{
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    "id": "ocds-h6vhtk-0688c8-2026-04-22T15:17:46+01:00",
    "date": "2026-04-22T15:17:46+01:00",
    "ocid": "ocds-h6vhtk-0688c8",
    "description": "Please Note: An Award has not been made for this requirement. The date included at V.2.1 of this notice refers to the date for the publication of this Voluntary Ex Ante Transparency Notice only. Heriot-Watt University will incorporate a standstill period at the point Information on the award of the contract is communicated to suppliers by means of this VEAT notice. The Standstill period will be for a period of 10 calendar days (SC Ref:830053)",
    "initiationType": "tender",
    "tender": {
        "id": "HWU-UK-2526-330-00",
        "legalBasis": {
            "id": "32014L0024",
            "scheme": "CELEX"
        },
        "title": "Purchase of Stimulated Raman Laser & Multi-Channel Lock-In Amplifier",
        "status": "complete",
        "classification": {
            "scheme": "CPV",
            "id": "38000000",
            "description": "Laboratory, optical and precision equipments (excl. glasses)"
        },
        "mainProcurementCategory": "goods",
        "description": "Purchase of Stimulated Raman Laser & Multi-Channel Lock-In Amplifier for research purposes",
        "lots": [
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                "id": "1",
                "description": "The University requires to purchase from supplier-Cambridge Raman Imaging SrL the following: STRALE - laser system for broadband stimulated Raman scattering (SRS) in a full CH-stretching region detected in a single shot, with no need for sequential tuning of the emitted wavelengths, while preserving high spectral resolution. Key features of the system: Integrated pump beam modulator: modulation frequencies from 1 to 10 MHz Central wavelengths: pump 792 nm +- 1 nm, Stokes 1030 nm FWHM spectral width: pump <= 1 nm, Stokes >= 30 nm Output power: pump > 70 mW @ 1-10 MHz modulation; Stokes > 180 mW @ 20 MHz rep. rate Pulse energy: pump > 7 nJ, Stokes > 9 nJ Pulse width: pump < 2 ps ; Stokes < 0.2 ps Wavenumber coverage [cm-1]: 2800-3100 (full CH-stretching region) Wavenumber resolution [cm-1]: < 16 Synchronized dual output Air-cooled, compact footprint: 610 x 390 x 395 mm Embedded control and power electronics CHAMP - multichannel lock-in amplifier spectrometer is an optical spectrometer based on CRI proprietary multi-channel lock-in technology, ensuring extremely low electronic noise levels, high spectral resolution and short integration time. It has been designed to detect tiny variations, as small as one part over 10 millions, in few microseconds. A unique solution on the market for pixel-wise broad vibrational spectra reconstruction at megahertz modulation frequencies. Key features of the spectrometer: 38 lock-in amplifiers with independent AC (demodulated) and DC (average power) outputs Triggerable integration-time averaging up to 30 ms Demodulation frequency range: 1-10 MHz Demodulation phase: 0-360deg in 32 steps per channel Shot-noise-limited acquisition down to ~25 uW per channel Noise-equivalent power (NEP): < 20 pW/Hz Fixed filter time constant: 0.5 us Vertical resolution: 16 bit Spectral resolution: < 9 cm-1 * Real-time demodulated-signal normalization Pixel- and line-triggered synchronized acquisition USB 3.0 PC connection for fast data transfer Two additional analog inputs and outputs for PMT acquisition Following market research carried out by the academic research team, there are no other suppliers available in the market to supply this type of equipment in the form factor required. The principal purpose of the contract is to acquire goods in connection with research undertaken by the University.",
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            }
        ],
        "items": [
            {
                "id": "1",
                "deliveryAddresses": [
                    {
                        "region": "UKM75"
                    }
                ],
                "deliveryLocation": {
                    "description": "Heriot-Watt University Riccarton Campus Edinburgh EH14 4AS"
                },
                "relatedLot": "1"
            }
        ],
        "procurementMethod": "limited",
        "procurementMethodDetails": "Award procedure without prior publication of a call for competition",
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        "procurementMethodRationaleClassifications": [
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                "description": "The procurement falls outside the scope of application of the directive"
            }
        ],
        "procurementMethodRationale": "This is a voluntary ex ante transparency notice (VEAT). This notice is to indicate that the University intends to contract with Cambridge Raman Imaging SrL for the purchase of a Stimulated Raman Laser & Multi-Channel Lock-In Amplifier consisting of the following: Key features of the Stimulated Raman Laser system: Integrated pump beam modulator: modulation frequencies from 1 to 10 MHz; Central wavelengths: pump 792 nm +- 1 nm, Stokes 1030 nm; FWHM spectral width: pump <= 1 nm, Stokes >= 30 nm; Output power: pump > 70 mW @ 1-10 MHz modulation; Stokes > 180 mW @ 20 MHz rep. rate; Pulse energy: pump > 7 nJ, Stokes > 9 nJ; Pulse width: pump < 2 ps ; Stokes < 0.2 ps; Wavenumber coverage [cm-1]: 2800-3100 (full CH-stretching region); Wavenumber resolution [cm-1]: < 16; Synchronized dual output; Air-cooled, compact footprint: 610 x 390 x 395 mm; Embedded control and power electronics Key features of the Amplifier spectrometer: 38 lock-in amplifiers with independent AC (demodulated) and DC (average power) outputs; Triggerable integration-time averaging up to 30 ms; Demodulation frequency range: 1-10 MHz; Demodulation phase: 0-360deg in 32 steps per channel; Shot-noise-limited acquisition down to ~25 uW per channel; Noise-equivalent power (NEP): < 20 pW/Hz; Fixed filter time constant: 0.5 us; Vertical resolution: 16 bit; Spectral resolution: < 9 cm-1 *; Real-time demodulated-signal normalization; Pixel- and line-triggered synchronized acquisition; USB 3.0 PC connection for fast data transfer; Two additional analog inputs and outputs for PMT acquisition Following market research carried out by the academic research team, there are no other suppliers available in the market to supply this type of equipment in the form factor required. The principal purpose of the contract is to acquire goods in connection with research undertaken by the University."
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            "name": "Heriot-Watt University",
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                "countryName": "United Kingdom"
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            "contactPoint": {
                "name": "Richard Kinghorn",
                "telephone": "+44 1314513704",
                "email": "R.G.Kinghorn@hw.ac.uk"
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                "countryName": "Italy"
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    "buyer": {
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    "planning": {
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                    "description": "FLF UKRI Funded Equipment",
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                "currency": "EUR"
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            "dateSigned": "2026-04-22T00:00:00+01:00"
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