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Technical Specifications

  1. The system will be an ultrasonic wave emitter controlled by a compact electronic control system measuring 9x12x48 cm, with 220 Volt voltage, 26mW output, 141 kHz frequency, and 2,000 meters wavelength.
  2. Drying (antenna) electrodes will be hexagonal rods made of aluminum, measuring 6x90 mm.
  3. Measurement electrodes will be hexagonal and insulated rods made of aluminum, available in sizes 6x60, 6x70, 6x90, 6x120, or 6x150 mm.
  4. The emitting antenna will be a fully plastic-coated wound coil, operating at 141 kHz and 2,000 meters wavelength, serving as an electromagnetic sensor between the ground and the system.
  5. The coaxial cable of type RG 58, which connects the drying electrodes and the emitting antenna to the control device, will be made of 0.40 mm tinned wire with a braided outer layer.
  6. The T-shaped connectors used at the joints of the RG 58 type cable will be BNC type and 50 Ω (ohm) resistance.
  7. The insulation at the connection points of the RG 58 type cable with the BNC will be ensured by a black plastic funnel-shaped socket to prevent short circuits.
  8. In cases where splicing is required between the control device, the emitting antenna, the T-shaped BNC socket, and the BNC type RG 58 crimp male and female splicing pieces will be used.
  9. The plastic channels through which the cables pass along the installation line, and the plastic 90° inner, outer, L, and T turns that connect these channels, will be 25x16 mm in size.
  10. The potential equalization rod will be a galvanized iron rod, measuring 16x10x1000 mm, operating at 16A/5 current, used to connect the control device's ground line to the ground, and will provide feedback between the ground and the control device.
  11. The cable that will ensure voltage between the control device and the potential equalization rod will be 1x6 mm² thick, yellow TTR cable.
  12. The connection adapter used for the potential equalization rod will be a galvanized iron part, measuring 10x22 mm, and will be attached to the potential equalization rod.
  13. Setiskur screws will be used to connect the potential equalization rod with the 1x6 mm² thick yellow TTR cable.
  14. The lug that will ensure the fixed position of the TTR cable at the installation site will be funnel-shaped, made of aluminum, with a size of 4x21 mm.
  15. The insulated terminals connecting the drying electrodes with the cable will have a 4 mm diameter and a 90° angle of approach.
  16. The control device will be designed to send an electrical current between 0.7 ~ 2.0 volts to the drying electrodes.
  17. All necessary equipment for the installation of the device, laying of cables, and delivery of the working system will be provided by the contractor.
  18. Construction works such as plaster repair, painting, and whitewashing, which may be necessary after the cable laying process, will be done separately by the customer.
  19. Before starting the job, the contractor will identify reference points, measure moisture from these points, and record it in a protocol. After the system starts operating, moisture measurements will be repeated from the same reference points on the 40th day, 3rd month, 6th month, and at the end of the 1st year. The records regarding the sweeping of moisture will be proof of the system's operation. These records will be signed by both parties each time.
  20. Moisture measurements will be conducted 40 days after the installation of the moisture removal system from the reference measurement points using a GANN brand UN12 model device, and a reduction of 20% ~ 25% in the water content of the building will be determined.
  21. The system will be guaranteed for 7 (seven) years against capillary moisture. The contractor will also specify the annual maintenance and service fee in their offer. No maintenance or service fees will be paid for the first year.
  22. The system will be designed to prevent the rise of water climbing into the building through capillary action, or the rise of stagnant bulk water through capillary effect. The responsibility of removing bulk water will not be expected from the system. Therefore, moisture other than capillary moisture will not be covered by the contractor's guarantee.
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