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Charge-integrating A/D converter 16ch Charge-integrating ADC-C009
Charge-integrating A/D converter 16ch Charge-integrating ADC-Toyoshin Electronics Co., Ltd.

Charge-integrating A/D converter 16ch Charge-integrating ADC
Toyoshin Electronics Co., Ltd.


About This Product

The peak voltage of the analog signal is digitized by the ADC. It supports gate widths from 500ns, so it can also handle high-speed signals.

■Features

・16ch condensed to CAMAC1 width ・Input signal can be positive or negative ・Input impedance is also 50Ω to 5kΩ (please specify at time of delivery) ・16 channels can be measured simultaneously ・The peak hold part is made into a mini card for easy maintenance. ・ADC is 14 bit, successive approximation type ・Can also be switched to 12bit ・Built-in analog thumb output ・Has an internal disk drive and outputs NIM to HOLD-OUT (Self-triggering is possible as a PHA by setting this output to GATE)

■CAMAC function

・F (0) ・A (0 to 15) ・S1: Data read 0ch to 15ch ・F (2) ・A (0 to 15) ・S1: Data read 0ch to 15ch ・F (2) ・A (15) ・S2: Peak hold reset ・F (8): Test LAM ・F (9) ・S2: Peak hold reset ・F (10) ・S2: LAM clear ・C・S2: Peak hold reset ・Z・S2: Peak hold reset

  • Product

    Charge-integrating A/D converter 16ch Charge-integrating ADC

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1 Models of Charge-integrating A/D converter 16ch Charge-integrating ADC

Image Part Number Price (excluding tax) Power supply Linearity Residual pedestal Shape Conversion time Product name Input impedance Reset time Reset input Gate input Analog input SUM output HOLD output ADC
Charge-integrating A/D converter 16ch Charge-integrating ADC-Part Number-C009

C009

Available upon quote

+6V, +24V, -6V, -24V

1LSB or less (12bit), 2LSB or less (14bit)

Standard 50 counts

CAMAC standard 1 width module

100μsec or less

16ch charge integration type ADC

50Ω changeable

800ns

NIM level minimum width 50ns

NIM level minimum width 500ns

0~2.5V (or 0~-2.5V), ~100ns rise error 3% or less, ~200ns fall, ~200ns rise error 1% or less, ~300ns fall

Addition output of 16ch input

Discriminator output of SUM output (NIM level)

Successive approximation type 12bit

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