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HORIBA Scientific provides a full range of spectroscopic multi-channel detectors for scientific analysis. Two-dimensional CCDs and indium gallium arsenide linear arrays offer a quicker acquisition option for spectrum detection from UV to near-IR than single-point detectors with reasonably good sensitivity.
Custom spectroscopy packages can be created for various applications when combined with HORIBA’s aberration-corrected, flat-field image spectrographs.
Features
CCDs
Quantum efficiency by type of CCD
Image Credit: HORIBA Scientific
*OE- open electrode, FIUV- front illuminated UV enhanced, FIVS- front illuminated visible, BIUV- back-illuminated UV enhanced, BIVS- back-illuminated visible, BIDD- back-illuminated deep depletion
Selection of all HORIBA spectroscopy CCDs
Source:HORIBA Scientific
Cooling | Type* | Peak QE | Array Dimension | Pixel Size | |
---|---|---|---|---|---|
Syncerity |
TE -60 °C |
OE |
58% |
1024 x 256 |
26 µm x 26 µm |
TE -50 °C |
BI UV-VIS |
78% |
2048 x 70 |
14 µm x 14 µm |
|
SynapsePlus High Speed CCD |
TE -80 °C-95 °C with optionalexternal cooling |
OE |
56% |
1024 x 256 |
26 µm x 26 µm |
FIVS |
47% |
2048 x 512 |
13.5 µm x 13.5 µm |
||
FIUV |
48% |
2048 x 512 |
13.5 µm x 13.5 µm |
||
BIVS |
95% |
1024 x 2562048 x 512 |
26 µm x 26 µm13.5 µm x 13.5 µm |
||
BIUV |
75% |
1024 x 2562048 x 512 |
26 µm x 26 µm13.5 µm x 13.5 µm |
||
BIDD |
<90% |
1024 x 256 |
26 µm x 26 µm |
||
Synapse CCD |
TE -75 °C-95 °C with optionalexternal cooling |
||||
FIVS |
56% |
512 x 512 |
24 µm x 24 µm |
||
BIVS |
95% |
512 x 512 |
24 µm x 24 µm |
||
BIUV |
75% |
512 x 512 |
24 µm x 24 µm |
||
Symphony II CCD |
LN2-133 °C |
OE |
58% |
1024 x 256 |
26 µm x 26 µm |
FIVS |
56% |
1024 x 2562048 x 512 |
26 µm x 26 µm13 µm x 13 µm |
||
FIUV |
58% |
1024 x 2562048 x 512 |
26 µm x 26 µm13 µm x 13 µm |
||
BIVS |
95% |
1024 x 2562048 x 512 |
26 µm x 26 µm13 µm x 13 µm |
||
BIUV |
75% |
1024 x 2562048 x 512 |
26 µm x 26 µm13 µm x 13 µm |
||
BIDD |
95% |
1024 x 256 |
26 µm x 26 µm |
*OE- open electrode, FIUV- front illuminated UV enhanced, FIVS- front illuminated visible, BIUV- back-illuminated UV enhanced, BIVS- back-illuminated visible, BIDD- back-illuminated deep depletion
UV-VIS-NIR EMCCDs
Quantum efficiency by type of EMCCD
Image Credit: HORIBA Scientific
*FIUV- front illuminated UV enhanced, FIVS- front illuminated visible, BIUV- back-illuminated UV enhanced, BIVS- back-illuminated visible, BIDD- back-illuminated deep depletion
Selection of Synapse EMCCDs
Source: HORIBA Scientific
Cooling | Type* | Peak QE | Array Dimension | Pixel Size | |
---|---|---|---|---|---|
Synapse EMCCD |
TE -60 °C-75 °C with optionalexternal cooling |
FIVS |
49% |
1600 x 2001600 x 400 |
16 µm x 16 µm |
FIUV |
49% |
1600 x 2001600 x 400 |
16 µm x 16 µm |
||
BIVS |
95% |
1600 x 2001600 x 400 |
16 µm x 16 µm |
||
BIUV |
95% |
1600 x 2001600 x 400 |
16 µm x 16 µm |
||
BIDD |
92% |
1600 x 200 |
16 µm x 16 µm |
*OE- open electrode, FIUV- front illuminated UV enhanced, FIVS- front illuminated visible, BIUV- back-illuminated UV enhanced, BIVS- back-illuminated visible, BIDD- back-illuminated deep depletion
Near-IR InGaAs Linear Arrays
Quantum Efficiency by Type of InGaAs
Image Credit: HORIBA Scientific
Source: HORIBA Scientific
Cooling | Wavelength | Array Dimension | Element Size | <p
</p |
---|---|---|---|---|
Synapse InGaAs |
TE -60 °C-75 °C with optionalexternal cooling View Spec Sheet |
800-1650 nm |
512 x 1512 x 11024 x 1 |
25 µm x 500 µm50 µm x 500 µm25 µm x 500 µm |
1050-2100 nm |
512 x 1512 x 11024 x 1 |
25 µm x 250 µm50 µm x 250 µm25 µm x 250 µm |
||
Symphony II InGaAs |
LN2-103 °C View Spec Sheet |
800-1600 nm |
512 x 1512 x 11024 x 1 |
25 µm x 500 µm50 µm x 500 µm25 µm x 500 µm |
1000-2050 nm |
512 x 1512 x 11024 x 1 |
25 µm x 250 µm50 µm x 250 µm25 µm x 250 µm |
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