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Model 336 cryogenic temperature controller

336

The Lake Shore 336 cryogenic temperature controller has four sensor inputs and four PID-controlled outputs and controls temperature down to 300 mK

品牌: Lake Shore Cryotronics价格: 面议服务区域: 全国

广西科米瑞实验仪器设备有限公司提供 Lake Shore Cryotronics 336 产品资料、选型咨询、供货报价和售后服务支持,价格面议。

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Model 336 cryogenic temperature controller
说明规格FAQ

说明

Technical Specifications

4 sensor inputs and 4 independent PID-controlled outputs

Temperature control from 300 mK to 1,505 K

Supports diode, RTD, and thermocouple temperature sensors

4 PID-controlled outputs: 100 W and 50 W into a 50 or 25 Ω load and 2 low-power voltage outputs

Available option cards

4 resistive/diode inputs

The Model 336 temperature controller supports the industry’s most advanced line of cryogenic temperature sensors manufactured by Lake Shore, including diodes, resistance temperature detectors (RTDs), and thermocouples. It has four sensor inputs, four control outputs, and 150 W of low-noise heater power. Two independent heater outputs providing 100 W and 50 W can be associated with any of the four sensor inputs and programmed for closed-loop temperature control in proportional-integral-derivative (PID) mode.

The controller’s zone tuning feature allows seamless temperature control from 300 mK to over 1,500 K by automatically switching temperature sensor inputs when the temperature range goes beyond the usable range of a given sensor. Alarms, relays, and ±10 V analog voltage outputs are available to help automate secondary control functions. 3-year standard warranty.

Additional Model 336 information

Model 336 cryogenic temperature controller details

Temperature controller selection guide

Sensor temperature range

Typical sensor performance

Additional resources

Temperature measurement instrumentation considerations

规格

Standard inputs and scanner optionModel 3062Input range | Excitation current | Display resolution | Measurement resolution | Electronic accuracy at 25 °C8[for the 3062 scanner option card] | Measurement temperature coefficient | Electronic control stability9
DiodeNegative sensor temperature coefficient0 V to 2.5 V | 10 µA ±0.05%10, 11 | 10 µV | 10 µV | ±80 µV ±0.005% of rdg[±250 µV ±0.025% of rdg] | (10 µV + 0.0005% of rdg)/°C | ±20 µV
0 V to 10 V10 µA ±0.05%10, 11 | 100 µV | 20 µV | ±320 µV ±0.01% of rdg[±1 mV ±0.03% of rdg] | (20 µV + 0.0005% of rdg)/°C | ±40 µV
PTC RTDPositive sensor temperature coefficient

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0 Ω to 10 Ω | 1 mA12 | 0.1 mΩ | 0.2 mΩ | ±0.002 Ω ±0.01% of rdg[±0.002 Ω ±0.03% of rdg] | (0.01 mΩ + 0.001% of rdg)/°C | ±0.4 mΩ
0 Ω to 30 Ω1 mA12 | 0.1 mΩ | 0.2 mΩ | ±0.002 Ω ±0.01% of rdg[±0.002 Ω ±0.03% of rdg] | (0.03 mΩ + 0.001% of rdg)/°C | ±0.4 mΩ
0 Ω to 100 Ω1 mA12 | 1 mΩ | 2 mΩ | ±0.004 Ω ±0.01% of rdg[±0.004 Ω ±0.03% of rdg] | (0.1 mΩ + 0.001% of rdg)/°C | ±4 mΩ
0 Ω to 300 Ω1 mA12 | 1 mΩ | 2 mΩ | ±0.004 Ω ±0.01% of rdg[±0.004 Ω ±0.03% of rdg] | (0.3 mΩ + 0.001% of rdg)/°C | ±4 mΩ
0 Ω to 1 kΩ1 mA12 | 10 mΩ | 20 mΩ | ±0.04 Ω ±0.02% of rdg[±0.04 Ω ±0.04% of rdg] | (1 mΩ + 0.001% of rdg)/°C | ±40 mΩ
0 Ω to 3 kΩ1 mA12 | 10 mΩ | 20 mΩ | ±0.04 Ω ±0.02% of rdg[±0.04 Ω ±0.04% of rdg] | (3 mΩ + 0.001% of rdg)/°C | ±40 mΩ
0 Ω to 10 kΩ1 mA12 | 100 mΩ | 200 mΩ | ±0.4 Ω ±0.02% of rdg[±0.4 Ω ±0.04% of rdg] | (10 mΩ + 0.001% of rdg)/°C | ±400 mΩ
NTC RTD10 mVNegative sensor temperature coefficient0 Ω to 10 Ω | 1 mA12 | 0.1 mΩ | 0.15 mΩ | ±0.002 Ω ±0.06% of rdg[±0.002 Ω ±0.08% of rdg] | (0.01 mΩ + 0.001% rdg)/°C | ±0.3 mΩ
0 Ω to 30 Ω300 µA12 | 0.1 mΩ | 0.45 mΩ | ±0.002 Ω ±0.06% of rdg[±0.002 Ω ±0.08% of rdg] | (0.03 mΩ + 0.0015% of rdg)/°C | ±0.9 mΩ
0 Ω to 100 Ω100 µA12 | 1 mΩ | 1.5 mΩ | ±0.01 Ω ±0.04% of rdg[±0.01 Ω ±0.06% of rdg] | (0.1 mΩ + 0.001% of rdg)/°C | ±3 mΩ
0 Ω to 300 Ω30 µA12 | 1 mΩ | 4.5 mΩ | ±0.01 Ω ±0.04% of rdg[±0.01 Ω ±0.06% of rdg] | (0.3 mΩ + 0.0015% of rdg)/°C | ±9 mΩ
0 Ω to 1 kΩ10 µA12 | 10 mΩ | 15 mΩ + 0.002% of rdg | ±0.1 Ω ±0.04% of rdg[±0.1 Ω ±0.06% of rdg] | (1 mΩ + 0.001% of rdg)/°C | ±30 mΩ ±0.004% of rdg
0 Ω to 3 kΩ3 µA12 | 10 mΩ | 45 mΩ + 0.002% of rdg | ±0.1 Ω ±0.04% of rdg[±0.1 Ω ±0.06% of rdg] | (3 mΩ + 0.0015% of rdg)/°C | ±90 mΩ ±0.004% of rdg

FAQ