the process can be used to
predict the future performance of the process. If
the chart indicates that the monitored process is
not in control, analysis of the chart can help
determine the sources of variation, as this will
result in degraded process performance.[1] A
process that is stable but operating outside of
desired (specification) limits (e.g., scrap rates
may be in statistical control but above desired
limits) needs to be improved through a deliberate
effort to understand the causes of current
performance and fundamentally improve the
process.
The control chart is one of the seven basic tools of
quality control.[3] Typically control charts are
used for time-series data, though they can be used
for data that have logical comparability (i.e. you
want to compare samples that were taken all at
the same time, or the performance of different
individuals), however the type of chart used to do
this requires consideration.
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