Nikon D2H vs. Fujifilm FinePix S3 Pro

Comparison

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D2H image
vs
FinePix S3 Pro image
Nikon D2H Fujifilm FinePix S3 Pro
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Megapixels
4.00
6.10
Max. image resolution
2464 x 1632
4256 x 2848

Sensor

Sensor type
JFET
CCD
Sensor size
23.7 x 15.5 mm
23.5 x 15.6 mm
Sensor resolution
2474 x 1617
3035 x 2010
Diagonal
28.32 mm
28.21 mm
Sensor size comparison
Sensor size is generally a good indicator of the quality of the camera. Sensors can vary greatly in size. As a general rule, the bigger the sensor, the better the image quality.

Bigger sensors are more effective because they have more surface area to capture light. An important factor when comparing digital cameras is also camera generation. Generally, newer sensors will outperform the older.

Learn more about sensor sizes »

Actual sensor size

Note: Actual size is set to screen → change »
vs
1 : 1
(ratio)
Nikon D2H Fujifilm FinePix S3 Pro
Surface area:
367.35 mm² vs 366.60 mm²
Difference: 0.75 mm² (0.2%)
D2H sensor is slightly bigger than S3 Pro sensor (only 0.2% difference).
Pixel pitch
9.58 µm
7.74 µm
Pixel pitch tells you the distance from the center of one pixel (photosite) to the center of the next. It tells you how close the pixels are to each other.

The bigger the pixel pitch, the further apart they are and the bigger each pixel is. Bigger pixels tend to have better signal to noise ratio and greater dynamic range.
Difference: 1.84 µm (24%)
Pixel pitch of D2H is approx. 24% higher than pixel pitch of S3 Pro.
Pixel area
91.78 µm²
59.91 µm²
Pixel or photosite area affects how much light per pixel can be gathered. The larger it is the more light can be collected by a single pixel.

Larger pixels have the potential to collect more photons, resulting in greater dynamic range, while smaller pixels provide higher resolutions (more detail) for a given sensor size.
Relative pixel sizes:
vs
Pixel area difference: 31.87 µm² (53%)
A pixel on Nikon D2H sensor is approx. 53% bigger than a pixel on Fujifilm S3 Pro.
Pixel density
1.09 MP/cm²
1.67 MP/cm²
Pixel density tells you how many million pixels fit or would fit in one square cm of the sensor.

Higher pixel density means smaller pixels and lower pixel density means larger pixels.
Difference: 0.58 µm (53%)
Fujifilm S3 Pro has approx. 53% higher pixel density than Nikon D2H.
To learn about the accuracy of these numbers, click here.



Specs

Nikon D2H
Fujifilm S3 Pro
Crop factor
1.53
1.53
Total megapixels
4.30
12.30
Effective megapixels
4.00
6.10
Optical zoom
Digital zoom
No
No
ISO sensitivity
200 - 1600 in 1, 1/2 or 1/3 EV steps
100, 160, 200, 400, 800, 1600
RAW
Manual focus
Normal focus range
Macro focus range
Focal length (35mm equiv.)
Aperture priority
Yes
Yes
Max. aperture
Max. aperture (35mm equiv.)
n/a
n/a
Metering
Multi, Center-weighted, Spot
Multi, Average, Spot
Exposure compensation
±5 EV (in 1/3 EV, 1/2 EV steps)
±3 EV (in 1/2 EV steps)
Shutter priority
Yes
Yes
Min. shutter speed
30 sec
30 sec
Max. shutter speed
1/8000 sec
1/4000 sec
Built-in flash
External flash
Viewfinder
Optical (pentaprism)
Optical (pentaprism)
White balance presets
6
7
Screen size
2.5"
2"
Screen resolution
211,000 dots
235,000 dots
Video capture
Max. video resolution
Storage types
Compact Flash (Type I or II)
CompactFlash type I, CompactFlash type II, Microdrive, xD Picture
USB
USB 2.0 (480 Mbit/sec)
USB 2.0 (480 Mbit/sec)
HDMI
Wireless
GPS
Battery
Nikon EN-EL5 Lithium-Ion
AA NiMH (4) batteries included
Weight
1200 g
930 g
Dimensions
158 x 150 x 86 mm
148 x 135 x 80 mm
Year
2003
2004




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Diagonal

Diagonal is calculated by the use of Pythagorean theorem:
Diagonal =  w² + h²
where w = sensor width and h = sensor height

Nikon D2H diagonal

w = 23.70 mm
h = 15.50 mm
Diagonal =  23.70² + 15.50²   = 28.32 mm

Fujifilm S3 Pro diagonal

w = 23.50 mm
h = 15.60 mm
Diagonal =  23.50² + 15.60²   = 28.21 mm


Surface area

Surface area is calculated by multiplying the width and the height of a sensor.

D2H sensor area

Width = 23.70 mm
Height = 15.50 mm

Surface area = 23.70 × 15.50 = 367.35 mm²

S3 Pro sensor area

Width = 23.50 mm
Height = 15.60 mm

Surface area = 23.50 × 15.60 = 366.60 mm²


Pixel pitch

Pixel pitch is the distance from the center of one pixel to the center of the next measured in micrometers (µm). It can be calculated with the following formula:
Pixel pitch =   sensor width in mm  × 1000
sensor resolution width in pixels

D2H pixel pitch

Sensor width = 23.70 mm
Sensor resolution width = 2474 pixels
Pixel pitch =   23.70  × 1000  = 9.58 µm
2474

S3 Pro pixel pitch

Sensor width = 23.50 mm
Sensor resolution width = 3035 pixels
Pixel pitch =   23.50  × 1000  = 7.74 µm
3035


Pixel area

The area of one pixel can be calculated by simply squaring the pixel pitch:
Pixel area = pixel pitch²

You could also divide sensor surface area with effective megapixels:
Pixel area =   sensor surface area in mm²
effective megapixels

D2H pixel area

Pixel pitch = 9.58 µm

Pixel area = 9.58² = 91.78 µm²

S3 Pro pixel area

Pixel pitch = 7.74 µm

Pixel area = 7.74² = 59.91 µm²


Pixel density

Pixel density can be calculated with the following formula:
Pixel density =  ( sensor resolution width in pixels )² / 1000000
sensor width in cm

One could also use this formula:
Pixel density =   effective megapixels × 1000000  / 10000
sensor surface area in mm²

D2H pixel density

Sensor resolution width = 2474 pixels
Sensor width = 2.37 cm

Pixel density = (2474 / 2.37)² / 1000000 = 1.09 MP/cm²

S3 Pro pixel density

Sensor resolution width = 3035 pixels
Sensor width = 2.35 cm

Pixel density = (3035 / 2.35)² / 1000000 = 1.67 MP/cm²


Sensor resolution

Sensor resolution is calculated from sensor size and effective megapixels. It's slightly higher than maximum (not interpolated) image resolution which is usually stated on camera specifications. Sensor resolution is used in pixel pitch, pixel area, and pixel density formula. For sake of simplicity, we're going to calculate it in 3 stages.

1. First we need to find the ratio between horizontal and vertical length by dividing the former with the latter (aspect ratio). It's usually 1.33 (4:3) or 1.5 (3:2), but not always.

2. With the ratio (r) known we can calculate the X from the formula below, where X is a vertical number of pixels:
(X × r) × X = effective megapixels × 1000000    →   
X =  effective megapixels × 1000000
r
3. To get sensor resolution we then multiply X with the corresponding ratio:

Resolution horizontal: X × r
Resolution vertical: X

D2H sensor resolution

Sensor width = 23.70 mm
Sensor height = 15.50 mm
Effective megapixels = 4.00
r = 23.70/15.50 = 1.53
X =  4.00 × 1000000  = 1617
1.53
Resolution horizontal: X × r = 1617 × 1.53 = 2474
Resolution vertical: X = 1617

Sensor resolution = 2474 x 1617

S3 Pro sensor resolution

Sensor width = 23.50 mm
Sensor height = 15.60 mm
Effective megapixels = 6.10
r = 23.50/15.60 = 1.51
X =  6.10 × 1000000  = 2010
1.51
Resolution horizontal: X × r = 2010 × 1.51 = 3035
Resolution vertical: X = 2010

Sensor resolution = 3035 x 2010


Crop factor

Crop factor or focal length multiplier is calculated by dividing the diagonal of 35 mm film (43.27 mm) with the diagonal of the sensor.
Crop factor =   43.27 mm
sensor diagonal in mm


D2H crop factor

Sensor diagonal in mm = 28.32 mm
Crop factor =   43.27  = 1.53
28.32

S3 Pro crop factor

Sensor diagonal in mm = 28.21 mm
Crop factor =   43.27  = 1.53
28.21

35 mm equivalent aperture

Equivalent aperture (in 135 film terms) is calculated by multiplying lens aperture with crop factor (a.k.a. focal length multiplier).

D2H equivalent aperture

Aperture is a lens characteristic, so it's calculated only for fixed lens cameras. If you want to know the equivalent aperture for Nikon D2H, take the aperture of the lens you're using and multiply it with crop factor.

Crop factor for Nikon D2H is 1.53

S3 Pro equivalent aperture

Aperture is a lens characteristic, so it's calculated only for fixed lens cameras. If you want to know the equivalent aperture for Fujifilm S3 Pro, take the aperture of the lens you're using and multiply it with crop factor.

Crop factor for Fujifilm S3 Pro is 1.53

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