R3809U-61_15 [HAMAMATSU]
MICROCHANNEL PLATE-PHOTOMULTIPLIER;型号: | R3809U-61_15 |
厂家: | HAMAMATSU CORPORATION |
描述: | MICROCHANNEL PLATE-PHOTOMULTIPLIER |
文件: | 总4页 (文件大小:442K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
MICROCHANNEL PLATE-
PHOTOMULTIPLIER TUBE (MCP-PMT)
R3809U-61/-63/-64
FEATURES
GHigh Sensitivity
QE: 12 % (-61), 36 % (-63), 40 % (-64)
GHigh Speed
Rise Time: 200 ps (-61), 180 ps (-63/-64)
A
IRF (Instrument Response Function): 150 ps at FWHM: (-61)
80 ps at FWHM: (-63/-64)
GCompact Profile
Effective Photocathode: 10 mm diameter
(Overall length: 70.2 mm, Outer diameter: 45.0 mm)
APPLICATIONS
GMolecular Science
Analysis of Molecular Structure
GMedical Science
Optical Computer Tomography
GBiochemistry
Fast Gene Sequencing
GMaterial Engineering
Semiconductor Analysis
Crystal Research
GLidar
Figure 1: Spectral Response
Figure 2: Typical Gain
TPMHB0756EA
TPMHB0179EB
1000
107
R3809U-64
R3809U-61
100
106
105
10
1
104
103
102
R3809U-63
0.1
0.01
200 300 400 500 600 700 800 900 1000
-2.0
-2.2
-2.4
-2.6
-2.8
-3.0
-3.2
-3.4
WAVELENGTH (nm)
SUPPLY VOLTAGE (kV)
Subject to local technical requirements and regulations, availability of products included in this promotional material may vary. Please consult with our sales office.
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. ©2015 Hamamatsu Photonics K.K.
MCP-PMT R3809U-61/-63/-64
SPECIFICATIONS
GR3809U-61/-63/-64
GENERAL
Parameter
R3809U-61
370 to 920
750 to 850
GaAs
R3809U-63
280 to 820
550 to 650
R3809U-64
280 to 720
550 to 650
GaAsP
Unit
nm
nm
—
—
mm
—
Spectral Response
Peak Wavelength
Photocathode Material
Window Material
Effective Photocathode Diameter
Stage of MCP B
Extended Red GaAsP
Borosilicate Glass
10
2-stage Filmed MCP
100
Weight
g
Operating Ambient Temperature
Storage Temperature
-50 to +50
-50 to +50
°C
°C
MAXIMUM RATING
Parameter
Supply Voltage
Average Anode Current
Pulsed Peak Current C
Voltage Divider Current
R3809U-61
R3809U-63
-3400 B
100
R3809U-64
Unit
V
nA
mA
µA
350
110
CHARACTERISTICS (at +25 °C)
R3809U-61
R3809U-63
R3809U-64
Typ.
Parameter
Unit
Min.
400
—
Typ.
700
85
Max.
—
—
—
—
—
—
—
—
Min.
450
—
Typ.
750
160
36
Max.
—
—
—
—
—
—
—
—
Min.
400
—
Max.
—
—
Luminous D
700
180
40
µA/lm
mA/W
%
Cathode
Sensitivity
Radiant E
Quantum Efficiency E
—
12
27
30
—
Gain (at -3000 V)
1 × 105 3 × 105
1 × 105 3 × 105
1 × 105 3 × 105
—
—
—
s-1
Anode Dark Count F (at -3000 V)
—
—
—
—
20 I
200
500
150
—
—
—
—
2 × 104
180
—
—
—
—
1 × 104
180
Rise Time G
Fall Time H
—
ps
Time
400
80
400
80
—
ps
Response
IRF (FWHM) A
—
ps
NOTE: A IRF stands for Instrument Response Function which is a convolution of the δ pulse function (H(t)) of the measuring system and the excita-
tion function (E(t)) of a laser. The IRF is given by the following formula:
IRF = H(t) × E(t)
We specify the IRF as an FWHM of the time distribution taken by using the measuring system in Figure 5 that is Hamamatsu standard IRF
measurement. It can be temporary estimated by the following equation:
(IRF (FWHM))2 = (TTS)2 + (Tw)2 + (Tj)2
where Tw is the pulse width of the laser used and Tj is the time jitter of all equipments used. An IRF data is provided with the tube pur-
chased as a standard.
Transit-time spread (TTS) is the fluctuation in transit time between individual pulse and specified as an FWHM (full width at half maximum)
with the incident light having a single photoelectron state.
B Two microchannel plates (MCP) are incorporated as a standard but we can provide it with either one or three MCPs as an option depend-
ing upon your request. The PMT supply voltage varies depending on the number of MCPs.
C This is specified under the operating conditions that the repetition rate of light input is 100 Hz or below and its pulse width is 70 ps.
D The light source used to measure the luminous sensitivity is a tungsten filament lamp operated at a distribution temperature of 2856 K. The
incident light intensity is 10-4 lm and 100 V is applied between the photocathode and all other electrodes connected as an anode.
E Measured at the peak sensitivity wavelength.
F At 30 min after high voltage is applied with shutter closed
G This is the mean time difference between the 10 % and 90 % amplitude points on the output waveform for full cathode illumination.
H This is the mean time difference between the 90 % and 10 % amplitude points on the tailing edge of the output waveform for full cathode il-
lumination.
I At -30 °C
Figure 3: Typical Output Waveform
Figure 5: Typical Instrument Response Function (IRF) A
GR3809U-61
GR3809U-61
TPMHB0759EA
TPMHB0757EA
FWHM: 150 ps
104
103
102
101
100
SUPPLY VOLTAGE: -3000 V
RISE TIME
: 200 ps
: 500 ps
: 400 ps
FALL TIME
WIDTH
0.5 (ns/div)
0.2 (ns/div)
GR3809U-63/-64
GR3809U-63/-64
TPMHB0922EA
TPMHB0758EA
FWHM: 80 ps
104
103
102
101
100
SUPPLY VOLTAGE: -3000 V
RISE TIME
FALL TIME
WIDTH
: 180 ps
: 400 ps
: 300 ps
0.5 (ns/div)
0.2 (ns/div)
Figure 4: Block Diagram of Output Waveform Measuring System
Figure 6: Block Diagram of IRF Measuring System
ND FILTER
ND FILTER
HAMAMATSU
MODEL#PLP-01
WAVELENGTH: 410 nm
PULSE WIDTH
PICOSECOND
LIGHT
PULSER
PICOSECOND
LIGHT
R3809U-61/-63/-64
R3809U-61/-63/-64
TRIGGER
OUT
PULSER
(FWHM)
:
35 ps
HAMAMATSU C9727
HAMAMATSU
TRIGGER
OUT
MODEL#PLP-01
WAVELENGTH: 410 nm
PULSE WIDTH
HIGH VOLTAGE
POWER SUPPLY
HAMAMATSU C9727
HIGH VOLTAGE
POWER SUPPLY
(FWHM)
:
35 ps
HAMAMATSU
C5594
AMP
CFD
TRIGGER IN
50 Ω LOAD
OSCILLOSCOPE
ORTEC 457
START
STOP
DELAY
ORTEC 425A
TAC
TENNELEC TC-454
COMPUTER
COMPUTER
MCA
TPMHC0232ED
TPMHC0233ED
MCP-PMT R3809U-61/-63/-64
Figure 7: Dimensional Outlines (Unit: mm)
GR3809U-61/-63/-64
EFFECTIVE
PHOTOCATHODE
DIAMETER 10 MIN.
ALUMINUM HOUSING CASE
PHOTOCATHODE
SHV-R CONNECTOR
(-HV INPUT)
2.8 0.2
4.2 0.1 7.0 0.2
52.5 0.5
70.2 0.5
SMA-R CONNECTOR
(OUTPUT)
TPMHA0522EA
ACCESSORIES
THERMOELECTRIC COOLING UNIT HIGH SPEED AMPLIFIER
BENCH-TOP HIGH VOLTAGE
POWER SUPPLY C9727/-01
C10373 Series
C5594 Series
Specifications
Specifications
Specifications
Frequency
Output Voltage .................. 0 V to -3500 V
Cooling.................. Thermoelectric cooling
using peltier module
Heat Exchange Medium .................. Water
Cooling Temperature
(with cooling water at +20 °C)
.......................................... Approx. -30 °C
AC Input Voltage ................ 100 V to 240 V
Response Range ......... 50 kHz to 1.5 GHz Maximum Output Current ................. 2 mA
Voltage Gain .......................... 36 dB (Typ.) Line Regulation Against 10 % Line Voltage
Input/Output Impedance.................... 50 Ω Change AB (Max.) ........................ 0.005 %
Noise Figure (NF) .................... 5 dB (Typ.) Load Regulation Against 0 % to 100 % Load
Supply Voltage................... +12 V to +16 V Change A (Max.) ............................ 0.03 %
Supply Current .................... 95 mA (Max.) Ripple / Noise (p-p) AB (Typ.) ....... 0.003 %
Drift (after 30 min Warm-up) AB (Typ.)
................................................ 0.05 % / h
Temperature Coefficient AB (Max.) .. 0.01 % / °C
AC Input Voltage ................... 100 V to 240 V
Power Consumption AB (Max.) .. Approx. 60 V·A
NOTE: AAt maximum output voltage
BAt maximum output current
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HAMAMATSU PHOTONICS K.K.
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
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TPMH1295E07
MAY 2015 IP
Italy: Hamamatsu Photonics Italia S.r.l.: Strada della Moia, 1 int. 6, 20020 Arese (Milano), Italy, Telephone: (39)02-93581733, Fax: (39)02-93581741 E-mail: info@hamamatsu.it
China: Hamamatsu Photonics (China) Co., Ltd.: B1201 Jiaming Center, No.27 Dongsanhuan Beilu, Chaoyang District, Beijing 100020, China, Telephone: (86)10-6586-6006, Fax: (86)10-6586-2866 E-mail: hpc@hamamatsu.com.cn
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