You can use your PicoScope 2000 Series as an advanced oscilloscope, spectrum analyzer, function generator, arbitrary waveform generator and protocol decoder out of the box. Mixed signal models also add a 16 channel logic analyzer. A complete electronics lab in one compact, low-cost, USB-powered unit.

The PicoScope 2000A models deliver unbeatable value for money and are ideal for education, hobby and field service use. In the lab the low cost allows one scope per person rather than having to share.


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The PicoScope 2000B models have the added benefits of deep memory (up to 128 MS), higher bandwidth (up to 100 MHz) and faster waveform update rates. PicoScope 2000B models give you the performance to carry out advanced analysis of your waveforms. They are ideal for design, debug and serial decoding.

With PicoScope 2000B models FFTs of up to 1 million points can be computed in milliseconds giving superb frequency resolution. Increasing the number of points in a FFT also lowers the noise floor revealing otherwise hidden signals.

There is also an active community of PicoScope users who share code and applications on the Pico forum and PicoApps section of the picotech.com web site. The Frequency Response Analyzer shown opposite is one of the most popular 3rd party applications.

The 200 A / 2000 A current clamp allows you to measure up to 2000 amps without cutting, or disconnecting or stripping wires. Simply clamp the jaws around the cable to be tested and plug the clamp into your PicoScope.

Before the launch of this probe we recommended the TA019 (600 A) for working on the starting and charging systems of petrol passenger cars and the PP253 (2000 A) clamp for high compression diesel engines. The TA167 (200 A / 2000 A) covers both these applications in one probe with improved range and sensitivity, lower noise and faster response.

Microbial plankton form the productive base of both marine and freshwater ecosystems and are key drivers of global biogeochemical cycles of carbon and nutrients. Plankton diversity is immense with representations from all major phyla within the three domains of life. So far, plankton monitoring has mainly been based on microscopic identification, which has limited sensitivity and reproducibility, not least because of the numerical majority of plankton being unidentifiable under the light microscope. High-throughput sequencing of taxonomic marker genes offers a means to identify taxa inaccessible by traditional methods; thus, recent studies have unveiled an extensive previously unknown diversity of plankton. Here, we conducted ultra-deep Illumina sequencing (average 105 sequences/sample) of rRNA gene amplicons of surface water eukaryotic and bacterial plankton communities sampled in summer along a 2000 km transect following the salinity gradient of the Baltic Sea. Community composition was strongly correlated with salinity for both bacterial and eukaryotic plankton assemblages, highlighting the importance of salinity for structuring the biodiversity within this ecosystem. In contrast, no clear trends in alpha-diversity for bacterial or eukaryotic communities could be detected along the transect. The distribution of major planktonic taxa followed expected patterns as observed in monitoring programs, but groups novel to the Baltic Sea were also identified, such as relatives to the coccolithophore Emiliana huxleyi detected in the northern Baltic Sea. This study provides the first ultra-deep sequencing-based survey on eukaryotic and bacterial plankton biogeography in the Baltic Sea.

Figure 3. Abundance distribution of major bacterial groups across the Baltic Sea salinity gradient. (A) Major bacterial taxonomic groups (>0.1% mean abundance). (B) Dominant Cyanobacteria OTUs (>0.1% mean abundance). In Subsection I (picocyanobacteria), OTU_56 is a Microcystis (a freshwater species), remaining OTUs belong to Synechococcus. In Subsection IV (filamentous cyanobacteria), OTU_777, OTU_49 and OTU_19 belong to Aphanizomenon, Nodularia, and Dolichospermum (syn. Anabaena), respectively. The black curve indicates phycocyanin fluorescence (in arbitrary units). (C) Dominant SAR11 OTUs (>0.1% mean abundance).

Citation: Hu YOO, Karlson B, Charvet S and Andersson AF (2016) Diversity of Pico- to Mesoplankton along the 2000 km Salinity Gradient of the Baltic Sea. Front. Microbiol. 7:679. doi: 10.3389/fmicb.2016.00679

The DLP LightCrafter Display 2000 Evaluation Module (EVM) is the most affordable, compact, plug-and-play DLP display EVM for many ultra-mobile, ultra-portable display applications like mobile projectors, smart home displays, AR glasses, appliances, and robotics. This EVM features the DLP2000 (nHD) chipset, optical engine (which can be purchased separately here), and 8/16/24-bit RGB parallel video processor interface. Visit DLPDLCR230NPEVM for a higher performance EVM option that features 1080p resolution, 100lm, and Raspberry Pi out of the box.

Sanchez said a couple of thousand people showed up for the National Night Out held the first week of August 2000 in front of Pico Rivera City Hall. A bandaged Sylvia Flores attended the event in a wheelchair.

A loud thump on the wall woke up Espie Flores in the early morning hours of July 21, 2000. The then-18-year-old said she thought it was an earthquake. She went to the hallway and saw her father, Richard Flores, standing in the doorway of the bedroom he shared with his wife. He was holding his neck with both hands.

LULI2000 is a high-power laser system dedicated to scientific research. It is located in LULI laboratory,[1] at cole Polytechnique[2] in France. The main application of this type of laser is related to the very high energy fluxes obtained after focusing onto tiny focal spots, from micrometers to hundreds of micrometers in diameter. The interaction between these focused beams and small targets produces very hot plasmas, up to many hundred million degrees, high densities and high pressures. Depending on the laser and target parameters, these laser-generated plasmas may be compared to stars or planet interiors.

The main research topics addressed on LULI2000 concern laser inertial fusion and all its physical components, fundamental physics of hot and dense plasmas and its applications in astrophysics and geophysics, or the physics and processing of materials.

NANO2000, the nanosecond version of LULI2000, consists in two Nd:Glass laser chains, 200 mm in diameter, delivering each 1 kJ in nanosecond pulses at 1.05 m wavelength. After frequency doubling or tripling, a large part of the energy may be converted to 0.53 m or 0.35 m.These beams are then focussed in the middle of a 2 m diameter vacuum chamber where they irradiate targets of different types. The interaction itself and the characteristics of the laser-generated hot plasmas are diagnosed by a whole set of dedicated diagnostics.

PICO2000, the adaptation of one NANO2000 laser chain in the picosecond regime, will deliver 200 J in 1 ps at 1.05 m. LULI2000 will be the most energetic laser facility in Europe coupling nanosecond and picosecond pulses. The fast-igniter scheme for laser inertial fusion will be one of the main topics addressed on this facility, in coordination with future installations such as PETAL[3] and HiPER.[4]

PICO 2000 is a security program for Windows that provides you with the means of setting up a video surveillance system without any extra effort, since all you need is a webcam. The app serves as a convenient solution for recording and monitoring any space. In order to run it you will need the PICO 200 Driver controller, which is included in the package.

My history with the Lamy 2000 is long and sordid. I was fascinated by this pen like so many fountain pen users are, but once I got the 2000 in my hand that fascination turned into frustration. This is supposedly one of the greatest fountain pens of all time - why did I want to break it over my knee?

As it turns out, the answer was simple. Getting to that answer, however, was a longer process than it would have been for someone more experienced with fountain pens than I was at the time. Hopefully I can shorten that cycle for anyone else considering purchasing a Lamy 2000.

Despite the fact it has been well over a year since I first opened the box containing my Lamy 2000, I still remember my first reaction to picking it up: Holy amazeballs! The only other pen in its price range that I owned and could compare it to was the Pilot Vanishing Point, and the 2000 was a completely different experience.

Since owning the Lamy 2000, the word Makrolon is now an official part of my vocabulary. Makrolon is the fiberglass-type material that the 2000 barrel is made of, and it is fantastic. It is lightweight, yet sturdy, warms to the touch, and feels great in the hand. Did I mention beautiful? That too, especially for someone who likes minimally styled pens like myself.

The inking system for the 2000 is a piston filler and is integrated flawlessly. In fact, if you were unaware of the mechanism, you would be hard pressed to see the seam at the end of the pen. It moves smoothly when engaged and pulls in ink with ease.

Where I ran into trouble with my 2000 was with the nib. It is a 14k gold hooded nib that is integrated perfectly into the barrel. As soon as I inked it up the first time I enjoyed how it wrote but noticed quickly that I was having trouble with some of my strokes. I felt the nib was sticking to the page, which caused skipping in the line. The thing was, it wasn't unusable. It was a very minor issue.

I went through several cleanings and different inks to see if the writing performance would improve. It didn't, so off to the internet I went. After only a minute of searching I found a common theme: Lamy 2000 nibs are notoriously inconsistent out of the box. Unfortunately for me, I had found a bad one. be457b7860

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