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ImagEM X2-1K EM-CCD camera

C9100-24B

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The ImagEM X2-1K (C9100-24B) is an extremely versatile camera that quietly delivers 18.5 frames/s at full frame and high sensitivity (1024×1024 pixel). With very high signal to noise in near dark conditions and extremely low dark current, the ImagEM X2-1K enables quantitative ultra-low light imaging both for long integration times and at high speed. With EM gain off, the extremely deep full well capacity can extract information from the lowest contrast bright images. Additional new features allow for optimized camera triggering, on-board for EM gain protection, streamlined connectivity through IEEE1394b, improved overall signal to noise and increased non-EM dynamic range. Hamamatsu has taken the beloved 1024 × 1024 EM-CCD sensor and created a masterfully redesigned camera that delivers maximum speed and precision performance.

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Specifications

Type number C9100-24B
Camera head type Hermetic vacuum-sealed air/water-cooled head*1
Window Anti-reflection (AR) coatings on both sides, single window
AR mask No
Imaging device Electron Multiplying Back-Thinned Frame Transfer CCD
Effective number of pixels 1024 (H)×1024 (V)
Cell size 13 μm (H)×13 μm (V)
Effective area 13.3 mm (H) × 13.3 mm (V)
Pixel clock rate (EM-CCD readout) 22 MHz, 11 MHz, 0.6875 MHz
Pixel clock rate (NORMAL CCD readout) 0.6875 MHz
EM (electron multiplying) gain 1×, 10× to 1200× (typ.)*2
Ultra low light detection Photon Imaging mode (1, 2, 3)
Fastest readout speed 18.5 frames/s to 314 frames/s*3
Readout noise (EM-CCD readout) 15 electrons (EM gain 4×, at 22 MHz) (rms) (typ.)
10 electrons (EM gain 4×, at 11 MHz) (rms) (typ.)
3 electrons (EM gain 4×, at 0.6875 MHz) (rms) (typ.)
1 electron max. (EM gain 1200×) (rms) (typ.)
Readout noise (NORMAL CCD readout) 10 electrons (at 0.6875 MHz) (rms) (typ.)
Full well capacity EM-CCD readout: 400 000 electrons (Max. 800 000 electrons) (typ.)*4
NORMAL CCD readout: 50 000 electrons (typ.)
Analog gain EM-CCD readout (22 MHz): 1×
EM-CCD readout (11 MHz/0.6875 MHz): 0.5×, 1×
Normal CCD readout: 1×, 2×, 3×, 4×, 5×
Cooling temperature (Forced-air cooled) At temperature control: -50 ℃ (Room temperature 0 ℃ to +30 ℃, at 22 MHz)
At temperature control: -55 ℃ ((Room temperature 0 ℃ to +30 ℃, 11 MHZ, 0.6875 MHz. Normal CCD readout)
At maximum cooling (typ.): -65 ℃ (Room temperature: stable at +20 ℃)
Cooling temperature (Water cooled) At temperature control: -65 ℃ (Water temperature: +20 ℃, at 22 MHz)
At temperature control: -70 ℃ (Water temperature: +20 ℃, 11 MHZ, 0.6875 MHz. Normal CCD readout)
At maximum cooling (typ.): -80 ℃ (Water temperature: lower than +10 ℃)
Temperature stability (Forced-air cooled) ±0.01 ℃ (typ.)
Temperature stability (Water cooled) ±0.01 ℃ (typ.)
Dark current (Forced-air cooled) 0.01 electron/pixel/s (-65 ℃) (typ.)
Dark current (Water cooled) 0.001 electron/pixel/s (-80 ℃) (typ.)
Clock induced charge 0.01 events/pixel/frame (typ.)
Exposure time (Internal sync mode) 52.7 ms to 1 s (22 MHz)
103.2 ms to 2 h (11 MHz)
1616.9 ms to 2 h (0.6875 MHz)
Exposure time (External trigger mode) 10 μs to 1 s (22 MHz)
10 μs to 2 h (11 MHz, 0.6875 MHz)
A/D converter 16 bit
Output signal/External control IEEE1394b
Sub-array Every 16 lines (horizontal, vertical) size, position can be set
Binning 2×2, 4×4
External trigger mode Edge trigger, Level trigger, Start trigger, Synchronous readout trigger
Trigger output Exposure timing output, Programmable timing output (Delay and pulse length are variable.), Trigger ready output
Image processing features (real-time) Background subtraction, Shading correction, Recursive filter, Frame averaging, Spot noise reducer*5
EM gain protection EM warning mode, EM protection mode
EM gain readjustment Available
Lens mount C-mount
Power supply AC 100 V to 240 V, 50 Hz / 60 Hz
Power consumption Approx. 140 VA
Ambient storage temperature -10 °C to + 50 °C
Ambient operating temperature 0 °C to + 40 °C
Performance guaranteed temperature 0 °C to + 30 °C
Ambient operating/storage humidity 70 % max. (with no condensation)
*1 The hermetic sealed head maintains a high degree of vacuum, 10-8 Torr, without re-evacuation.
*2 Even with electron multiplying gain maximum, dark signal is kept at a low level during low light imaging.
*3 At 4×4 binning and 64×64 Sub-array.
*4 Linearity is not assured when full well capacity is over 400 000 electrons, because of CCD performance.
*5 Recursive filter, frame averaging, and spot noise reducer cannot be used simultaneously.

Spectral response

c9100-23b spectral response

Dimensions

c9100-23b,-24b dimensional outline

Publications

Publication list

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