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Comparison Nikon Speedlight SB-5000 vs Nikon Speedlight SB-900

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Nikon Speedlight SB-5000
Nikon Speedlight SB-900
Nikon Speedlight SB-5000Nikon Speedlight SB-900
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Main
Radio synchronizer. Full TTL support. Fast reload speed. Work as a follower and leader. Built-in light trap. Powerful cooling system. Diffusion cap and two coloured nozzles included.
Typeregular (classic)regular (classic)
Camera compatibility
Nikon
Nikon
Specs
Guide number
35 /ISO 100/
34 /ISO 100/
Reload time
2.6 с /1.8 sec with Ni-MH batteries (2600 mAh)/
4.5 с /2.3 sec with Ni-MH batteries (2600 mAh)/
Number of impulses
150 /190 flashes with Ni-MH batteries (2600 mAh)/
110 /230 pulses with Lithium (1.5V)/
Pulse duration
1/980 c /at power 1/256 to 1/30820 s/
1/880 c
TTLTTL, i-TTL, D-TTLTTL, i-TTL, D-TTL
Power management++
Beam angle24 – 200 mm17 – 200 mm
Rotary head
Head anglevertical - 97 degrees, horizontal - 180 degreesvertical - 90 degrees, horizontal - 180 degrees
Features
Features
autofocus illumination
camera control
automatic zoom
manual zoom
master mode
slave mode
autofocus illumination
camera control
automatic zoom
manual zoom
master mode
slave mode
Wireless control++
Power supply
Power source4xAA4xAA
General
Screen
Screen backlight
Dimensions73x137x104 mm78x146x119 mm
Weight420 g415 g
Added to E-Catalogmay 2016july 2008

Guide number

The guide number is the main characteristic that describes the power of the light pulse of the flash. It is described as the maximum distance (in metres) at which, at ISO 100 and f/1 lens speed (aperture 1), a flash is able to illuminate an "average" subject sufficiently for a normal exposure; in other words, at what distance from the flash it will be possible to normally shoot the scene at the specified ISO and aperture.

There are formulas by which, knowing the guide number, you can derive the practical shooting distance for each specific value of sensitivity and aperture. The simplest formula used to calculate the distance at ISO 100 is: S=N/f, where S is the distance, N is the guide number, f is the aperture value. For example, for a guide number of 56 and an f/2.8 lens, this distance would be 56/2.8 = 20 m. Increasing or decreasing sensitivity by a factor of 2 would increase or decrease the specified distance by approximately 1.4 times, respectively. If you need to calculate the distance as accurately as possible, you should refer to more detailed formulas that can be found in specialized sources.

Separately, it is worth noting that the leading numbers of flashes, usually, are indicated by manufacturers for specific focal lengths of lenses. This is due to the fact that the shorter the focal length and, accordingly, the wider the viewing angle, the more light is needed to illuminate the scene being shot and the more powerful the flash pulse should b...e (at the same distance). Therefore, when choosing by the guide number, it makes sense to pay attention to the focal length indicated by the manufacturer and select a model with a power reserve — especially since guide numbers are often prescribed for rather “long-range” lenses (with a focal length of about 80-100 mm in equiv. 35 mm).

Reload time

The time it takes the flash or generator (for studio flashes) to prepare for the next flash. The smaller it is, the better. This parameter is especially important for continuous shooting, when the interval between frames is small: if you often shoot in this mode, you should look for a flash with the shortest possible recycle time. Also note that the characteristics usually indicate the shortest recharge time; in some operating modes, it may be significantly more than stated.

Number of impulses

The number of flashes that the flash can fire without recharging the battery or changing batteries (see "Power"). This parameter is very approximate, because. in fact, it strongly depends on a number of factors: pulse duration, use of the display and its backlight (if any, see below), autofocus backlight (see "Features"), etc., and with replaceable batteries — even and on their quality. Often, manufacturers indicate in the characteristics the “perfect”, the maximum possible number of pulses — i.e. with their minimum duration, non-use of additional functions and even the optimal temperature regime for the battery. In reality, this figure may be lower. Nevertheless, the data indicated in the characteristics makes it quite possible to evaluate the battery life of the flash and even compare different models with each other.

Pulse duration

The duration of the pulse of light provided by the flash. This indicator can range from thousandths to hundred thousandths of a second; it is usually expressed as a fractional number with a unit in the numerator, such as 1/880 s. The human eye does not notice the difference, but in some shooting modes it can become critical. For example, to capture fast-moving scenes (such as splashing water, the flight of an insect, or the movement of machine parts) you need to choose a flash with the shortest flash duration possible — otherwise the image may be blurry.

The longest pulse duration in modern photoflashes is about 1/800 s; the minimum value can reach 1/30,000 s or even less.

Beam angle

The angle at which the main beam of light from the flash diverges. This parameter is not expressed directly, in degrees, but in terms of the focal lengths of the corresponding lenses, in millimetres: for example, a beam angle of 105 mm corresponds to the angle of view of a lens with the same focal length (35 mm equivalent). This makes it easy to select a flash for specific optics, so that it most effectively illuminates all the space in the frame. And the most advanced modern flashes can have a variable dispersion angle, allowing you to adjust them to different shooting features; this feature is especially useful when using zoom lenses. Changing the angle of dispersion is carried out by a movable lens installed in the flash head, it can be carried out both automatically and manually (for more details, see "Functions and Capabilities").
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