Process water treatment in clinics
A system for the production of demineralised water, which is used as process water in treatment, is a combination of several components. In order to optimise these work processes, the DGSV advises stricter limit values. Many hospital management teams and AEMP managers are already adapting their process water production to these new requirements. This has several advantages. In addition to legal certainty, this results in direct cost savings.
Damage to medical devices is minimised:
Limescale deposits, corrosion and silicate deposits, which are visible signs of poor process water quality in instruments and devices, are observed much less frequently. This helps to increase service life and reliability and reduce the need for expensive repairs or replacement purchases. In addition, the efficiency of sterilisation and cleaning processes is improved, which in turn reduces operating costs and increases the safety of patient care.
Filter products
Quick coupling adapter M24 AG (male thread), with water stop for the terminal water filters for taps. Adapter for connecting a water filter. Adapter for taps with an M24 female thread on the water outlet. This adapter is suitable for taps that have an outlet with a 24 female thread. This means that our water filters for taps can be easily attached to the tap.
Proposed use: for the regeneration of water softeners Composition: evaporated salt (min. 99.9% NaCl) Dimensions / weight of tablet: ø25mm / 14g Moisture content: < 0.08 Filling weight: 10kg per sack Type of packaging: PE film Storage description: store dry and well closed Certifications: ISO 9001, ISO 14001 and IFS Standard: The product complies with the following standards. EN 973:2009 Products for the treatment of water intended for human consumption - Sodium chloride for regenerating ion exchange resins -Type A EN 16401:2013 Products for the treatment of swimming pool water - Sodium chloride for use in electrochemical chlorine production plants - Type A EN 14805:2022 Products for the treatment of water intended for human consumption - Sodium chloride for on-site electrochemical production of chlorine by membrane-free processes - Type 1 EN 16370:2022 Products for the treatment of water intended for human consumption - Sodium chloride for the on-site electrochemical production of chlorine by means of membrane cells - Quality 2 Purchase options: Single purchase: 1x 10kg sack (Art.-No. 896467) Pallet purchase: 100x 10kg sacks (Art.-No. 896498)
Proposed use: for the regeneration of water softeners Composition: evaporated salt (min. 99.9% NaCl) Dimensions / weight of tablet: ø25mm / 14g Moisture content: < 0.08 Filling weight: 25kg per sack Type of packaging: PE film Storage description: store dry and well closed Certifications: ISO 9001, ISO 14001 and IFS Standard: The product complies with the following standards... EN 973:2009 Products for the treatment of water intended for human consumption - Sodium chloride for regenerating ion exchange resins -Type A EN 16401:2013 Products for the treatment of swimming pool water - Sodium chloride for use in electrochemical chlorine production plants - Type A EN 14805:2022 Products for the treatment of water intended for human consumption - Sodium chloride for on-site electrochemical production of chlorine by membrane-free processes - Type 1 EN 16370:2022 Products for the treatment of water intended for human consumption - Sodium chloride for the on-site electrochemical production of chlorine by means of membrane cells - Quality 2 Purchase options: Single purchase: 1x 25kg sack (Art.-No. 896468) Pallet purchase: 40x 25kg sacks - 1000 kg (Art.-No. 896500)
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Our Neomeris Select high temperature conductivity cells are suitable in a wide range of high performance applications with high temperatures and pressures.To meet these demanding technical requirements, our sensors are manufactured from 316 stainless steel with PEEK elements and feature a one-piece cell design suitable for high pressure conditions. The conductivity cells are available with different cell constants (0.1/cm and 1.0/cm) and temperature sensors (PT100 and PT1000) and are designed for a specific pressure-temperature range. Certain model types also allow you to choose between a short and long thread, depending on the installation situation.Our 1/2" inch Select LF stainless steel conductivity cell is a general purpose sensor that can be used in a variety of standard applications such as in cooling towers or water treatment plants, etc. and is easy to install. In contrast, our Select HTLF Ultra high performance conductivity cell is the top of the range model. This conductivity sensor is specially designed for boiler applications where it is permanently integrated in the boiler. Via our selection menu you can easily choose the right conductivity sensor for your application. Please contact us if you have any questions.
Service set contains:2 x sight glasses 30 x 33 x flat gasket 24 x 21 x insert for screw cap & suction tube 100 ml bottle1 x insert for screw cap & suction tube 500 ml bottle1 x double pump head conversion kit1 x gear motor2 x Hose connector1 x Cleaning brush set Important: After replacement, the pump must be recalibrated in Testomat® 808 SiO2.The adjustment is available from firmware version T808_83-003. Carry out a firmware update for older versions before performing the adjustment! (Serial number less than 253.061)For this calibration, it is important that you use water with a silicate content of 0 ppm, otherwise the zero point calibration will be incorrect and lead to false measurement results.To ensure this, please use the silicate filter cartridge specially developed for this process for the T808 SiO2, article 270344.(For additional information and instructions on the equipment you need for the software update, please refer to the operating instructions. The instructions "Replacing the pump head on Testomat® 808 SiO2" are also available)
Dear customers, please note that the calibration of the Testomat® 808 SiO2 can only be carried out with silicate-free water. Therefore, please use the silicate filter cartridge specially developed for this purpose when replacing the double pump head (art. no. 40395) and the associated pump adjustment.The cartridge filled with the special resin is inserted into the sampling line of the unit before the inlet and removed again after the adjustment. The pump replacement instructions describe the use of the silicate filter, storage conditions and shelf life. After the first use, the filter can be used up to 10 times within one year for balancing. After one year, the filter must be disposed of.
Testomat 808: Continuous Hardness Limit Monitoring Online measurement of residual water hardness with automatic color change Measurement Principle and Technical Features Modern indicator pump system supporting an automated process with minimal reagent and water consumption. Internal and external flushing options, manual safety check for up to 72 hours of unattended operation (BOB operation), and interfaces for 4–20 mA signals and RS232 firmware updates. Purchase Benefits 3% shop discount when purchasing a Testomat 808 Free of charge: original Heyl indicator for hardness measurement Frequently asked questions How long is the warranty for Testomat devices? The manufacturer's warranty period for the Testomat device series from Heyl is two years from the date of delivery. Where can I view or download the operating instructions? The operating instructions are included with the Testomat upon delivery and can be downloaded at any time from our online shop (www.heylneomeris.de) under the menu item – Service/Help – Download Operating Instructions. Can the warranty be extended? A warranty extension to three years is possible for a newly purchased device if a subscription for the corresponding indicator delivery is taken out. The subscription can be taken out easily and conveniently in the customer account under Subscriptions. The device warranty is extended from 24 months to 36 months after taking out the subscription. The prerequisite for this is that the subscription is taken out within 3 months of the purchase date. A subsequent warranty extension is not possible. Does the Testomat 808 have different spare parts and service sets to the Testomat 808 SiO2? Yes, there are some differences. More detailed information on the individual parts can be found in the operating instructions under ‘Spare Parts List’. How high are the follow-up costs for chemicals? The necessary use of indicators depends on the measurement intervals, which can be set via the device. The actual chemical consumption can be determined independently and individually for the respective application using our indicator or reagent consumption calculator in the shop. Indicators consumption calculator Reagent Consumption Calculator How often does the Testomat 808 need to be serviced? According to the manufacturer, regular maintenance is recommended. The recommended maintenance interval is between 6 and 12 months. Can the device be serviced by a service partner? With our nationwide service partner network, we can arrange for maintenance to be carried out by one of our service partners in Germany and Austria at any time. Please send us your enquiry to vertrieb@heylneomeris.de. Can the device be sent in for repair (cost estimate)? Of course, we at HeylNeomeris offer a repair service. To do this, we need the completed checklist from the operating instructions. The maintenance request can be sent to vertrieb@heylneomeris.de. If you have any further questions, please contact our service team on the service hotline +49 (0) 5121 7609 99.
Original indicator solution from Heyl for precise measurement of residual hardness in water with the Testomat 808. Conveniently supplied in 2 x 100 ml bottles. For 100 ml bottles, the conversion kit (Item No. 40143) is required to use the indicators correctly. Testomat® 808 Indicator 300 – Liquid Solution for Precise Residual Hardness Measurements Reliable residual hardness measurement with the original indicator solution The indicator solution is specially calibrated for monitoring residual hardness with the Testomat 808 or Testomat F-BOB. With a threshold of 0.02 °dH, it provides meaningful residual hardness readings and ensures that plant processes are correctly monitored. With a guaranteed minimum shelf life of 7 months after shipment from our warehouse, the indicator solution remains accurate and ready for use throughout this period. Features of the Testomat 808 Indicator Type 300 With precise reaction at a low threshold of 0.02 °dH, the indicator solution is ideal for continuous use in the Testomat 808. The practical 2 x 100 ml packaging allows easy handling and storage. Only by using the original 808 indicator can proper device function be ensured, along with the corresponding device warranty. Frequently asked questions How long does the indicator/reagent keep? The shelf life of an indicator is printed on the product label for each batch. In accordance with our terms and conditions, we deliver with a guaranteed minimum shelf life of 7 months. How much indicator is used per analysis? When it comes to indicator consumption, a distinction must first be made between TH indicators (e.g. TH 2005, 2025, 2050, etc.), which are used for the Testomat ECO, Testomat EVO TH, Testomat 2000 and Testomat Limit LT analysis devices, and the indicators for the Testomat 808 (300 series indicators, e.g. indicators 301, 305, etc.). The indicator consumption per analysis for the TH indicators is directly related to the limit value to be monitored. The higher this is, the higher the indicator consumption. For the Testomat 808 indicators (300 series), consumption is approximately 80 µl per analysis. By entering the operating data (analysis interval, limit value, etc.), the exact consumption or indicator requirement per year can be determined using our indicator consumption calculator: Indicators - Consumption calculator - Heyl Neomeris What sizes are available for the bottles and is there anything to bear in mind? The indicator is available in both 500 ml and 100 ml bottles. The analyser is delivered with the 500 ml bottle set up and the scope of delivery includes the screw cap with hole and insert for the screw cap of the 500 ml indicator bottle. To use 100 ml bottles, the bottle size must be changed to 100 ml in the basic programming, and the screw cap with hole and insert for the indicator must also be purchased (item no. 40143). Where can I find the safety data sheet? The safety data sheets can be found in the online shop (www.heylneomeris.shop) under the menu item – Service/Help – Downloads Safety Data Sheets. How can the indicator be disposed of? Disposal instructions can be found in section 13 of the safety data sheet. Disposal must be carried out in accordance with official regulations. Can the indicator still be used after the expiry date? The indicator can no longer be used after the expiry date. After the expiry date, accurate measurement results can no longer be guaranteed. What is the optimum storage temperature for the indicator? Section 7 of the safety data sheet contains all relevant information on storing the indicator. The recommended storage temperature should be between 15-25°C. Device warranty / guarantee Measurement errors when using third-party indicators! The use of third-party indicators can lead to large measurement deviations or measurement errors. Damage caused by foreign particles in the area of the dosing pump, measuring chamber or valves is also possible. The use of third-party indicators will void the warranty! Only use original Heyl indicators, which are specially designed to meet the requirements of the measuring devices and thus guarantee accurate measurement results.
Original 500 ml bottle with indicator solution from Heyl for measuring residual hardness in water. Suitable for the Testomat 808 and Testomat F-BOB with a limit value of 0.02 °dH. 500 ml indicator for precise residual hardness measurement in the Testomat 808 from Heyl High-quality liquid solution for precise detection of very low residual hardness The Testomat 808 Indicator 300 in a 500 ml bottle is an indicator developed by Heyl for determining extremely low residual hardness in water. With a limit value of 0.02 °dH, it is ideal for detecting the slightest differences in hardness. Our customers appreciate the 500 ml bottle size, as it significantly reduces the effort required for refilling. Advantages of measuring residual hardness with a 500 ml volume Compared to the 100 ml bottle, the 500 ml bottle offers a larger supply of indicator solution and is particularly suitable for frequent or long-term measurement intervals. Important product data at a glance Measurement parameter: Residual hardness in water Limit value: 0.02 °dH – highly sensitive setting for the finest hardness ranges Container size: 500 ml original indicator solution Compatible with: Testomat 808 and Testomat F-BOB Advantages: reduced refill requirements, stable chemical reaction, suitable for continuous online monitoring of water hardness Areas of application: water supply systems, boiler feed water control, plant engineering, reverse osmosis processes
Original indicator solution from Heyl for measuring residual hardness with the Testomat 808 and F-BOB. Supplied in 2 x 100 ml bottles for precise water analysis. For 100 ml bottles, the conversion kit (Item No. 37580) is required to use the indicators correctly. Residual Hardness Indicator Solution 300 S for Precise Measurement with Testomat 808 Reliable liquid solution for monitoring residual hardness With a threshold of 0.05 °dH, this indicator solution is particularly suitable for applications where a slightly higher residual hardness threshold is relevant. The liquid formulation ensures easy dosing and reliable measurement results during continuous analyses. With a guaranteed minimum shelf life of 7 months after shipment from our warehouse, the indicator solution remains accurate and ready for use throughout this period. The 300 S indicator solution is suitable for use with the Testomat 808 and F-BOB device series from Heyl and is designed for threshold measurement. Applications of the Indicator Solution Water treatment Industrial processes Reverse osmosis and boiler feed water monitoring Frequently asked questions How long does the indicator/reagent keep? The shelf life of an indicator is printed on the product label for each batch. In accordance with our terms and conditions, we deliver with a guaranteed minimum shelf life of 7 months. How much indicator is used per analysis? When it comes to indicator consumption, a distinction must first be made between TH indicators (e.g. TH 2005, 2025, 2050, etc.), which are used for the Testomat ECO, Testomat EVO TH, Testomat 2000 and Testomat Limit LT analysis devices, and the indicators for the Testomat 808 (300 series indicators, e.g. indicators 301, 305, etc.). The indicator consumption per analysis for the TH indicators is directly related to the limit value to be monitored. The higher this is, the higher the indicator consumption. For the Testomat 808 indicators (300 series), consumption is approximately 80 µl per analysis. By entering the operating data (analysis interval, limit value, etc.), the exact consumption or indicator requirement per year can be determined using our indicator consumption calculator: Indicators - Consumption calculator - Heyl Neomeris What sizes are available for the bottles and is there anything to bear in mind? The indicator is available in both 500 ml and 100 ml bottles. The analyser is delivered with the 500 ml bottle set up and the scope of delivery includes the screw cap with hole and insert for the screw cap of the 500 ml indicator bottle. To use 100 ml bottles, the bottle size must be changed to 100 ml in the basic programming, and the screw cap with hole and insert for the indicator must also be purchased (item no. 40143). Where can I find the safety data sheet? The safety data sheets can be found in the online shop (www.heylneomeris.shop) under the menu item – Service/Help – Downloads Safety Data Sheets. How can the indicator be disposed of? Disposal instructions can be found in section 13 of the safety data sheet. Disposal must be carried out in accordance with official regulations. Can the indicator still be used after the expiry date? The indicator can no longer be used after the expiry date. After the expiry date, accurate measurement results can no longer be guaranteed. What is the optimum storage temperature for the indicator? Section 7 of the safety data sheet contains all relevant information on storing the indicator. The recommended storage temperature should be between 15-25°C. Device warranty / guarantee Measurement errors when using third-party indicators! The use of third-party indicators can lead to large measurement deviations or measurement errors. Damage caused by foreign particles in the area of the dosing pump, measuring chamber or valves is also possible. The use of third-party indicators will void the warranty! Only use original Heyl indicators, which are specially designed to meet the requirements of the measuring devices and thus guarantee accurate measurement results.
Original 500 ml indicator solution for measuring residual hardness in water with the Testomat 808 or F-BOB, calibrated to a limit value of 0.05 °dH for reliable analyses. 500 ml residual hardness indicator 300 S for Testomat 808 Liquid solution for precise detection of residual hardness in water The Testomat 808 indicator 300 S was designed by Heyl for applications in which defined residual hardness thresholds must be reliably monitored. With a fixed limit value of 0.05 °dH, this indicator is intended for technical water systems in which controlled, consistent water quality is crucial. The 500 ml bottle supports continuous use in automated measurement processes and reduces interruptions during operation. Defined residual value limits in continuous operation With a fixed limit value of 0.05 °dH, the indicator supports applications that require precise monitoring of low, but not very low, residual hardness ranges. In combination with the Testomat 808, it enables consistent control of water quality over longer operating periods. Important applications and properties Measured variable: Residual hardness in water Active limit value: 0.05 °dH – tailored to medium hardness ranges Compatible with: Testomat 808 and Testomat F-BOB Contents per bottle: 500 ml original indicator solution Advantages: less frequent refilling, clear measurement reaction, easy integration Fields of application: water supply, process water monitoring, boiler feed water, technical water systems