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Photomultiplier PMT Driver with High Voltage; Digital Pulse; fit R6094 or R6095

$ 79.2

Availability: 13 in stock
  • Condition: New, specially designed and manufactured by RH Electronics
  • Item must be returned within: 30 Days
  • Radiation Detector Type: Scintillation Detector
  • Refund will be given as: Money Back
  • Model: R6094
  • Brand: RH Electronics
  • Application: PMT driver for Scintillation Counter
  • Type: Radiation Detector
  • Return shipping will be paid by: Buyer
  • MPN: Does Not Apply
  • Supported tubes: R6094 or R6095
  • Restocking Fee: 10%
  • All returns accepted: Returns Accepted

    Description

    UNIQUE PMT Driver Module with High Voltage power supply and Pulse output circuit
    for Digital Scintillation Counters and for amateur Gamma Spectroscopy
    fit R6094 or R6095 Hamamatsu Tube
    This module is specially designed hardware build on R6095/R6094 photomultiplier socket and it has:
    - onboard adjustable High Voltage converter with negative polarity output -500V to -1000V
    - onboard high impedance voltage divider for the tube, wired with Hamamatsu 14 pin socket
    - onboard pulse amplifier and pulse output circuit ready for Digital Counters (see demonstration video)
    - 2 outputs: first IPX U.FL for amateur gamma spectroscopy and second IPX U.FL connector for scintillation counter (by default connected to IPX U.FL for scintillation)
    Technical specifications:
    - Directly compatible with Hamamatsu R6094 or R6095 PMT tubes
    - Adjustable stabilized and filtered high voltage for PMT, negative polarity -500V to -1000V
    - Adjustable pulse threshold level
    - Original PMT socket installed and wired
    - High Voltage Divider for Dynodes with recommended distribution installed and wired.
    - Require only 5V to work
    - Low power consumption, great for portable devices. Optimal settings are for 5mA-7mA consumption with R6094.
    - Digitized PMT pulses on the output, ready for Arduino, PIC, AVR, MSP430
    - Ready for DIY Digital Counters or Radiation Detectors
    - Compatible with MyGeiger or with Arduino Geiger Counter
    - Depend on source activity and amplifier threshold settings, can go up to 10000 counts per second before saturated, recommended to use below 5000 cps
    Purchase includes:
    1pcs Driver Module with wired socket (see product photo)
    1pcs 5V connector wire
    If you want to build DIY scintillation detector then this module will do all hard work for you. You only need to connect your tube and connect 5V to get ready digitized pulses on the output. The pulses can be easily counted by any Digital Counter or Ratemeter. See pulse output demonstration video below connected to MyGeiger DIY kit:
    Hamamatsu R6094 R6095 PMT driver with High Voltage Converter and Pulse output for Digital Counters - YouTube
    Video will open in a new window
    [isdntekvideo]
    Dear customer, this listing do not include R6094 or R6095 PMT tube, it also do not include electrical circuit of the module and do not include any Digital counter or Ratemeter. But I can offer you Ratemeter / Digital Counter for additional cost. Contact me if you have any questions!
    Arduino UNO example code to count PMT pulses during 1 second:
    // Arduino UNO Example code to count INT pulses during one second from the detector
    // if the INT is floating you may need to add 10K resistor to pull down to GND the INT port
    #include
    unsigned long counts;            //variable for PMT
    events
    unsigned long cps;
    //variable for CPS
    unsigned long previousMillis;    //variable for time measurement
    void tube_impulse(){             //procedure for capturing events from PMT
    counts++;
    }
    void setup(){                                //setup procedure
    counts = 0;
    cps = 0;
    Serial.begin(9600);                        // start serial monitor
    pinMode(2, INPUT);                        // set pin INT0 input for capturing PMT
    events
    digitalWrite(2, LOW);                      // turn off internal pullup resistors, you may need to add 10K resistor to pull down to GND the INT port (if INT pin is floating)
    //---------------------Allow external interrupts on INT0-----------------------------//
    attachInterrupt(0, tube_impulse, RISING);  //define external interrupts low-high-low
    //-----------------------------------------------------------------------------------//
    }
    void loop(){                                    //main cycle
    unsigned long currentMillis = millis();
    if(currentMillis - previousMillis > 1000){   // if 1 second passed
    previousMillis = currentMillis;
    cps = counts;
    Serial.print(cps);     // send cps data to UART
    Serial.write(' ');
    // send null character for "Radiation Logger" to separate next data, check your hardware for actual UART separate sing
    counts = 0;
    }
    }
    To our valued customers, please read purchase terms before you bid or buy!
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    Technical issues and support:
    If you purchase this item you are agree that you have skills and tools to perform required DIY soldering (or de-soldering) and you know how to connect additional external components or modules. All project components should be installed and soldered in proper polarity with proper connectors.
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    Returns:
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