Viewfinder

The DCS 300 series camera is an integration of Eastman Kodak Company electronics and a Nikon Pronea 6i camera body. The camera body was originally designed for use with Advanced Photo System film. Because the electronic imager in your DCS 300 series camera is smaller than a negative of a film frame, the field of view of the camera’s viewfinder is larger than what will actually be captured by the electronic imager.

The DCS 315 and DCS 330 viewfinders are seen below. The heavy black masking surrounding the 8.4mm-diameter reference circle indicates the area of the scene that will be captured when the shutter is released.

This field of view limitation has implications regarding the lenses used with the camera. Refer to Appendix E (Focal Length Conversion).

DCS 330

DCS 315

Masking

8.4 mm reference circle for center-weighted metering

2.5 mm reference circle for spot metering/spot-area AF

Wide area focus brackets

 

F

+2.1.0.1.2-

F

+2.1.0.1.2-

S

S

 

Flash ready light

Focus area

F

+2.1.0.1.2-

S

 

Focus indicators: indicates a subject is in focus;

blinking indicate that autofocus is impossible; and arrows indicate front and rear focus

Metering system

Exposure mode

Shutter speed

Aperture

Electronic analog display

Flash Output Level Compensation

Exposure Compensation

1

Your Camera

1-13

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Kodak DCS300 manual Viewfinder, Dcs

DCS300 specifications

The Kodak DCS300 series, introduced in the late 1990s, marked a significant advancement in digital photography, especially for professional applications. At its core, the DCS300 was designed for photographers seeking high-quality digital imaging combined with the familiar handling of traditional film cameras. This series, particularly the DCS 310, 320, and 330 models, utilized a combination of innovative technologies and features that set it apart from its contemporaries.

One of the most notable features of the Kodak DCS300 series was its use of a 1.5-megapixel CCD sensor. This sensor delivered impressive image quality for the time, capturing photographs with vibrant colors and fine detail. The camera supported a maximum resolution of 2032 x 3040 pixels, allowing for large prints and significant cropping without losing image integrity. The sensor's design also minimized noise in images, which was crucial for professional users who often worked in diverse lighting conditions.

The DCS300 series cameras were built on a Nikon F90 (N90) camera body, providing a familiar layout and ergonomic design for photographers accustomed to Nikon's SLR system. This integration meant that users could utilize Nikon lenses, which further enhanced the camera's versatility. The inclusion of a mirror mechanism and a viewfinder made the transition to digital photography smoother for traditional film photographers.

The DCS300 series introduced a unique workflow through its dual-slot memory system. The cameras utilized both CompactFlash (CF) and IBM Microdrive storage options. With the capability to capture JPEG and TIFF formats, photographers could choose the level of image quality that suited their needs. The built-in image processing features allowed for immediate review and basic adjustments on the go.

Another characteristic of the DCS300 was its robust build quality. Designed to withstand the rigors of professional use, the camera featured weather sealing and a durable chassis. This ruggedness made it suitable for on-location shoots and provided peace of mind to photographers working in challenging environments.

In terms of connectivity, the DCS300 series offered options for both FireWire and USB interfacing. This facilitated rapid data transfer to computers for editing and storage, streamlining the digital workflow essential for professional environments.

Overall, the Kodak DCS300 series played a crucial role in the evolution of digital photography. By blending professional-grade image quality, reliable construction, and user-friendly features, it established a strong foothold for Kodak in the digital camera market, paving the way for future innovations in digital imaging technologies.