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BR16 Datasheet(PDF) 4 Page - Amphenol Corporation |
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BR16 Datasheet(HTML) 4 Page - Amphenol Corporation |
4 / 4 page Type E Insulations A polyimide sleeve is epoxied over the weld joints (as in the Type B insulations) and then multiple conformal dip coatings are applied (as in the Type C insulations) for fully immersible assemblies. The same insulating material options are available. Insulated Extension Leads The standard insulated extension lead sub assembly has 38 gauge 0.004 in (0.10 mm) diameter, nickel alloy 200, bifilar, heavy ISONEL insulation over conductors and a length of 6.5 (1.98 m) ±1/2 ft (±0.15 m). Other options, including any specified by the customer, are available upon special order. Wire Gauges #38 GA 0.004 in (0.10 mm), #40GA 0.0031 in (0.079 mm) Conductors Nickel alloy 200 Insulation • HeavyISONEL:foruseto356°F(180°C),excellent abrasion resistance, our standard coating. • Polyurethane:foruseto221°F(105°C),easily stripped, excellent solderability. • Polyimide:foruseto446°F(230°C),excellentthermal and dielectric properties, (not recommended for water and certain other conductive fluids) Construction • Bifilar:Parallelconductors,ourstandard • Single:Individuallyinsulatedlead-wires • Twisted Pair: 0.1 in (2.54 mm) lay typical Length 6.5 ft (1.98 m) ±0.5 ft (±0.15 m) is standard, specify other lengths as desired. All lengths over one foot are supplied on a plastic bobbin with the wires wrapped so that the thermistor end is removed last. Table 1: Standard Sizes of NTC Type AB6 Thermistor Assemblies Thermistor Maximum Maximum Diameter of Assembly Type Thermistor Diameter in (mm) A8 B2 B4 C8 D2 E3 E5 E8 BR11 0.012 0.014 0.018 0.014 0.022 0.034 0.020 0.022 0.024 (0.30) (0.35) (0.45) (0.35) (0.55) (0.86) (0.50) (0.55) (0.60) BR14 0.016 0.016 0.021 0.016 0.024 0.036 0.022 0.025 0.027 (0.40) (0.40) (0.53) (0.40) (0.60) (0.91) (0.55) (0.63) (0.68) BR16 0.017 0.017 0.022 0.017 0.025 0.037 0.023 0.026 0.028 (0.43) (0.43) (0.55) (0.43) (0.63) (0.93) (0.58) (0.66) (0.71) BR23 0.025 0.025 0.032 0.025 0.033 0.045 0.031 0.036 0.038 (0.63) (0.63) (0.81) (0.63) (0.83) (1.14) (0.78) (0.91) (0.96) BR32 0.033 0.033 0.040 0.033 0.041 0.053 0.039 0.044 0.046 (0.83) (0.83) (1.01) (0.83) (1.04) (1.34) (0.99) (1.11) (1.16) BR42 0.046 0.046 0.053 0.046 0.054 0.066 0.052 0.057 0.059 (1.16) (1.16) (1.34) (1.16) (1.37) (1.67) (1.32) (1.44) (1.49) BR55 0.060 0.060 0.070 0.060 0.068 0.080 0.066 0.074 0.076 (1.52) (1.52) (1.77) (1.52) (1.72) (2.03) (1.67) (1.87) (1.93) GC 11 0.012 0.014 0.018 0.014 0.022 0.034 0.020 0.022 0.024 (0.30) (0.35) (0.45) (0.35) (0.55) (0.86) (0.50) (0.55) (0.50) GC 14 0.016 0.016 0.021 0.016 0.024 0.036 0.022 0.026 0.027 (0.40) (0.40) (0.53) (0.40) (0.60) (0.93) (0.55) (0.63) (0.68) GC 16 0.017 0.017 0.022 0.017 0.025 0.037 0.023 0.026 0.028 (0.43) (0.43) (0.55) (0.43) (0.63) (0.93) (0.58) (0.66) (0.71) GC 32 0.033 0.033 0.040 0.033 0.041 0.053 0.039 0.044 0.046 (0.83) (0.83) (1.01) (0.83) (1.04) (1.34) (0.99) (1.11) (1.16) AAS-920-254B-04/2014 www.amphenol-sensors.com © 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 Special Coding (cont.) |
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