S9970
S9970 is CCD area image sensor manufactured by Hamamatsu Corporation.
feature low noise and low dark signal (MPP mode operation). This enables low-light-level detection and long integration time, thus achieving a wide dynamic range. S9970/S9971 series have an effective pixel size of 24 × 24 µm and are available in image areas ranging from 12.288 (H) × 1.44 (V) mm2 (512 × 60 pixels) up to a large image area of 24.576 (H) × 6.048 (V) mm2 (1024 × 252 pixels). S9970/S9971 series are pin patible with S7010/S7011 series. (Operating conditions are a little bit changed from S7010/S7011 series.)
Features
Applications l Low dark signal: 10 e-/pixel/s Typ. (0 ˚C, MPP mode) l Low readout noise: 4 e-rms Typ. l 512 (H) × 60 (V) to 1024 (H) × 252 (V) pixel format l Pixel size: 24 × 24 µm l Line/pixel binning l 100 % fill factor l Wide dynamic range l MPP operation
Type No. S9970-0906 S9970-1006 S9970-1007 S9970-1008 S9971-0906 S9971-1006 S9971-1007 S9971-1008 Cooling Number of total pixels 532 × 64 1044 × 64 1044 × 128 1044 × 256 532 × 64 1044 × 64 1044 × 128 1044 × 256 l Fluorescence spectrometer, ICP l Raman spectrometer l Industrial inspection requiring l Semiconductor inspection l DNA sequencer l Low-light-level detection s Selection guide
Number of active pixels 512 × 60 1024 × 60 1024 × 124 1024 × 252 512 × 60 1024 × 60 1024 × 124 1024 × 252 Active area [mm (H) × mm (V)] 12.288 24.576 24.576 24.576 12.288 24.576 24.576 24.576 × × × × × × × × 1.440 1.440 2.976 6.048 1.440 1.440 2.976 6.048 Suitable multichannel Detector head C7020
Non-cooled
One-stage TE-cooled
C7021 C7025 s General ratings
Specification 24 (H) × 24 (V) µm 2 phase 2 phase One-stage MOSFET source follower 24 pin ceramic DIP (refer to dimensional outlines) S9970 series: quartz glass Window
- 1 S9971 series: sapphire glass
- 1: Temporary window type (ex. S9970-0906N) and UV coat type (ex. S9970-0906UV) are available upon request. (Temporary window is fixed by tape to protect the CCD chip and wire bonding.) Parameter Pixel size Vertical clock phase Horizontal clock phase...