R9110 HAMAMATSU | Alldatasheet
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High Sensitivity and Lower Dark Current Wide Spectral Range with Low ENI, 8 mm × 6 mm Photocathode Size Figure 1: Typical Spectral Response and Equivalent Noise Input TPMSB0207EA WAVELENGTH (nm) CATHODE RADIANT SENSITIVITY (mA/W) QUANTUM EFFICIENCY (%) EQUIVALENT NOISE INPUT (W) 300100 200 0.001 0.01 0.1 100 10-17 10-16 10-15 10-13 10-14 10-12 400 500 600 700 800 900 1000 R9110 R3896 CATHODE RADIANT SENSITIVITY QUANTUM EFFICIENCY EQUIVALENT NOISE INPUT Information furnished by HAMAMATSU is believed to be reliable. However, no responsibility is assumed for possible inaccuracies or omissions. Specifications are subject to change without notice. No patent rights are granted to any of the circuits described herein. ©2006 Hamamatsu Photonics K.K. Subject to local technical requirements and regulations, availability of products included in this promotional material may vary. Please consult with our sales office.
FEATURES
The R9110 is a 28 mm (1-1/8 inch) diameter, 9-stage, side-on type photomultiplier tube having an extended red multialkali photocathode same as the R3896. The R9110 features very low dark current, ex- tremely high quantum efficiency, high gain, good S/N ratio and wide spectral response from UV to near infrared. The R9110 is directly pin compatible with the R3896. G High Cathode Sensitivity G High Anode Sensitivity (at 1000 V) G High Signal to Noise Ratio GENERAL Parameter Description/Value Unit Spectral Response Peak Wavelength Photocathode Window Material Dynode Direct Interelectrode Capacitances Base Weight Operating Ambient Temperature Storage Temperature Suitable Socket Suitable Socket Assembly nm nm mm pF pF g 185 to 900 450 Multialkali 8 × 6 UV glass Multialkali Circular-cage Approx. 4 Approx. 6 11-pin base JEDEC No. B11-88 Approx. 46 -30 to +50 -30 to +50 E678-11A (Sold Separately) E717-63 (Sold Separately) E717-74 (Sold Separately) Material Minimum Effective Area Secondary Emitting Surface Structure Number of Stages Anode to Last Dynode Anode to All Other Electrodes
PHOTOMULTIPLIER TUBE R9110 NOTES Averaged over any interval of 30 seconds maximum. The light source is a tungsten filament lamp operated at a distribution temperature of 2856K. Supply voltage is 100 volts between the cathode and all other electrodes connected together as anode. Red/White ratio is the quotient of the cathode current measured using a red filter(Toshiba R-68) interposed between the light source and the tube by the cathode current measured with the filter removed under the same conditions as Note B. The value is cathode output current when a blue filter(Corning CS 5-58 polished to 1/2 stock thickness) is interposed between the light source and the tube under the same condition as Note B. Measured with the same light source as Note B and with the voltage distribution ratio shown in Table 1 below. Electrodes K Dy1 Dy2 Dy3 Dy4 Dy5 Dy6 Dy7 Dy8 Dy9 P Distribution Ratio 1 111111111 SuppIy Voltage: 1000 V, K: Cathode, Dy: Dynode, P: Anode Table 1:Voltage Distribution Ratio Measured with the same supply voltage and voltage distribution ratio as Note E after removal of light. The rise time is the time for the output pulse to rise from 10% to 90% of the peak amplitude when the entire photocathode is illuminated by a delta function light pulse. The electron transit time is the interval between the arrival of delta function light pulse at the entrance window of the tube and the time when the anode output reaches the peak amplitube. In measurement, the whole photocathode is illuminated. Also called transit time jitter. This is the fluctuation in electron transit time between individual pulses in the single photoelectron mode, and may be defined as the FWHM of the frequency distribution of electron transit times Hysteresis is temporary instability in anode current after light and voltage are applied. (1)Light Hysteresis The tube is operated at 750 volts with an anode current of 1 microampere for 5 minutes. The light is then removed from the tube for a minute. The tube is then re-illuminated by the previous light level for a minute to measure the variation. (2)Voltage Hysteresis The tube is operated at 300 volts with an anode current of 0.1 micro-ampere for 5 minutes. The light is then removed from the tube and the supply voltage is quickly increased to 800 volts. After a minute, the supply voltage is then reduced to the previous value and the tube is re-illuminated for a minute to measure the variation. Hysteresis = 100 (%) lmax. li lmin. TPMSB0002EA TIME max.l min.lil ANODE CURRENT 0 5 6 7 (minutes) MAXIMUM RATINGS (Absolute Maximum Values at 25 °C) CHARACTERISTlCS (at 25 °C) Value 1250 250 0.1 V V mA UnitParameter Supply Voltage Average Anode Current A Typ. Max. Unit µA/lm mA/W mA/W mA/W mA/W A/lm nA ns ns ns 29.3 24.8 14.3 0.73 525 5.0 0.4 10 000 1.9 × 10 2.2 1.2 0.1 1.0 Min. Quantum Efficiency Luminous B Radiant Red/White Ratio C Blue Sensitivity Index D Luminous E Anode Pulse Rise Time G Electron Transit Time H Transit Time Spread (TTS) I Light Hysteresis Voltage Hysteresis at 254 nm at 450 nm at 633 nm at 852 nm at 254 nm at 450 nm at 633 nm at 852 nm 400 4000 Parameter Cathode Sensitivity Anode Sensitivity Gain E Anode Dark Current F (After 30 min Storage in Darkness) Time Response Anode Current Stability J Between Anode and Cathode Between Anode and Last Dynode
PHOTOMULTIPLIER TUBE R9110 TPMS1072E02 JUL. 2006. IP Figure 4: Dimensional Outline and Basing Diagram (Unit: mm) TPMSA0016EC 5 76 KDY1 DY2 DY3 DY4 DY5 DY6 DY7 DY8 DY9 P DIRECTION OF LIGHT 29.0 ± 1.7 8 MIN. PHOTOCATHODE 6 MIN. 49 ± 1 80 MAX. 94 MAX. INSULATION COVER 32.2 ± 0.5
11 PIN BASE
JEDEC No. B11-88 Figure 6: D Type Socket Assembly (Unit: mm) Figure 5: Socket (Unit: mm) Sold Separately Sold Separately Warning–Personal Safety Hazards Electrical Shock –Operating voltages applied to this device present a shock hazard. TACCA0002EH TACCA0277EA TACCA0064EA 3.5 418 * Hamamatsu also provides C4900 series compact high voltage power supplies and C6270 series DP type socket assemblies which incor- porate a DC to DC converter type high voltage power supply. POTTING COMPOUND R1 to R10 C1 to C3 : 330 kΩ : 10 nF 3.5 33.0 ± 0.3 49.0 ± 0.3 29.0 ± 0.3 38.0 ± 0.3 40.7 30.0450 ± 10 31.0 ± 0.5 HOUSING (INSULATOR) R10 DY9 DY8 DY7 DY6 DY5 DY4 DY3 DY2 DY1 SIGNAL GND SIGNAL OUTPUT RG-174/U(BLACK) -HV AWG22 (VIOLET) P K POWER SUPPLY GND AWG22 (BLACK) SOCKET PIN No.PMT E717-63 E717-74 E678-11A R1 to R10 C1 to C3 : 330 kΩ : 10 nF R10 DY9 DY8 DY7 DY6 DY5 DY4 DY3 DY2 DY1 SIGNAL OUTPUT (A) -HV (K) P K GND (G) SOCKET PIN No. * "Wiring diagram applies when -HV is supplied." To supply +HV,connect the pin "G" to+HV, and the pin "K" to the GND. PMT 26.0±0.2 22.4±0.2 32.0±0.5 26.0±0.2 32.0±0.5 72.7 14.0±0.5 30° 10° 0.7 4- 2.8 HOUSING (INSULATOR) R13 K A G TOP VIEW SIDE VIEW BOTTOM VIEW HAMAMATSU PHOTONICS K.K., Electron Tube Division 314-5, Shimokanzo, Iwata City, Shizuoka Pref., 438-0193, Japan, Telephone: (81)539/62-5248, Fax: (81)539/62-2205 Germany: Hamamatsu Photonics Deutschland GmbH: Arzbergerstr. 10, D-82211 Herrsching am Ammersee, Germany, Telephone: (49)8152-375-0, Fax: (49)8152-2658 E-mail: info@hamamatsu.de United Kingdom: Hamamatsu Photonics UK Limited: 2 Howard Court, 10 Tewin Road Welwyn Garden City Hertfordshire AL7 1BW, United Kingdom, Telephone: 44-(0)1707-294888, Fax: 44(0)1707-325777 E-mail: info@hamamatsu.co.uk North Europe: Hamamatsu Photonics Norden AB: Smidesvä gen 12, SE-171-41 SOLNA, Sweden, Telephone: (46)8-509-031-00, Fax: (46)8-509-031-01 E-mail: info@hamamatsu.se Italy: Hamamatsu Photonics Italia: S.R.L.: Strada della Moia, 1/E, 20020 Arese, (Milano), Italy, Telephone: (39)02-935 81 733, Fax: (39)02-935 81 741 E-mail: info@hamamatsu.it WEB SITE www.hamamatsu.com