Purchase Raman instrument system to analyze samples inside the ICEE
ID: 80NSSC25898658QType: Special Notice
Overview

Buyer

NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNASA SHARED SERVICES CENTERSTENNIS SPACE CENTER, MS, 39529, USA

NAICS

Other Measuring and Controlling Device Manufacturing (334519)

PSC

PRESSURE, TEMPERATURE, AND HUMIDITY MEASURING AND CONTROLLING INSTRUMENTS (6685)
Timeline
    Description

    NASA's National Aeronautics and Space Administration (NASA) is seeking to procure a Raman instrument system for use in the In Situ Carbon Evolution Experiments (ICEE) facility, specifically designed to analyze samples within an ultra-high vacuum chamber. The instrument will play a crucial role in studying the chemical evolution of organic compounds and biosignatures relevant to planetary science, requiring features such as a confocal microscope, multi-wavelength observation capabilities, and advanced data processing software. This procurement is intended to enhance databases that support future space missions, particularly in understanding the degradation of organics in extraterrestrial environments. Interested organizations must submit their qualifications to Kacey Hickman at kacey.l.hickman@nasa.gov by 3:00 p.m. Central Standard Time on April 10, 2025, as the government intends to issue a sole source contract to Oxford Instruments America, the determined sole provider for this requirement.

    Point(s) of Contact
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    Posted
    The document outlines the Statement of Work for acquiring a Raman instrument system intended for use within NASA's In Situ Carbon Evolution Experiments (ICEE) facility. This Raman spectrometer will analyze samples under ultra-high vacuum conditions, at varying temperatures and pressures, focusing on the chemical evolution of organic compounds and biosignatures relevant to planetary science. Key components required for the instrument include a confocal microscope, appropriate laser sources, a video camera for sample visualization, and advanced data processing software. Additionally, the device must support multi-wavelength observations and provide real-time spectrum display. The project aims to contribute to databases aiding in the interpretation of data from future space missions, especially regarding the degradation and modification of organics in extraterrestrial environments. The anticipated performance period for this initiative is two years, with specific NASA and vendor points of contact identified. The document also notes market research conducted with various vendors, leading to a preferred supplier due to their compatibility with NASA's system requirements.
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