H12700 SERIES - Hamamatsu Photonics

FLAT PANEL TYPE
MULTIANODE PMT ASSEMBLY
H12700 SERIES
52 mm Square, Bialkali Photocathode, 10-stage
8 × 8 Multianode, Small Dead Space, Fast Time Response
FEATURES
● Large Effective Area: 48.5 mm × 48.5 mm
● Packing Density: 87 %
● 8 × 8 Multianode,
Pixel Size: 6 mm × 6 mm / Anode
● High Quantum Efficiency: 33 % Typ.
● Two Types are Available for HV Input
H12700A Series: Cable Input Type
H12700B Series: Pin Input Type
APPLICATIONS
Left: H12700A, Right: H12700B
● Academic Research
(RICH, Gamma Ray Telescope, etc.)
● Nuclear Medicine Equipment
(PET, Gamma Camera, etc.)
● 2D Radiation Imaging
Figure 1: Typical Spectral Response
107
TPMHB0918EA
H12700A-03 / H12700B-03
100
106
10
H12700A
/ H12700B
GAIN
CATHODE RADIANT SENSITIVITY (mA/W)
QUANTUM EFFICIENCY (%)
1000
Figure 2: Typical Gain
TPMHB0917EA
1
105
0.1
CATHODE RADIANT SENSITIVITY
QUANTUM EFFICIENCY
0.01
200
300
400
500
600
WAVELENGTH (nm)
700
800
104
500
600
700
800
900 1000 1100 1200
SUPPLY VOLTAGE (V)
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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. ©2014 Hamamatsu Photonics K.K.
FLAT PANEL TYPE MULTIANODE PMT ASSEMBLY
H12700 SERIES
SPECIFICATIONS
Spectral Response
Type No.
Range
H12700A
H12700B
H12700A-03
H12700B-03
(nm)
300 to 650
300 to 650
185 to 650
185 to 650
A
B
C
Maximum Ratings
Cathode Characteristics
Anode to
Luminous D Blue E
Average Divider
Cathode
Sensitivity
Anode Current
Index Supply
Output
at
(CS 5-58) Voltage
Current -1100 V
Typ.
Min.
Typ.
in Total
(µA) (µA/lm) (µA/lm)
(V)
(µA)
(V)
-1000
12
75
60
225
-1100
100
-1000
12
75
60
225
-1100
100
-1000
12
75
60
225
-1100
100
-1000
12
75
60
225
-1100
100
Supply
Dynode Voltage
PhotoBetween
Peak
Window
Wavelength cathode Material Structure Anode
and
Material
/ Stages
Cathode
(nm)
380
380
380
380
BA
BA
BA
BA
MC/10
MC/10
MC/10
MC/10
K
K
U
U
NOTE: A BA: Bialkali
B K: Borosilicate glass, U: UV glass
C MC: Metal channel
D The light source is a tungsten filament lamp operated at a distribution temperature of 2856 K. Supply voltage is 150 volts between the cathode and
all other electrodes connected together as anode.
E 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 D.
F Measured with the same light source as Note D and with the anode-to-cathode supply voltage and voltage distribution ratio shown in Table 1 below.
G Measured with the same supply voltage and voltage distribution ratio as Note F after 30 minute storage in darkness.
H Those are test data when a signal from a central channel (P28) of 64 anodes is used, while all photocathode are illuminated by pulsed light source.
J The rise time is the time for the output pulse to rise from 10 % to 90 % of the peak amplitude when the whole photocathode is illuminated by a delta
function light pulse.
K 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 amplitude. In measurement, the whole photocathode is illuminated.
L Also called transit time jitter. This is the fluctuation in electron transit time between individual pulses in the single photoelectron event, and defined
as the FWHM of the frequency distribution of electron transit time.
Table 1: Voltage Distribution Ratio and Supply Voltage
Electrodes
K
Dy1 Dy2 Dy3 Dy4 Dy5 Dy6 Dy7 Dy8 Dy9 Dy10 GR
P
Distribution Ratio
2
1
1
1
1
1
1
1
1
1
1
0.5
Supply Voltage: -1000 V, K: Cathode, Dy: Dynode, GR: Guard Ring P: Anode
P8
73
71
68
66
71
68
80
76
83
78
76
75
81
82
91
80
77
79
77
82
92
94
74
73
77
72
82
91
68
69
73
77
80
57
64
73
76
57
60
60
52
56
51
P1
P8
P8
100
2.0
—
—
—
—
—
—
88
0.9
0.1
—
—
—
—
—
—
95
—
—
0.0
0.5
0.1
—
—
—
96
100
—
—
0.5
100
0.6
—
0.1
0.7
87
92
97
—
—
0.1
0.7
0.1
—
0.5
100
76
81
87
91
—
—
—
—
—
—
0.1
0.6
68
66
71
84
79
—
—
0.2
1.0
0.2
—
—
62
58
57
69
62
—
—
2.1
100
1.9
—
—
P64
TOP VIEW
Figure 5: Single Photon Counting
(Example)
P1
P8
P8
P57
P64
300
SUPPLY VOLTAGE: -1000 V
MEASURING TIME: 100 s
TOP VIEW
SUPPLY VOLTAGE: -1000 V
LIGHT SOURCE: TUNGSTEN LAMP with BLUE FILTER
(DC LIGHT)
SPOT ILLUMINATION (APERTURE SIZE): 6 mm square
on each channel
TPMHB0919EA
P64
TOP VIEW
3000
SUPPLY VOLTAGE: -1000 V
LIGHT SOURCE: TUNGSTEN LAMP with BLUE FILTER
(DC LIGHT)
FIBER SIZE: 1.0 mm (Kuraray: Clear Fiber NA=0.72)
TPMHB0920EA
SIGNAL + DARK COUNT
P1
Figure 4: Anode Cross-talk
(Example)
SIGNAL + DARK COUNT
: 4155 s-1
2000
200
1000
100
DARK COUNT
Figure 3: Anode Uniformity
(Example)
DARK
COUNT
: 8 s-1
0
0
200
400
600
800
0
1000
PULSE HEIGHT / CHANNEL NUMBER (ch)
TPMHB0921EA
Anode Characteristics
Luminous F
F
G
Typ.
1.5 × 106
1.5 × 106
1.5 × 106
1.5 × 106
Typ.
(nA)
0.1
0.1
0.1
0.1
Max.
(nA)
—
—
—
—
Typ.
(nA)
6
6
6
6
Uniformity
Pulse
Linearity
Between
per
Each Anode
Transit L
Channel
Time
Spread
[±2 %
Typ.
Max.
Deviation] Typ.
(ns)
(mA)
0.8
0.28
1: 3
1: 2
0.8
0.28
1: 3
1: 2
0.8
0.28
1: 3
1: 2
0.8
0.28
1: 3
1: 2
H
Time Response
Dark Current Dark Current
in Total
per Channel
Gain
Min. Typ.
(A/lm) (A/lm)
110
—
110
—
110
—
110
—
G
Rise
Time
Typ.
(ns)
0.65
0.65
0.65
0.65
Max.
(nA)
50
50
50
50
J
Transit
Time
Typ.
(ns)
5.3
5.3
5.3
5.3
K
Type No.
H12700A
H12700B
H12700A-03
H12700B-03
Figure 6: Dimensional Outlines and Basing Diagram (Unit: mm)
●HV Cable Input Type (H12700A/H12700A-03)
32.7 ± 1.0
27.4 ± 0.9
6 × 6=36
6.25
PLASTIC BASE
GND
ANODE
GND
ANODE
58.57.50.49.42.41.34.33.26.25.18.17.10.9.2.1
GND
ANODE
30.29.22.21.14.13.6.5
M3 DEPTH 2.5
4-SIGNAL OUTPUT CONNECTOR *A
HSA-200-D36P-X
mfg. JC ELECTRONICS CORPORATION
PC BOARD
TOP VIEW
60.59.52.51.44.43.36.35.28.27.20.19.12.11.4.3
36
38.37
62.61.54.53.46.45
GND
ANODE
2
INSULATING TAPE
SIG1
P57 P58 P59 P60 P61 P62 P63 P64
6.25
SIG2
6.25
P49 P50 P51 P52 P53 P54 P55 P56
SIG3
P41 P42 P43 P44 P45 P46 P47 P48
SIG4
P33 P34 P35 P36 P37 P38 P39 P40
450 ± 20
52.0 ± 0.3
6 × 6=36
P25 P26 P27 P28 P29 P30 P31 P32
0.5
2 × 17=34
52.0 ± 0.3
P9 P10 P11 P12 P13 P14 P15 P16
P17 P18 P19 P20 P21 P22 P23 P24
4
PHOTOCATHODE (EFFECTIVE AREA)
48.5
6.25
P1 P2 P3 P4 P5 P6 P7 P8
12 × 3=36
4.5 ± 0.3
4
2
DY.64.63.56.55.48.47.39.32.31.24.23.16.15.8.7
16.4 ± 0.5
1.5
START MARK
CONNECTION FOR SIGNAL CONNECTORS
(BOTTOM VIEW)
GND P7
GND P5
GND P3
GND P1
GND P8
GND P6
GND P4
GND P2
GND P15 GND P13 GND P11 GND P9
GND P16 GND P14 GND P12 GND P10
GND P23 GND P21 GND P19 GND P17
GND P24 GND P22 GND P20 GND P18
GND P31 GND P29 GND P27 GND P25
GND P32 GND P30 GND P28 GND P26
GND P39 GND P37 GND P35 GND P33
GND P40 GND P38 GND P36 GND P34
GND P47 GND P45 GND P43 GND P41
GND P48 GND P46 GND P44 GND P42
GND P55 GND P53 GND P51 GND P49
GND P56 GND P54 GND P52 GND P50
GND P63 GND P61 GND P59 GND P57
GND P64 GND P62 GND P60 GND P58
GND DY12 GND GND
*B GND GND *B
GND GND GND GND
*B GND GND *B
SIG4
SIG3
SIG2
SIG1
SIDE VIEW
NOTE *B: No pin.
NOTE *A: Suitable sockets for the connectors will
be attached.
For signal output is HSC-200-D36P-X
(JC ELECTRONICS CORPORATION).
-HV: SHV-P
(SHIELD CABLE, GRAY)
BOTTOM VIEW
TPMHA0601EA
Figure 7: Internal Circuit (H12700A/H12700A-03)
GR
K
DY1 DY2 DY3 DY4 DY5 DY6 DY7 DY8 DY9 DY10
P8
P64
P7
P63
P6
P62
P5
P61
P4
P60
P3
P59
P2
P58
P1
P57
C10
R16
R17
R18
R19
C1
C2
C3
R21
R20
R1
R2
R3
R4
R5
R6
R7
C4
R8
ACTIVE VOLTAGE
DIVIDER
C12
C11
R23
R22
4-(DOUBLE-ROW 2 mm Pitch) CONNECTOR
ANODE OUTPUT P64
ANODE OUTPUT P63
ANODE OUTPUT P62
ANODE OUTPUT P61
ANODE OUTPUT P60
ANODE OUTPUT P59
ANODE OUTPUT P58
ANODE OUTPUT P57
ANODE OUTPUT P8
ANODE OUTPUT P7
ANODE OUTPUT P6
ANODE OUTPUT P5
ANODE OUTPUT P4
ANODE OUTPUT P3
225 µA at -1100 V
ANODE OUTPUT P2
DIVIDER CURRENT
C1, C2: 0.01 µF
C3: 0.022 µF
C4: 0.033 µF
C10: 0.01 µF
C11, C12: 0.0015 µF
ANODE OUTPUT P1
R1 to R8: 390 kΩ
R16, R20: 10 kΩ
R17 to R19: 51 Ω
R21: 1 MΩ
R22, R23: 4.99 kΩ
SIGNAL GND
SHV-P
(SHIELD CABLE, GRAY)
DY10 OUTPUT
......
FLAT PANEL TYPE MULTIANODE PMT ASSEMBLY
H12700 SERIES
Figure 8: Dimensional Outlines and Basing Diagram (Unit: mm)
●HV PIN Input Type (H12700B/H12700B-03)
GND
ANODE
GND
ANODE
58.57.50.49.42.41.34.33.26.25.18.17.10.9.2.1
60.59.52.51.44.43.36.35.28.27.20.19.12.11.4.3
-HV
-HV
SIG1
GND
ANODE
30.29.22.21.14.13.6.5
GND
ANODE
2
HV
2
36
38.37
62.61.54.53.46.45
SIG2
P57 P58 P59 P60 P61 P62 P63 P64
SIG3
6.25
P49 P50 P51 P52 P53 P54 P55 P56
GND
P41 P42 P43 P44 P45 P46 P47 P48
SIG4
P33 P34 P35 P36 P37 P38 P39 P40
12 × 3=36
4.5 ± 0.3
4
2
12
4
2
52.0 ± 0.3
6 × 6=36
P25 P26 P27 P28 P29 P30 P31 P32
0.5
2 × 17=34
52.0 ± 0.3
P9 P10 P11 P12 P13 P14 P15 P16
P17 P18 P19 P20 P21 P22 P23 P24
PHOTOCATHODE (EFFECTIVE AREA)
48.5
6.25
P1 P2 P3 P4 P5 P6 P7 P8
GND
6 × 6=36
6.25
-HV CONNECTOR *A
HSA-200-S02P
mfg. JC ELECTRONICS
4 CORPORATION
16.4 ± 0.5
1.5
START MARK
DY.64.63.56.55.48.47.39.32.31.24.23.16.15.8.7
32.7 ± 1.0
27.4 ± 0.9
6.25
GND CONNECTOR *A
HSA-200-S02P
mfg. JC ELECTRONICS
CORPORATION
PLASTIC BASE
PC BOARD
TOP VIEW
M3 DEPTH 2.5 GND
2
INSULATING TAPE
23.5
4-SIGNAL OUTPUT CONNECTOR *A
HSA-200-D36P-X
mfg. JC ELECTRONICS CORPORATION
SIDE VIEW
CONNECTION FOR SIGNAL CONNECTORS
(BOTTOM VIEW)
GND P7
GND P5
GND P3
GND P1
GND P8
GND P6
GND P4
GND P2
GND P15 GND P13 GND P11 GND P9
GND P16 GND P14 GND P12 GND P10
GND P23 GND P21 GND P19 GND P17
GND P24 GND P22 GND P20 GND P18
GND P31 GND P29 GND P27 GND P25
GND P32 GND P30 GND P28 GND P26
GND P39 GND P37 GND P35 GND P33
GND P40 GND P38 GND P36 GND P34
GND P47 GND P45 GND P43 GND P41
GND P48 GND P46 GND P44 GND P42
GND P55 GND P53 GND P51 GND P49
GND P56 GND P54 GND P52 GND P50
GND P63 GND P61 GND P59 GND P57
GND P64 GND P62 GND P60 GND P58
GND DY12 GND GND
*B GND GND *B
GND GND GND GND
*B GND GND *B
SIG4
SIG3
SIG2
SIG1
NOTE *B: No pin.
BOTTOM VIEW
NOTE *A: Suitable sockets for the connectors will be attached.
For signal output is HSC-200-D36P-X (JC ELECTRONICS CORPORATION).
For -HV, GND is SQT-102-01-L-S (SAMTEC).
TPMHA0602EA
Figure 9: Internal Circuit (H12700B/H12700B-03)
GR
K
DY1 DY2 DY3 DY4 DY5 DY6 DY7 DY8 DY9 DY10
P8
P64
P7
P63
P6
P62
P5
P61
P4
P60
P3
P59
P2
P58
P1
P57
C10
R16
R17
R18
R19
C1
C2
C3
R21
R20
R1
R2
R3
R4
R5
R6
R7
C4
R8
ACTIVE VOLTAGE
DIVIDER
C12
C11
R23
R22
ANODE OUTPUT P64
ANODE OUTPUT P63
ANODE OUTPUT P62
ANODE OUTPUT P61
ANODE OUTPUT P60
ANODE OUTPUT P59
ANODE OUTPUT P58
ANODE OUTPUT P57
ANODE OUTPUT P8
ANODE OUTPUT P7
ANODE OUTPUT P6
ANODE OUTPUT P5
ANODE OUTPUT P4
225 µA at -1100 V
ANODE OUTPUT P3
DIVIDER CURRENT
C1, C2: 0.01 µF
C3: 0.022 µF
C4: 0.033 µF
C10: 0.01 µF
C11, C12: 0.0015 µF
ANODE OUTPUT P2
R1 to R8: 390 kΩ
R16, R20: 10 kΩ
R17 to R19: 51 Ω
R21: 1 MΩ
R22, R23: 4.99 kΩ
ANODE OUTPUT P1
GND
SIGNAL GND
-HV
DY10 OUTPUT
......
4-(DOUBLE-ROW 2 mm Pitch) CONNECTOR
HAMAMATSU PHOTONICS K.K.
www.hamamatsu.com
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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TPMH1348E01
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AUG. 2014. IP
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: [email protected]