Description
Designed for mid to high-end commercial environments where a Grade 3 system may be required, the new Honeywell DT8016AF5 anti-mask motion sensor delivers reliable protection with improved false alarm immunity through patented solutions. It includes DualCore™ signal processing which is ideal for areas that are difficult to protect with standard products and integrates a total of five patented solutions to improve reliability and installation.
In addition to this, the installer will benefit from the design of the sensor which allows easy access to the connectors with its quick plug-in feature. Furthermore this motion sensor offers integrated EOL resistors and an enhanced walk test feature saving time on installation.
With the DT8016AF5, optimum performance is achieved using X-Band microwave technology and Uniform Sensitivity Optics.
Plug-in electronics
Designed for easy installation with an automatic plug-in connector
Integrated End-of-Line (EOL) resistors
EOL resistors for alarm as well as tamper loop and anti-mask are already incorporated, saving installation time and reducing service calls
Flash light Walk Test
Reduces installation time as the walk test can be enabled by simply pointing a flash light at the sensor
Mirror optics
With mirror optics, this motion sensor uses the most reliable technology offering the best detection/false alarm ratio
Highest security approval
High quality performance sensor which meets the requirements of high risk environments (EN Grade 2 or Grade 3)
Infrared anti-mask technology
Quickly detects intentional and accidental masks or blocks. The sensor sends a trouble signal whenever it encounters mask conditions. This siginificantly reduces the chance of any sensor security breaches.
Extensive detection coverage
Extremely dense, wide and long detection range compared to similar products on the market providing superior coverage
Professional design
The DT8016AF5 sensor are designed for high level security installations with a unique professional look distinguishing it from low value sensors
Patented PIR signal analysis solution
The sensor looks for a wide time frame and integrates the signal received prior to any alarm triggering decision
Patented look down solution
The installer can change the settings with ease by simply switching the look down enabler on and off, offering a more efficient and reliable solution
Patented self test solution
The sensor tests the full microwave circuit periodically by sending and receiving a test signal. In the event of an anomaly the sensor triggers the antimask/trouble relay
Patented vibration solution
Built-in shock feature. In the event of vibration, this component overrides the PIR signal and ensures the device stays in Dual mode permanently
Patented mounting solution
To fix the sensor to the wall, the installer simply inserts the screw in the predefined location where it will be automatically held in place making installation quicker and easier
Technical Specification:
Type of detection: PIR (mirror) + Microwave
Range:16 x 22 m
EOL resistors: Alarm & tamper : 1K, 2.2K, 4.7K & 5.6K ; default = 1K, Anti-Mask(*) /trouble : 2.2K, 3K; default = 3K
Detection zones: 36 long range, 10 intermediate, 12 lower, 2 look down
Walk test: 30 s
Frequency: X-Band : 10.587 GHz
RFI Immunity: 15 V/m, 80 MHz – 2.7 GHz
Mounting height: 2.3m optimal
Power requirements: 9 – 15V dc
Consumption: 9mA typical, 14mA max. (@ambiant temperature)
Alarm relay: Form A / 30 mA@25 Vdc, max. 22 Ohm / Duration: 3 s
Anti-Mask(*) / trouble relay: Form B / 30 mA@25 Vdc, max. 22 Ohm
Tamper Form: A / 30 mA@25 Vdc - Cover & Wall
Operating temperature: -10oC to +55oC
Temp. compensation: Advanced dual slope
Relative humidity: 5% - 95% non condensing
PIR White Light Immunity: 10,000 Lux typical
Approval: EN50131-2-4 Grade 3 Class II, NF&A2P three shields, GOST-R, PD6662:2010
Dimensions: Length: 116mm x Height: 43mm
Weight: 0.135Kg
Customer Reviews & Questions
Payment & Security
Your payment information is processed securely. We do not store credit card details nor have access to your credit card information.