For closed-cycle poultry farms and genetic selection centres, TEXHA offers cage equipment specifically designed for parent stock breeders management.
TEXHA’s equipment concept is based on the best practices and experience in parent stock management of leading domestic and foreign breeder farms. All equipment manufactured by TEXHA is subject to thorough testing at the in-house experimental site. We may boast a vast experience in implementation of individual projects with out-of-box solutions.
The parent stock management technology may be implemented with either of two distinct methods: joint or separate poultry housing.
When joint breeder housing system is used, the hens and the roosters are kept in the same cage, where each cage is intended to house 29 hens and 3 roosters.
For this housing system, TEXHA’s engineers developed a dedicated solution, where the feeding area is divided for separate feeding of hens and roosters: the rooster door bars have vertical direction, while the hen cage door bars are arranged in horizontal direction. The cages are also equipped with perches and nests.
In separate breeder housing systems, the hens and the roosters are kept in separate cages.
For this system, several cage combinations area available:
TECHNICAL SPECIFICATIONS
Advantages and specific features of equipment for parent stock:
WE ENSURE:
OUT EXPERT TEAM MEMBERS will calculate:
Breeder Joint Housing Case
Number of birds per cage | 3 roosters, 29 hens |
Cage width, mm | 1 830 |
Cage depth, mm | 1 050 |
Interior cage height, mm | 600 |
Distance between levels, mm | 768 |
Façade height, mm | 653 |
Feeding frontline, cm | 11,44 |
Cage area, sq.m | 1,9215 |
Cage area per bird, sq. cm | 600,47 |
Nest width, mm | 300 |
Nest depth, mm | 1 050 |
Nest height, mm | 650/591 |
Floor mesh wire, Ø mm | 2,0 |
Floor mesh slope | 7° |
Breeder Separate Housing Cage
Rooster Housing Cage
Number of levels | 3 |
Number of birds per cage | 1 |
Cell width, mm | 367,5 |
Cell depth, mm | 525 |
Distance between levels, mm | 768 |
Façade height, mm | 620 |
Cage area per bird, sq. m | 0,1929 |
Feeding frontline, cm | 36,75 |
Floor mesh wire, Ø mm | 2,0 |
Number of levels | 3, 4 |
Number of birds per cage* | 5, 6 |
Cell width, mm | 735 |
Cell depth, mm | 525 |
Distance between levels, mm | 518 |
Façade height, mm | 400 |
Feeding frontline, mm/bird | 122,5 |
Cage area, sq.m | 0,386 |
Cage area per bird, sq. cm | 643 |
Floor mesh wire, Ø mm | 2,0 |
Floor mesh slope | 7° |
* Number of birds may be adjusted depending on the cross-breed, climatic zone and other factors.
Decision is to be made by the poultry farm chief process engineer.
For parent stock management, TEXHA offers lift-based egg-collection system that ensures reliable, precise and accurate egg-collection process.
Egg collection process automation ensures the following:
Lift-based egg collection system consists of the following:
Lengthwise egg collection system operates on the level-by-level basis. The crosswise conveyor adjusted for specific battery level actuates the respective lengthwise belts, so the egg is transported to the conveyor. Then the egg moves along the inclined conveyor portion and arrives at the stacking table. When out of operation, the crosswise conveyor rests at the upper level in order to avoid interference with the personnel activities.
The lengthwise belts may operate at different speed rates. The speed rate is selected by the poultry farm personnel depending on the egg-laying performance of the flock and the crosswise conveyor utilization level.
In order to prevent egg contamination during handling at the egg collection belt, the equipment incorporates dedicated lengthwise belt cleaning brush with the waste container.
The lift-based egg collection system may be integrated into the general egg-handling system of the poultry farm.
Outstanding features of the system:
Rod Conveyors for Transportation of Eggs from Several Poultry Houses to Warehouse Facility (General Egg Collection System)
Use of rod conveyors with varying capacity rate allows creation of the integral egg collection system, where the eggs are carried from all available poultry units to the warehouse facility for further grading and packing.
The rod conveyor system not only eliminates the need for use of motor vehicles in order to deliver the eggs to the warehouse, but also increases the egg preservation rate, since the rod mechanisms stack the eggs in the strictly pre-determined order. This solution also helps to avoid additional activities, such as packing of eggs into trays, boxes and containers, loading and unloading operations, as well as stacking of eggs on the supplementary tables for feeding into grading machines. Elimination of such activities from the process results in decrease of the egg collection time and reduction of the product damage rate during production.
Application of the rotary systems and use of the hinged members in the rod conveyor designs make the egg handling system highly versatile and compatible with all known poultry farm arrangement configurations.
Availability of the interim drive units provides the means for egg collection system extension to cover the larger distances.
Extra options for egg collection system:
All types of solutions offered by TEXHA, except for the floor poultry management system, use the belt-based litter removal technology, which ensures high-quality litter removal and maintenance of the equipment in clean condition, thus contributing to the improved microclimate in the poultry house.
This system offers quick and reliable litter removal simultaneously from all levels.
Dedicated system design allows timely and easy removal of litter, which helps to avoid accumulation of ammonia vapors and has favorable effect on the poultry unit microclimate.
The litter removal system consists of:
Polypropylene belts are manufactured at TEXHA’s own factory from high-quality raw materials.
Litter removal belt characteristics:
The polypropylene belt is located below every level of cells along the battery. When the litter is gradually accumulated, it is carried by the belt along the battery towards the drive station, where the dedicated scrappers move it to the transverse litter unloading conveyor.
The belt is operated by the drive station, which is also used to adjust its position, where necessary. The tension station serves to maintain the required belt tensioning level. The tension station design uses the auger-type cleaning shaft, which ensures cleansing of the litter removal belt on the inside.
In the drive station area, the belt surface is cleaned by the dedicated scrappers made of the wear-resistant material. Special mechanism presses the scrappers against the work surface of the belt, which allows efficient cleansing of belt from litter.
A curtain made from dense wear-resistant material at the end of the battery prevents the litter from scattering during discharge to the transverse conveyor. The curtain is easily removable during maintenance of drive shafts and cleaning of scrappers.
The transverse conveyor is equipped with the rubber-textile belt for removal of litter from the poultry unit directly to the inclined conveyor, which, in turn, is used for discharge of litter into a vehicle for further disposal. The inclined conveyor also features a dedicated cover made of galvanized steel.
Advantages:
Feeding system designed by TEXHA combines state-of-art solutions and technologies in order to successfully ensure one key and indisputable principle – preservation of the feed quality and timely distribution of the required feed portions for every bird.
Use of our feeding systems helps to ensure the following:
TEXHA offers two different types of feed distribution systems:
in-based feed distribution system consists of the following:
External storage feed bin is intended for loading and storage of dry feeds. Auger-type transverse loading conveyor supplies the feed from the external bin to the mobile feed distribution unit hoppers for each battery. The mobile feed distribution units are filled with feed on a rotating basis. Transverse loading conveyor is equipped with automated shutdown system.
Mobile feed distribution unit hopper features dedicated inspection hatch that allows control of the feed volume supplied to the feed tray.
The chain-and-disk conveyor is used in order to reduce the transverse hopper loading time at the poultry farms with large flock.
Each mobile feed distribution unit is comprises of two composite hoppers located at the two opposite sides of cage battery. Number of the composite hopper sections depends on the number of levels – i.e. one section per every level. The feed distribution unit is equipped with the leveler brushes or feed dispensers.
System Specifications:
Chain- based feed distribution system consists of the following:
Transverse feed loading conveyor supplies the feed from the external bin to the agitator hopper. The feed agitator constantly shakes the feed mass in order to prevent sticking and lump formation. The purpose of this process is to ensure even feed distribution along the feed gutter of entire cage battery.
System advantages:
TEXHA company offers reliable, efficient and easy-to-use drinking system. The purpose of this system is quite simple – to supply the birds with water of proper quality and in sufficient quantity. Furthermore, this system also serves for delivery of necessary medications to the birds.
The system consists of the following:
The water treatment units comprises of filters, water flow meter, medicator, pressure gauges, valves and fittings. Depending on the technical specifications, water pressure regulators also may be incorporated.
The filter ensures purification of water from mechanical impurities. Use of 2 filters connected in-parallel through valves and fittings allows uninterrupted water supply to the drinking system without a need for shut-off during maintenance of one of filters.
Pressure gauges in water supply system control the system pressure and record precise values of filter performance rating.
Water flow meter allows operational control of the water consumption, which in turn assists in analyzing the flock condition.
In order to maintain optimal water pressure, the membrane-type pressure regulators are used.
Water distribution system for cage batteries is made of pipes manufactured from food-grade plastic.
The nipple drinkers are attached to the plastic square section pipe with the length of 5,98 m. Such design not only reduces the number of connections, but also ensure high-quality assembly and leak-proof connection sealing.
The pipe walls feature special bulges in the nipple screwing-in points in order to ensure reliable nipple attachment.
The drinking lines at each level run through the middle of the battery in order of ensure easy access of birds to the drinkers. Moreover, location of the nipples urges the birds to leave the feeding site and drink only at the designated area. This results in even natural distribution of the flock between feeding nd drinking areas.
The drinking line height may be easily adjusted. 3 nipples are provided for every 2 cells.
The dedicated V-shaped gutter runs under the drinking lines for their entire length and serves as the drop catcher assembly.
Advantages:
Microclimate in the poultry management is no less important than the quality of poultry housing equipment, and its role can be hardly overestimated.
Regardless of the cross breed or genetic inheritance of the flock, without proper microclimate conditions the birds cannot maintain good health and yield high-quality product.
Microclimate inside the poultry house is the combination of such factors as temperature, humidity, air flow rate, atmospheric pressure, noise level, air composition, microbiological contamination level, et cetera.
The microclimate system represents the production process, the purpose of which is to create and balance the necessary microclimate parameters using the dedicated technical facilities and instruments.
The poultry farming researchers suggest that the flock productivity depends on microclimate condition by approximately 10-30%. Unfavorable microclimatic conditions result in the reduced disease resistance of the birds. Moreover, the microclimate directly affects the service life of the equipment and even the poultry farm buildings.
The resulting efficient operation of the microclimate system depends on the correct choice of equipment, its correct installation and proper calculation of the system parameters in general.
TEXHA excels in design of automated microclimate systems. When choosing the system, a number of specific conditions should be taken into account, including, but not limited to the cross breed and size of flock, geographic location of the poultry far, i.e. climatic zone, et cetera.
The microclimate system may comprise of the one to four sub-systems in various combinations:
HUMIDIFICATION / COOLING
For hot climatic zones, TEXHA offers cooling units with cellular design (evaporation panels). The cooling panels are designed based on the best and the most innovative developments in the industry, which results in the optimal cooling effect regardless of climatic and operational conditions.
The evaporation panels are made of dedicated cellulose paper with cellular structure, which contributes to the optimal water-to-air contact conditions. Such cellulose paper is carefully processed with odor-free resin, thanks to which the panels have high water-adsorption coefficient and stable structural shape. The special cellular form of the paper bands crossing angle-wise to the symmetrical air flow allows achievement of high cooling performance, while maintaining minimum pressure drop.
HEATING
Proper temperature regime is essential for productivity of the flock, especially in the early period of life. TEXHA offers highly efficient poultry house heating system with minimum costs. The system uses direct and indirect heating units operated on natural gas, liquefied petroleum gas or diesel fuel, as well as the water-based fan heaters.
Specific features of direct heating units:
The company offers to options of heat generators installation in the poultry unit: internal or external.
The heat generators are equipped with fuses to prevent overheating and the sealed switches for safe and reliable operation. High-quality corrosion-proof components and durable frame ensure long uninterrupted service life even under the most extreme climatic conditions.
Properties:
VENTILATION
Ventilation system plays an essential role in creation and maintenance of optimum microclimate conditions in the poultry farm unit. Proper air quality has a favorable effect on the health of the birds and significantly improves the flock productivity. The ventilation system is selected and customized for each specific poultry farm depending on the climatic condition in the region, where it is located.
Ventilation systems allow maintenance of required temperature, fresh air inflow and air exchange during any season. Such systems use the state-of-art exhaust fans, fresh air valves, temperature control facilities, et cetera.
TEXHA’s ventilation systems offer:
Well-managed lighting system in the poultry house affects general condition of the birds, their food craving and physiological development, which is directly related to the flock productive performance. Lighting is an essential way to influence state of heath, behavior and productivity of the birds.
Our equipment uses the state-of-art energy efficient technologies that not only create the favorable lighting conditions, but also reduce the electricity costs.
TEXHA company offers a wide range of lighting systems for poultry farms regardless of the utilized poultry housing and rearing methods.
Advantages:
Inter-Row LED Lighting System for Poultry House
The systems consists of controller, dimmer and lamp.
Advantages of P-RLС-1LV-V2 0-10V 230B lighting controller:
The system is equipped with the digital light regulator – EPU-1500 dimmer. Every experienced poultry farmer is well aware how important role is played by the light flickering prevention and correct lighting intensity setting. EPU-1500 dimmer is specifically designed to control to the lighting intensity and allows easy adjustment using either any 0-10V analogue input or communication line.
EPU-1500 is specifically designed for easy, safe installation and convenient maintenance of the equipment. The dimmer may operate both in automatic mode and manual mode, which allows smooth sunrise / sunset switching and offers opportunity for adjustment of poultry house lighting range, as well as lighting intensity lower and upper limits.
Basic characteristics:
TEXHA offers 4W and 6W LED lamps for lighting of inter-battery space in the poultry house. These lamps are compatible with various manual, automated and remote control systems, as well as brightness dimming devices. These models are specifically designed to replace conventional filament and luminescent lamps. The new model offers glow performance of 135 lm/W, which is achieved thanks to the combination of high-quality LEDs and pure aluminium elements. Furthermore, dedicated design allows reliable prevention of lamp overheating.
Modern poultry farm businesses usually seek to implement automation of complete range of involved production processes and works. State-of-art technologies support continuous accumulation and processing of data related to all technological and business processes, careful supervision, immediate response and management of production process for entire poultry farm facility regardless of how large-scale it is.
TEXHA offers wide range of equipment and varying degree of automation for all essential systems used to support the vital needs of birds. Vast experience and professional expertise of our expert team help to select the most appropriate solution both in terms of its functionality and its cost.
Our services:
TEXHA’s system automation solutions:
What does our automation solution do?
TEXHA also offers remote access system that offers remote data monitoring feature, remote control opportunities, tracking and alarm features for production processes analysis and optimization, as well as the safety unit with critical emergency alert.
Integrated solutions offered by TEXHA provide an easy way to achieve the following production objectives:
System features:
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