NVFCASTEL-M - Novoflex
Stands Hardware Tools > Accessory
EAN:4030432417028
₦ 904,702.80
VAT Included
VAT Included
Adcom - Novoflex
New
Available in 15 days
Novoflex CASTEL-M focusing rail for magnification ratios up to 5:1
Depth of field is one of the most challenging aspects of macro photography.
As magnification increases, depth of field decreases, especially above 1:1. Shrinking depth of field at reproduction ratios greater than 1:1 requires highly accurate and precise camera advance to create identical distances between different shooting positions in a typical stacking sequence.
Precise overlaying of each individual image is necessary for the stacking software to create a successful composite image.
CASTEL-M can be combined with a wide range of specialized lenses, such as the Canon MP-E 65mm f/2.8,-5x Macro Photo and the LAOWA 25mm f/2.8 2.5-5x Ultra Macro, frequently used by macro photographers who use focus stacking in their workflow.
It has been specifically designed to help macro photographers achieve consistent and predictable results when engaged in this repetitive task and allows for the optimization of several different magnification factors.
The heart of the CASTEL-M is a spindle that advances the sliding camera support with extreme precision for each shot.
The spindle also features handy indexing steps for zoom factors of 2:1, 3:1, 4:1 and 4:2, 3:1, 4:1 and 5:1, which are selected by a lever located inside the barrel of the focus wheel.
Releasing the locking lever on the slide block disengages it from the chuck and allows the base to slide freely to be positioned freehand at the initial point of focus.
Once the base has been positioned, the base can again be anchored firmly to the spindle using the same lever.
Advancement through the sequence of shooting positions is accomplished with a single clockwise click of the focus wheel, which advances the camera in precise incremental stops to the focus point of the next image.
No need to worry about calculating step size and precise overlay of individual images, the guide does it automatically. The shots of the individual stop points of the advance have been calculated in order to optimi
Depth of field is one of the most challenging aspects of macro photography.
As magnification increases, depth of field decreases, especially above 1:1. Shrinking depth of field at reproduction ratios greater than 1:1 requires highly accurate and precise camera advance to create identical distances between different shooting positions in a typical stacking sequence.
Precise overlaying of each individual image is necessary for the stacking software to create a successful composite image.
CASTEL-M can be combined with a wide range of specialized lenses, such as the Canon MP-E 65mm f/2.8,-5x Macro Photo and the LAOWA 25mm f/2.8 2.5-5x Ultra Macro, frequently used by macro photographers who use focus stacking in their workflow.
It has been specifically designed to help macro photographers achieve consistent and predictable results when engaged in this repetitive task and allows for the optimization of several different magnification factors.
The heart of the CASTEL-M is a spindle that advances the sliding camera support with extreme precision for each shot.
The spindle also features handy indexing steps for zoom factors of 2:1, 3:1, 4:1 and 4:2, 3:1, 4:1 and 5:1, which are selected by a lever located inside the barrel of the focus wheel.
Releasing the locking lever on the slide block disengages it from the chuck and allows the base to slide freely to be positioned freehand at the initial point of focus.
Once the base has been positioned, the base can again be anchored firmly to the spindle using the same lever.
Advancement through the sequence of shooting positions is accomplished with a single clockwise click of the focus wheel, which advances the camera in precise incremental stops to the focus point of the next image.
No need to worry about calculating step size and precise overlay of individual images, the guide does it automatically. The shots of the individual stop points of the advance have been calculated in order to optimi










