Fully adjustable deadband makes units suitable for a wide range of control applications.Visible, calibrated dial and external adjustments make changing set points simple and fast.All shipping times are dependent on product availability at time of shipment.
Although we make every effort to ensure a continuous supply of our products, occasional circumstances may force us to temporarily run out of a product, or have shipping delays. Should this occur, customers will be notified soon after placement of any orders for such products and, if applicable, items will be put on backorder. For orders requiring expedited shipment, our customer service team can be contacted to confirm product availability COVID-19 Update: Due to high customer demand, lead time on some products may be up to two weeks. While this is a developing health situation, we are working continuously to take the necessary measures to ensure that the products you need are available with minimal interruption. Its extremely fast signal processing leads to an excellent data throughput via USB 3.0 interface. The MultiHarp 150 is a compact, robust, and reliable device whose high quality is reflected by our unique 5-year limited warranty. A recently published paper by M. Wahl et al. (pre-print on ArXiv ) showcases design features as well as benchmark and application results from spectrally resolved, high speed imaging applications. All channels including the sync input can be used as detector inputs, e.g., for coincidence correlation or coincidence counting. The MultiHarp 150 is also ideally suited for performing TCSPC with multiple detectors using forward start-stop operation. Here the common sync channel allows for synchronization with the excitation source. The ultra short dead time of 650 ps allows detecting multiple photons per excitation cycle even at the highest repetition rates achievable by modern picosecond pulsed lasers (requires a detector from the PMA Hybrid Series). This greatly simplifies the cabling requirements for experimental set-ups, as selecting cable lengths to compensate for signal delays is no longer needed. Maxfine 150 4N Full Data SetBy storing this full data set, it becomes possible to carry out the most comprehensive and sophisticated analysis of photon dynamics after a measurement. A real time data correlator is included to monitor FCS experiments at count rates of up to 1 000 000 countssec. Thanks to its White Rabbit interface, the MultiHarp 150 is prepared to be used in networks that are based on this emerging technology. Maxfine 150 4N Generator And FeedingThis is done by splitting an electrical signal from a pulse generator and feeding the two signals each to a separate input channel. The differences of the measured pulse arrival times are calculated along with the corresponding standard deviation. This latter value is the rms jitter which we use to specify the timing precision. However, calculating such a time difference requires two time measurements. We also specify this single channel rms error here for comparison with other products. However, no responsibility is assumed for possible inaccuracies or omissions. Specifications and external appearances are subject to change without notice. Important measurement data, including count rate, count maximum, position and peak width are continuously displayed. A comprehensive online help system eases the user into fully employing the capabilities of the MultiHarp 150. A library for custom programming, e.g., with LabVIEW is also included. Maxfine 150 4N Software And UpgradesPicoQuant is committed to the support and development of this software and upgrades with extended functionality will be made available. Together with the channel number the arrival time of each event with respect to the beginning of the experiment is recorded for ultimate flexibility in offline data analysis, e.g. Burst Integrated Fluorescence Lifetime (BIFL) measurement as well as time-resolved FCS, coincidence correlation (antibunching, etc.) or time-interval analysis.
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