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Supplier: Shanghai Optics
Description: does this with high accuracy, and is not dependent on wavelength. Shanghai Optics high quality off-axis parabolic mirrors can be used in broadband UV, visible, and IR applications. Understanding Parabolic Mirrors A parabolic mirror is a reflector in the shape of a
- Reflector / Parabolic Mirror Shape: Off-axis Parabolic
- Mirror Types: Parabolic Mirror
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Supplier: Radio Waves, Inc.
Description: The SP Standard Performance Series by RadioWaves offers a full line of cost effective standard performance parabolic antennas engineered to deliver reliable radio links. Designed for both unlicensed and licensed band applications, RadioWaves field-proven pre-assembled SP antennas and robust
- Primary Frequency Range: 4,400 to 5,000 MHz
- Gain: 26 to 27.1 dB
- VSWR: 1.5 :1
- Operating Temperature: -40 to 140 F
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Supplier: Radio Waves, Inc.
Description: The SP Standard Performance Series by RadioWaves offers a full line of cost effective standard performance parabolic antennas engineered to deliver reliable radio links. Designed for both unlicensed and licensed band applications, RadioWaves field-proven pre-assembled SP antennas and robust
- Primary Frequency Range: 7,125 to 7,750 MHz
- Gain: 30.5 to 31.3 dB
- VSWR: 1.37 :1
- Operating Temperature: -40 to 140 F
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Supplier: Radio Waves, Inc.
Description: The SP Standard Performance Series by RadioWaves offers a full line of cost effective standard performance parabolic antennas engineered to deliver reliable radio links. Designed for both unlicensed and licensed band applications, RadioWaves field-proven pre-assembled SP antennas and robust
- Primary Frequency Range: 12,700 to 13,250 MHz
- Gain: 41.2 to 41.5 dB
- VSWR: 1.37 :1
- Operating Temperature: -40 to 140 F
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Supplier: Radio Waves, Inc.
Description: The SP Standard Performance Series by RadioWaves offers a full line of cost effective standard performance parabolic antennas engineered to deliver reliable radio links. Designed for both unlicensed and licensed band applications, RadioWaves field-proven pre-assembled SP antennas and robust
- Primary Frequency Range: 12,700 to 13,250 MHz
- Gain: 38.8 to 39.1 dB
- VSWR: 1.37 :1
- Operating Temperature: -40 to 140 F
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Supplier: TACO Communications Inc.
Description: These Broadband UHF parabolic receive antennas cover the entire UHF TV spectrum. Narrow beam and high gain make these antennas ideally suited for minimizing interference from co-channel and multipath signals. The light-weight grid design minimizes wind loading on the tower.
- Primary Frequency Range: 470 to 890 MHz
- Gain: 25 dB
- VSWR: 1.6 :1
- Pattern Type: Directional
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Supplier: Pathway Lighting Products, Inc.
Description: service, product warranty and technical support. We employ the latest in design software, which allows our engineering department to quickly react to requests for new and custom fixtures. The Pathway design staff also provides point-by-point lighting layout reports to facilitate the
- Application: Commercial
- Lamp Type: Fluorescent
- Fixture Type: Recessed Lights
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Supplier: Newport MKS
Description: mechanical axis, giving full access to the reflector focus area. There will be no shadowing when placing either a detector or source at the focus. Off-axis Design for Detector Applications Compared with on-axis parabolic or ellipsoidal reflectors, the off axis mirrors do
- Focal Length: 152.39991770404444 mm
- Wavelength Range: 190 to 2,000 nm
- Diameter/Width: 38.1 mm
- Surface Quality: 60-40 Scratch / Dig
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Supplier: Newport MKS
Description: mechanical axis, giving full access to the reflector focus area. There will be no shadowing when placing either a detector or source at the focus. Off-axis Design for Detector Applications Compared with on-axis parabolic or ellipsoidal reflectors, the off axis mirrors do
- Focal Length: 50.799972568014816 mm
- Wavelength Range: 190 to 2,000 nm
- Diameter/Width: 38.1 mm
- Surface Quality: 60-40 Scratch / Dig
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Supplier: Newport MKS
Description: mechanical axis, giving full access to the reflector focus area. There will be no shadowing when placing either a detector or source at the focus. Off-axis Design for Detector Applications Compared with on-axis parabolic or ellipsoidal reflectors, the off axis mirrors do
- Focal Length: 203.19989027205926 mm
- Wavelength Range: 190 to 2,000 nm
- Diameter/Width: 38.1 mm
- Surface Quality: 60-40 Scratch / Dig
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Supplier: Newport MKS
Description: axis, giving full access to the reflector focus area. There will be no shadowing when placing either a detector or source at the focus. Off-axis Design for Detector Applications Compared with on-axis parabolic or ellipsoidal reflectors, the off axis mirrors do not have a
- Focal Length: 101.59994513602963 mm
- Wavelength Range: 800 to 15,000 nm
- Diameter/Width: 38.1 mm
- Surface Quality: 60-40 Scratch / Dig
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Supplier: KP Performance Antennas
Description: This ProLine Parabolic Antenna is engineered to suppress side-lobes and back-lobes and are excellent at rejecting interference. These parabolic antennas maximize the potential of your radio by improving signal strength and reducing the noise floor in your link. Our parabolic
- Primary Frequency Range: 4,900 to 6,400 MHz
- Gain: 29 dB
- VSWR: 1.5 :1
- Operating Temperature: -40 to 140 F
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Supplier: L-com, Inc.
Description: Superior Design-Braodband Performance The HyperGain model HG5158-31D is a high performance broadband solid dish antenna designed to operate from 5.1 GHz to 5.8 GHz (5125-5850 MHz). The wide band design of this antenna eliminates the need to purchase different antennas for each
- Primary Frequency Range: 5,100 MHz
- Gain: 31 dB
- Applications: Broadband Network / WLAN
- Technology Type: Dish / Reflector
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Supplier: L-com, Inc.
Description: The HyperLink Directional Mini-Reflector parabolic Antenna provides 15 dBi gain with a 16° horizontal beam-width for directional applications. Its compact design makes it nearly invisible in most installations, and it can be installed for either vertical or horizontal
- Primary Frequency Range: 2,400 MHz
- Gain: 15 dB
- Technology Type: Dish / Reflector
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Supplier: L-com, Inc.
Description: The L-com HG-2327DP-22EG-NM is a high performance WiFi Mesh Parabolic Dish antenna specifically designed for point to point communication. L-com's HG-2327DP-22EG-NM has 20 to 21 dBi gain and can be used to broadcast 2.4 GHz WiFi or unlicensed signals. The HG-2327DP-22EG-NM operates from 2300
- Primary Frequency Range: 2,300 to 2,700 MHz
- Gain: 22 dB
- Technology Type: Dish / Reflector
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Supplier: Edmund Optics Inc.
Description: Precision Polished Substrate Protected Aluminum and Cold Mirror Coating Options Ideal for Solar and Condensing Applications Precision Parabolic Reflectors Also Available Precision Ellipsoidal Reflectors are ideal for simplifying system design and integration. By having
- Diameter/Width: 88 mm
- Features: Other Mirror Material
- Mirror Shape: Round
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Supplier: Edmund Optics Inc.
Description: Precision Polished Substrate Protected Aluminum and Cold Mirror Coating Options Ideal for Solar and Condensing Applications Precision Parabolic Reflectors Also Available Precision Ellipsoidal Reflectors are ideal for simplifying system design and integration. By having
- Diameter/Width: 220 mm
- Features: Other Mirror Material
- Mirror Shape: Round
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Supplier: Edmund Optics Inc.
Description: Precision Polished Substrate Protected Aluminum and Cold Mirror Coating Options Ideal for Solar and Condensing Applications Precision Parabolic Reflectors Also Available Precision Ellipsoidal Reflectors are ideal for simplifying system design and integration. By having
- Diameter/Width: 115 mm
- Features: Other Mirror Material
- Mirror Shape: Round
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Supplier: Zygo Corporation
Description: material properties of silicon carbide, which make the material attractive from a design standpoint, have often precluded its use when low cost and rapid delivery of an optical mirror were required. It is normally expensive to produce a lightweighted, super-polished SiC substrate, and the
- Reflector Shape: Off-axis Parabolic
- Features: Other, Other Mirror Material, Parabolic Mirror, Reflector, Spherical Mirror
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Supplier: L-com, Inc.
Description: The L-com HG-2327DP-17EG-NF is a high performance WiFi Mesh Parabolic Dish antenna specifically designed for cellular networks. L-com's HG-2327DP-17EG-NF has 17 to 18 dBi gain and can be used to broadcast 2.4 GHz WiFi or unlicensed signals. The HG-2327DP-17EG-NF operates from 2300 to 2700 MHz
- Primary Frequency Range: 2,300 to 2,700 MHz
- Gain: 17 dB
- Applications: Cellular / PCS Base Station
- Technology Type: Dish / Reflector
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Supplier: KP Performance Antennas
Description: - 3.8 GHz spectrum Rugged and Weatherproof The 2-foot parabolic antenna features an industrial-grade powder-coated reflector, feed horn, and mounting brackets which allow 15 degree if elevation mechanical tilt and installation for pipe diameter from 1.2" to 2.5". This CBRS
- Primary Frequency Range: 3,500 to 3,800 MHz
- Gain: 24 dB
- VSWR: 1.5 to 1.7 :1
- Operating Temperature: -40 to 140 F
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Supplier: KP Performance Antennas
Description: - 3.8 GHz spectrum. Rugged and Weatherproof The 1-foot parabolic antenna features an industrial-grade, powder-coated reflector, feed horn, and mounting brackets which allow 15 degree if elevation mechanical tilt and installation for pipe diameter from 1.2" to 2.5". This CBRS
- Primary Frequency Range: 3,500 to 3,800 MHz
- Gain: 20 dB
- VSWR: 1.5 to 1.7 :1
- Operating Temperature: -40 to 140 F
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Supplier: KP Performance Antennas
Description: The KP-5PDRACL-2 is a 2-foot, 29 dBi parabolic antenna operating from 4.9 GHz to 6.4GHz. This antenna includes the KP-5PDA-R5ACL radio adapter which is designed specifically for the Ubiquiti Rocket 5AC-Lite radio. This 2-foot 5GHz ProLine Parabolic Antenna is engineered to suppress
- Primary Frequency Range: 4,900 to 6,400 MHz
- Gain: 27.5 to 29.8 dB
- VSWR: 1.5 :1
- Operating Temperature: -40 to 140 F
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Supplier: Light in Motion LLC
Description: Description The QEB651 is a miniature Surface Mount LED incorporating a high efficiency AIGaAs LED chip encapsulated on a substrate designed to form a gold plated parabolic reflector for maximum projection of an axis photons. Features Wavelength 850nm HIgb Output Emission angle 30
- Peak Wavelength: 870 nm
- Forward Voltage: 1.7 volts
- Forward Current: 65 milliamps
- LED Type: Infrared
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Supplier: Sanuvox Technologies, Inc.
Description: The Sanuvox Quattro system is designed for the UV air purification of a HVAC system of up to 5-ton. The Quattro is installed in a return or supply duct parallel to airflow for maximum exposure time and consists of four 18" lamps, each with their own parabolic aluminum reflector. The
- Application: Commercial
- Technology: Ultraviolet Germicidal Irradiation (UVGI)
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Supplier: Ushio America, Inc.
Description: Features & Benefits Up to 60 lumens per watt efficacy two times that of Xenon sources Highly durable, rugged elliptical and parabolic reflector designs – very high light path efficiencies for small diameter fiber optic bundle applications Precise filling control, electrode
- Lamp Power: 160 to 600 watts
- Rated Average Life: 2,000 to 4,000 hours
- Maximum Overall Length: 3.39370262 to 3.55118302 inch
- Color Temperature: 5,700 to 6,900 K
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Supplier: item America, LLC
Description: features a diffusor panel and parabolic reflector grid, ensures that light is distributed evenly and without any glare. It is the perfect basis for supporting fatigue-free and efficient working practices.
- Light Fixture Wattage: 30.000000000000004 watts
- Application: Industrial
- Lamp Type: LED
- Features: Other
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Supplier: Ushio America, Inc.
Description: ceramic to metal seal manufactured body and new window protection design. Manufactured at our ISO-certified plant, all UXR lamps are built to high quality standards for consistent and reliable performance. Features & Benefits Rugged Compact Design Broad Continuous Spectral Output, High
- Lamp Power: 175 watts
- Rated Average Life: 500 hours
- Maximum Overall Length: 1.67716626 inch
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Supplier: Larson Electronics LLC
Description: Reflector–computer generated parabolic - 5.5 amps draw - 120' X 100' Flood Beam; 700' X 125' Spot Beam - Candlepower - 5 million (new retail formula) or 400,000 (old industrial formula)
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Supplier: Streamlight, Inc.
Description: C4 LED, shock-proof with a 50,000 hr lifetime, is 3X brighter than a super high-flux LEDUp to 30,000 candela (peak beam intensity); 160 lumens measured system output. Deep-dish parabolic reflector produces a long range targeting beam with optimum peripheral illumination to aid in
- # of Batteries: 2
- Length: 6.62 inch
- Diameter: 0.9 to 2.2 inch
- Lumen: 160 lm
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Supplier: Larson Electronics LLC
Description: - Wireless Handheld Remote Control - Philips 9011 bulb with 12 Volts, 65 Watts - Reflector–computer generated parabolic - 5.5 amps draw - 120' X 100' Flood Beam; 700' X 125' Spot Beam - Candlepower - 5 million (new retail formula) or 400,000 (old industrial formula)
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Supplier: Electro Optical Components, Inc.
Description: gold plated parabolic reflectors to enhance output in the near infrared. We welcome your requests with specialized requirements to meet your needs. The EF-853X Series is a high quality replacement for the old SVF-series emitters. The EF-853X Series infrared (IR) emitters are designed
- Peak Wavelength: 1,000 to 7,000 nm
- Forward Voltage: 2.2 to 3.5 volts
- Forward Current: 1,000 to 2,100 milliamps
- LED Type: Infrared
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Supplier: CARLO GAVAZZI Automation Components
Description: use and no sensitivity adjustments are necessary. The spherical lens design is superior to previous design of sensors with built-in parabolic reflectors that had corrosion and dust problems. Increased safety by build-in: - Sensor test function; the emitter has a built-in
- Operating Distance: 1,181.103 inch
- Operating Temperature: -4 to 140 F
- Features: AC Powered, DC Powered, Photoelectric Sensors
- Electrical Output: Current
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Supplier: Streamlight, Inc.
Description: C4 LED, with a 50,000 hour lifetime.Unbreakable polycarbonate with scratch-resistant coating. O-ring sealed.3 modes:High 40,000 candela peak beam intensity, 200 Lumens, 2.5 hours runtimeLow 2000 candela peak beam intensity, 10 Lumens, 50 hours runtimeStrobeDeep-dish parabolic reflector
- # of Batteries: 2
- Length: 6.62 inch
- Diameter: 0.9 to 2.2 inch
- Lumen: 200 lm
Find Suppliers by Category Top
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Off-Axis Parabolic (OAP) Mirror Design Specifications Case Study: Double Convex Lens for Indirect Ophthalmoscopes (read more)
Browse Optical Mirrors Datasheets for Avantier Inc. -
of the evaporator coils. Using patented and versatile technology, the IL Coil Clean uses high-intensity UV lamps combined with aluminum parabolic reflectors, so that all the UV energy produced is concentrated on the surface of the evaporator coils. The modules containing the ballasts (read more)
Browse UV Light Systems Datasheets for Sanuvox Technologies, Inc. -
parabolic aluminum reflector for maximum UV intensity. In addition, the Bio-Wall™ is installed parallel to airflow to achieve the maximum amount of contact time with the airborne contaminants. This patented system can be utilized for even the largest air handler units and is (read more)
Browse Medical Equipment and Supplies Datasheets for Sanuvox Technologies, Inc. -
Bio-WallTM The Bio-Wall™ UV air purification system is installed in the return or supply ducting of an HVAC system. The system is comprised of 5 lamps, each secured in their own parabolic aluminum reflector for (read more)
Browse Air Purifiers Datasheets for Sanuvox Technologies, Inc. -
, the IL Coil Clean uses high-intensity UV lamps combined with aluminum parabolic reflectors, so that all the UV energy produced is concentrated on the surface of the evaporator coils. The modules containing the ballasts are equipped with LED indicating the status of the lamps to facilitate (read more)
Browse UV Disinfection and UVGI Sanitization Systems Datasheets for Sanuvox Technologies, Inc.
More Information Top
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Development of Auditory Warning Signals for Mitigating Heavy Truck Rear-End Crashes
Figure 1 Tube Type Directional Transducer Concept Figure 2 Reflector Type Directional Transducer Concept The transducers used for both the tube design and the parabolic reflector design were similar to a typical “ballpark public address horn.” .
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Journal of Spacecraft and Rockets > High-Performance Parabolic Antenna Reflectors
Figure 8 illustrates a parabolic reflector design that in- corporates a peripherally located stiffening ring feature which provides a mechanism for explicit postfabrication adjustment of the reflector contour to improve the manufactured rms performance.
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Analysis of quasi-parabolic reflectors with a microwave lamp installed at the input of a prismatic light guide
Examples of calculated profiles of a quasi- parabolic reflector designed for a light guide having the diameter Dlg = 400 mm (variants 4 (a) and 6 (b) in the table).
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Analysis of a dual-reflect array antenna
For the validation of the analysis technique, the main- reflectarray has been designed to emulate the behaviour of a parabolic reflector designed in [19], defined by a diameter Dm ¼ 1.5 m, a clearance Cm ¼ 0.2 m and a …
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A Novel Ultra Wideband horn feed for parabolic reflector antennas
This new modified horn antenna is then used as a feed for a prime-fed parabolic reflector design .
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Framework of belief condensation filtering and deterministic discrete filters
This new modified horn antenna is then used as a feed for a prime-fed parabolic reflector design .
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2012 IEEE International Conference on Ultra-Wideband [front matter]
This new modified horn antenna is then used as a feed for a prime-feed parabolic reflector design .
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High Concentrator Photovoltaics
Parabolic reflectors designed for high concentrations in particular can be costly to build on such a large scale.
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Basic Principles of Fresnel Antenna Arrays
This concept is also applicable to parabolic reflector designs , where it is known that reflector cost per unit area decreases with reflector size.
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Antennas: From Theory to Practice
5.2.3.3 Offset Parabolic Reflectors To eliminate some of the deficiencies of symmetrical configurations, the offset parabolic reflector design has been developed for single- and dual-reflector systems, which reduces aperture blockage and offers the advantage of allowing the use …
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