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(3)

P. 3

For Whom This Programme is Designed This Programme is Designed For:

 Security Managers and Consultants

 Directors of Security

 CCTV Operators

 Risk Management Personnel

 System Integrators and Installers

 System Engineers and Designers

 Government Regulatory Personnel

 Architects

 Engineers

 Business Owners

 Professionals responsible for security infrastructure systems, site surveys, security strategy presentations, facility security design, or purchasing of security equipment

Programme Co-ordinator:

Prof. Dr. Crawford – Director HRODC Postgraduate Training Institute

(4)

P. 4  Adv. Dip. Ed. (University of Bristol),

 PGCIS (Thames Valley University),  ITC (UWI),

 Member of the Standing Council of Organisational Symbolism (MSCOS);  Member of the Asian Academy of Management (MAAM);

 Member of the International Society of Gesture Studies (MISGS);  Member of the Academy of Management (MAOM);

 LESAN;

 Professor, HRODC Postgraduate Training Institute;

 Visiting Professor, Polytechnic University of the Philippines (PUP)

Duration: 3 Months Intensive Full-Time or 6 Months Full-Time

Cost:

£38,000.00 Per Delegate for UK Delivery

£45,000.00 Per Delegate for Delivery outside the UK

Please Note:

V.A.T. (Government Tax) does not apply to Corporate Sponsored Individuals, taking Programmes or Courses in any location - within or outside the UK.

It applies only to Individuals and Corporations based in the UK and to Non-UK Individual Residents taking courses in the UK.

Cost includes:

Free Continuous snacks throughout the Event Days;

Free Hot Lunch on Event Days;

Free City Tour;

Free Stationery;

Free On-site Internet Access;

Postgraduate Diploma in Advanced Electronic Security Engineering: CCTV

(5)

P. 5

Certificate of Attendance and Participation – if unsuccessful on resit.

HRODC Postgraduate Training Institute’s Complimentary Products include:

1. HRODC Postgraduate Training Institute‟s Leather Conference Folder;

2. HRODC Postgraduate Training Institute‟s Leather Conference Ring Binder/ Writing Pad;

3. HRODC Postgraduate Training Institute‟s Key Ring/ Chain;

4. HRODC Postgraduate Training Institute‟s Leather Conference (Computer

Phone) Bag – Black or Brown;

5. HRODC Postgraduate Training Institute‟s 8GB USB Flash Memory Drive, with Course/ Programme Material;

6. HRODC Postgraduate Training Institute‟s Metal Pen;

7. HRODC Postgraduate Training Institute‟s Polo Shirt.

**Please see product images, as a separate file - Complimentary Products For Students and Delegates, from HRODC Postgraduate Training Institute.**

Daily Schedule:9:30 to 4:30 pm.

Location: Central London and International Locations

Dates: Schedule attached or at:

Schedule - Part 4:

http://www.hrodc.com/Course_Schedule_Part_4_London_Full_Time_Postgraduate_ Diploma_MA_MBA_MSc_Short_Courses_HRM_Petroleum_Oil_Gas_Accounting_Bus iness_English_Communication.htm

Click to book this course:

http://www.hrodc.com/Course_Booking_Form_London_Dubai_Kuala_Lumpur_Paris _Johannesburg_Cairo_Jeddah_Abu_Dhabi_Kuwait_MBA_MSc_MA_Course.htm

(6)

P. 6 Course Programme for Advanced Electronic Security Engineering Technology: CCTV Design and Installation, CCTV Surveillance, Enhanced Safety and Electronic

Access Control Systems

Leading to Postgraduate Diploma in Advanced Electronic Security Engineering: CCTV Design, and Installation, CCTV Surveillance, Enhanced Safety and Electronic

Access Control

Module

Number Module Title Credit Value

214.M1 Advanced Electronic Security Engineering Technology: CCTV System Design, Camera, Television, Video Processing, Transmission Media,

and Networking Quad

214.M2 Surveillance, Risk Management, Security System Integration, and Advanced Electronic Security Engineering Technology: CCTV

Electronic Circuitry Sensitivities Quad

214.M3 Electronic Access Control Systems Design, Installation, Maintenance, Advanced Electronic Security Engineering Technology: Enhanced

and Repair Quad

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Module 1

Advanced Electronic Security Engineering Technology: CCTV System Design, Camera, Television, Video Processing, Transmission Media, and Networking Leading to Diploma–Postgraduate in Advanced Electronic Security Engineering: CCTV System Design, Transmission and Networking (Quad Credit), Accumulating

to Postgraduate Diploma, Progressing to MSc

T ThheeCClloosseedd--CCiirrccuuiittTTeelleevviissiioonn((CCCCTTVV))IInndduussttrryy Role of CCTV The CCTV Industry S SIIUUnniittssooffMMeeaassuurreemmeenntt

The Basic Units Derived Units Metric Prefixes

(7)

P. 7

L

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Development

Light and the Human Eye Light Units

Object Illumination in CCTV Light onto an Imaging Device Colors in Television

Color Temperatures and Light Sources Eye Persistence

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OppttiiccssiinnCCCCTTVV

Refraction

Lenses as Optical Elements

Geometrical Construction of Images Aspherical Lenses

CTF and MTF F and T Numbers Depth of Field

Neutral Density (ND) Filters

Manual, Auto, and Motorized Iris Lenses Video- And DC-Driven Auto Iris Lenses Auto Iris Lens Electronics

Image and Lens Formats in CCTV

Angles of View and How to Determine Them Fixed Focal Length Lenses

Zoom Lenses

C- And CS-Mount and Back-Focus Back-Focus Adjustment

Optical Accessories in CCTV

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(8)

P. 8 Development of Television Systems

Basics of Television

Video Signal and Its Spectrum Color Video Signal

Resolution

Instruments Commonly Used in TV Oscilloscope

Spectrum Analyzer Vectorscope

International Television Systems HDTV

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General Information about Camera Tube Camera

CCD Camera

Sensitivity and Resolution of the CCD Chips Types of Charge Transfer in CCDs

Pulses Used In CCD for Transferring Charges CCD Chip as a Sampler

Correlated Double Sampling (CDS)

Camera Specifications and Their Meanings Sensitivity

Minimum Illumination Camera Resolution Signal/Noise Ratio (S/N)

Dynamic Range of a CCD Chip Color CCD Cameras

White Balance CMOS Technology

(9)

P. 9 Special Low-Light Intensified Camera

Camera Power Supplies and Copper Conductors V-Phase Adjustment Camera Checklist C CCCTTVVMMoonniittoorr Concept Monitor Sizes Monitor Adjustments Impedance Switch Viewing Conditions Gamma LCD Monitors

Projectors and Projection Monitors Plasma Display Monitors

Field Emission Technology Displays

V

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Analog Switching Equipment

 Video Sequential Switchers

 Synchronization

 Video Matrix Switchers (VMSs) Switching and Processing Equipment

 Quad Compressors

 Multiplexers (MUX)

 Recording Time Delays

 Simplex and Duplex Multiplexers

 Video Motion Detectors (VMDs)

 Framestores

 Video Printers

A

(10)

P. 10 Development of Analog Video Recorders

VCR Concepts Before

The Video Home System (VHS) Concept Super VHS, Y/C, and Comb Filtering

 Consumer VCRs for CCTV Purposes Time-Lapse VCRs (TL VCRs)

D

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Importance of Digital Video Digital Video Recorders (DVRs) The Various Standards

 ITU-601: Merging the NTSC and PAL

 The Resolution of ITU-601 Digitized Video The Need for Compression

Types of Compressions DCT as A Basis

The Variety of Compression Standards in CCTV Pixels and Resolution

 Dots per Inch (DPI)

 Psychophysiology of Viewing Details Recognizing Faces and License Plates in CCTV Operating Systems and Hard Disks

Hard Disk Drives

 The Different File Systems

T

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Coaxial Cables

 The Concept

 Noise and Electromagnetic Interference

 Characteristic Impedance

(11)

P. 11

 Coaxial Cables and Proper BNC Termination

 Installation Techniques

 Time Domain Reflectometer (TDR) Twisted Pair Video Transmission

Microwave Links

RF Wireless (Open Air) Video Transmission Infrared Wireless (Open Air) Video Transmission Transmission of Images over Telephone Lines Cellular Network

Fiber Optics

 Importance of Fiber

 Concept of Fiber

 Types of Optical Fibers

 Numerical Aperture

 Light Levels in Fiber Optics

 Light Sources in Fiber Optics Transmission

 Light Detectors in Fiber Optics

 Frequencies in Fiber Optics Transmission

 Passive Components

 Fusion Splicing

 Mechanical Splicing

 Fiber Optics Multiplexers Fiber Optics Cables

Installation Techniques Fiber Optic Link Analysis

 OTDR

C

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The Information Technology Era Computers and Networks

(12)

P. 12 The Main Ethernet Categories

Ethernet over Coax and UTP Cables Fiber Optics Network Cabling

Network Concepts and Components Networking Software

 The Internet Protocols

 The OSI Seven-Layer Model of Networking IP Addresses

Domain Name Systems (DNS) DHCP

DNS and DHCP Networking Hardware

 Hubs, Bridges, and Switches

 Routers for Logical Segmentation

 Network Ports

 A Network Analogy Example Wireless LAN

 802.11? Bluetooth

Putting a Network System Together

A

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Pan and Tilt Heads Pan and Tilt Domes

Preset Positioning P/T Heads PTZ Site Drivers

Camera Housings Lighting in CCTV Infrared Lights

(13)

P. 13 Lightning Protection

In-Line Video Amplifiers/Equalizers Video Distribution Amplifiers (VDAs)

C

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The Customer‟s Requirements Site Inspections

Designing and Quoting a CCTV System Installation Considerations

Drawings Commissioning Training and Manuals Handing Over

Preventative Maintenance

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The CCTV Labs Test Chart Before You Start Testing

 High-Quality Lens

 High-Quality Monitor Setup Procedure

What You Can Test

 Resolution

 Other Important Measurements

 Getting the Best Possible Picture

 Measurement of the Digital Image Compression Quality The CCTV Labs Test Pattern Generator TPG-8

 How You Could Use the TPG-8

 TPG-8 Buttons Description

 Connections

(14)

P. 14

 Test Patterns and How to Create Them

 Specifications

Module 2

Advanced Electronic Security Engineering Technology: CCTV Surveillance, Risk Management, Security System Integration, and Electronic Circuitry Sensitivities Leading to Diploma–Postgraduate in Advanced Electronic Security Engineering:

CCTV Security System Surveillance and Risk Management

(Quad Credit), Accumulating to Postgraduate Diploma, Progressing to MSc Video and the Security Plan

Principles of Video Technology Lightning: Natural and Artificial Lenses and Optics

Analog, Digital and Internet Cameras

Analog Video, Voice and Control Signal Transmission Analog Monitors and Digital Displays

Analog, Digital Video Recorders Hard Copy Video Printers

Video Switchers

Quads and Multiplexers Video Motion Detectors Dome Cameras

Integrated Cameras, Camera Housings and Accessories Electronic Video Image Splitting, Reversal and Annotation Camera Plan/Tilt Mechanics

Covert Video Surveillance

Low-Light-Level Cameras, Thermal Infrared Imagers Control Room/Console Design

Rapid Deployment Video System Applications and Solutions

(15)

P. 15 Video Security Systems Integration

Video System Test Equipment Video Check List

Education, Standards, Certification New Video Technology

Module 3

Advanced Electronic Security Engineering Technology: Enhanced Electronic Access Control System Design, Installation, Commissioning, Management,

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Access Control System Principles

H

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Development of Access Control Systems Concepts

Authorized Users, User Groups, Access Zones, Schedules and Access Groups Portals

Credentials and Credential Readers Credential Authorisation

Locks, Alarms, and Exit Devices Data, Data Retention, and Reports

A

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(16)

P. 16 Access Cards, Key Fobs, and Card Readers

Biometric Readers

A

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Portal Passage Concepts Pedestrian Portal Types Vehicle Portals

L

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Life Safety

Security vs. Life Safety

National and Local Access Control Codes and Standards Life Safety and Locks

Life Safety and Exit Devices

Life Safety and Fire Alarm System Interfaces

D

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Doors and Security Concepts

Standard Single-Leaf and Double-Leaf Swinging Doors Door Frames and Mountings

Overhead Doors Revolving Doors Sliding Panel Doors Bi-Fold and 4-Fold Doors

D

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Defining Fire Ratings Fire Penetration Ratings Door Assembly Ratings

(17)

P. 17 Pairs of Doors

“Path of Egress” Doors

Electrified Locks and Fire Ratings Additional References

E

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Importance of Electric Locks Types of Electrified Locks How Electrified Locks Functions Lock Power Supplies

Electrified Lock Wiring Considerations Electrified Lock Controls

Unrecommended Types of Locks

F

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Types of Free Egress Locks Electrified Mortise Locks Electrified “Panic” Hardware Electric Strikes

Electrified Cylinder Locks

Self-Contained Access Control Locks

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Standard Magnetic Locks Magnetic Shear Locks Magnetic Gate Locks

Cautions about Magnetic Locks

E

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Surface-Mounted Electrified Dead-Bolt Locks Concealed Direct-Throw Mortise Dead-Bolt Lock

(18)

P. 18 Top-Latch Release Bolt

Electrified Dead-Bolt Gate Locks

S

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Electrified Dead-Bolt-Equipped Panic Hardware Securitech Locks

Delayed Egress Locks Hi-Tower Locks

CRL-Blumcraft Panic Hardware

T

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Standard Application Rules

How to Select the Right Lock for Any Door

S

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Specialized Portals for Pedestrians Specialized Portals for Vehicles

A

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Access Control Panel Attributes and Components Communications Board

Access Control Panel Form Factors Access Control Panel Functions Access Control Panel Locations Local and Network Cabling

Redundancy and Reliability Factors

A

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Server/Workstation Functions Decision Processes

(19)

P. 19 System Scalability

Access Control System Networking Legacy Access Control Systems

S

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Importance of Integrating Security Systems Integration Concepts

Benefits of System Integration Types of Integration

Serial Data Integration TCP/IP Integration Database Integration

System Integration Examples

I

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Alarm

Types of Alarm Sensors Alarm Detection

S

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Photo ID Systems

Visitor Management Systems Security Video

Security Communications

Security Architecture Models for Campuses and Remote Sites Command, Control, and Communications Consoles

R

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Building/Facility Systems

Controlling and Automating Building Functions REAPS Systems

(20)

P. 20 Cable Types

Conduit or No Conduit Cable Handling

Cable Dressing Practices Cable Documentation

E

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Electronic Circuitry Sensitivities

Environmental Factors in System Failures

A

AcccceessssCCoonnttrroollDDeessiiggnn

Design vs. Installation vs. Maintenance The Importance of Designing to Risk

The Importance of Designing for the Future Design Elements

Designing Robust Portals Application Concepts

Implementing Design Ideas to Paper System Installation

System Commissioning Completing Punch List Items System Acceptance

A

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Jobsite Considerations

Conduit versus Open Cabling Device Installation Considerations The Importance of Documentation Device Setup and Initial Testing

(21)

P. 21 User Access Database Setup

Access Schedules and Areas

S

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Management

Maintenance and Repair

Synopsis of Diploma – Postgraduate, Postgraduate Diploma and

Postgraduate Degree Regulation

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Delegates studying courses of 5-9 days duration, equivalent to 30-54 Credit Hours (direct lecturer contact), will, on successful assessment, lead to the Diploma – Postgraduate. This represents a single credit at Postgraduate Level. While 6-day and 7-day courses also lead to a Diploma – Postgraduate, they accumulate 36 and 42 Credit Hours, respectively. Delegates and students who fail to gain the required level of pass, at Postgraduate Level will receive a Certificate of Attendance and Participation. The Certificate of Attendance and Participation will not count, for cumulative purpose, towards the Postgraduate Diploma.

Courses carry varying credit values; some being double credit, triple credit, quad credit and 5-credit, etc. These, therefore, accumulate to a Postgraduate Diploma. As is explained, later, in this document, a Postgraduate Diploma is awarded to students and delegates who have achieved the minimum of 360 Credit Hours, within the required level of attainment.

Credit Value and Credit Hours examples of Diploma – Postgraduate Courses are as follows:

C

(22)

P. 22 Single-Credit 30-36 Double-Credit 60-72 Triple-Credit 90-108 Quad-Credit 120-144 10-Credit (X36 Credit-Hours) to 12-Credit (X30 12-Credit-Hours) 360

Other Credit Values are calculated proportionately.

Because of the intensive nature of our courses and programmes, assessment will largely be in-course, adopting differing formats. These assessment formats include, but not limited to, in-class tests, assignments, end of course examinations. Based on these assessments, successful candidates will receive the Diploma – Postgraduate, or Postgraduate Diploma, as appropriate.

In the case of Diploma – Postgraduate, a minimum of 70% overall pass is expected. In order to receive the Award of Postgraduate Diploma, candidate must have accumulated at least the required minimum „credit-hours‟, with a pass (of 70% and above) in at least 70% of the courses taken.

Delegates and students who fail to achieve the requirement for Postgraduate Diploma, or Diploma - Postgraduate - will be given support for 2 re-submissions for each course. Those delegates who fail to achieve the assessment requirement for the Postgraduate Diploma or Diploma - Postgraduate - on 2 resubmissions, or those who elect not to receive them, will be awarded the Certificate of Attendance and Participation.

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(23)

P. 23 Applicants for Diploma – Postgraduate, Postgraduate Diploma and Postgraduate Degrees are required to submit the following documents:

 Completed Postgraduate Application Form, including a passport sized picture affixed to the form;

 A copy of Issue and Photo (bio data) page of the applicant’s current valid passport or copy of his or her Photo-embedded National Identity Card;

 Copies of credentials mentioned in the application form.

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 On receipt of all the above documents we will make an assessment of the applicants‟ suitability for the Programme for which they have applied;

 If they are accepted on their Programme of choice, they will be notified accordingly and sent Admission Letters and Invoices;

 One week after the receipt of an applicant‟s payment or official payment notification, the relevant Programme Tutor will contact him or her, by e-mail or telephone, welcoming him or her to HRODC Postgraduate Training Institute;

 Non-European Students will be sent immigration documentation, incorporating a Visa Support Letter. This letter will bear the applicant‟s photograph and passport details;

 Applicants will be notified of the dates, location and venue of enrolment and orientation;

 Non-UK students will be sent general information about „student life‟ in the UK and Accommodation details.

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There are three delivery formats for Postgraduate Diploma Courses, as follows: 1. Intensive Full-time Mode (3 months);

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P. 24 3. Video-Enhanced On-Line Mode.

Whichever study mode is selected, the aggregate of 360 Credit Hours must be achieved.

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All short courses can accumulate to the required number of hours, for the Postgraduate Diploma, over a six-year period from the first registration and applies to both general and specialist groupings. In this regard, it is important to note that short courses vary in length, the minimum being 5 days (Diploma – Postgraduate) – equivalent to 30 Credit Hours, representing one credit. Twelve 5-day short courses, representing twelve credits or the equivalent of 360 Credit Hours are, therefore, required for the Award of Postgraduate Diploma.

A six-day course (Diploma – Postgraduate) is, therefore, equivalent to 36 hours Credit Hours, representing one credit. Therefore, ten short courses, of this duration, equates to the required 360 Credit Hours, qualifying for the Award of Postgraduate Diploma. While double-credit courses last between ten and fourteen days, triple-credit courses range from fifteen to nineteen days. Similarly, quad-credit courses are from sixteen to nineteen days. On this basis, the definitive calculation on the Award requirement is based on the number of hours studied (aggregate credit-value), rather than merely the number of credits achieved. This approach is particularly useful when a student or delegate studies a mixture of courses of different credit-values.

For those delegates choosing the accumulative route, it is advisable that at least two credits be attempted per year. This will ensure that the required number of credit hours for the Postgraduate diploma is achieved within the six-year time frame.

References

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