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Even if measures such as reducing driving time, changing set conditions, and reviewing stop rules are implemented, it becomes difficult to objectively evaluate the changes brought about by energy-saving measures without data from before the changes. By installing the "PAL-Plus type E" in the target circuit, you can continuously obtain alternating current and the simplified power and simplified cumulative power calculated from the set voltage and power factor values. The simplified power sensor "PAL-Plus type E" measures alternating current and calculates simplified power and simplified cumulative power from the set voltage and power factor values. 【Issues】 - No data remaining from before the implementation of energy-saving measures - Desire to compare before and after operational changes under the same conditions - Need for decision-making materials to continue improvement measures 【Effects of Implementation】 - Continuous recording of data before and after measures in the same circuit - Comparison of usage trends with standardized production conditions - Support for decisions on the continuation, modification, or expansion of measures You can check the detailed specifications and compatible circuits in the downloadable materials. For more details, please download the materials or feel free to contact us.
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Even if production equipment is stopped, peripheral devices such as mold temperature control machines, material dryers, cooling devices, and conveyor equipment may continue to operate and consume electricity. However, it can be difficult to determine which circuits are still in use based solely on the main power consumption. The simple power consumption sensor "PAL-Plus typeE" measures alternating current and calculates simple power and simple accumulated power consumption based on the set voltage and power factor values. 【Challenges】 - I want to check power usage by circuit during nighttime and breaks. - I want to compare planned stoppages with actual usage trends. - There is no historical data to support a review of stoppage rules. 【Benefits of Implementation】 - Records usage trends during nighttime, holidays, and break times. - Compares planned stoppages with circuit-specific data. - Utilizes data for reviewing stoppage procedures and operating times. You can check detailed specifications and compatible circuits in the downloadable materials. For more information, please download the materials or feel free to contact us.
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Even if you only check the total electricity consumption of the factory, it may not be possible to narrow down the specific machines or equipment circuits that have high power usage. The simple power sensor "PAL-Plus type E" measures the alternating current of the equipment circuit and calculates simple power and simple accumulated electricity consumption based on the set voltage and power factor values. The simple power sensor "PAL-Plus type E" measures alternating current and calculates simple power and simple accumulated electricity consumption from the set voltage and power factor values. 【Issues】 - The total electricity consumption of the factory does not provide a breakdown by equipment. - I want to narrow down improvement targets from multiple molding machines. - There is no record that allows for comparison between equipment on the same basis. 【Benefits of Implementation】 - Compare simple electricity consumption by equipment and circuit on the same basis. - Identify equipment with significant usage trends. - Organize priorities for considering energy-saving measures. You can check the detailed specifications and compatible circuits in the downloadable materials. For more details, please download the materials or feel free to contact us.
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In the visualization of factory power consumption, it is important to select sensors that match the configuration of distribution boards and equipment circuits, such as single-phase two-wire, single-phase three-wire, and three-phase three-wire systems. The "PAL-Plus typeE/typeE2" is a Modbus RTU compatible sensor that calculates simple power and simple accumulated power consumption from the AC current and the set voltage and power factor values. TypeE supports single-phase two-wire and three-phase three-wire configurations, while typeE2 supports single-phase three-wire and three-phase three-wire configurations. It can be selected according to circuit configuration, current capacity, and cable diameter, ranging from 60A to 630A. The split clamp type allows for retrofitting to existing wiring, and it can also be integrated with PLCs, gateway boxes, and monitoring software CEW-M4. 【For these challenges】 - I want to compare the differences between typeE and typeE2. - I want to choose a model suitable for single-phase/three-phase circuits. - I want to retrofit power measurement to the distribution board. 【Implementation effects】 - Supports selection based on circuit configuration. - Visualizes power usage trends by equipment and circuit. - Useful for considering energy-saving targets. Please check the PDF materials for compatible circuits, measurement accuracy, applicable cable diameters, and installation examples.
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To compare the operating status of identical equipment and multiple lines, an environment where measurement values can be checked on the same time axis is helpful. The CEW-M4 displays multiple current, power, and temperature-humidity data in comparative graphs, allowing users to confirm load trends for each piece of equipment and differences by time period. [Challenges] Switching between screens for each piece of equipment / Wanting to understand the differences between identical equipment / Wanting to compare the effects of operational changes [Implementation Effects] Streamlines comparisons between equipment and lines, supporting the organization of targets for verification and candidates for improvement.
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Even if you receive an equipment alarm, it can be difficult to determine what to check on-site if you cannot confirm the measurement values before and after the occurrence. CEW-M4 supports monitoring upper and lower limits of measurement values, alarm display, email notifications, alarm history, and time-series graphs. You can check the changes in data before and after the alarm and organize the inspection targets and verification content. [Challenge] I want to confirm the changes before and after the alarm / I want to aggregate information during the initial response. [Implementation Effect] It supports centralized confirmation of alarms and history, narrowing down targets before on-site checks, and reflecting on actions taken afterward.
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Managing measurement values from equipment inspections on paper or in individual files can take time when searching for past data or comparing equipment. CEW-M4 is monitoring software that collects data such as current, power, energy, temperature, and humidity, allowing users to check the history on a web interface. Measurement logs and statistical data can be output in CSV format, which can be utilized for creating inspection records and reporting materials. 【Challenges】Records are dispersed / Want to streamline transcription and aggregation / Want to compare past data 【Implementation Benefits】Supports centralization of history, secondary use through CSV, and sharing among responsible personnel.
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Regular inspections alone may make it difficult for personnel to grasp changes in equipment during times when they are not on-site. The Gateway BOX transmits measurement data from the PAL series to the cloud via mobile networks, allowing for graph displays and email notifications based on set conditions. 【Challenges】Want to check equipment data from a distance / Reduce the chances of overlooking abnormal values / Want to start remote monitoring on a small scale 【Implementation Effects】Supports situation confirmation in the cloud, verification of target equipment after notifications, and gradual expansion of the monitoring range.
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Condensation and static electricity are not determined solely by temperature and humidity, but understanding the environmental changes around the process is fundamental for considering countermeasures. PAL-Temp is a compact Modbus-compatible temperature and humidity sensor that can add measurement points in multiple locations around the equipment and within the process. 【Challenges】Want to understand temperature and humidity changes around the process / Want to record environmental factors / Want to compare before and after countermeasures 【Implementation Effects】Accumulating temperature and humidity history as reference information for quality and equipment inspections, supporting comparisons before and after environmental improvements.
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The control panel may experience temperature differences in various locations due to equipment heat generation and air conditioning conditions. PAL-Temp is a compact sensor that measures temperature and humidity and outputs data via Modbus RTU. By installing it in multiple locations, you can monitor localized changes that may not be evident from just a representative point. 【Challenges】I want to understand temperature imbalances within the panel / I want to record changes outside of inspection times / I want to add temperature and humidity monitoring to existing systems. 【Implementation Benefits】It supports the accumulation of multi-point data, verification before and after alarms, and the objectification of maintenance records.
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In a three-phase three-wire circuit, if there is an imbalance in the loads of each phase, using a single CT for conversion may result in a significant difference from the actual usage trends. The PAL-Plus type E2 uses two current detection units as a set to output single-phase three-wire and three-phase three-wire AC current, simple power, and simple accumulated energy. 【Issue】I want to consider the load imbalance in three-phase three-wire circuits / I want to monitor the main and large-capacity circuits. 【Implementation Effect】It supports understanding the usage trends of unbalanced circuits and comparisons between equipment and circuits.
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To compare power usage trends by production line, it is important to continuously collect data by equipment and circuit under the same conditions. The PAL-Plus type E can be easily retrofitted to branch circuits of distribution boards and outputs simple power and simple accumulated power consumption via Modbus RTU. By combining it with monitoring software and gateways, you can check trends by line and time period. [Challenge] I want to understand the differences by line / I want to compare improvement effects numerically. [Implementation Effect] It supports the comparison of trends by equipment and line, as well as the selection of targets for improvement.
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It can be difficult to determine which equipment or circuits are using power during downtime based solely on the total power consumption of the factory. The PAL-Plus type E is a Modbus-compatible sensor that calculates simple power and simple accumulated power consumption from the alternating current and the set voltage and power factor. It continuously records data by circuit, allowing for comparisons between operating and non-operating times. [Challenges] Unable to understand usage during standby; want to check by circuit; want to compare before and after improvements. [Implementation Benefits] It supports understanding usage trends during non-operating hours and selecting circuits for energy-saving measures.
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Load equipment may not be able to grasp changes in load solely from operational displays. The PAL series measures AC currents from 60A to 630A and outputs data via Modbus RTU. By combining it with monitoring software or PLCs, you can continuously check the operation and stop status, changes in load, and variations in operating time. 【Challenges】Unable to understand conditions outside of patrol times / Want to record load trends / Want to add measurement points to existing equipment 【Implementation Benefits】Collects current history for each piece of equipment, supporting the organization of inspection targets and comparisons before and after operational changes.
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Relying solely on visual inspection and sound during patrols to check the status of small-capacity load equipment can make it difficult to grasp load changes outside of inspection hours. PAL-Plus is a sensor that measures AC current up to 60A and has a built-in communication function that outputs data to higher-level devices via Modbus RTU. It continuously compares the current during normal operation, allowing for the confirmation of operation and stoppage, load increases and decreases, and the status during non-operating hours. 【Challenges】Want to continuously check the operating status of equipment / Want to grasp load changes that differ from normal conditions / Want to streamline patrol measurements 【Implementation Effects】Supports operational confirmation through current data / Narrowing down inspection targets / Assists in operational comparisons using historical data.
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When managing the temperature and air conditioning settings in a server room manually, continuous checks and adjustments by the responsible personnel are necessary. The Smart Facility Manager (air conditioning AI) collects and analyzes temperature data around the racks, and based on that data, the AI automatically controls the temperature settings and operation of the air conditioning. It helps to reduce excessive cooling and supports the reduction of labor costs associated with temperature management and air conditioning electricity costs. Additionally, it assists in the construction of the system from investigation and proposal to installation work, various settings, operation confirmation, and start of operation. 【Challenges】 - Checking the temperature around the racks and adjusting air conditioning settings is labor-intensive. - I want to review electricity consumption due to excessive cooling by the air conditioning. - I would like to consult about the installation and settings necessary for the introduction of air conditioning AI all at once. 【Implementation Effects】 - Collecting and analyzing temperature data around the racks to utilize for air conditioning control. - Automatic control of air conditioning temperature settings and operation by AI. - Supporting the reduction of labor costs associated with temperature management and air conditioning electricity costs. For more details, please download the materials or feel free to contact us.
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In temperature management of server rooms, routine management tasks such as checking the temperature around racks and adjusting air conditioning settings are necessary. The Smart Facility Manager (air conditioning AI) collects and analyzes temperature data around server racks, and based on that data, the AI automatically controls the temperature settings and operation of the air conditioning. It helps to reduce excessive cooling and supports the reduction of labor costs associated with temperature management and air conditioning electricity costs. It also accommodates remote monitoring of operational status and alert notifications via email. We assist in building the system from investigation and proposal to installation work, various settings, operation confirmation, and start of operation. 【Challenges】 - Want to continuously manage the temperature around the racks - Want to review electricity consumption due to excessive cooling by air conditioning - Want to streamline management tasks related to temperature checks and air conditioning settings 【Implementation Effects】 - Collect and analyze temperature data around the racks for air conditioning control - Automatic control of air conditioning temperature settings and operation by AI - Support for reducing labor costs and air conditioning electricity costs associated with temperature management For more details, please download the materials or feel free to contact us.
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When introducing AI for air conditioning in a data center, multiple processes are required, including consideration of equipment configuration, installation work, various settings, and operational checks. In this service, temperature data around the racks is collected and analyzed, and based on that data, AI automatically controls the temperature settings and operation of the air conditioning. Hexacore Inc. supports the entire system setup from investigation and proposal to installation work, various settings, operational checks, and the start of operations. 【Challenges】 - I want to consider the equipment configuration and implementation methods necessary for introducing air conditioning AI. - I would like to consult about equipment installation, settings, and operational checks. - I want to choose between cloud or on-premises based on our operational policies. 【Implementation Effects】 - Collect and analyze temperature data around the racks to utilize for air conditioning control. - Automatic control of air conditioning temperature settings and operation by AI. - Support for a series of implementations from investigation and proposal to installation, settings, operational checks, and start of operations. For more details, please download the materials or feel free to contact us.
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In data centers, it is necessary to not only acquire temperature data but also to utilize it for air conditioning operations. The Smart Facility Manager (air conditioning AI) collects and analyzes temperature data around the racks, and the AI automatically controls the temperature settings and operation of the air conditioning. The reference configuration included in the materials combines temperature sensors, wireless gateways, protocol conversion gateways, air conditioning controllers, and more. Hexacore Inc. will support the construction until the operation begins. 【Challenges】 - I want to utilize temperature data around the racks for air conditioning operations. - I want to consider a configuration that links temperature sensors and air conditioning equipment. - I want to choose between cloud or on-premises solutions according to my company's operational policy. 【Implementation Effects】 - Collect and analyze temperature data around the racks for air conditioning control. - Automatic control of air conditioning temperature settings and operation by AI. - Support for construction from investigation and proposal to installation, configuration, operation verification, and start of operation. For more details, please download the materials or feel free to contact us.
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In data centers, managing the temperature around server racks while reducing the burden of air conditioning power and management tasks is a challenge. The Smart Facility Manager (air conditioning AI) manages the temperature of server racks and analyzes collected data, allowing AI to automatically control the temperature settings and operation of the air conditioning. It helps to prevent excessive cooling and supports the reduction of labor costs and air conditioning power costs associated with temperature management. It also accommodates remote monitoring of operational status and email notifications. Hexacore Inc. supports the construction from research and proposal to operational start. 【Challenges】 - Want to properly manage the temperature around server racks - Want to review power consumption due to excessive cooling by air conditioning - Want to streamline management tasks related to temperature checks and air conditioning settings 【Implementation Effects】 - Automatic control of air conditioning temperature settings and operation by AI - Helps to prevent excessive cooling and supports the reduction of air conditioning power costs - Contributes to the reduction of labor costs associated with temperature management and improves operational efficiency For more details, please download the materials or feel free to contact us.
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During the inspection of UPS batteries in data centers, measurement results are sometimes manually entered into paper inspection sheets or spreadsheet files, creating inspection records and maintenance reports. This method of operation not only takes time for transcribing and aggregating measurement results but also makes it cumbersome to search past data and compare between batteries and equipment. Additionally, if the recording methods differ by location or personnel, it can become difficult to share information and manage it continuously. This system collects and accumulates the internal resistance, voltage, and temperature of UPS batteries into the monitoring software "CEW-M4," clearly displaying current values, measurement history, comparison graphs, and alarm history in a web browser. By managing the entire flow from data collection to history confirmation, comparison, and data output in one system, it streamlines daily checks and recording/aggregation tasks. Measurement logs and statistical data can be output in CSV format, which can also be utilized for inspection records and maintenance reports. **[Implementation Effects and Solutions]** - Centralized accumulation of measurement values and history, streamlining recording, searching, and aggregation tasks. - Clear confirmation of changes in past values and between batteries and equipment through comparison graphs. - Utilizing CSV output for inspection records, maintenance reports, and regular reports to enhance reporting efficiency.
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When managing UPS equipment across multiple locations with a limited number of personnel, a significant amount of time is required for site visits, battery measurements, recording inspection results, and preparing regular reports. Furthermore, if measurement values and past inspection histories are scattered across individual files for each person in charge, it becomes cumbersome to confirm the situation before visits and to hand over responsibilities during personnel changes. This system collects the internal resistance, voltage, and temperature of UPS batteries and displays the current values, measurement history, comparison graphs, and alarms in a centralized manner via a web browser. Personnel can check the status of the equipment before visiting the site, and past histories and CSV data can be shared among stakeholders. 【Benefits and Solutions】 - Check measurement values, histories, and alarms before visits, streamlining preparation and organization of inspection targets. - Manage location-specific information on a common screen, enhancing information sharing and handover between personnel. - Utilize CSV output for inspection records and regular reports, reducing the burden of transcription, aggregation, and report creation. Since personnel can refer to the same screen and history, it allows for a management approach that is less dependent on individual memory or separate files. It supports a seamless flow from pre-visit confirmation to post-inspection recording and reporting, facilitating the establishment of a continuous equipment management system by a limited number of personnel.
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When managing multiple data centers, the measurement values, inspection history, and alarm information of UPS batteries can easily become dispersed by location, equipment, and responsible department. Operations that require individual confirmation from personnel at each location or the collection of multiple records to create reports can take time to grasp the overall situation and compile information. This system consolidates the internal resistance, voltage, temperature, measurement history, and alarm information of UPS batteries into a common web interface. It allows for the organization of monitoring targets by location, floor, and equipment, and permissions can be set according to user roles. It creates an environment where related departments, such as facility management, electrical equipment, data center operations, and information systems, can access the same information. 【Implementation Effects and Solutions】 - Consolidates UPS battery information from multiple locations into a common web interface for centralized overall status confirmation. - Organizes monitoring targets by location, floor, and equipment, streamlining tasks related to confirmation and report creation. - Sets permissions according to user roles, supporting safe and smooth information sharing among related departments. By being able to confirm the situation based on common measurement information, it becomes easier to advance reporting between locations and align understanding between departments, leading to the standardization of management tasks.
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In a data center, it is necessary to manage various equipment information, including UPS battery measurements, power, and temperature and humidity. When this information is dispersed across different equipment and monitoring systems, personnel must check multiple screens and records, which takes time for information collection and aggregation. This system collects the internal resistance, voltage, and temperature of UPS batteries and displays the current values, measurement history, comparison graphs, and alarms in a centralized manner via the monitoring software "CEW-M4" on a web browser. It also allows for connection configurations with Modbus-compatible devices, enabling the management of surrounding equipment information such as power and temperature and humidity, in addition to UPS battery information. [Implementation Effects and Solutions] - Centralized confirmation of current values, measurement history, comparison graphs, and alarms for UPS batteries via a web browser. - Streamlining the verification and aggregation of overall equipment by combining information such as power and temperature and humidity. - Supporting the expansion of monitoring targets through connection configurations tailored to the communication specifications of the target devices and existing environments. This helps reduce the burden of information collection and aggregation for data center equipment and supports the establishment of a management system that allows for a comprehensive understanding of the overall monitoring status of the equipment.
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The data center is equipped with numerous UPS batteries, and their inspection requires a lot of effort and time. By implementing this system, you can check the current values and measurement history of the internal resistance, voltage, and temperature of the UPS batteries, as well as alarm information, from a web browser before visiting the site. Furthermore, it supports comparison of target equipment through comparison graphs and CSV output of measurement logs, thereby assisting in the streamlining of inspection tasks from information gathering before inspections to recording and reporting after inspections. 【Challenges】 - The condition of the equipment and the items to be checked are unknown until arriving on-site. - Transcribing and aggregating measurement results takes time, and it is difficult to standardize the recording method. - Searching for and comparing past measurement values and alarm histories is labor-intensive. 【Benefits of Implementation / What Can Be Solved】 - Confirm current values, history, and alarms before the visit, and organize the inspection targets and contents to be checked. - Use comparison graphs to check differences from previous values and other equipment, thus streamlining inspection preparation. - Output measurement logs as CSV, simplifying the creation of inspection records, maintenance reports, and regular reports. By handling information before and after inspections in the same monitoring environment, it becomes easier for personnel to check past conditions even if the responsible person changes, leading to continuous maintenance management.
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In data centers, personnel measure a large number of UPS batteries on-site and record the results on inspection sheets, which can make inspections time-consuming and make it difficult to grasp changes during inspection intervals. This system continuously measures internal resistance, voltage, and temperature, collecting data to the monitoring software CEW-M4, which displays current values, history, comparison graphs, and alarms in a web browser. Multiple sites can also be centrally managed by location, floor, and equipment. [Challenges] - A large number of batteries are measured and recorded manually, making inspections time-consuming. - It is difficult to grasp changes during inspection intervals and the history before and after alarm occurrences. - Records are dispersed by location and personnel, making comparison and sharing cumbersome. [Implementation Effects and Solutions] - Internal resistance, voltage, and temperature can be checked via the web, streamlining daily status checks. - Changes can be understood from history and comparison graphs, supporting the consideration of inspection targets and maintenance plans. - Information from multiple locations can be centrally managed, improving information sharing and report creation among personnel. With alarm notifications based on thresholds, personnel can more easily notice changes that need to be checked, ensuring that decision-making materials from daily monitoring to on-site verification are comprehensively secured.
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When introducing a remote monitoring system to a data center, it is necessary to coordinate multiple processes, including the consideration of the configuration of monitoring devices, sensors, servers, and software, as well as the arrangement of equipment, installation within panels, settings, inspections, and testing. Hexacore Inc. will handle everything from on-site surveys, proposals for monitoring configurations, arranging remote monitoring devices, servers, and network equipment, installing monitoring devices within panels, software and equipment settings, inspections, testing, to operational confirmation, all centered around its own software and sensors. By proposing the association of equipment, software, and installation/setting processes, we reduce the burden of individually confirming and arranging with multiple suppliers. We support the setup to ensure that the installation of equipment does not just end there, but moves towards a state where the remote monitoring system can be operationally started. [Challenges] - The sources for monitoring devices, sensors, and software are separate, making coordination cumbersome. - We want to request not only equipment arrangements but also installation within panels and various settings. - We would like to consult about inspections, testing, and operational confirmation after installation. [Benefits of Implementation] - Reduces the burden of individual confirmation and arrangement with multiple suppliers. - Allows for continuous consultation from equipment arrangement to panel installation, settings, and testing. *For more details, please refer to the PDF document or contact us.*
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When introducing remote monitoring for data center facilities, it is necessary to consider a configuration that includes not only sensors and monitoring devices but also servers, network equipment, and monitoring software, and to proceed with the arrangement, installation, configuration, and operation confirmation of each component. Hexacore Co., Ltd. will handle everything from on-site surveys and proposals for monitoring configurations to the arrangement of remote monitoring devices, servers, network equipment, and compatible sensors, installation of monitoring devices in panels, software and equipment configuration, inspection, and operation confirmation. By linking our proprietary software and sensors with the installation work, we reduce the burden of individually confirming and arranging equipment and tasks with multiple suppliers. We provide total support for the introduction of remote monitoring. 【Challenges】 - The suppliers for sensors, monitoring devices, servers, and software are separate. - It is time-consuming to confirm specifications for each device and adjust the installation and configuration processes. - We want to request not only equipment arrangement but also installation in panels, configuration, and testing. 【Benefits of Implementation】 - Reduces the burden of confirming and arranging with multiple suppliers. - Allows for consideration of a configuration that integrates sensors, monitoring devices, and software. - Enables continuous consultation from equipment arrangement to installation in panels, configuration, and testing. *For more details, please refer to the PDF document or contact us.*
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When introducing remote monitoring for data center facilities, it is necessary to coordinate multiple processes, including the configuration of sensors, monitoring equipment, servers, network devices, and monitoring software, as well as arranging equipment, installation in panels, settings, and testing. Hexacore Inc., a manufacturer of equipment, will handle everything from on-site surveys, proposals for monitoring configurations, arranging remote monitoring equipment, servers, and network devices, to installing monitoring equipment in panels, various settings, inspections, testing, and operational confirmations, all centered around its own software and sensors. By proposing a connection between equipment, software, and installation/setting processes, we reduce the burden of individually confirming and arranging with multiple suppliers. We support the introduction of a monitoring environment that allows for remote confirmation of equipment information obtained from sensors and the creation of monitoring environments for multiple sites. 【Benefits of Implementation】 - Possibility to consider equipment, software, and installation/setting processes together - Reduced burden of confirming and arranging with multiple suppliers - Continuous consultation possible from equipment arrangement to installation in panels, settings, and testing - Support for creating an environment that utilizes sensor-acquired information for monitoring - Possibility to consider configurations that allow for checking equipment information and alarms from multiple sites *For more details, please refer to the PDF document or contact us.
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To implement a remote monitoring system across multiple data center sites, it is necessary to check the local conditions at each location and organize the monitoring configuration, required equipment, installation methods, and settings. Hexacore Inc. will handle everything from on-site surveys and proposals for monitoring configurations to arranging remote monitoring equipment, servers, and network devices, installing monitoring equipment in panels, software and equipment settings, inspections and tests, and operational confirmations. The monitoring system can manage up to 20 sites, allowing for role-based access control, three-tier alarms for upper and lower limits, and alarm notifications via email and other means. 【Usage Scenarios】 - Implementation of remote monitoring for multiple data center sites - When installation and configuration of monitoring equipment is required for each site - Building an environment to collectively check equipment information and alarms from multiple locations 【Benefits of Implementation】 - Ability to consider monitoring configurations tailored to the local conditions of each site - Comprehensive consultation available from equipment arrangement to installation, settings, and testing - Centralized confirmation of equipment information and alarms for multiple sites with the corresponding system - Support for establishing a monitoring environment in preparation for operational start *For more details, please refer to the PDF document or contact us.
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When introducing remote monitoring of data center facilities, it is necessary to coordinate multiple processes, including the consideration of the configuration of sensors, monitoring devices, servers, network equipment, and monitoring software, as well as the arrangement of equipment, installation, configuration, and operational verification. Hexacore Inc. will handle everything from on-site surveys, proposals for monitoring configurations, arranging remote monitoring devices, servers, and network equipment, installing monitoring devices in panels, configuring software and equipment, to inspections, tests, and operational confirmations, all centered around its own software and sensors. We take on the responsibility for equipment, software, and installation/configuration processes, reducing the burden of individually confirming and arranging with multiple suppliers. We support the introduction of a monitoring environment that can manage multiple sites. **Challenges** - The sources for sensors, monitoring devices, servers, and software are separate, making coordination cumbersome. - We want to request not only equipment arrangement but also installation and configuration within panels. - We want to consolidate and check equipment information and alarms from multiple sites. **Benefits of Implementation** - It is possible to consider equipment, software, and installation/configuration processes together. - The burden of confirming and arranging with multiple suppliers is reduced. - Continuous consultation is possible from equipment arrangement to installation in panels, configuration, and testing. *For more details, please refer to the PDF document or contact us.*
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When introducing a remote monitoring system to a data center, it is necessary to coordinate multiple processes, including organizing the monitoring targets, considering the configuration of sensors and monitoring equipment, arranging servers and network devices, on-site installation, various settings, and testing. Hexacore Inc. handles everything from on-site surveys and proposals for monitoring configurations to arranging remote monitoring devices, servers, and network equipment, installing monitoring devices in panels, software and equipment settings, inspections, testing, and operational confirmations. By linking our proprietary software and sensors with the installation work, we reduce the burden of individually confirming and arranging equipment, software, and installation/settings. We support the establishment of a remote monitoring environment for operations from the stage where monitoring targets and necessary equipment are not yet finalized. 【Challenges】 - The sources for sensors, monitoring equipment, servers, and software are separate, making coordination cumbersome. - We want to request not only equipment arrangements but also panel installations and various settings. - We would like to consult on inspections, testing, and operational confirmations after settings are made. 【Benefits of Implementation】 - Reduces the burden of individual confirmations and arrangements with multiple suppliers. - Allows for continuous consultation from on-site surveys to equipment arrangements, panel installations, settings, and testing. - Supports the creation of an environment where sensor acquisition information can be utilized for remote monitoring.
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PAL-Temp is a Modbus-compatible sensor designed to add temperature and humidity measurement points to existing monitoring systems in data centers. In data centers, there may be a need to add temperature and humidity measurement points in line with the expansion of racks and equipment. A configuration that allows measurement data to be incorporated into higher-level devices while utilizing existing PLCs and monitoring equipment is required. [Challenges] - Want to incorporate temperature and humidity data into existing PLCs and monitoring equipment - Want to add environmental measurement points in line with rack expansions - Want to consider communication configurations that match higher-level devices [Benefits of Implementation] - Add temperature and humidity measurement capabilities to existing PLCs and monitoring equipment at low cost - Add measurement points to necessary locations in line with the expansion of racks and equipment - Utilize the acquired temperature and humidity data for monitoring the environmental conditions of the data center *For more details, please refer to the PDF document or feel free to contact us.
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PAL-Temp is a Modbus-compatible sensor that measures the ambient temperature and humidity around server room equipment, providing the environmental data necessary for maintenance decisions. In data center equipment maintenance, being able to check not only electrical information but also changes in ambient temperature and humidity during abnormal occurrences is essential for troubleshooting. It is important to have a configuration that continuously collects environmental data, not just during inspections. 【Challenges】 - Unable to confirm changes in the surrounding environment during equipment abnormalities - Temporary measurements during inspections make it difficult to grasp trends - Want to add temperature and humidity measurement items to existing monitoring equipment 【Benefits of Implementation】 - Continuously measure the temperature and humidity around equipment at low cost - Understand unusual changes in temperature and humidity and use them as reference information for inspections and maintenance decisions - By combining with higher-level systems, check the temperature and humidity history before and after abnormal occurrences *For more details, please refer to the PDF document or feel free to contact us.
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PAL-Temp is a compact temperature and humidity sensor designed for personnel managing data centers and server rooms. In data center facility management, it is important to share temperature and humidity as objective figures, not just relying on the subjective impressions during inspections. Continuous measurement data is required so that multiple personnel can verify the facility environment based on the same standards. [Challenges] - Confirmation of the facility environment tends to be biased towards the experience and intuition of the personnel. - It is difficult to track temperature and humidity changes with only the data from inspection points. - There is a desire to share environmental information around the racks among stakeholders. [Benefits of Implementation] - Quantification of temperature and humidity around server rooms and racks at a low cost. - Verification of the facility environment using common measurement data, rather than relying solely on personnel intuition. - By combining with higher-level systems, it is possible to accumulate, display, and share temperature and humidity data. *For more details, please refer to the PDF document or feel free to contact us.
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PAL-Temp is a Modbus-compatible temperature and humidity sensor designed to monitor the environmental conditions of data centers and server rooms. In data centers, temperature differences can occur between racks due to equipment heat generation and air conditioning conditions. It is important to have a measurement system that can check not only the overall representative values of the room but also the environment around the front and back of the racks and near the air conditioning equipment. 【Challenges】 - I want to check the intake and exhaust environment for each rack. - I want to understand localized temperature changes that cannot be identified by the average indoor temperature alone. - I want to be able to confirm changes in temperature and humidity during incidents. 【Benefits of Implementation】 - Low-cost measurement of temperature and humidity around the front and back of racks and near air conditioning equipment. - By measuring multiple locations, it is possible to confirm localized temperature rises and imbalances in temperature and humidity. - Utilize temperature and humidity data as a basis for decision-making regarding air conditioning operations and equipment environment. *For more details, please refer to the PDF document or feel free to contact us.
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PAL-Temp is a wired temperature and humidity sensor that measures the temperature and humidity around data center racks and in machine rooms, outputting data via Modbus RTU (RS-485). In data centers, it is crucial to continuously monitor the temperature and humidity around racks to ensure the stable operation of servers and communication equipment. Since there can be localized environmental changes that are difficult to capture with just representative points in the room, measurements at multiple locations are required. [Challenges] - Want to monitor temperature and humidity around racks at multiple points - Want to add temperature and humidity data to existing monitoring systems - Want to simplify wiring and installation work when adding sensors [Benefits of Implementation] - Measure temperature and humidity around racks and in machine rooms at low cost - Measure multiple locations to understand temperature and humidity variations that are not apparent from just representative values in the room - Add temperature and humidity data to existing PLCs and monitoring systems to visualize the equipment environment *For more details, please refer to the PDF document or feel free to contact us.
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In data centers and server rooms, information such as power, temperature and humidity, and equipment status can be dispersed across different devices and monitoring systems. When information is split across multiple screens, it takes time to confirm issues when abnormalities occur, and expanding the monitoring range due to equipment additions can become complicated. CEW-M4 is software that aggregates data obtained from existing sensors, PLCs, and Modbus-compatible devices, allowing for centralized monitoring via a web browser. It displays current, power, energy, temperature, and humidity together, and supports early detection of abnormalities, initial decision-making, and post-response situation confirmation through alarm, history, graph, and map functions. [Challenges] - Information on power and temperature and humidity is dispersed across multiple screens. - I want to quickly confirm the equipment or location where an abnormality has occurred. - I want to check data before and after the occurrence of an abnormality in graph form. - I want to aggregate equipment information from multiple floors or locations. [Implementation Effects] - Confirm dispersed equipment data on a single screen. - Support understanding the situation and initial decision-making before on-site confirmation. - Understand abnormal locations and changes before and after occurrences. - Build a monitoring environment that utilizes existing equipment. - Gradually expand the monitoring range according to equipment additions. - Visualize power and temperature and humidity data.
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【Challenges】 Do you face any of the following challenges in monitoring data center facilities? - Want to quickly identify abnormalities in power and temperature/humidity - Want to immediately pinpoint the location of an alarm - Want to check data before and after an abnormal occurrence to investigate the cause - Want to view equipment information from multiple locations on a single screen - Want to keep monitoring data and alarm history as operational records 【You can utilize the monitoring software CEW-M4 to solve these challenges】 The monitoring software CEW-M4 is a facility monitoring software that allows centralized monitoring of current, power, energy, temperature, humidity, and equipment status in data centers, server rooms, and communication facilities via a web browser. When an abnormality is detected, it notifies you with an alarm, and you can quickly check the location of the alarm from the map display. Additionally, you can verify the time of occurrence and changes in data before and after the event through graphs and history, which supports understanding the situation during an abnormal occurrence, initial response decisions, and cause investigation. It is also possible to manage equipment information distributed across multiple data centers and communication sites in a consolidated manner. From daily equipment monitoring to post-abnormality checks and reflections, everything can be efficiently conducted on a single screen.
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With the expansion of data centers and server rooms, is the monitoring information for power, temperature, humidity, and other factors dispersed across multiple devices and screens? When information is scattered, it increases the need for on-site inspections, visual confirmations, and individual checks by responsible personnel, making it time-consuming to grasp the equipment's status. The CEW-M4 is an energy and environmental monitoring software that consolidates equipment data such as current, power, energy consumption, temperature, and humidity onto a web interface, allowing centralized monitoring of up to 20,000 points. 【Do you face any of the following challenges?】 - Monitoring screens for power meters, temperature and humidity sensors, etc., are dispersed. - Relying on on-site inspections and visual checks to confirm equipment status. - Wanting to add monitoring targets in line with the expansion of racks and equipment. 【Expected benefits from implementation】 - Consolidation of dispersed equipment information onto a web interface. - Reevaluation of monitoring tasks that depend on on-site inspections and visual confirmations. - Increased efficiency in verification tasks through graphs, maps, and alarm history. Please download the materials to check the compatible devices, connection configurations, and images of the monitoring screens.
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In data center facility management, the challenge is that monitoring screens and measurement data are dispersed across different locations and buildings, leading to time-consuming on-site inspections, individual confirmations, aggregations, and report preparation. Additionally, if changes in power or temperature and humidity cannot be quickly understood from a remote location, it can result in delays in verification and response. CEW-M4 is an energy and environmental monitoring software that collects measurement data from multiple sites, including current, power, energy consumption, temperature, and humidity, with a maximum of 20,000 data points, allowing for centralized monitoring via maps and graphs on a web browser. In addition to remote confirmation of equipment status, it supports comparisons between sites and equipment, as well as tracking data trends. The alarm function, which allows for setting upper and lower limits in three stages, along with alarm emails and alarm history, can also be utilized for early detection of state changes. Collected data can be output in CSV format, streamlining data organization necessary for monthly reports, audit materials, and energy consumption aggregation. It supports Modbus/TCP, Modbus/RTU, and configurations utilizing existing measurement devices can also be considered. This helps reduce the burden of inspections, confirmations, and aggregations, supporting the stable operation of data centers and server rooms. Please refer to the PDF materials for compatible devices, connection configurations, screen examples, and server requirements.
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The CEW-M4 supports integration with Modbus/TCP and Modbus/RTU compatible devices and various sensors. It allows for the effective utilization of existing monitoring devices and sensor assets while expanding the monitoring range in line with the addition of equipment or measurement points. Even if the number of monitoring targets increases, it is possible to build a phased system according to the scale of operations. Modbus gateways and relay devices can each connect up to 200 units. Data on power, temperature and humidity, equipment status, and more can be aggregated on a web interface, allowing for an overview of large facilities, multiple equipment, and various locations. The collected equipment data supports graph display, map display, and CSV output. Furthermore, by utilizing alarm email notifications and alarm history management, it aids in the early detection of changes in equipment status or abnormalities. It broadly supports equipment management tasks from daily monitoring to data accumulation and analysis.
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When starting to monitor large-capacity circuits, many people think, "I want to confirm if the sensors are compatible with the target equipment" or "I want to test if the communication can be stable." With the PAL-Plus large-capacity version, you can conduct evaluation from a single circuit or a small number of circuits before full-scale implementation, gradually expanding the monitoring range while confirming operational results. The PAL-Plus large-capacity version offers four types: 125A, 250A, 400A, and 630A. You can select the optimal sensor according to the target current and cable diameter. Additionally, it adopts a split clamp type that is easy to install on existing equipment and supports data collection via Modbus RTU (RS-485) communication. This allows for future expansion into remote monitoring systems. 【Challenges】 - Want to confirm compatibility/communication before full-scale implementation - Want to reduce initial costs - Want to prepare for future expansion 【Expected Benefits】 - Optimal selection from four types - Easy to retrofit with a split type - Potential for future remote monitoring expansion For more details, please check the materials or feel free to contact us.
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In monitoring multi-circuit equipment, it is important to design with not only the current number of monitoring points in mind but also future expansions. The PAL-Plus large-capacity version, in combination with the PAL-Plus unit, allows for the bulk collection of numerous current data. Up to 31 sensors can be connected to a single unit, and the wiring length to the final stage can accommodate up to 100 meters. Additionally, it is possible to configure a connection between the Modbus RTU on the sensor side and the Modbus TCP on the upper side. Monitoring points can be gradually increased in line with equipment expansion. 【Challenges】 - Efficiently monitor numerous circuits - Prepare for future expansions - Organize the overall system conditions 【Expected Benefits】 - Bulk monitoring of multiple currents - Expansion up to 31 units - Integration from Modbus RTU to Modbus TCP You can consider configurations ranging from small-scale to multi-point setups for main and branch circuits or multi-circuit panels. This can also be utilized for configuration confirmation before implementation, design during the addition of monitoring points, and planning for future expansions. Please take a look at the materials. For actual configuration conditions, please contact us individually.
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To connect the current data from equipment to IoT applications and remote monitoring, it is necessary to confirm not only the measurement performance but also the communication method and the connection configuration with higher-level devices. The PAL-Plus large-capacity version is a sensor with built-in communication functionality that measures alternating current and outputs it via Modbus RTU (RS-485). By combining it with Modbus-compatible PLCs, BMS, SCADA, and IoT gateways, you can consider equipment monitoring that leverages existing infrastructure. Being an integrated measurement and communication unit helps keep the configuration clear and contributes to space-saving within the panel. [Challenges] Want to incorporate current data into higher-level systems / Want to organize communication and connection conditions / Want to simplify the device configuration for IoT monitoring [Expected Effects] Output current values to Modbus-compatible devices / Design monitoring configurations with PLCs, IoT gateways, and PAL-Plus units / Collaborate from data collection to visualization according to application needs The materials include examples of various system constructions, power and wiring conditions, and key specifications of the sensor and PAL-Plus unit. They can be used to clarify connections with higher-level devices. By organizing circuit conditions, power, wiring, communication specifications, and role distribution with higher-level devices in advance, it helps in comparing IoT monitoring configurations that utilize existing systems and in considering connections before implementation.
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