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Victor® Snake-A-Way® granular repellent is an effective solution for keeping away both venomous and non-venomous snakes. Its long-lasting formula temporarily disrupts the sensory perception of snakes without harming them, with a 91% effectiveness against rattlesnakes and garter snakes. It is EPA-registered and applied around the perimeter of areas to be protected, covering from 819 m² to 1.4 hectares. It contains naphthalene (7%) and sulfur (28%) and lasts 2 to 3 months after each application. Ideal for protecting homes, sheds, gardens, and more.
Victor® Snake-A-Way® granular repellent has been tested by an external laboratory to be an effective repellent against both venomous and non-venomous snakes. It can be used to protect cabins, homes, sheds, trailers, garages, and flower beds from snake intrusion.
The Jacobson's organ is a special olfactory organ used by snakes that helps them detect environmental stimuli. In fact, the Jacobson's organ is a key survival tool for these reptiles. Victor® Snake-A-Way® snake repellent granules affect the Jacobson's organ, and snakes flee from the now-protected area in search of air free of the repellent.
Victor® Snake-A-Way® contains a unique formula that is third-party tested and effective against even the toughest snakes. This long-lasting snake repellent can be used to repel rattlesnakes and garter snakes from areas around houses, cabins, trailers, garages, flowerbeds, and more.
Snake-A-Way®’s unique formula works to temporarily disrupt the snake’s Jacobson’s Organ (auxiliary olfactory sense organ), on which a snake relies for its survival. This successfully causes a snake to become disoriented, forcing it to retreat in search of fresh air.
Wearing gloves, spread Snake-A-Way® granules along the perimeter of the area you want to protect to create a long-lasting snake barrier. Once applied, the formula starts working, and lasts until the scent dissipates. To repel rattle snakes, sprinkle in bands 8-12 inches wide, and to repel garter snakes, sprinkle Snake-A-Way® in bands 4-5 inches wide.
Snake-A-Way® is EPA registered which means, when used as directed, it will not have adverse effects on humans or the environment.
| Victor® Snake-A-Way® Snake Repellent Granular | |
|---|---|
| Model # | CVP363G |
| Available Sizes | 1.75 lb, 4 lb, 10 lb, 28 lb |
| Presentation | Granules |
| For Use Against | Venomous and Non-Venomous snakes |
| Bottle Type | Bottle with shaker top |
| Bottle Dimensions | Height: 8" / Width: 4" |
| Features |
|
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$ 53.99 USD
Made to Military Standard R236-GB108. Stylish cargo pants made of super soft, yet durable washed...
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$ 35.00 USD
Viruses, which are parasites that are often hundreds of times smaller than bacteria, exist in...
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Viruses are everywhere, and as the COVID-19 pandemic has shown, cannot be ignored. From their...
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For all our hubris, humans can be felled rapidly by an invisible enemy: viruses. All...
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$ 100.00 USD
This product is sold by BIOWEB Global in LATAM, but if you are in United States or Canada please contact the vendor Northwest Marine Technology directly.
The VI Alpha Tags are a small, fluorescent tags with an alphanumeric code designed to identify individual animals. VI Alpha Tags are implanted internally but remain externally visible for easy recovery. The new VI Alpha Tags were introduced in 2010.
VI Alpha Tags are available in two sizes: standard (1.2 mm x 2.7 mm), shown in yellow, and large (2 mm x 5 mm), shown in orange. The larger tags are easier to read than the standard tags, and are suitable for larger animals.
Large tags have black lettering on a fluorescent orange background, while standard tags are available with black lettering on a fluorescent orange, red, yellow or green background. Each color has 2,500 different codes. The codes available are the letter-number-number combinations from A00 through Z99 (excluding Q00-Q99).
Tag readability and detection can be enhanced by fluorescing the tags with the VI Light.
VI Alpha Tags are easy to load. Slide the tag into the needle, and snap it off.
Each 100 tags ordered must be the same color, and will have consecutive coding.
Please contact us for advice about applications to particular species.
Etiqueta Tipo Implante Visible (VI Alpha) x 100 u, Implante Visível Tipo Etiqueta
Etiqueta, etiquetas, marca, marcas, tag, fish, fishes, pez, peces, anfibios, reptiles, frogs
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$ 1,315.90 USD
This product is sold by BIOWEB Global in LATAM, but if you are in United States or Canada please contact the vendor Northwest Marine Technology directly.
NOTE: If you need less colors check the smallest kit of 6 ml. Also is available the trial pack for starter projects.
Visible Implant Elastomer (VIE) is a two-part silicone based material that is mixed immediately before use. VIE tags are injected as a liquid that soon cures into a pliable, biocompatible solid. The tags are implanted beneath transparent or translucent tissue and remain externally visible. In many amphibians, VIE tags are even visible through darkly pigmented skin. VIE tags are widely used for marking an ever-broadening range of finfish, crustaceans, reptiles, amphibians and small mammals. Check some papers below. Extensive information about using VIE is available in the Visible Implant Elastomer Tag Project Manual (English PDF 294KB; Spanish PDF 217KB).
VIE is available in six fluorescent and four non-fluorescent colors. The fluorescent colors are highly visible under ambient light and provide the option of greatly enhanced tag detection when fluoresced with the VI Light.
Proper color selection is a vital part of good experimental design. Your choice depends on how much contrast you need with the background pigmentation, how many different colors you require, and the type of light you will use to fluoresce the tags.
VIE is a medical-grade, two-part silicone based material that is mixed immediately before use and then injected as a liquid that cures into a pliable, biocompatible solid. Immediately after mixing, the user will have between 45 to 60 minutes (in warm environments) and 2 hours (in cold environments) of working time during which the tags can be injected.
The time that the prepared elastomer can be used (the "working time") depends on the temperature of the place. At normal room temperature (20°C), it usually lasts 45-60 minutes before it is too thick to push through the syringe. It lasts longer when it's colder and less when it's hotter. Working time can be greatly extended by keeping the unused prepared elastomer on ice as much as possible.
For unmixed elastomer, you can store it for one year from the date of purchase in a cupboard, away from sunlight or heat. The unmixed elastomer should never be stored in the freezer.
While VIE is primarily used for batch identification, you can generate a VIE coding scheme by combining multiple tags, tag locations, and colors. For example, researchers tracking seahorses used this method to distinguish more than 500 individual seahorses at one time.
Six fluorescent colors (red, yellow, blue, orange, green, and pink) and four non-fluorescent colors (black, brown, white, and purple) constitute the only intrinsic VIE codes. If you use just one tag per fish, the number of unique codes is simply the product of the numbers of colors used and the number of tag locations.
However, if you inject two or more tags in each animal, in combination with several different locations and colors, you can generate an extensive VIE coding scheme. In any tagging program, it is important that all of the study animals have the same number of tags. That way, there can be no confusion between animals which lost tags and those which began with fewer tags.

Calculate the number of unique codes you could create using the formula:
[L!/(L-N)!N!] CN
Where: C= Number of colors used, L= Number of body locations and N = Number of tags per animal.
For example, three body locations used with four colors (C = 4, L = 3, N = 3) would provide: (3!/0!3!) 43 = 64 unique codes. Recall that 0!=1.
You can download two softwares to do this automatic calculation. NMT Calculator or Salamarker. Both based in windows. Not available for iOS.
- Davy, Christina M.;, Suzanne M. Coombes; Amelia K. Whitear & Alistair S. MacKenzie. 2010. Visible Implant Elastomer: A simple, non-harmful method for marking hatchlings turtles. Herpetological Review. 41(4), 442-445.
- Waudby, Helen P.; & Sophie Petit. 2011. Comments on the efficacy and use of Visible Implant Elastomer (VIE) for marking lizards. The South Australian Naturalist 85(1): 7–13.
- Daniel, Jeremy A.; Kevin A. Baker & Kevin R. Bonine. 2006. Retention Rates of Surface and Implantable Marking Methods in the Mediterranean House Gecko (Hemidactylus turcicus), with Notes on Capture Methods and Rates of Skin Shedding. Herpetological Review, 37(3), 319–321.
- Penney, Kistren M.; Kristie D. Gianopulos & Henry R. Mushinsky. 2001. The Visible Implant Elastomer marking technique in use for small reptiles. Herpetological Review, 32(4), 236-241.
- Hutchens, Tan J.; Christopher S. Deperno; Charlotte E. Matthews; Kenneth H. Pollock & David K. Woodward. 2008. Visible Implant Fluorescent Elastomer: A reliable marking alternative for snakes. Herpetological Review, 39(3), 301–303.
- Kondo, Junko & Sharon J. Downes. Using Visible Implant Elastomer to Individually Mark Geckos. School of Botany and Zoology, Australian National University.
Etiqueta Tipo Implante Visible Elastómer (VIE), Tipo de etiqueta elastômero de implante visível
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$ 284.25 USD
This product is sold by BIOWEB Global in LATAM, but if you are in United States or Canada please contact the vendor Northwest Marine Technology directly.
NOTE: If you need more colors check the biggest kits of 24 and 60 ml. Also is available the trial pack for starter projects.
Visible Implant Elastomer (VIE) is a two-part silicone based material that is mixed immediately before use. VIE tags are injected as a liquid that soon cures into a pliable, biocompatible solid. The tags are implanted beneath transparent or translucent tissue and remain externally visible. In many amphibians, VIE tags are even visible through darkly pigmented skin. VIE tags are widely used for marking an ever-broadening range of finfish, crustaceans, reptiles, amphibians and small mammals. Check some papers below. Extensive information about using VIE is available in the Visible Implant Elastomer Tag Project Manual (English PDF 294KB; Spanish PDF 217KB).
VIE is available in six fluorescent and four non-fluorescent colors. The fluorescent colors are highly visible under ambient light and provide the option of greatly enhanced tag detection when fluoresced with the VI Light.
Proper color selection is a vital part of good experimental design. Your choice depends on how much contrast you need with the background pigmentation, how many different colors you require, and the type of light you will use to fluoresce the tags.
VIE is a medical-grade, two-part silicone based material that is mixed immediately before use and then injected as a liquid that cures into a pliable, biocompatible solid. Immediately after mixing, the user will have between 45 to 60 minutes (in warm environments) and 2 hours (in cold environments) of working time during which the tags can be injected.
The time that the prepared elastomer can be used (the "working time") depends on the temperature of the place. At normal room temperature (20°C), it usually lasts 45-60 minutes before it is too thick to push through the syringe. It lasts longer when it's colder and less when it's hotter. Working time can be greatly extended by keeping the unused prepared elastomer on ice as much as possible.
For unmixed elastomer, you can store it for one year from the date of purchase in a cupboard, away from sunlight or heat. The unmixed elastomer should never be stored in the freezer.
While VIE is primarily used for batch identification, you can generate a VIE coding scheme by combining multiple tags, tag locations, and colors. For example, researchers tracking seahorses used this method to distinguish more than 500 individual seahorses at one time.
Six fluorescent colors (red, yellow, blue, orange, green, and pink) and four non-fluorescent colors (black, brown, white, and purple) constitute the only intrinsic VIE codes. If you use just one tag per fish, the number of unique codes is simply the product of the numbers of colors used and the number of tag locations.
However, if you inject two or more tags in each animal, in combination with several different locations and colors, you can generate an extensive VIE coding scheme. In any tagging program, it is important that all of the study animals have the same number of tags. That way, there can be no confusion between animals which lost tags and those which began with fewer tags.

Calculate the number of unique codes you could create using the formula:
[L!/(L-N)!N!] CN
Where: C= Number of colors used, L= Number of body locations and N = Number of tags per animal.
For example, three body locations used with four colors (C = 4, L = 3, N = 3) would provide: (3!/0!3!) 43 = 64 unique codes. Recall that 0!=1.
You can download two softwares to do this automatic calculation. NMT Calculator or Salamarker. Both based in windows. Not available for iOS.
- Davy, Christina M.;, Suzanne M. Coombes; Amelia K. Whitear & Alistair S. MacKenzie. 2010. Visible Implant Elastomer: A simple, non-harmful method for marking hatchlings turtles. Herpetological Review. 41(4), 442-445.
- Waudby, Helen P.; & Sophie Petit. 2011. Comments on the efficacy and use of Visible Implant Elastomer (VIE) for marking lizards. The South Australian Naturalist 85(1): 7–13.
- Daniel, Jeremy A.; Kevin A. Baker & Kevin R. Bonine. 2006. Retention Rates of Surface and Implantable Marking Methods in the Mediterranean House Gecko (Hemidactylus turcicus), with Notes on Capture Methods and Rates of Skin Shedding. Herpetological Review, 37(3), 319–321.
- Penney, Kistren M.; Kristie D. Gianopulos & Henry R. Mushinsky. 2001. The Visible Implant Elastomer marking technique in use for small reptiles. Herpetological Review, 32(4), 236-241.
- Hutchens, Tan J.; Christopher S. Deperno; Charlotte E. Matthews; Kenneth H. Pollock & David K. Woodward. 2008. Visible Implant Fluorescent Elastomer: A reliable marking alternative for snakes. Herpetological Review, 39(3), 301–303.
- Kondo, Junko & Sharon J. Downes. Using Visible Implant Elastomer to Individually Mark Geckos. School of Botany and Zoology, Australian National University.
Etiqueta Tipo Implante Visible Elastómer (VIE), Tipo de etiqueta elastômero de implante visível
Ver todos os detalhes do produto »
$ 52.75 USD
This product is sold by BIOWEB Global in LATAM, but if you are in United States or Canada please contact the vendor Northwest Marine Technology directly.
Visible Implant Elastomer (VIE) is a two-part silicone based material that is mixed immediately before use. VIE tags are injected as a liquid that soon cures into a pliable, biocompatible solid. The tags are implanted beneath transparent or translucent tissue and remain externally visible. In many amphibians, VIE tags are even visible through darkly pigmented skin. VIE tags are widely used for marking an ever-broadening range of finfish, crustaceans, reptiles, amphibians and small mammals. Check some papers below. Extensive information about using VIE is available in the Visible Implant Elastomer Tag Project Manual (English PDF 294KB; Spanish PDF 217KB).
VIE is available in six fluorescent and four non-fluorescent colors. The fluorescent colors are highly visible under ambient light and provide the option of greatly enhanced tag detection when fluoresced with the VI Light.
Proper color selection is a vital part of good experimental design. Your choice depends on how much contrast you need with the background pigmentation, how many different colors you require, and the type of light you will use to fluoresce the tags.
VIE is a medical-grade, two-part silicone based material that is mixed immediately before use and then injected as a liquid that cures into a pliable, biocompatible solid. Immediately after mixing, the user will have between 45 to 60 minutes (in warm environments) and 2 hours (in cold environments) of working time during which the tags can be injected.
The time that the prepared elastomer can be used (the "working time") depends on the temperature of the place. At normal room temperature (20°C), it usually lasts 45-60 minutes before it is too thick to push through the syringe. It lasts longer when it's colder and less when it's hotter. Working time can be greatly extended by keeping the unused prepared elastomer on ice as much as possible.
For unmixed elastomer, you can store it for one year from the date of purchase in a cupboard, away from sunlight or heat. The unmixed elastomer should never be stored in the freezer.
While VIE is primarily used for batch identification, you can generate a VIE coding scheme by combining multiple tags, tag locations, and colors. For example, researchers tracking seahorses used this method to distinguish more than 500 individual seahorses at one time.
Six fluorescent colors (red, yellow, blue, orange, green, and pink) and four non-fluorescent colors (black, brown, white, and purple) constitute the only intrinsic VIE codes. If you use just one tag per fish, the number of unique codes is simply the product of the numbers of colors used and the number of tag locations.
However, if you inject two or more tags in each animal, in combination with several different locations and colors, you can generate an extensive VIE coding scheme. In any tagging program, it is important that all of the study animals have the same number of tags. That way, there can be no confusion between animals which lost tags and those which began with fewer tags.

Calculate the number of unique codes you could create using the formula:
[L!/(L-N)!N!] CN
Where: C= Number of colors used, L= Number of body locations and N = Number of tags per animal.
For example, three body locations used with four colors (C = 4, L = 3, N = 3) would provide: (3!/0!3!) 43 = 64 unique codes. Recall that 0!=1.
You can download two softwares to do this automatic calculation. NMT Calculator or Salamarker. Both based in windows. Not available for iOS.
- Davy, Christina M.;, Suzanne M. Coombes; Amelia K. Whitear & Alistair S. MacKenzie. 2010. Visible Implant Elastomer: A simple, non-harmful method for marking hatchlings turtles. Herpetological Review. 41(4), 442-445.
- Waudby, Helen P.; & Sophie Petit. 2011. Comments on the efficacy and use of Visible Implant Elastomer (VIE) for marking lizards. The South Australian Naturalist 85(1): 7–13.
- Daniel, Jeremy A.; Kevin A. Baker & Kevin R. Bonine. 2006. Retention Rates of Surface and Implantable Marking Methods in the Mediterranean House Gecko (Hemidactylus turcicus), with Notes on Capture Methods and Rates of Skin Shedding. Herpetological Review, 37(3), 319–321.
- Penney, Kistren M.; Kristie D. Gianopulos & Henry R. Mushinsky. 2001. The Visible Implant Elastomer marking technique in use for small reptiles. Herpetological Review, 32(4), 236-241.
- Hutchens, Tan J.; Christopher S. Deperno; Charlotte E. Matthews; Kenneth H. Pollock & David K. Woodward. 2008. Visible Implant Fluorescent Elastomer: A reliable marking alternative for snakes. Herpetological Review, 39(3), 301–303.
- Kondo, Junko & Sharon J. Downes. Using Visible Implant Elastomer to Individually Mark Geckos. School of Botany and Zoology, Australian National University.
Etiqueta Tipo Implante Visible Elastómer (VIE), Tipo de etiqueta elastômero de implante visível
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This compelling visual journey through our galaxy combines more than 350 photographs, illustrations, and graphics...
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$ 52.50 USD
Bird Free Optical Deterrents are an effective solution for keeping birds away by creating an...
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$ 52.00 USD
Parrots are one of the most popular - and threatened - bird groups in the...
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$ 29.95 USD – Vendido
Wasps have been around since before the dinosaurs and are one of the world’s largest...
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$ 29.95 USD
Wasps are far more diverse than the familiar yellowjackets and hornets that harass picnickers and...
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An innovative examination of human-lion encounters and the representations of these charismatic animals in the...
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$ 1,832.00 USD
The eDNA Water Sampler Transport Case is designed to provide maximum protection, organization, and mobility for your field sampling equipment. Made from durable polypropylene, this case is built to withstand the toughest conditions without compromising the safety of its contents. Its wheeled design, custom foam layout, and ATA 300 certification make it the ideal solution for transporting your eDNA Sampler backpack and essential accessories.
| Material | High-strength polypropylene |
|---|---|
| Mobility | Four polyurethane wheels with stainless steel bearings |
| Internal foam | Custom layout for eDNA Sampler components |
| Dimensions | Field equipment specific (consult manufacturer) |
| Protection | Airtight, impact-resistant, and dustproof |
| Closure | Double-throw latches with reinforced locking system |
| Certification | ATA 300 certified |
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$ 728.90 USD
Specifically designed for thin-layer stratification and near bottom studies. Collects water samples at any depth....
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$ 35.95 USD
Designed to save space, this 36” measuring board folds down to just 12” and also...
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$ 266.00 USD
Durable, high density polyethylene fish measuring board provides fast, accurate fish measurements. Its smooth surface...
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$ 459.75 USD
The Ricoh Pentax WG-90 is a compact camera designed for adventurous and demanding users who need a rugged and reliable device. With a body that’s resistant to water, shock, cold, and pressure, this camera delivers outstanding performance where others fail. Featuring a 16 MP BSI CMOS sensor, Full HD video recording, and an LED ring light for macro photography, it's perfect for capturing stunning images both on land and underwater.
| Specification | Ricoh WG-90 |
|---|---|
| Sensor resolution | 16 effective megapixels |
| Sensor | 1/2.3" CMOS |
| Optical zoom | 5x (28-140 mm eq.) |
| Digital zoom | Up to 7.2x |
| Aperture | f/3.5 - f/5.5 |
| ISO | 125 to 6400 |
| Shutter speed | 1/4000 to 1/4 sec |
| Video | Full HD 1920x1080 at 30 fps (H.264) |
| Screen | 2.7" non-touch LCD |
| Flash | Built-in, with modes and macro LED |
| Water resistance | Up to 14 m / 46 ft (IPX8) |
| Shock resistance | Drops up to 1.6 m |
| Crush resistance | Up to 100 kgf |
| Cold resistance | Down to -10 °C / 14 °F |
| Storage | SD/SDHC/SDXC + 68 MB internal |
| Battery | D-LI92 lithium-ion (approx. 300 shots) |
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$ 9.95 USD
The foldable fishing measuring tape is a lightweight fish ruler that can be folded up...
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$ 20.00 USD
Beaver Blaster Beaver Lure was 5 years in the making and is some of the...
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$ 25.00 USD
Roadrunner is made of fresh animal products and holds up well in all conditions with...
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$ 26.90 USD
Snake lure is designed to attract snakes into a trap. Simply place 4-6 drops on...
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A thoughtful exploration of how humans have endangered the Earth but can pull it back...
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Relating his experiences caring for endangered whales, a veterinarian and marine scientist shows we can...
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A cabled weather station with a versatile sensor suite that combines our rain collector, temperature and humidity sensors and anemometer into one package. You can customize your Vantage Pro2 by adding consoles or the special-purpose options.
A customizable, professional station with a wide range of options and sensors. All Vantage Pro2 stations include a console and a versatile integrated sensor suite that can be customized by adding consoles or special-purpose options. A 40-foot (12-meter) anemometer cable allows the anemometer to be mounted separately from the rain collector. Vantage Pro2 weather stations are used around the world by emergency professionals, farmers, researchers, and others to monitor temperature, wind and moisture conditions, irrigation requirements and potential flooding.
| Features | Cabled Vantage Pro2 | Wireless Vantage Pro2 | Wireless Vantage Pro2 with Fan | Cabled Vantage Pro2 Plus | Wireless Vantage Pro2 Plus | Wireless Vantage Pro2 Plus with Fan |
|---|---|---|---|---|---|---|
| Product # | 6152C | 6152 | 6153 | 6162C | 6162 | 6163 |
| Includes console and sensor suite with outside & inside temperature & humidity, barometer, wind, and rain sensors | ![]() |
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| Console power source | AC adapter with battery backup | Three C batteries or AC adapter | Three C batteries or AC adapter | AC adapter with battery backup | Three C batteries or AC adapter | Three C batteries or AC adapter |
| Data transfer | 100 ft (30 m) cable | Solar-powered transmitter up to 1,000 ft (300 m) | Solar-powered transmitter up to 1,000 ft (300 m) | 100 ft (30 m) cable | Solar-powered transmitter up to 1,000 ft (300 m) | Solar-powered transmitter up to 1,000 ft (300 m) |
| Standard Radiation Shield (passive) |
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(includes 24-hour fan) |
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(includes 24-hour fan) |
| Daytime Fan-Aspirated Radiation Shield (#7747) | Optional | Optional | (includes 24-hour fan) | Optional | Optional | (includes 24-hour fan) |
| 24-Hour Fan-Aspirated Radiation Shield |
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| Compatible with additional consoles to view data in more than one location |
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| Compatible with additional stations such as Leaf & Soil Moisture |
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Ver todos os detalhes do produto »
Request Quote – Vendido
A cabled or wireless weather station with a versatile sensor suite that combines our rain collector, temperature and humidity sensors and anemometer into one package. You can customize your Vantage Pro2 by adding consoles or the special-purpose options.
A customizable, professional station with a wide range of options and sensors. All Vantage Pro2 stations include a console and a versatile integrated sensor suite that can be customized by adding consoles or special-purpose options. A 40-foot (12-meter) anemometer cable allows the anemometer to be mounted separately from the rain collector. Vantage Pro2 weather stations are used around the world by emergency professionals, farmers, researchers, and others to monitor temperature, wind and moisture conditions, irrigation requirements and potential flooding.
| Features | Cabled Vantage Pro2 | Wireless Vantage Pro2 | Wireless Vantage Pro2 with Fan | Cabled Vantage Pro2 Plus | Wireless Vantage Pro2 Plus | Wireless Vantage Pro2 Plus with Fan |
|---|---|---|---|---|---|---|
| Product # | 6152C | 6152 | 6153 | 6162C | 6162 | 6163 |
| Includes console and sensor suite with outside & inside temperature & humidity, barometer, wind, and rain sensors | ![]() |
|
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|
|
|
| Console power source | AC adapter with battery backup | Three C batteries or AC adapter | Three C batteries or AC adapter | AC adapter with battery backup | Three C batteries or AC adapter | Three C batteries or AC adapter |
| Data transfer | 100 ft (30 m) cable | Solar-powered transmitter up to 1,000 ft (300 m) | Solar-powered transmitter up to 1,000 ft (300 m) | 100 ft (30 m) cable | Solar-powered transmitter up to 1,000 ft (300 m) | Solar-powered transmitter up to 1,000 ft (300 m) |
| UV & Solar Radiation Sensors included |
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| Standard Radiation Shield (passive) |
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(includes 24-hour fan) |
|
|
(includes 24-hour fan) |
| Daytime Fan-Aspirated Radiation Shield (#7747) | Optional | Optional | (includes 24-hour fan) | Optional | Optional | (includes 24-hour fan) |
| 24-Hour Fan-Aspirated Radiation Shield |
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| Compatible with additional consoles to view data in more than one location |
|
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|
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| Compatible with additional stations such as Leaf & Soil Moisture |
|
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Ver todos os detalhes do produto »
Request Quote – Vendido
A wireless weather station with a versatile sensor suite that combines our rain collector, temperature and humidity sensors and anemometer into one package. You can customize your Vantage Pro2 by adding consoles or the special-purpose options.
A customizable, professional station with a wide range of options and sensors. All Vantage Pro2 stations include a console and a versatile integrated sensor suite that can be customized by adding consoles or special-purpose options. A 40-foot (12-meter) anemometer cable allows the anemometer to be mounted separately from the rain collector. Vantage Pro2 weather stations are used around the world by emergency professionals, farmers, researchers, and others to monitor temperature, wind and moisture conditions, irrigation requirements and potential flooding.
| Features | Cabled Vantage Pro2 | Wireless Vantage Pro2 | Wireless Vantage Pro2 with Fan | Cabled Vantage Pro2 Plus | Wireless Vantage Pro2 Plus | Wireless Vantage Pro2 Plus with Fan |
|---|---|---|---|---|---|---|
| Product # | 6152C | 6152 | 6153 | 6162C | 6162 | 6163 |
| Includes console and sensor suite with outside & inside temperature & humidity, barometer, wind, and rain sensors | ![]() |
|
|
|
|
|
| Console power source | AC adapter with battery backup | Three C batteries or AC adapter | Three C batteries or AC adapter | AC adapter with battery backup | Three C batteries or AC adapter | Three C batteries or AC adapter |
| Data transfer | 100 ft (30 m) cable | Solar-powered transmitter up to 1,000 ft (300 m) | Solar-powered transmitter up to 1,000 ft (300 m) | 100 ft (30 m) cable | Solar-powered transmitter up to 1,000 ft (300 m) | Solar-powered transmitter up to 1,000 ft (300 m) |
| Standard Radiation Shield (passive) |
|
|
(includes 24-hour fan) |
|
|
(includes 24-hour fan) |
| Daytime Fan-Aspirated Radiation Shield (#7747) | Optional | Optional | (includes 24-hour fan) | Optional | Optional | (includes 24-hour fan) |
| 24-Hour Fan-Aspirated Radiation Shield |
|
|
||||
| Compatible with additional consoles to view data in more than one location |
|
|
|
|
||
| Compatible with additional stations such as Leaf & Soil Moisture |
|
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Ver todos os detalhes do produto »
$ 268.75 USD
Add USB or Serial-Port Data Logger to your Vantage Vue/Vantage Pro2 console or Weather Envoy,...
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$ 19.95 USD
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The 4F-MC-W cages were developed to provide a safe, ventilated, and visible environment for rearing and studying small insects. All variants use high-quality fine mesh and transparent panels to allow detailed observation without disturbing the insects.
The lightweight aluminum structure ensures durability and stability, while the white mesh provides efficient ventilation and excellent visibility on all sides except where transparent panels are present. They are suitable for laboratories, universities, agricultural research centers, and insect behavior studies.
| Variant | Dimensions (cm) | Net Weight | Main Material | Mesh Type | Mesh Panels | Opening | Transparent Panel | Recommended Use |
|---|---|---|---|---|---|---|---|---|
| FG-4F-MC-W-151515 | 15 × 15 × 15 | ~145 g | Lightweight aluminum | Fine mesh 150 × 150 (160 µm) | All sides except transparent panel | 1 x Front sleeve | 1 side | Detailed observation of small insects |
| FG-4F-MC-W-202020 | 20 × 20 × 20 | ~150 g | Lightweight aluminum | Fine mesh 150 × 150 (160 µm) | All sides except transparent panel | 1 x Front sleeve | 1 side | Laboratory, research, and rearing of small insects |
| FG-4F-MC-W-252525 | 25 × 25 × 25 | ~270 g | Lightweight aluminum | Fine mesh 150 × 150 (160 µm) | All sides except transparent panel | 1 x Front sleeve | 1 side | Behavior observation and entomological studies |
| FG-4F-MC-W-303030 | 32.5 × 32.5 × 32.5 | 270 g | Lightweight aluminum | Fine mesh 150 × 150 (160 µm) | Top, bottom, right, left | 1 x Front sleeve | 1 side | Laboratory and field |
| FG-4F-MC-W-303080 | 32.5 × 32.5 × 77 | 370 g | Aluminum and Nylon | Fine mesh 150 × 150 (160 µm) | Top, right, left | 1 x Front sleeve + 1 x Front zipper | Front and back | Small potted plants, laboratory |
| FG-4F-MC-W-404040 | 40 × 40 × 40 | ~350 g | Lightweight aluminum | Fine mesh 150 × 150 (160 µm) | All sides except transparent panel | Double front sleeve | 1 side | Mosquito, whitefly rearing, and small experiments |
| FG-4F-MC-W-505050 | 47.5 × 47.5 × 47.5 | 350 g | Lightweight aluminum | Fine mesh 150 × 150 (160 µm) | Top, bottom, right, left | 1 x Front sleeve | 1 side | Laboratory and field |
| FG-4F-MC-W-606060 | 60 × 60 × 60 | Varies by model | Lightweight aluminum | Fine mesh 150 × 150 (160 µm) | 5 panels + 1 transparent side | Double front sleeve | 1 side | Laboratory, insectaries, potted plants |
| FG-4F-MC-W-606090 | 60 × 60 × 90 | Varies by model | Lightweight aluminum | Fine mesh 150 × 150 (160 µm) | 5 panels + 1 transparent side | Double front sleeve | 1 side | Small insect rearing and behavior studies |
| FG-4F-MC-W-6060120 | 60 × 60 × 120 | Varies by model | Lightweight aluminum | Fine mesh 150 × 150 (160 µm) | 5 panels + 1 transparent side | Double front sleeve | 1 side | Detailed observation and rearing of fragile insects |
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These professional insect-rearing cages are lightweight and durable units, ideal for maintaining small colonies of tiny insects. They provide excellent ventilation, safe access through a front sleeve opening, and a sturdy structure for laboratory, greenhouse, or field use. Fine mesh panels allow observation without risk of escape and facilitate experimental control. Compatible with potted plants or elevated systems, they provide a reliable environment for rearing, studying, or transporting small arthropods.
| Variant | Dimensions | Front Opening | Mesh Panels | Mesh Type | Frame Material | Recommended Use |
|---|---|---|---|---|---|---|
| Small | 17.5 × 17.5 × 17.5 cm | Front Sleeve 12 cm | All sides except floor | Fine mesh 100–250 µm | Aluminum | Laboratory + Greenhouse |
| Medium | 20 × 20 × 20 cm | Front Sleeve 14 cm | All sides | Fine mesh 150–200 µm | Aluminum | Laboratory / Bioassays |
| Large | 20 × 20 × 60 cm | Front Sleeve 16 cm | All sides | Fine mesh 150–200 µm | Aluminum | Tall Plants / Laboratory |
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These cages are designed for researchers working with extremely small insects such as whiteflies, thrips, or early-stage mosquito larvae. They use ultra-fine nylon mesh with openings ranging from 150 to 300 microns, ensuring precise containment without compromising ventilation, even under high-humidity conditions.
Their fully mesh design allows uniform airflow from all angles, preventing moisture buildup and heat spots. The white mesh color reflects light, helping regulate internal temperature in high-light environments such as laboratories and greenhouses.
These cages feature a lightweight yet durable aluminum frame, making them easy to handle, transport, and clean. They include a front sleeve opening that provides safe and controlled access for feeding, transfer, and collection without risk of escape.
Unlike models with a transparent panel, these cages are entirely composed of fine white mesh, prioritizing total ventilation and uniform containment. They are ideal for bioassays, behavioral studies, and controlled rearing of small insects.
| Cage Type | Nylon Mesh Cage |
| Mesh Material | Nylon |
| Mesh Type | Fine Mesh |
| Mesh Opening | 150–300 Microns |
| Mesh Color | White |
| Panels | 100% Mesh Without Transparent Panel |
| Frame | Lightweight Aluminum |
| Front Opening | Access Sleeve |
| Ventilation | Full Airflow |
| Recommended Use | Laboratory / Greenhouse / Field |
| Variant | Dimensions | Front Opening | Panels | Mesh Type | Frame | Recommended Use |
|---|---|---|---|---|---|---|
| 4F-MC-W-151515 | 15 × 15 × 15 cm | Front Sleeve | 6 Mesh Sides | Fine Mesh 150–300 µm | Aluminum | Laboratory / Field |
| 4F-MC-W-202020 | 20 × 20 × 20 cm | Front Sleeve | 6 Mesh Sides | Fine Mesh 150–300 µm | Aluminum | Laboratory / Field |
| 4F-MC-W-252525 | 25 × 25 × 25 cm | Front Sleeve | 6 Mesh Sides | Fine Mesh 150–300 µm | Aluminum | Laboratory / Field |
| 4F-MC-W-303030 | 30 × 30 × 30 cm | Front Sleeve | 6 Mesh Sides | Fine Mesh 150–300 µm | Aluminum | Laboratory / Field |
| 4F-MC-W-404040 | 40 × 40 × 40 cm | Front Sleeve | 6 Mesh Sides | Fine Mesh 150–300 µm | Aluminum | Laboratory / Field |
| 4F-MC-W-505050 | 50 × 50 × 50 cm | Front Sleeve | 6 Mesh Sides | Fine Mesh 150–300 µm | Aluminum | Laboratory / Field |
| 4F-MC-W-606060 | 60 × 60 × 60 cm | Front Sleeve | 6 Mesh Sides | Fine Mesh 150–300 µm | Aluminum | Laboratory / Field |
| 4F-MC-W-606090 | 60 × 60 × 90 cm | Front Sleeve | 6 Mesh Sides | Fine Mesh 150–300 µm | Aluminum | Laboratory / Field |
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The 4E-M-W cage series is fully constructed with Eco-type nylon mesh (600–700 microns), providing superior ventilation and efficient insect containment. Its fully mesh design allows for uniform airflow conditions, making it ideal for controlled experiments and colony rearing.
The lightweight aluminum frame ensures stability and easy assembly, while the white mesh improves visibility for continuous insect monitoring without the need for transparent panels.
It features a front sleeve opening, allowing safe access for handling, feeding, and maintenance. Some versions may include a zipper closure for enhanced control.
| Variant | Dimensions | Front Opening | Panels | Mesh Type | Frame Material | Recommended Use |
|---|---|---|---|---|---|---|
| 4E-M-W-151515 | 15 × 15 × 15 cm | Front Sleeve | 6 mesh panels | Eco Mesh 600–700 µm | Aluminum | Laboratory / Field |
| 4E-M-W-202020 | 20 × 20 × 20 cm | Front Sleeve | 6 mesh panels | Eco Mesh 600–700 µm | Aluminum | Laboratory / Field |
| 4E-M-W-303030 | 30 × 30 × 30 cm | Front Sleeve | 6 mesh panels | Eco Mesh 600–700 µm | Aluminum | Laboratory / Field |
| 4E-M-W-404040 | 40 × 40 × 40 cm | Front Sleeve | 6 mesh panels | Eco Mesh 600–700 µm | Aluminum | Laboratory / Field |
| 4E-M-W-505050 | 50 × 50 × 50 cm | Front Sleeve | 6 mesh panels | Eco Mesh 600–700 µm | Aluminum | Laboratory / Field |
| 4E-M-W-606060 | 60 × 60 × 60 cm | Front Sleeve | 6 mesh panels | Eco Mesh 600–700 µm | Aluminum | Laboratory / Field |
| 4E-M-W-303080 | 30 × 30 × 80 cm | Front Sleeve | 6 mesh panels | Eco Mesh 600–700 µm | Aluminum | Laboratory / Field |
| 4E-M-W-606090 | 60 × 60 × 90 cm | Front Sleeve | 6 mesh panels | Eco Mesh 600–700 µm | Aluminum | Laboratory / Field |
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The FG-4E-MC-W series cages combine economical nylon mesh (600–700 microns) with a transparent side panel, allowing direct observation of insect activity without disturbing their internal environment. Their lightweight and compact structure makes them easy to use in laboratories, insectaries, or in the field, ensuring practicality and efficiency during studies.
The fiberglass frame provides structural stability, while the white mesh ensures balanced airflow and good visibility. This configuration is ideal for frequent visual monitoring and safe handling of small insects or arthropods.
It features a front sleeve opening with zipper, enabling safe and controlled access, and its durable structure allows cleaning and maintenance without creating shelter risks for insects.
| Variant | Dimensions | Front Opening | Mesh Panels | Mesh Type | Frame Material | Recommended Use |
|---|---|---|---|---|---|---|
| FG-4E-MC-W-151515 | 15 × 15 × 15 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-202020 | 20 × 20 × 20 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-252525 | 25 × 25 × 25 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-303030 | 30 × 30 × 30 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-353535 | 35 × 35 × 35 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-404040 | 40 × 40 × 40 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-505050 | 50 × 50 × 50 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-606060 | 60 × 60 × 60 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-202060 | 20 × 20 × 60 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-303080 | 30 × 30 × 80 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-404090 | 40 × 40 × 90 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-606090 | 60 × 60 × 90 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
| FG-4E-MC-W-6060120 | 60 × 60 × 120 cm | Front Sleeve with Zipper | 5 mesh + 1 transparent | Economical Mesh 600–700 µm | Fiberglass | Laboratory / Field |
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Use this sampler in slightly corrosive water, saltwater, or water with large amounts of suspended or sticky colloidal solids. Its wide mouth allows you to collect a true water sample without contamination from other water levels. During descent, the open mouth does not restrict water flow, making it particularly suitable for collecting plankton and floating sediments. You can order this versatile bottle in either transparent acrylic or opaque PVC. The PVC is more durable and less costly, while the acrylic allows you to view the sample contents immediately.
This sampler is not suitable for trace metal analysis (e.g., mercury or phosphorus) due to potential contamination from the materials in its structure. For precision chemical analysis, we recommend our Beta Bottle water samplers.
NOTE: Volume may vary slightly. We recommend that you confirm the exact volume of your bottle prior to each use.
| Feature | Detail |
|---|---|
| Available Volumes | 2.2 L, 3.2 L, 4.2 L, 6.2 L, 8.2 L |
| Available Materials | Opaque PVC or Transparent Acrylic |
| Orientation | Vertical |
| Seal Material | Polyurethane Resin |
| Trip Head Material | 316 Stainless Steel |
| Suitable for Trace Metals | No |
Sampler Only:
Complete Kit:
If you purchase the "Sampler Only" option, you will need:
Vertical Water Sampler, Wildco, Alpha bottle, vertical Niskin bottle, plankton sampler, sediment sampler, water sampling, limnological sampling bottle
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