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Intrusion alarm systems are currently facing a growing number of potential error sources in the environment. At the same time, alarm systems must comply with increasingly demanding legal requirements for sensors and motion detectors. As a future-proof solution, detectors equipped with Sensor Data Fusion technology raise the level of security while reducing the risk of cost- and time-intensive false alarms. This article provides a comprehensive overview of Sensor Data Fusion technology. Anti-masking alarms A cultural heritage museum in the South of Germany for decades, the installed intrusion alarm system has provided reliable protection on the premises. But suddenly, the detectors trigger false alarms every night after the museum closes. The system integrators are puzzled and conduct extensive tests of the entire system. When they finally identify the culprit, it’s unexpected: As it turns out, the recently installed LED lighting system in the museum’s exhibition spaces radiates at a wavelength that triggers anti-masking alarms in the detectors. Not an easy fix situation, since a new lighting system would prove far too costly. Ultimately, the integrators need to perform extensive detector firmware updates and switch to different sensor architecture to eliminate the error source. This scenario is by no means an isolated incident, but part of a growing trend. Need for reliable detector technology Legal requirements for anti-masking technology are becoming stringent in response to tactics by criminals The number of potential triggers for erroneous alarms in the environment is on the rise. From the perspective of system operators and integrators, it’s a concerning development because every false alarm lowers the credibility of an intrusion alarm system. Not to mention steep costs: Every false call to the authorities comes with a price +$200 tag. Aside from error sources in the environment, legal requirements for anti-masking technology are becoming more stringent in response to ever more resourceful tactics employed by criminals to sidestep detectors. What’s more, today’s detectors need to be fortified against service outages and provide reliable, around-the-clock operability to catch intruders in a timely and reliable fashion. Sensor Data Fusion Technology In light of these demands, one particular approach has emerged as a future-proof solution over the past few years: Sensor Data Fusion technology, the combination of several types of sensors within one detector – designed to cross-check and verify alarm sources via intelligent algorithms – holds the keys to minimising false alarms and responding appropriately to actual alarm events. This generation of detectors combines passive infrared (PIR) and microwave Doppler radar capabilities with artificial intelligence (AI) to eliminate false alarm sources without sacrificing catch performance. Motion detectors equipped with Sensor Data Fusion technology present a fail-proof solution for building security “It’s not about packing as many sensors as possible into a detector. But it’s about including the most relevant sensors with checks and balances through an intelligent algorithm that verifies the data for a highly reliable level of security. The result is the highest-possible catch performance at the minimum risk for erroneous alarms,” said Michael Reimer, Senior Product Manager at Bosch Security Systems. Motion detectors with sensor data fusion Looking ahead into the future, motion detectors equipped with Sensor Data Fusion technology not only present a fail-proof solution for building security. The comprehensive data collected by these sensors also unlock value beyond security: Constant real-time information on temperature and humidity can be used by intelligent systems and devices in building automation. Integrated into building management systems, the sensors provide efficiency improvements and lowering energy costs Integrated into building management systems, the sensors provide the foundation for efficiency improvements and lowering energy costs in HVAC systems. Companies such as Bosch support these network synergies by constantly developing and optimising intelligent sensors. On that note, installers must be familiar with the latest generation of sensor technology to upgrade their systems accordingly, starting with a comprehensive overview of error sources in the environment. Prominent false alarm triggers in intrusion alarm systems The following factors emerge as frequent triggers of false alarms in conventional detectors: Strong temperature fluctuations can be interpreted by sensors as indicators of a person inside the building. Triggers range from floor heating sources to strong sunlight. In this context, room temperatures above 86°F (30°C) have proven particularly problematic. Dust contamination of optical detectors lowers the detection performance while raising susceptibility to false alarms. Draft air from air conditioning systems or open windows can trigger motion sensors, especially when curtains, plants, or signage attached to the ceilings (e.g. in grocery stores) are put in motion. Strong light exposure directly on the sensor surface, e.g. caused by headlights from passing vehicles, floodlights, reflected or direct sunlight – all of which sensors may interpret as a flashlight from an intruder. Extensive bandwidth frequencies in Wi-Fi routers can potentially confuse sensors. Only a few years ago, wireless routers operated on a bandwidth of around 2.7GHz while today’s devices often exceed 5GHz, thereby catching older detectors off guard. LED lights radiating at frequencies beyond the spectrum of visible light may trigger sensors with their infrared signals. Regarding the last two points, it’s important to note that legislation provides clear guidelines for the maximum frequency spectrum maintained by Wi-Fi routers and LED lighting. Long-term security But the influx of cheap and illegal products in both product groups – products that do not meet the guidelines – continues to pose problems when installed near conventional detectors. For this reason, Sensor Data Fusion technology provides a reliable solution by verifying alarms with data from several types of sensors within a single detector. Beyond providing immunity from false alarm triggers, the new generation of sensors also needs to comply with the current legislature. These guidelines include the latest EN50131-grade 3, and German VdS class C standards with clear requirements regarding anti-masking technology for detecting sabotage attempts. This is exactly where Sensor Data Fusion technology provides long-term security. Evolution of intrusion detector technology Initially, motion detectors designed for intrusion alarm systems were merely equipped with a single type of sensor; namely passive infrared technology (PIR). Upon their introduction, these sensors raised the overall level of building security tremendously in automated security systems. But over time, these sensors proved limited in their catch performance. As a result, manufacturers began implementing microwave Doppler radar capabilities to cover additional sources of intrusion alarms. First step detection technology In Bosch sensors, engineers added First Step detection to trigger instant alarms upon persons entering a room Over the next few years, sensors were also equipped with sensors detecting visible light to catch flashlights used by burglars, as well as temperature sensors. In Bosch sensors, engineers added proprietary technologies such as First Step detection to trigger instant alarms upon persons entering a room. But experience in the field soon proved, especially due to error sources such as rats and other animals, that comprehensive intrusion detection demands a synergetic approach: A combination of sensors aligned to cross-check one another for a proactive response to incoming signals. At the same time, the aforementioned bandwidth expansion in Wi-Fi routers and LED lighting systems required detectors to implement the latest circuit technology to avoid serving as ‘antennas’ for undesired signals. Sensor data fusion approach At its very core, Sensor Data Fusion technology relies on the centralised collection of all data captured by the variety of different sensors included in a single detector. These data streams are directed to a microprocessor capable of analysing the signals in real-time via a complex algorithm. This algorithm is the key to Sensor Data Fusion. It enables the detector to balance active sensors and adjust sensitivities as needed, to make truly intelligent decisions regarding whether or not the data indicates a valid alarm condition – and if so, trigger an alarm. Advanced verification mechanisms The current generation of Sensor Data Fusion detectors, for instance from Bosch, feature advanced verification mechanisms, including Microwave Noise Adaptive Processing to easily differentiate humans from false alarm sources (e.g. ceiling fans or hanging signs). For increased reliability, signals from PIR and microwave Doppler radar are compared to determine whether an actual alarm event is taking place. Additionally, the optical chamber is sealed to prevent drafts and insects from affecting the detector, while the detector is programmed for pet and small animal immunity. Sensor cross-verification Further types of sensors embedded in current and future generations of Sensor Data Fusion detectors include MEM-sensors as well as vibration sensors and accelerometers. Ultimately, it’s important to keep in mind that the cross-verification between sensors serves to increase false alarm immunity without sacrificing the catch performance of actual intruders. It merely serves to cover various indicators of intrusion. Protecting UNESCO World Cultural Heritage in China Intelligent detectors equipped with Sensor Data Fusion are protecting historic cultural artifacts in China from theft and damage. At the UNESCO-protected Terracotta Warriors Museum site, one hundred TriTech motion detectors from Bosch with PIR and microwave Doppler radar technology safeguard the invaluable treasures against intruders. To provide comprehensive protection amid the specific demands of the museum site, the detectors have been installed on walls and ceilings to safeguard the 16,300-square-meter museum site. To ensure an optimal visitor experience without interference from glass walls and other barriers, many detectors are mounted at a height of 4.5 meters (15 feet) above ground under the ceiling. Despite their height, the detectors provide accurate data around the clock while exceeding the performance limits of conventional motion detectors, which clock out at a mere 2 meters (6 feet) catchment area. Integrated video systems The site also presents additional error sources such as large amounts of dust that can contaminate the sensors, as well as visitors accidentally dropping their cameras or mobile phones next to museum exhibits. To distinguish these events from actual criminal activity, the intrusion alarm system is integrated with the museum’s video security system. This allows for verifying alarm triggers with real-time video footage at a fast pace: In the case of an actual alarm event, the system alerts the on-site security personnel in the control room in less than two seconds. Added value beyond security Sensor Data Fusion technology provides a viable solution for the rising number of error sources in the environment As of today, Sensor Data Fusion technology already provides a viable solution for the rising number of error sources in the environment while providing legally compliant building security against intruders. In light of future developments, operators can leverage significant added value from upgrading existing systems – possibly without fundamentally replacing current system architecture – to the new detector standard. Added value how? On one hand, the detectors can integrate with access control, video security, voice alarm, and analytics for a heightened level of security. These synergetic effects are especially pronounced on end-to-end platforms like the Bosch Building Management system. On the other hand, the data streams from intelligent detectors also supply actionable intelligence to building automation systems, for instance as the basis for efficiency improvements and lowering energy consumption in HVAC systems. New backward-compatible detectors Bosch will release a new series of commercial detectors by end of 2021, based on the latest research on risk factors for false alarm sources in the environment and line with current legislation and safety standards. Throughout these developments, installers can rest assured that all new detectors are fully backward compatible and work with existing networking/architecture. With that said, Sensor Data Fusion technology emerges as the key to more secure intrusion alarm systems today and in the future. TriTech detectors from Bosch For reliable, fail-proof alarms the current series of TriTech detectors from Bosch relies on a combination of different sensor data streams, evaluated by an integrated algorithm. These Sensor Data Fusion detectors from Bosch combine up to five different sensors in a single unit, including: Long-range passive infrared (PIR) sensor Short-range PIR sensor Microwave sensor White light sensor Temperature sensor Equipped with these sensors, TriTech detectors are capable of detecting the most frequent sources of false alarms; from headlights on passing cars to a mouse passing across the room at a 4.5-meter distance to the detector. What’s more, TriTech detectors provide reliable performance at room temperatures above 86°F (30°C) while fully guarding against actual intrusion and sabotage attempts from criminals.
From analogue to digital, from stand-alone to interlinked, building systems are in a state of transition. Moreover, the rate of change shows no sign of slowing, which can make it difficult to keep up to date with all the latest developments. If asked to pinpoint the single biggest driver of this revolution, one could point out the growing clamour for platform convergence. A security guard in a building doesn’t want to use different systems to check video cameras, fire alarms or if someone has entered a restricted area: – it simply isn’t efficient. For similar reasons, a building manager wants a single interface to control heating and lighting to match fluctuating occupancy levels, particularly in a hybrid working model. Applying the digital glue The demand from end-users for system convergence is growing, but to achieve full interoperability you still need to apply some ‘digital glue’ and that requires expertise. Yet bringing together disparate systems from different manufacturers can be problematic. Just as you get things to work, someone upgrades their solution and your carefully implemented convergence can start to come unstuck. Managing an implementation can quickly become more complicated, today’s quick-fix can become tomorrow’s headache This is one of the principal issues with all types of new technology; not everyone will choose the same path to reach the desired goal – it’s the old VHS/Betamax argument updated for building management and security systems. Managing and maintaining an implementation can quickly become more complicated than it first appears and without proper oversight, today’s quick-fix can become tomorrow’s technical headache. Effective support for a hybrid workforce Today’s hybrid workforce is a response to the pandemic that looks set to become an established part of working life for many companies across the world. Security systems have a massive role to play in facilitating this transformation that goes beyond simple intrusion detection, access control, and video monitoring. They can identify the most densely populated areas in a building to comply with social distancing guidelines and provide efficient use of space. The insights gathered from a security system can also be used to identify patterns of behaviour, which can then be used for planning and directing the use of building space to help create the best possible working environment while also minimising heating, lighting, and air conditioning expenditures. Identity credentials can help manage compliance with industry regulations by limiting access to certain areas Similarly, identity credentials – either biometric or mobile-based – can help manage compliance to industry regulations by limiting access to certain areas only to approved employees. Creating and maintaining the appropriate level of functionality requires a combination of innovative solutions and industry experience. The complete security package It’s not just physical security that’s important – cybersecurity is a major focus, too. Bringing together both the physical security and cybersecurity realms is increasingly becoming a ‘must have’ capability. What is evident is that the pace of technological change is faster than ever. Today’s functionality simply wouldn’t have been possible just a few years ago, while today’s leading-edge developments may seem commonplace in five years.
The ‘new normal’ was all we heard about when it came to the working model shift after the pandemic hit. Businesses worldwide adopted working from home, and then the hybrid model: a balance of remote work and office work. And according to a recent survey by 451 Research, nearly 80% of organisations surveyed said they have implemented or expanded universal work-from-home policies as a result of COVID-19, whilst 67% expect these policies to remain in place either permanently or for the long-term. With more vacant office spaces, the question is: is hybrid working a red flag for business security? Empty-office days When buildings and office spaces are still active with advanced technology, equipment and assets on show, yet footfall is not as busy as it once was, opportunistic criminals are closely watching and taking note. But what are they learning? Security systems provider, Expert Security UK, investigates our new normal. Offices are nests for expensive, valuable equipment, with maybe the latest technology Instead of a packed, busy office five or six days a week, hybrid working means more empty-office days, which is music to the ears of burglars. Offices are nests for expensive, valuable equipment, with maybe the latest technology and safes sitting there, or potential stacks of cash or company cards. You may be thinking, well, who leaves company cards or cash out? You’d be surprised, especially when business owners think they’ll never be a victim, or sometimes, staff make mistakes. Hybrid working model And don’t forget, burglars don’t always know what’s been left and will take their chances. And when a hybrid working model is the ‘new normal’, that means a lapse in security - at least in a thief’s mind. So how worried should business owners be? Well, the latest figures are pretty worrying, but also, not massively shocking. Reiterating the temptation and lure the working model shift has on robbers, Statista recorded a 12-year high for robbery offences in the UK in 2019/2020. When more businesses either shut up shop or sent staff away to home offices, it’s not hard to make a connection. These figures reflect how, when given the opportunity, thieves will strike and take advantage. Handing vital information Whether you’ve decided to go fully remote, it’s crucial to review and rethink your business security However, it’s worth noting that the lockdowns and empty streets would also have played a part in this spike, and now that we’re out of lockdowns with a world back to flipping its sign to ‘open’, many businesses will be carrying on working from home, but towns, shops, and streets are busy again. Whether you’ve decided to go fully remote, or have adopted the hybrid model, it’s crucial to review and rethink your business security, starting with your social media presence. It’s a good idea to review your social media channels. We forget how open we can be on social media, and how our digital presence can actually work as a perfect guide and insight for criminals. All they have to do is follow your channels to pick up on clues. And if you’re not giving it a minute’s thought about what you're putting out there, you may even be just handing them vital information and helping their plans. Remote working shift Of course, there is information readily available such as your opening times, location etc. But, do you really want/need to show off the new, state-of-the-art tablets you’ve just kitted your office out with? It can be hard as a business, or even as a social person, to not want to share positive news on social media, but we really do have to stop and think, especially if people know a lot about the company and its remote working shift. It’s also a good idea to have a meeting with your staff about a social media policy Maybe share a post about that new, intelligent security system you've installed instead. It’s also a good idea to have a meeting with your staff about a social media policy or maybe just a casual chat about best practices, e.g. not to tag the business in a post about their new office gadget etc. Improving business security With fewer office days, you probably won’t need to take up as much work space anymore. Maybe some equipment has become more ornamental. Anything you don’t use or need, you could sell or donate. If you do have expensive equipment lying around that’s not being used, try and make money back from it or store it elsewhere. If you are keeping a lot of expensive equipment in vacant premises, especially fixed equipment and technology, then consider installing bars and shutters over the windows. Whatever your budget, you can improve your business security tenfold with key security measures. One of them being access control. Security gates with access control are incredibly effective at stopping unauthorised people from gaining entry. There are also car park barriers and bollards that are highly effective at keeping any potential getaway vehicles out. Easily portable technology High-quality CCTV is a best friend to any business, but you need to be reviewing it frequently High-quality CCTV is a best friend to any business, but you need to be reviewing it frequently, especially if you’ve done a perimeter check and noticed any signs of forced entry or damage. Don’t forget those signs either, let visitors or trespassers know they’re on camera. To fit in with the hybrid working model, static fixtures are becoming redundant. For instance, companies are switching to laptops instead of computers, so that workers can transport them easily to and from the office. This is not only more efficient and convenient, but it means assets are more guarded. It’s the same for any other gadgets. Having easily portable technology is good for business, hybrid working, and security. Don’t forget about your deterrents. Simple signs to warn people of alarms, CCTV, and even the fact that you don’t leave equipment inside overnight can go a long way. Best security technology Thieves are famous for taking their chances. Some will meticulously plan, and many strike at a convenient, opportune time. So having signs in place that show you have high-quality, intelligent security in place can work wonders, making them think twice. It’s also worth noting that you may not have the best security technology in place at the moment, but those on the outside don’t need to know that; they can be fooled. However, having the best physical security in place is vital, as criminals lurk and will take chances. Keep reviewing your security, especially as your business adapts and reshapes - whether you return back to full office days or carry on the hybrid working model. This guest post was contributed by Danny Scholfield, Managing Director of Expert Security UK.
Johnson Controls, the globally renowned company in smart, healthy and sustainable building solutions, has introduced the PLAI Adapter for the Tyco Software House’s CCURE 9000 security and event management system, which connects to the PLAI Agent, for physical access control system compatibility. PLAI Adapter This open standards approach enables enterprises to easily manage personnel identity and physical access, across disparate physical access control platforms and other identity-based systems, reducing complexity and cost in system administration, and improving the employee and user experience. The Physical-Logical Access Interoperability (PLAI) specification provides an open standard method of sharing and managing personnel, credential, card format and biometric details, across an enterprise. This enables customers to use their current badge technology and biometrics, without the need for duplicate enrollments in different systems and the need to issue multiple credentials. PLAI specification offers an open standard approach The PLAI specification employs an open standard approach to integrating these different platforms Created by the Physical Security Interoperability Alliance, the PLAI specification employs an open standard approach to integrating these different platforms, as opposed to relying on individual platform drivers, simplifying the integration process. The ability for centralised management of Personal Identifiable Information (PII), across multiple systems, with the CCURE 9000 PLAI adapter, can ease compliance with data privacy regulations, such as GDPR and reduce the risk of unauthorised access, caused by identity conflicts, in the operation of the access control system. This helps to reduce total cost of ownership, by easing the administration burdens of making changes to users, credentials, locations and roles. Interoperability for PLAI-conformant access control solutions Open standards can also extend the life of current systems and allow organisations to defer the cost of standardising on one physical access control platform. By supporting interoperability with other PLAI-conformant access control technologies and biometrics, systems can be extended to include security events and door control, as well as visitor management functions. PLAI Adapter for Tyco Software House’s CCURE 9000 is part of the Johnson Controls OpenBlue suite of connected solutions, which support healthy people, healthy places and a healthy planet.
LifeSafety Power will showcase its award-winning intelligent networked power supplies at booth 1463 during this year’s GSX show, September 27-29 in Orlando. Featured products include: FPO Generation 2 - Recently redesigned and re-engineered with updated features and capabilities, the FlexPower® FPO Generation 2 (Gen2) power supply line brings additional enhancements to both installers and users in the access control market. Network communications module FlexPower Gen2 includes the groundbreaking OutSmart™ visual voltage indication across all boards, visually showing the technician the output voltage of the power supply boards and each distributed output. Optional RS-485 capability on FPO and M8 devices allows larger managed systems on fewer network drops with the NLX NetLink™ network communications module. Refinements like built-in low battery disconnect and battery current sensor foster cleaner installations Added data points such as AC input voltage and main output current measurements on the FPO power supply and output cycle counts on the M8 yield a comprehensive view of overall system health. Refinements like built-in low battery disconnect and battery current sensor foster cleaner installations. Access control boards E12M and E12S Enclosures - One of the most spacious enclosures in the industry, the E12 is available in Unified Power or ProWire with dimensions of 48 (H) x 36 (W) x 8 (D). The E12 handles larger enterprise access control deployments–accommodating more access control boards, power supplies and managed outputs in a single enclosure for hardware and deployment savings. The E12 houses up to three FlexPower FPO power supply boards to allow up to 750 Watts of power to locking hardware, access control boards and auxiliary devices. It comes in two configurations: the E12M integrates with authentic Mercury Systems and handles 24 doors of access control; E12S integrates with Software House (SWH) controllers to handle up to 32 doors. Security management software NetLink lets users remotely monitor, control, program and report on system power Access Control Integrations - LifeSafety Power’s solutions integrate with several industry-preferred access control security management software platforms, including Genetec Security Center; OnGuard® for Lenel S2; and C•CURE 9000 from SWH. Security Center Integration for Genetec - Leveraging the Genetec integration between NetLink network communication device and Security Center, users can seamlessly add NetLink devices into the software platform, allowing real-time alerts to appear directly within the interface. From Security Center, users receive detailed data on the health and viability of power, connected locks and other devices. NetLink lets users remotely monitor, control, program and report on system power and connected devices and features patented battery management that includes health reporting, remote battery testing, email/SNMP alerts and other proactive notifications. Advanced power management OnGuard Integration for LenelS2 - The LenelS2 integration allows LifeSafety Power’s NetLink NL4 and NLX Network Communication Modules to interface with OnGuard access control software versions 8.0, in addition to 7.6, for advanced power management of enterprise access control systems. NetLink adds proactive monitoring and management capabilities to LifeSafety Power’s power systems, interfacing directly to the OnGuard platform, with all power system alerts indicated on the OnGuard software. NetLink adds proactive monitoring and management capabilities to LifeSafety Power’s power systems CCURE integration for SWH - The native integration with SWH C•CURE 9000 and LifeSafety Power’s intelligent network monitoring modules allows users to receive and centrally manage alerts and notifications through the software, for monitoring and control of PSX power and distribution modules sold and supported through SWH. Critical networking notifications are driven directly into C•CURE 9000, relaying real-time data and analytics on the health and viability of iSTAR door controller power, lock power and battery condition. Streamlining power installations ProWire Unified Power Systems/Helix - ProWire Unified Power Systems, the highest level of integration between a power system and an access control solution, are an installer’s blueprint for consistent, streamlined power installations. ProWire makes it simple to create a connected power campus, eliminating installation variability for repeatable and professional results. Network-connected ProWire systems can interface directly into Mercury Security or SWH C•Cure 9000 platforms, allowing users to receive, manage and control alerts and notifications. ProWire is compatible with Multi-Site Manager (MSM) Enterprise™, which yields advanced analytics so end-users can actively network, monitor and manage connected power solutions for greater uptime and dependability. Mission-critical applications Helix reduces the risk of system downtime or outage and features network management Helix AC/DC is the only solution for mission-critical applications in government, finance, medical and high-tech industry vertical markets. Designed for seamless failover protection with the automatic backup switchover of AC or DC power, Helix reduces the risk of system downtime or outage and features network management for predictive reporting that optimises and maintains the highest levels of performance. AC Helix monitors separate AC branch circuits, reporting trouble with a primary branch immediately and instantly transferring power to backup for uninterrupted system operations. DC Helix uses redundant power supplies to instantly transfer power to the backup supply on the failure of the primary supply. Helix is now available in standard, Unified Power and ProWire configurations to provide the ultimate protection to any access control power system.
Johnson Controls, the provider of smart, healthy, and sustainable buildings, and architect of the OpenBlue digital connected platforms announce the availability of the new C-One2 mobile terminals from Coppernic for the innovative Tyco Software House C•CURE Go Reader. C•CURE Go is an application that extends the capabilities of the C•CURE 9000 security and event management system with portable, secure access control functionality, even in remote or disconnected areas. Ideal mobile solution The Coppernic C-One2 handheld Android device, featuring a multi-technology HID read head, is the ideal mobile solution for controlling an individual’s access rights at any time and from anywhere. The C•CURE Go Reader application validates credentials, performs roll calls, and can even enforce anti-passback on a per-device level and also in an online mode in conjunction with iSTAR controller areas. C•CURE Go Reader can operate in offline mode, caching personnel records and clearance data C•CURE Go Reader can operate in offline mode, caching personnel records and clearance data, as well as buffering offline transactions and synchronising instantly with C•CURE 9000 when back online, making this ideal for construction sites, temporary entrances, offsite events, or roaming security checkpoints for spontaneous badge checks. Associated portrait image For emergency situations, the C•CURE Go Reader features a roll call system administrator to produce a list of all users currently within a specified area, a crucial function for any emergency or evacuation plan. Cardholders simply present their QR code, iCLASS, MIFARE/ DESFire EV2, or proximity card to the Handheld reader. Once presented, C•CURE Go Reader shows the associated portrait image, cardholder status, clearance information, and whether the individual can be admitted or rejected. For quick tracking, the C•CURE Go Reader can easily create check points and track IN and OUT status for personnel, as well as capture the GIS location of each card ship and show locations on C•CURE 9000 workstations.
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- Bosch installs intrusion alarms at UNESCO World Heritage Site in China