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  1. The type of filling used in Hamamatsu was cabbage, onion, and pork--which went on to become the most popular style. Hamamatsu, the gyoza capital of Japan In Hamamatsu, restaurants selling gyoza already existed during the Taisho period (1912-1926).

  2. Oct 15, 2014 · For SiPMs, manufacturers list photon detection efficiency (PDE) instead of QE. PDE is the product of QE, fill factor, and avalanche probability. Fill factor is the ratio of the photosensitive area to the total area of a SiPM. The avalanche probability is the probability that the charge carriers generated in a pixel may cause avalanche ...

    • What type of filling was used in Hamamatsu?1
    • What type of filling was used in Hamamatsu?2
    • What type of filling was used in Hamamatsu?3
    • What type of filling was used in Hamamatsu?4
    • What type of filling was used in Hamamatsu?5
  3. A characteristic of Hamamatsu gyoza is the addition of bean sprouts on top of the gyoza. Both cities have large numbers of gyoza specialty shops some of which offer gyoza with less conventional fillings such as shrimp, mushroom , cheese or shiso leaf .

    • What type of filling was used in Hamamatsu?1
    • What type of filling was used in Hamamatsu?2
    • What type of filling was used in Hamamatsu?3
    • What type of filling was used in Hamamatsu?4
    • What type of filling was used in Hamamatsu?5
  4. Our largest off-the-shelf array is 4x4ch 6mm sq. MPPC array or 8x8ch 3mm sq. MPPC array. We can also offer custom-size arrays or the individual tile-able package MPPC, so the customer can create an array of their own size or shape.

  5. 25 µm pitch MPPC is designed for a high fill factor that vastly improves photon detection efficiency compared to our previous types. Using this same design, we also developed 10 µm and 15 µm pitch MPPCs that deliver a high-speed response and wide dynamic range as well as high photon detection efficiency. The fill factor of 50 µm

  6. Jun 2, 2017 · Today, many types of photosensors are capable of detecting the arrival of a single photon. But silicon photomultipliers (SiPM) are the only possibility when image sensing with single-photon resolution, exact time-of-arrival determination, a high dynamic range, low power consumption, and digital output in a single-chip solution are required.

  7. Spectral sensitivity is the most fundamental opto-electronic characteristic of a photodetector. Spectral sensitivity is, most importantly, a function of the input light wavelength. Spectral sensitivity can also be a function of temperature and bias voltage.

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