The enlarged norms of time for maintenance, repair and metrological support of instrumentation and automation. Time rates for maintenance of relay protection and automation devices Maintenance and current

One of the current collections, which contains standards for Maintenance and allows you to determine the number of personnel, as well as the cost of maintenance of security systems.
Here are excerpts from this document, which is called:

"Labor standards for auxiliary work in housing and communal services"

Status:

acting

Effective date:

Developed in:

CJSC Center for Municipal Economics and Law 101000, Moscow, Mospochtamt, PO Box 348
JSC "Center for Municipal Economics" 101000, Moscow, st. Myasnitskaya, 13, bldg. 3

Approved in:

JSC "Research Center of Municipal Economy" (01.01.2006)

JSC "Center for Municipal Economics" No. 2006

Scope and conditions of use:

This collection contains labor standards for auxiliary work performed in the provision (production) of housing and communal services (goods) by enterprises and organizations of any organizational and legal form.
Recommendations are intended to determine the complexity of work and normative number employees of housing and communal services organizations, on the basis of which labor costs are calculated in economically justified tariffs for housing and communal services.

2.6. Maintenance and Maintenance radio and television equipment and low-current equipment

2.6.1. Installation and repair of individual receiving antennas *

An approximate list of works. Determination and preparation of the antenna installation site, lifting the antenna to the roof of the building, assembling the antenna, connecting the drop cable, connecting the antenna to the lightning protection device, laying the cable along the roof, entering the cable into the room, soldering the plug, turning on the TV and orienting the antenna according to the best image, checking the quality work.

Checking the absence of voltage on the mast and guys. Loosening and removing the guy wires, lowering and repairing the antenna, checking the reliability of the drop cable connection and fastening the elements, installing the antenna with the guy wires, turning on the TV and orienting the antenna according to the best image. Checking the quality of the TV.

Cast: radio technician of receiving television antennas.

Table 2.6.1.

Antenna types

Time norms per antenna, hour

norms

installation

repair

VHF TV receiving antenna, single-channel, one-five-element

2,46

1,78

VHF TV receiving antenna, two-channel, four-six-element

2,46

1,93

VHF TV receiving antenna, multichannel, one-two-element

2,50

1,88

VHF TV receiving antenna, multichannel, seven-element

2,31

1,82

UHF TV receiving antenna, multichannel, multi-element

2,57

1,70

Notes:
1. The norms of time for the installation of antennas do not take into account the construction of lightning protection devices.
2. The antenna repair times do not take into account the replacement of the drop cable.
Individual receiving antennas include: antennas for meter and decimeter wavelengths, single-channel and multi-channel.

2.6.2. TV equipment

2.6.2.1. Replacing the cable to reduce the receiving television antenna

An approximate list of works. Checking the absence of voltage on the mast and guys. Loosening or removing the guy wires, lowering the antenna. Replacing the drop cable with a new one, installing the antenna, turning on the TV and orienting the antenna for the best image. Checking the operation of the TV.
Performers: radio technician of receiving television antennas.
The time rate for 1 antenna is 1.65 hours.

2.6.2.2. Laying of a subscriber television cable with connection to a junction box and a TV

An approximate list of works. Marking and preparation of the route for laying the cable, laying and fixing the cable, connecting the cable to the junction box, terminating the plug, measuring the mains voltage. Connecting the TV to the network and checking its operation.
Cast: radio technician of receiving television antennas.
The standard time for 10 m of cable is 1.22 hours.

2.6.2.3. Connection of the subscriber cable to the junction box (without cable laying) and minor repairs of the subscriber tap

An approximate list of works.Checking the absence of voltage on the mast and guys. Checking the correct laying of the subscriber cable, connecting the cable to the junction box, terminating the plug. Disconnecting the subscriber cable with or without removing the cable, unsoldering the plug, connecting the cable from several pieces and other minor repairs of the subscriber tap. Checking the operation of the TV.

Performers: radio technician of receiving television antennas.
The time rate for 1 connection is 0.91 hours.

Note:
Time norms of clauses 2.1.7.1.-2.1.7.2. installed taking into account the implementation of work on the installation and repair of outdoor receiving antennas with a mast height of up to 3 meters.
In cases of performing work on the installation and repair of the indicated types of antennas with a mast height of more than 3 to 6 meters or 2-storey (two-level) antennas, 1 hour is added to the time norms of the indicated sections.

2.6.3. Fire extinguishing, security, fire and security and fire alarm systems

An approximate list of the profession: an adjuster of instrumentation and automation, a mechanic for instrumentation and automation, an electrician for the repair of electrical equipment, an electrician of a security and fire alarm.

Table 2.6.3.

equipment identification

Norm No.

Automatic thermal switch of maximum action

0,56

Fire alarm and start-up unit

2,39

0,45

Contactless electromagnetic sensor

0,17

0,05

Block-contact sensor

0,75

Inertial magnetic contact sensor

0,19

0,19

Magnetic contact sensor

0,36

Infrared sensor

0,67

0,68

Impact sensor

0,30

Electrocontact sensor

1,10

Howler bell

0,23

Automatic burglar detector

1,49

0,65

Automatic burglar-fire detector

6,84

0,96

Radioisotope smoke detector

1,20

0,79

Photoelectric smoke detector

0,39

0,16

Combined detector

1,44

Optical-electronic burglar-fire detector

4,80

0,79

Surface ultrasonic fire and security detector

5,43

Burglar alarm detector

5,80

4,49

Fire detector

0,17

0,05

Maximum differential bimetallic automatic fire detector

0,37

Magnetic thermal fire detector

0,29

Manual fire alarm

0,20

0,97

Light detector

1,62

Fire alarm detector

0,0087

Detector

1,90

0,58

Automatic heat detector

4,56

4,25

Heat detector with fusible lock

0,29

Intrinsically safe device

3,87

1,13

Concentrator

8,20

0,97

Small capacity concentrator

1,17

0,08

Fire control and security concentrator

6,27

1,59

Fire alarm concentrator

3,20

0,22

Linear alarm unit

0,21

Linear block device

14,4

0,38

Microswitch

Interim executive body

5,95

Burglar alarm device

0,44

0,71

Receiving and control device

6,87

0,51

Fire alarm control panel

0,96

Signaling device:

- for 1 linear set

- for 9 sets

4,52

Signaling device

0,61

Alarm device signaling device

3,19

Piezoelectric signaling device

0,17

Radio wave signaling device

0,92

Single-beam piezoelectric signaling device

Control panel

6,99

1,15

Fire alarm receiving panel

2,45

1,44

Signaling device

2,00

0,59

Alarm siren

0,31

Station apparatus

4,28

1,37

Fire alarm station

18,06

0,63

Explosion-proof thermal detector

4,95

Installation of radioisotope security and fire

20,47

1,43

Smoke fire alarm installation

8,67

1,64

Complex fire alarm installation

56,00

1,10

Device for monitoring the destruction of glazed structures

2,00

2,07

Object receiving and control device

5,14

Security remote signaling device

5,66

0,77

Intermediate receiving and control device

1,04

0,26

Signal device

0,56

0,21

Photoelectric device

3,00

1,66

Alarm loop, single-pair and multi-pair (5 m)

0,02

0,72

Note :
1. The headcount standards provide for the performance of maintenance work on the concentrator with one unit. When using an additional five-beam unit, the standard increases by 60%.
2. The staffing standard provides for the performance of maintenance work for the station with one 10-beam unit. When using an additional block, the standard increases by 40%.
3. The staffing standard provides for the performance of maintenance work for the installation with one BKL-1 unit. When using an additional block BKL-1, the standard increases by 70%.

2.6.4. Means of chemical, automatic gas, water and foam fire extinguishing

Approximate list of works (maintenance).

External examination, control technical condition(operable-inoperative, serviceable-malfunctioning) with the help of the senses and, if necessary, by means of control, the nomenclature of which is established by the relevant documentation, i.e. determination of the technical condition of installations and individual technical means by signs of spring.

Performance check: determination of the technical condition by monitoring the performance of technical means and installation in general of part or all of their inherent functions, determined by the purpose.

Cleaning the external surfaces of technical equipment, checking the technical condition of their internal installation ( internal surfaces), cleaning, lapping, lubricating, soldering, replacing or restoring elements of technical equipment that have worn out or become unusable, adjusting, setting up devices, testing and checking them.

Approximate list of works (current repairs). Cleaning the external surfaces of technical equipment, partial disassembly, replacement or repair of equipment of individual units, parts, linear cable structures, etc. carrying out measurements and testing of equipment, if these data do not correspond to the passport data, measures are taken to eliminate defects. Cleaning, lapping, lubrication, soldering, adjustment, instrument setting, testing and checking them.

An indicative list of professions: adjuster of instrumentation and automation, fitter-repairman, fitter-electrician for the repair of electrical equipment.

Table 2.6.4.

equipment identification

Standards for the number of workers engaged in equipment maintenance, people for 100 units equipment

Time norms for current equipment repair, person / hour per unit. equipment

Norm No.

Battery 6-cylinder (8-cylinder)

0,13

Shut-off diaphragm valves with electric drive flanged cast iron

0,75

Cast iron flanged shut-off valves

0,25

Shut-off valves with an electromagnetic drive and an electromagnetic latch flanged cast iron

0,62

Shut-off valves with electric drive flanged cast iron and steel

0,54

Generator

0,24

High expansion foam generator

0,14

0,04

Two-jet generator

0,08

0,04

Generator involute

0,02

Wedge gate valves with rising stem, steel flanged

0,93

1,51

Wedge gate valves with rising stem, flanged steel with electric actuator in explosion-proof design

5,31

1,51

Parallel gate valve with rising stem, flanged cast iron

0,92

1,51

Electric gate valves

1,77

1,51

Check valve inlet with mesh flanged cast iron

1,96

Incentive rope valve

1,54

1,49

Rotary valve, single disc cast iron flanged

0,39

1,99

Manual valve

0,20

Valve test-start gland brass

0,15

Compressor

10,88

9,08

Connecting lines (100 m)

Pump

4,89

Sprinkler water sprinkler and deluge

0,29

Foam sprinkler sprinkler, involute

0,23

Air distributor

1,23

0,15

Section typesetting for batteries

4,00

0,20

Universal pressure switch

1,39

0,20

Liquid flow indicator

6,00

0,63

Dosing signaling device

Charging station

3,33

0,42

Automatic gas fire extinguishing installation

2,66

0,13

Freon fire extinguishing installation

4,55

3,84

Signaling and control panel

7,36

Power cabinet for electric valves

16,95

Carbon dioxide fire extinguishing cabinet with hose and socket

1,98

Control cabinet

18,93

Gate valve motor control cabinet

20,28

Electromagnetic pressure gauge

0,33

2.6.5. Fire-fighting equipment

External examination, control of technical condition (operable-inoperative, serviceable-malfunctioning) using the senses and, if necessary, by means of control, the nomenclature of which is established by the relevant documentation, i.e. determination of the technical condition of installations and individual technical means by external signs.

Performance check: determination of the technical condition by monitoring the performance of technical means and installation in general of part or all of their inherent functions, determined by the purpose.

Cleaning the external surfaces of technical equipment, checking the technical condition of their internal installation (internal surfaces), cleaning, lapping; lubrication, soldering, replacement or restoration of elements of technical means that have worn out or become unusable, adjustment, adjustment of devices, testing and checking them.

Cleaning the external surfaces of technical equipment, partial disassembly, replacement or repair of equipment of individual units, parts, linear cable structures, etc. carrying out measurements and testing of equipment, if these data do not correspond to the passport data, measures are taken to eliminate defects. Cleaning, lapping, lubrication, soldering, adjustment, instrument setting, testing and checking.

fitter-repairman, fitter-electrician for the repair of electrical equipment.

Table 2.6.5.

equipment identification

Standards for the number of workers engaged in equipment maintenance, people for 100 units equipment

Time norms for current equipment repair, person / hour per unit. equipment

Norm No.

Priming tank for pumps

5,00

0,07

Battery automatic two-cylinder with electric start

6,20

0,27

Two-cylinder battery

2,50

0,15

Battery with automatic and pneumatic start

6,60

Horizontal tank (hydro-pneumatic tank)

7,20

2,39

Foam storage tank

4,40

1,58

Inducing and starting section with a control valve

5,70

0,98

Water sprinkler control unit with valves

4,48

1,66

Air sprinkler control unit with valves

5,12

1,66

17,00

1,66

Control unit for air-water sprinkler installation with valves

10,00

1,66

Control unit for deluge plant with hydraulic start-up with valve

9,37

1,66

Control unit for deluge plant with pneumatic start with valve

8,50

Control unit for drencher (sprinkler) installation with valve

- a sprinkler installation of an air-water fire extinguishing system or a deluge installation with a pneumatic start taking into account the number of vehicles included in the control unit

6,60

- control unit of the deluge installation with hydraulic start taking into account the number of vehicles included in the control unit

4,80

- control unit of the sprinkler installation of the water system, taking into account the number of vehicles included in the control unit

4,70

Sprinkler control unit with valve

2,70

3,35

Distribution device (taking into account the number of vehicles included in the device)

3,30

0,58

Note: To determine the normative number for the performance of maintenance and repair of installations, which are carried out at a height of more than 5 m from the floor, the following coefficients are applied:

from 5 to 8 m - 1.05

from 8 to 15 m - 1.10

from 15 to 30 m - 1.25

2.6.6. Communication equipment

Approximate list of works (maintenance).

External examination, control over the technical condition of communication equipment, elimination of detected defects, carrying out electrical changes in individual sections of station, linear, feeder and other communication facilities.

Approximate list of works (current repairs).External examination, partial disassembly, replacement, repair of parts and assemblies, line-cable structures, measurements and testing of communication equipment, electrical measurements at individual sections of station, line, feeder and other communication facilities.

An indicative list of professions:electrician of sewerage communication facilities, electrician of linear facilities telephone connection and radio equipment, an electrician of radio station equipment, an electrician of telephone communication station equipment, an electrician of station radio equipment.

Table 2.6.6.

equipment identification

Meter

Standards for the number of workers, people

Norm No.

Total

including:

those. service

Maintenance

Cable lines:

Communication lines with cable type:

ISS 1 × 4 and all low-frequency cables

10 km of cable

0,21

0,19

0,02

ISS 4 × 4

-«-

0,23

0,20

0,02

ISS 7? 4, VKPAP

-«-

0,24

0,22

0,03

Interoffice Cables:

Sealing up to 30 channels

10 km of cable

0,21

0,19

0,02

Sealing over 30 channels

-«-

0,23

0,20

0,02

Unsealed cables on inter-office trunks

-«-

0,06

0,05

0,06

Subscriber lines and radio lines

-«-

0,05

0,04

0,05

Radio cables

-«-

0,021

0,18

0,023

GTS cable lines:

With an average capacity of up to 50 pairs of cores

10 km couples lived

0,005

0,004

0,0005

With an average capacity of over 50 pairs of cores

-«-

0,003

0,002

0,0003

Sewer devices

channel-km

0,025

0,022

0,003

Radio broadcasting points

100 radio points

0,016

0,014

0,002

Public address loudspeaker equipment

100 instruments

1,16

1,03

0,13

Direct dial telephone

100 devices

0,06

0,05

0,005

PBX telephone set

-«-

0,012

Telephone set

-«-

1,44

1,28

0,16

Telephone set-top box

100 attachments

1,21

1,08

0,13

ATS of a decade-step system with a capacity of 100 and more numbers

100 monitored numbers

0,18

0,02

ATC coordinate system

-«-

0,09

0,08

0,01

Electric watch

100 electric hours

1,15

0,92

0,23

Note:
1. With an increase in the average number of channels, the standard decreases on the basis of: for every 0.5 channel by 10%.
2. For 2-3-program networks, the standard is increased by 10%.

An example of calculating the number of workers engaged in maintenance and current repair of radio and television equipment and low-current equipment

No. of paragraphs in the collection

Scope of work

Scope of work

Time rate, man-hour

Annual standard labor intensity, man-hour

2.6.2.1.

Installation of a UHF TV receiving antenna

157 antennas

2,57

403,49

2.6.2.2.

Laying of subscriber television cable

1,22

383,08

2.6.3.

Current repair of a smoke photoelectric detector

0,16

9,12

2.6.4.

Current repair of an automatic gas fire extinguishing installation

0,13

9,88

TOTAL

805,57

The listed number of workers engaged in the maintenance and current repair of radio and television equipment and low-current equipment is:

(805,57/1992) ?1.12 = 0.45? 0.5 people.

where: 1992 - annual fund of working time;

1,12 - coefficient of planned absenteeism.

2.8. Other auxiliary work

2.8.3. Guard numbers

An approximate list of works.Duty at the entrance doors of the guarded object, checking the integrity of the guarded object (locks and other locking devices), the presence of seals, the serviceability of alarm devices, telephones, lighting, the presence of fire-fighting equipment.

To determine the number of watchmen, you must establish:
the necessary and rational number of posts in the building, which depends on the number of buildings, isolated entrances, etc .;
the number of work shifts of each post.
The standard for the number of watchmen per shift for 1 post is 1 person.

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A complete list of the main collections for maintenance of security systems includes the following documents:

- MTSN 81-98 and TSN-2001.14-15 Collection 15. Technical operation of communication facilities, video surveillance systems, traffic control, burglar and fire alarms
- RTM 25 488 82 Ministry of Instrument of the USSR. Automatic fire extinguishing installations and installations of fire and security, and security and fire alarm systems. Standards for the number of personnel involved in maintenance and repair.
- Price list No. 2661 00192.“System of maintenance and repair of technical equipment and systems of fire extinguishing, smoke removal, security, fire and security and fire alarms. Wholesale prices for maintenance and repair ", developed and implemented by MGO" Zashchita "(Tver). The price list was issued in 1991 prices and entered into force on 04/01/92;
- GESNmt 81-03-42-2001 Collection No. 42 Maintenance, repair and modernization of equipment of complex integrated) security systems.
- VESNmt CBR with rev. from 6.07. 2006 year Maintenance of engineering and technical security equipment (copy of GESNmt-42 only with a different name).
- RD 08.00-60.30.00-KTN-016-1-05"Order of conduct, technological maps, unit norms and prices for routine maintenance of engineering and technical means of guarding facilities of enterprises belonging to the TRANSNEFT group of companies.
- Instruction of the Ministry of Internal Affairs RF on the organization of operation of technical security equipment at facilities guarded by non-departmental security
- OESN-81-26-09-2003 Systems of technological control, regulation, protection and management. Signaling, computer technology, telemechanics and communication facilities.

All these documents can be obtained as part of the information base for maintenance and repair of security systems, complete with a program for automatically calculating the estimated cost of maintenance and repair.

In 2009, he passed the state examination and is preparing for printing a new collection for maintenance, which contains flow charts, time standards and examples of documentation for maintenance and repair of security systems. We will provide detailed information on this collection in addition in the coming months, as soon as the collection comes out in print. Follow the publications or for prompt receipt of information in automatic mode from our website.

Standards of time for maintenance of relay protection and automation devices
Approved by the Director of Social and Labor Relations and organizational structures V.D.Belov 03.12.1996
Moscow: TsOTenergo, 2004

The time standards for the maintenance of relay protection and automation devices are recommended for use at the enterprises of the Ministry of Fuel and Energy of the Russian Federation.
The development of this collection is a revision of the industry collection of time norms (1986 edition) and its Supplements and amendments (1990 edition).
In this collection, the time norms for relay protection devices covered by the above collections are presented as a whole per unit of change (relay, kit, block, panel, device, circuit), and for relay protection and automation devices not included in industry collections, the time standards are presented in expanded form with a list of basic operations required for maintenance.
When developing the Time Standards, the following materials were used:
Time rates for maintenance of relay protection and automation devices. Parts 1, 2. N .: TsSTI, 1986;
Additions and changes to the "Standards of time for maintenance of relay protection and automation devices" Issues 1, 2, 3. M .: TsOTenergo, 1990;
Rules for the maintenance of relay protection devices, electrical equipment, remote control and signaling of power plants and substations 110-750 kV. RD 34.35.617-89 *. M .: SPO Soyuztekhenergo, 1989;
* RD 153-34.0-35.617-2001 "Rules for the maintenance of relay protection devices, electrical automatics, remote control and signaling of power plants and 110-750 kV substations" is in force.
Rules for the maintenance of relay protection devices and electrical automatics electrical networks 0.4-35 kV. RD 34.35.613-89 *. M .: SPO Soyuztekhenergo, 1989;
* RD 153-34.3-35.613-00 "Rules for maintenance of relay protection devices and electrical automatics of 04-35-kV electrical networks is in force."
Instructions of the USSR Ministry of Energy dated 05/10/76 N NS-5694.
Methodological foundations for the regulation of labor of workers in the national economy. M .: Economics, 1987.
Cross-sectoral guidelines"Determination of standards of time for rest and personal needs." Moscow: NIITruda, 1982.
Photo-timing observations.
Technical calculations.
Technical characteristics of the equipment and instruments used.
Typical, factory and local instructions.

a common part
Characteristics of the equipment used
Labour Organization
Normative part
1. Circuit breakers
2.Relay
3. Sets (blocks) of protection
4. Locking devices
5. Panels (blocks) of protection and automation
6. Electro-automatic devices
7. High-frequency devices
8. High-frequency paths
9. High frequency channels
10. Instrument transformers
11. Power supplies
12. Operative current devices
13. Elements of drives of switching devices
14. Miscellaneous jobs

USSR Ministry of Energy and Electrification

APPROVED
Deputy Minister
Energy and electrification of the USSR
V.L. Smirnov


INCREASED TIME STANDARDS
FOR REPAIR AND MODERNIZATION OF MEANS AND SYSTEMS OF TECHNOLOGICAL CONTROL, AUTOMATIC REGULATION, PROTECTION, SIGNALING, COMPUTER EQUIPMENT, ELECTRIC AUTOMATION, TELECOMMUNICATIONS AND COMMUNICATIONS

AGREED: Central Committee of the Trade Union of Workers of Power Plants of the Electrical Industry (Resolution No. 23 of 19.10.88).

A COMMON PART

1. These consolidated norms of time for the repair and modernization of means and systems of technological control, automatic regulation, protection, signaling, computers, electroautomatics, telemechanics and communications are designed for typical volumes of work based on differentiated industry time norms given in Appendix 1 to this collection ...
2. Application of the consolidated norms does not negate the validity of the industry norms listed in Appendix 1. The current industry norms, along with the enlarged ones, are used to adjust the enlarged norms in cases where work is performed in volumes that differ from the standard ones for which the consolidated norms are calculated.
3. The enlarged norms of time are recommended for use at the enterprises of the USSR Ministry of Energy for rationing the labor of workers and engineers by issuing standardized tasks and orders, in collective forms of organization and remuneration, in calculating the normative number of personnel in units performing the work included in the collection.
4. The development of consolidated time norms is based on the following materials:
- order of the USSR Ministry of Energy dated 10.11.87 No. BC-697-14;
- methodological guidelines for work rationing of workers for the repair of control and measuring devices (publishing house of standards, Moscow, 1976);
- methodological guidelines for the regulation of labor in the power industry from 05.05.1976, No. NS-5694;
- current sectoral, inter-sectoral and local norms of time for the repair of devices and devices;
- technical and economic analysis and generalization of the experience of carrying out repair and repair and commissioning works by specialized enterprises of PO "Soyuzenergoavtomatika", repair enterprises of VPO "Soyuzenergoremont", thermal power plants and other energy enterprises;
- normative and technical documentation for devices, control and management system devices.
5. The enlarged time norms take into account independent completed types of work and contain an enlarged list of basic operations for specific types of work. Detailed checklists technological operations, taken into account by the enlarged complex time norms, are given in the corresponding collections of industry time norms (see Appendix 1).
6. The enlarged norms of time (hereinafter the norms of time) are given for I, II, III groups of complexity of repair and repair and adjustment work, as well as maintenance of instruments and devices.
7. Typical scope of work for the III group of repair complexity includes the following main technological operations:
a) preliminary defect detection of the product;
b) cleaning and washing of devices, assemblies and parts;
c) disassembly of the product, units into elements;
d) defect detection of elements and units of the product;
e) repair of the mechanical part of the product;
f) repair of the electrical part of the product;
g) repair (painting) of the body, chassis of the product;
h) assembly and adjustment of units and the product as a whole;
i) setting up units and the product as a whole;
j) technological tests (bench testing of devices);
k) acceptance tests (delivery of quality control department);
l) submission for verification (for measurement systems subject to verification);
m) registration of acceptance documents;
o) familiarization and study of scientific and technical documentation when mastering the repair of new types of devices.
8. The scope of work performed in I and II groups of complexity includes only a part of the typical scope of work contained in the III group of complexity.
9. In addition to the main repair and maintenance work on instruments, devices, monitoring and control systems, the time standards take into account:
- time for preparatory and final work and maintenance of the workplace;
- time for receiving, handing over, moving equipment and materials, as well as time for transitions of performers within the working area of ​​sites, workshops and laboratories;
- time for rest and personal needs within the current standards;
- time to carry out organizational and technical measures, including: issued work permits for the brigade in the conditions of existing workshops of energy enterprises, as well as management of work to ensure the performance of work in accordance with the requirements of PTE, PUE, PTB, PRB, PPB and other instructions.
10. When repairing and handing over instruments (measuring instruments) to the customer without presenting them to the state auditor, the coefficient K = 0.95 is applied to the time norms.
11. When performing work on imported equipment being repaired for the first time, as well as on domestic equipment manufactured in the order of prototypes (batches), the coefficient K = 1.2 is applied to the time norms.
12. When performing work on existing electrical installations under voltage over 1000 K, the coefficient K = 1.2 is applied to the time standards.
13. The time rates of this collection are set for a piece of equipment (device, device, kit, circuits, systems, etc.).
14. The qualification structure and the actual number of performers are established by the responsible work manager in accordance with the current "Unified tariff and qualification reference book of works and professions of workers" (issue 1, 2, 9. M. Mechanical Engineering, 1985) and the COP of the positions of managers, specialists and employees (issue 1, Economics, 1986)
15. The collection presents the average category of work, despite this, when rationing and determining the level of performers, it is necessary to take into account the presence of engineering labor when performing work in any section and on average for engineering labor in sections is:

01, 07, 03, 08, 09 - 15%
02, 04, 05 - 25¸30%
06 - 35¸40%
10 - 60%
16. The enlarged norms of time are developed for the nomenclature, composition and scope of work of the final repair products of the Price List 26-06-19.
If the composition and scope of work differs from those adopted in the Price List and the enlarged norms (differences in the condition of equipment, repair technology, etc.), enterprises, on the basis of the consolidated norms, as well as differentiated norms, can develop and apply local enlarged time norms.
17. When introducing more advanced forms of labor organization, production technology, equipment, tooling or more advanced projects for organizing workplaces at enterprises that provide a higher level of labor productivity for workers and engineers, local, more progressive time norms are developed and introduced in the prescribed manner.
18. When introducing time standards, the conditions for the production of work in shops, at production sites and workplaces are brought in accordance with the requirements for repair and repair and commissioning work for each type of devices, devices, monitoring and control systems.
19. The time norms for the repair of instruments and devices given in the collection apply to the repair of equipment in working conditions energy companies and specialized repair enterprises (centralized repair).

LABOUR ORGANIZATION

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ON CURRENT RESTORATION

Almaty 1998

MINISTRY OF TRANSPORT AND COMMUNICATIONS

REPUBLIC OF KAZAKHSTAN

REPUBLICAN STATE ENTERPRISE

"KAZAKSTAN TEMIR ZHOLY"

I APPROVE:

Head of the Main Department of Carriage Facilities

STANDARD TIMES

ON CURRENT RESTORATION

REPAIR OF FREIGHT CARS TAKING INTO ACCOUNT

APPLICATIONS OF THE DONBASS TYPE MACHINE

Almaty 1998

© RSE "Kazakhstan Temir Zholy"

a common part

Standard time rates for the current refurbishment of freight cars are recommended for use in the production area for the current repair of depot cars.

The collection is intended for the rationing of the work of locksmiths for the repair of rolling stock, carpenters, gas cutters, painters and electric welders.

The collection consists of the following sections:

I List of typical time standards

II Tables of typical time standards

III Standards for preparatory and final operations, maintenance of the workplace and regulated breaks.

The basis for the development of standard time norms for the current refurbishment of freight cars, taking into account the use of a Donbass type machine, is based on the time norms developed by the Design and Implementation Center for Labor Organization of the Ministry of Railways of the Russian Federation.

Typical time rates are set in man-hours and do not depend on the number of performers.

The time norms include time for preparatory and final operations, maintenance of the workplace and regulated breaks according to the standards given in section III of this collection.

Time rates are determined by the formula:

T = T op + T pz + T vol + T ex,

where Top is the operational time,

Тпз - time for preparatory and final operations,

Time to service the workplace,

Totl - time for rest and personal needs.

The names of the professions of workers and the wage grades of work in this collection are indicated in accordance with the current wage and qualification reference books of work and professions of workers.

The performance of work by workers whose qualifications (category) differ from those indicated in the standard time rates cannot serve as a basis for changing the standard time rates.

Before the introduction of the standard time norms, it is necessary to take all measures to bring the working conditions at the production site (labor organization, equipment, etc.) in accordance with those projected in the time norms of this collection.

The collection contains initial materials for the development of specific work time norms in wagon depots in relation to the organization of work at workplaces, the technological process of repair and the volume of work performed in local conditions. For works that are not included in this collection, local time norms are established by the method of rationing of labor.

To determine the actual amount of work performed, a full-scale check of cars of each type is carried out according to a monthly program, but not less than 20 cars, and the list is filled in according to the form given in Appendix 1. The received amount of work is taken to calculate the standard time rate with the obligatory use of operational time standards per unit measurements specified in the collection.

The process of calculating the standard time rate consists in drawing up a table of the standard time rate indicating the content, the volume of work taken into account and the operational time standards per unit of measurement.

If the time rates in the car depot are lower than those specified in the collection, then they must be preserved and justified by the method of labor rationing.

When determining the time for preparatory and final operations, maintenance of the workplace and regulated breaks, it is necessary to use the standard standards specified in the collection, or local standards, if they are lower than the standard ones.

When introducing at enterprises more advanced than that provided for in the standard norms, the organization of production and labor, the technology of repairing equipment, tooling, etc., which increase the productivity of workers, it is necessary to develop by the method of technical regulation and introduce in the prescribed manner local time norms corresponding to higher labor productivity.

The introduction of standard time standards for the collection is carried out by the administration of the enterprise in agreement with the committee of the trade union organization.

The agreed and approved time norms with the appropriate indexing are entered into the pricing lists (the form is given in Appendix 2), which are drawn up in accordance with the requirements of the Basic Provisions on Technical Labor Standards in Railway Transport. Workers must be notified of the introduction of new time norms no later than one month in advance.

With the introduction of this collection, the previously valid time norms are canceled, except for the norms in their level below those provided for in the collection.

During the current refurbishment of freight cars, the following organization of labor and workplaces is envisaged:

freight cars are repaired on specialized depot tracks;

the qualifications of employees correspond to the category of work performed;

personal tools are stored in tool cabinets located near the workplace;

materials and accessories from the pantry are brought to the workplace by the performers themselves;

the necessary units, spare parts and materials are transported to the carriage and workplaces by the performers themselves;

foreman and foreman supervise the work, monitor its compliance with the technological process and current instructions.