422E55(422E38)美国PCB在线充电转换器库存甩卖
422E55(422E38)美国PCB在线充电转换器库存甩卖
Model: 422E55
在线充电转换器,0.5 mV/pC,+/-5V输出,-5%频率0.5 Hz
灵敏度:(0.5%)0.5mv/pC
输出电压:5.0V
温度范围:-65至+250°F(-54至+121°C)
外壳材料:不锈钢
Performance | |||
Sensitivity (±2.5 %) (Charge Conversion) | 0.5 mV/pC | 0.5 mV/pC | |
Overrange | ±8 V | ±8 V | |
Low Frequency Response (-5 %) | 0.5 Hz | 0.5 Hz | |
High Frequency Response (-5 %) | 100 kHz | 100 kHz | [1] |
Non-Linearity | ≤1.0 % FS | ≤1.0 % FS | |
Environmental | |||
Temperature Range (Operating) | -65 to +250 °F | -54 to +121 °C | |
Maximum Shock | 5000 g pk | 49050 m/s² pk | |
Maximum Vibration (5 to 2000 Hz) | 100 g pk | 981 m/s² pk | |
Electrical | |||
Excitation Voltage | +18 to 28 VDC | +18 to 28 VDC | |
Output Bias Voltage | +9 to 13 VDC | +9 to 13 VDC | |
Output Voltage | ±5.0 V | ±5.0 V | |
Constant Current Excitation | 2 to 20 mA | 2 to 20 mA | |
Output Impedance | 100 Ohm | 100 Ohm | |
Output Polarity | Inverted | Inverted | |
Maximum Input Voltage | +30 V | +30 V | |
Broadband Electrical Noise (1 to 10000 Hz) | 33 µV | -90 dB | |
Spectral Noise (1 Hz) | 9.8 µV/√Hz | -100 dB | [2] |
Spectral Noise (10 Hz) | 3 µV/√Hz | -110 dB | [2] |
Spectral Noise (100 Hz) | 0.8 µV/√Hz | -122 dB | [2] |
Spectral Noise (1 kHz) | 0.4 µV/√Hz | -128 dB | [2] |
Spectral Noise (10 kHz) | 0.2 µV/√Hz | -134 dB | [2] |
Capacitance (Feedback) | 2000 pF | 2000 pF | |
Overload Recovery Time | 10 µsec | 10 µsec | |
Discharge Time Constant | >1 sec | >1 sec | |
Resistance (Feedback) | Ohm | Ohm | |
Source Capacitance Loading (at input) | -0.0005 %/pF | -0.0005 %/pF | |
Physical | |||
Housing Material | Stainless Steel | Stainless Steel | |
Sealing | Epoxy | Epoxy | |
Electrical Connector (Input) | 10-32 Coaxial Jack | 10-32 Coaxial Jack | |
Electrical Connector (Output) | BNC Jack | BNC Jack | |
Size - Diameter | 0.52 in | 13 mm | |
Size - Length | 3.4 in | 86 mm | |
Weight | 1.15 oz | 32.7 gm |
Model: 422E38
在线充电转换器,0.1 mV/pC,+/-2.5V输出,-5%频率5 Hz,用于高温传感器
灵敏度:(±2%)0.1 mV/pC
输出电压:2.5V
温度范围:-65至+250°F(-54至+121°C)
外壳材料:不锈钢
Performance | |||
Sensitivity (±2 %) (Charge Conversion) | 0.1 mV/pC | 0.1 mV/pC | |
Input Range | ±25000 pC | ±25000 pC | |
Low Frequency Response (-5 %) | 5 Hz | 5 Hz | [2] |
High Frequency Response (2.2 mA) | 4 kHz | 4 kHz | [1] |
High Frequency Response (4 mA) | 15 kHz | 15 kHz | [1] |
High Frequency Response (20 mA) | 100 kHz | 100 kHz | [1] |
Non-Linearity | ≤1.0 % FS | ≤1.0 % FS | |
Environmental | |||
Temperature Range (Operating) | -65 to +250 °F | -54 to +121 °C | |
Temperature Response (Sensitivity Deviation) | <2 % | <2 % | |
Maximum Shock | 1000 g pk | 9810 m/s² pk | |
Humidity Range | 100 % | 100 % | |
Electrical | |||
Excitation Voltage | +18 to 28 VDC | +18 to 28 VDC | |
Output Bias Voltage | +12.00 to 15.00 VDC | +12.00 to 15.00 VDC | |
Output Voltage (at specified measurement range) | ±2.5 V | ±2.5 V | |
Constant Current Excitation | 2.2 to 20 mA | 2.2 to 20 mA | |
Output Impedance | <10 Ohm | <10 Ohm | |
Settling Time | <6 min | <6 min | |
Output Polarity | Inverted | Inverted | |
Maximum Input Voltage | 30 V | 30 V | |
Broadband Electrical Noise (1 to 10000 Hz) | 14.0 µV | -97 dB | [3] |
Spectral Noise (1 Hz) | 8.90 µV/√Hz | -101 dB | [3] |
Spectral Noise (10 Hz) | 0.85 µV/√Hz | -121 dB | [3] |
Spectral Noise (100 Hz) | 0.31 µV/√Hz | -130 dB | [3] |
Spectral Noise (1 kHz) | 0.17 µV/√Hz | -135 dB | [3] |
Spectral Noise (10 kHz) | 0.07 µV/√Hz | -143 dB | [3] |
Capacitance (Maximum allowable at input) | 20000 pF | 20000 pF | |
Resistance (Minimum required at input) | 10000 Ohm | 10000 Ohm | |
Source Capacitance Loading | <0.0005 %/pF | <0.0005 %/pF | |
Physical | |||
Housing Material | Stainless Steel | Stainless Steel | |
Sealing | Welded | Welded | |
Electrical Connector (Input) | 10-32 Coaxial Jack | 10-32 Coaxial Jack | |
Electrical Connector (Output) | BNC Jack | BNC Jack | |
Size - Diameter | 0.52 in | 13 mm | |
Size - Length | 3.4 in | 86 mm | |
Weight | 1.1 oz | 31 gm |
水下传感器具备非凡的“听觉”
日前,一个国外的研究小组开发了一个水下声学传感器,它能地判定声源的方向,从而改进那些早期的水听器。该传感器的灵感来源于鱼的内耳解剖结构,它用绒毛的运动对声波作出响应,因此传感器采用铰链连接的两个平板。一个平板固定在某个位置,另一个是采用与水密度相匹配复合材料制造的可自由运动平板。第二个平板的运动改变一根光纤中的信号,研究人员用一只光电二极管对其作分析。
该项目由*管理部门出资,进行资金支持,它可以帮助*减少拖拽在船边的传感器阵列长度,可地测定水下物体的位置,包括潜艇,也就是说水下传感器也可再军事上有所应用,功能十分强劲。
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