B-07-P-B [AMPHENOL]
Small glass coated bead thermistors on fine diameter platinum alloy lead-wires;型号: | B-07-P-B |
厂家: | Amphenol |
描述: | Small glass coated bead thermistors on fine diameter platinum alloy lead-wires |
文件: | 总4页 (文件大小:127K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
NTC Type B Series
Glass Coated Bead
Thermistors
Features
Type B05/07/10/14
Type B35/43
Small glass coated bead thermistors on fine diameter
Large glass coated bead thermistors on fine diameter
platinum alloy lead-wires.
platinum alloy lead-wires.
• Extremely small sizes
• Suitable for most low cost temperature measurement,
control or compensation applications.
• Very fast thermal response times
• Special thin glass coatings provide hermetic seal
• Low heat capacity and high power sensitivity
• Special thin glass coatings provide hermetic seal
• Suitable for self-heated applications such as liquid level
sensing or gas flow measurement
• Suitable for self-heated applications such as: gas
chromatography, thermal conductivity analysis or gas
flow measurement
• Normal operating/storage temperatures range from
• -112°F (-80°C) to: 221°F (105°C) for Material system
E0, 392°F (200°C) for Material systems A1 through A4,
572°F (300°C) for Material systems A5 through D17
• Normal operating/storage temperatures range from
• -112°F (-80°C) to: 221°F (105°C) for Material system
E0, 392°F (200°C) for Material systems A1 through A4,
572°F (300°C) for Material systems A5 through D17
• Unaffected by severe environmental exposures,
including nuclear radiation
• Intermittent operation to 1112°F (600°C) is permissible,
• Unaffected by severe environmental exposures,
however, stability will be degraded
including nuclear radiation
• Intermittent operation to 1112°F (600°C) is permissible,
however, stability will be degraded
Amphenol
Advanced Sensors
Type B Series Specifications
B14
Type B05/07/10/14
• Nominal diameter: 0.0011 in (0.03 mm)
Thermal and Electrical Properties
• Maximum lead length: 0.312 in (7.9 mm)
The following lists the thermal and electrical
• Lead material: platinum alloy
properties for all small glass coated thermis-
• Available cuts: “J” adjacent (stubs), “K” adjacent or “P” opposite
tors. All definitions and test methods per MIL-
PRF-23648.
Body Dimensions
B05
• Nominal diameter: 0.005 in (0.13 mm)
• Maximum diameter: 0.0065 in (0.17 mm)
• Maximum length: 0.012 in (0.30 mm)
B07
• Nominal diameter: 0.007 in (0.18 mm)
• Maximum diameter: 0.00850 in (0.22 mm)
• Maximum length: 0.014 in (0.36 mm)
B10
• Nominal diameter: 0.010 in (0.25 mm)
• Maximum diameter: 0.0115 in (0.29 mm)
• Maximum length: 0.020 in (0.510 mm)
B14
Type B05/07/10/14 and Type B35/43 dimensions
• Nominal diameter: 0.014 in (0.36 mm)
• Maximum diameter: 0.016 in (0.417 mm)
• Maximum length: 0.030 in (0.76 mm)
Material System (Table A)
Lead-Wires
Nominal Resistance Range at 77°F (25°C)
Code
Letter Curve
R vs T 25/125
B05
Ratio
B05
B07
B10
B14
• Nominal diameter: 0.0007 in (0.02 mm)
• Maximum lead length: 0.312 in (7.9 mm)
• Lead material: platinum alloy
• Available cuts: “J” adjacent (stubs), “K”
adjacent or “P” opposite
_
_
_
_
E
A
A
A
A
A
A
A
B
B
B
B
B
B
B
B
D
D
0
5.0
1
11.8
12.5
14
1 to 1.5 kΩ
1 to 1.5 kΩ
300 to 680 Ω
680 to 1.6 kΩ
1.6 to 3.6 kΩ
3.6 to 6.8 kΩ
300 to 680 Ω
680 to 1.6 kΩ
1.6 to 3.6 kΩ
3.6 to 6.8 kΩ
2
1.5 to 3.6 kΩ
3.6 to 7.5 kΩ
7.5 to 15 kΩ
1.5 to 3.6 kΩ
3.6 to 7.5 kΩ
7.5 to 15 kΩ
3
4
16.9
19.8
22.1
22.7
29.4
30.8
32.3
35.7
38.1
45
B07
5
15 to 3.6 kΩ
15 to 51 kΩ
6.8 to 27 kΩ
6.8 to 27 kΩ
_
_
_
_
• Nominal diameter: 0.0007 in (0.02 mm)
• Maximum lead length: 0.312 in (7.9 mm)
• Lead material: platinum alloy
• Available cuts: “J” adjacent (stubs), “K”
adjacent or “P” opposite
6
7
51 to 150 kΩ
150 to 270 kΩ
270 to 470 kΩ
470 to 750 kΩ
750 to 1.6 MΩ
1.6 to 2.7 MΩ
2.7 to 6.8 MΩ
51 to 150 kΩ
150 to 270 kΩ
270 to 470 kΩ
470 to 750 kΩ
750 to 1.6 MΩ
1.6 to 2.7 MΩ
2.7 to 6.8 MΩ
27 to 75 kΩ
27 to 75 kΩ
8
75 to 130 kΩ
130 to 240 kΩ
240 to 360 kΩ
360 to 820 kΩ
820 to 1.3 MΩ
1.3 to 3.36 MΩ
3.3 to 6.86 MΩ
75 to 130 kΩ
130 to 240 kΩ
240 to 360 kΩ
360 to 820 kΩ
820 to 1.3 MΩ
1.3 to 3.36 MΩ
3.3 to 6.86 MΩ
9
10
11
12
13
14
15
16
17
B10
• Nominal diameter: 0.0011 in (0.03 mm)
• Maximum lead length: 0.312 in (7.9 mm)
• Lead material: platinum alloy
48.1
56.5
75.6
81
6.8 to 10 MΩ
6.8 to 10 MΩ
_
_
6.8 to 10 MΩ
6.8 to 10 MΩ
• Available cuts: “J” adjacent (stubs), “K”
adjacent or “P” opposite
_
_
_
_
_
_
_
_
2
Type B Series Specifications
Thermal Time Constant
Options
• Non-standard resistance tolerances
B05
• Still air at 77°F (25°C): 0.12 second
• Plunge into water: 5.0 msec
• Non-standard resistance values
• Reference temperature(s) other than 77°F (25°C)-
specify
B07
• Mounting in special housings or enclosures
• Longer continuous leads
• Still air at 77°F (25°C): 0.23 second
• Plunge into water: 7.0 msec
• Welded or soldered extension leads-specify lead
material, diameter, length, and insulation, if any
• Solderable or weldable/solderable leads
• Calibration-specify temperature(s)
• Interchangeable pairs or sets, R-vs-T curve matching-
specify temperature range(s) and tolerance(s)
• Special aging and conditioning for high reliability
applications
B10
• Still air at 77°F (25°C): 0.5 second
• Plunge into water: 10 msec
B14
• Still air at 77°F (25°C): 1 second
• Plunge into water: 15 msec
Dissipation Constant
B05
• Still air at 77°F (25°C): 0.045 mW/°C
• Still water at 77°F (25°C): 0.23 mW/°C
Type B35/43
Thermal and Electrical Properties
B07
The following lists the thermal and electrical properties for
all large glass coated thermistors. All definitions and test
methods per MIL-PRF-23648.
• Still air at 77°F (25°C): 0.06 mW/°C
• Still water at 77°F (25°C): 0.3 mW/°C
B10
Body Dimensions
• Still air at 77°F (25°C): 0.09 mW/°C
• Plunge into water: 0.45 mW/°C
B35
• Nominal diameter: 0.035 in (0.893 mm)
• Maximum diameter: 0.043 in (1.1 mm)
• Maximum length: 0.075 in (1.9 mm)
B14
• Still air at 77°F (25°C): 0.10 mW/°C
• Plunge into water: 0.50 mW/°C
B43
Power Rating (In Air)
• Nominal diameter: 0.043 in (1.1 mm)
• Maximum diameter: 0.050 in (1.32 mm)
• Maximum length: 0.100 in (2.5 mm)
B05
• Maximum Power Rating: 0.006 W
• 100% Maximum Power To: 77°F (25°C)
• Derated to 0% at: 392°F (200°C)
Lead-Wires
B35
B07
• Nominal diameter: 0.004 in (0.10 mm)
• Maximum lead length: 0.312 in (7.9 mm)
• Lead material: platinum alloy
• Available cuts: “J” adjacent (stubs), “K” adjacent or “P”
opposite
• Maximum Power Rating: 0.008 W
• 100% Maximum Power To: 77°F (25°C)
• Derated to 0% at: 392°F (200°C
B10
• Maximum Power Rating: 0.010 W
• 100% Maximum Power To: 77°F (25°C)
• Derated to 0% at: 392°F (200°C)
B43
• Nominal diameter: 0.004 in (0.102 mm)
• Maximum lead length: 0.312 in (7.9 mm)
• Lead material: platinum alloy
• Available cuts: “J” adjacent (stubs), “K” adjacent or “P”
opposite
B14
• Maximum Power Rating: 0.014 W
• 100% Maximum Power To: 77°F (25°C)
• Derated to 0% at: 392°F (200°C)
3
Material System (Table B)
Options
Nominal Resistance Range
at 77°F (25°C)
• Non-standard resistance tolerances
Code
Letter
R vs T
Curve
25/125
Ratio
• Non-standard resistance values
B35
B43
• Reference temperature(s) other than 77°F (25°C) - specify
• Mounting in special housings or enclosures
• Longer continuous leads
E
A
A
A
A
A
A
A
B
B
B
B
B
B
B
B
D
D
0
1
5.0
11.8
12.5
14
30 to 51 Ω
30 to 51 Ω
51 to 150 Ω
150 to 360 Ω
360 to 750 Ω
750 to 1.5 kΩ
1.5 to 3.6 kΩ
3.6 to 6.2 kΩ
6.2 to 9.1 kΩ
9.1 to 27 kΩ
27 to 43 kΩ
51 to 150 Ω
150 to 360 Ω
360 to 750 Ω
750 to 1.5 kΩ
1.5 to 3.6 kΩ
3.6 to 6.2 kΩ
6.2 to 9.1 kΩ
9.1 to 27 kΩ
27 to 43 kΩ
43 to 75 kΩ
75 to 160 kΩ
160 to 360 kΩ
360 to 750 kΩ
750 to 1.5 MΩ
1.5 to 3.0 MΩ
3.0 to 8.2 MΩ
8.2 to 20 MΩ
2
• Welded or soldered extension leads - specify lead material,
diameter, length, and insulation, if any
3
4
16.9
19.8
22.1
22.7
29.4
30.8
32.3
35.7
38.1
45
• Solderable or weldable/solderable leads
• Calibration - specify temperature(s)
5
6
• Interchangeable pairs or sets, R-vs-T curve matching; specify
temperature range(s) and tolerance(s)
7
8
• Special aging and conditioning for high reliability applications
9
10
11
12
13
14
15
16
17
43 to 75 kΩ
Ordering Information
The code number to be ordered may be specified as follows:
75 to 160 kΩ
160 to 360 kΩ
360 to 750 kΩ
750 to 1.5 MΩ
1.5 to 3.0 MΩ
3.0 to 8.2 MΩ
8.2 to 20 MΩ
Code Type
B
Glass coated bead structure
48.1
56.5
75.6
81
Code Diameter
05
07
10
14
35
43
05 mils
07 mils
10 mils
14 mils
35 mils
43 mils
Thermal Time Constant
B35
Code
Lead Configuration
J
Adjacent leads
• Still air at 77°F (25°C): 4.5 second
• Plunge into water: 100 msec
B43
K
P
Adjacent leads with stub ends glass coated
Opposite leads
Code
Material System Code
X
See table A or table B for code number
• Still air at 77°F (25°C): 5.5 second
• Plunge into water: 140 msec
Code
Power
X
Zero-power resistance as 77°F
(25°C) (see note 2 for code number)
Dissipation Constant
B35
Code
F
G
J
K
L
M
N
P
Q
R
S
Tolerance*
1
2
5
10
15
20
25
• Still air at 77°F (25°C): 0.30 mW/°C
• Still water at 77°F (25°C): 1.50 mW/°C
B43
• Still air at 77°F (25°C): 0.35 mW/°C
• Still water at 77°F (25°C): 2.00 mW/°C
30
40
50
Power Rating (In Air)
B35
Non-standard (consult factory)
B
-
____ - ____
-
____
-
____
-
____ Typical model number
• Maximum Power Rating: 0.035 W
Special tolerances are available upon request. Consult factory for special resistance tolerances, non-
standard resistances and/or non-standard temperatures.
• 100% Maximum Power To: 302°F (150°C)
B43
• Maximum Power Rating: 0.035 W
• 100% Maximum Power To: 302°F (150°C)
• Derated to 0% at: 572°F (300°C)
*The zero-power resistance at 77°F (25°C), expressed inΩ, is identified by a
three digit code number. The first two digits represent significant figures, and
the last digit specifies the number of zeros to follow. Example: 10k Ω= “103”.
The standard resistance values are from the 24-Value series decade as specified
in Military Standard MS90178.
1.0 / 1.1 / 1.2 / 1.3 / 1.5 / 1.6 / 1.8 / 2.0 / 2.2 / 2.4 / 2.7 / 3.0
3.3 / 3.6 / 3.9 / 4.3 / 4.7 / 5.1 / 5.6 / 6.2 / 6.8 / 7.5 / 8.2 / 9.1
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© 2014 Amphenol Corporation. All Rights Reserved. Specifications are subject to change without notice.
Other company names and product names used in this document are the registered trademarks or
trademarks of their respective owners.
Amphenol
Advanced Sensors
AAS-920-177B - 09/2014
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