DFE Series,chatillon Force Gauges,珠海科尔迈测试设备有限公司3年专业代理销售经验与技术服务!The Chatillon® DFE Series is a compact,DFE Series,Chatillon Force Gauges
Chatillon® DFE Series
Digital Force Gauge
The Chatillon® DFE Series is a compact, easy-to-use force gauge designed for economy applications without compromising functionality. Ideal for handheld or test stand applications, the DFE is available with capacities from 2 lbf (1 kgf, 10 N) to 500 lbf (250 kgf, 2500 N). The DFE features an integral loadcell with a measurement accuracy of better than 0.25% full scale. A large, easy-to-read, high resolution dot matrix LCD display supports a variety of standard gauge functions including normal and peak readings, high/low limits, setpoints, pass/fail results, statistical results, loadcell actuation and direction. Loads are displayed in ozf, gf, lbf, kgf and N units. The display can be inverted and displayed results may be “hidden” from the operator. The DFE gauge may be specified with or without RS232 serial communication. All DFE Series force gauges come with a carrying case, battery adapter/charger, testing accessories and NIST Certificate of Calibration with data. Uncertainty data per ISO/IEC 17025 is supplied standard.
Standard Gauge Measurement Functions
- Normal Tensile and Compression Measurement
- Peak Tension and Compression Measurement
- Pass-Fail Limits
- High & Low Setpoint Limits
- Statistical Calculations
Models - DFE Series (No Outputs)
Model | ozf | gf | lbf | kgf | N |
DFE-002 | 32 x 0.01 | 1000 x 1 | 2 x 0.001 | 1 x 0.001 | 10 x 0.01 |
DFE-010 | 160 x 0.1 | 5000 x 1 | 10 x 0.01 | 5 x 0.001 | 50 x 0.01 |
DFE-025 | 400 x 0.1 | 10,000 x 10 | 25 x 0.01 | 10 x 0.01 | 100 x 0.1 |
DFE-050 | 800 x 0.1 | 25,000 x 10 | 50 x 0.01 | 25 x 0.01 | 250 x 0.1 |
DFE-100 | 1600 x 1 | 50,000 x 10 | 100 x 0.1 | 50 x 0.01 | 500 x 0.1 |
DFE-200 | - | - | 200 x 0.1 | 100 x 0.1 | 1000 x 1 |
DFE-500 | - | - | 500 x 0.1 | 250 x 0.1 | 2500 x 1 |
The DFE Series replaced these force gauge models:
- Chatillon DFM Series
- Chatillon DFIS Series
- Chatillon DFT Series