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DCA75 DCA-75 PRO SEMICONDUCTOR ANALYZER CURVE TRACER PEAK ATLAS
Building on the continued success of Peak\'s existing component identification and analysis instruments, the DCA Pro brings an array of exciting new features for the hobbyist and professional alike.
Key Features
The DCA Pro is an advanced new design that features a graphics display, USB communications, PC Software and an enhanced component identification library.
- Automatic component type identification.
- Automatic pinout identification (connect any way round).
- The DCA Pro supports all the components that the popular Peak Atlas DCA55 supports, but adds plenty more. Components supported include:
- Transistors (including Darlingtons), Silicon and Germanium types. Measures gain, Vbe and leakage.
- MOSFETs, enhancement mode and depletion mode types. Measure on-threshold (at 5mA) and approx transconductance (for span of 3mA-5mA).
- JFETs, including normally off SiC types. Measures pinch-off voltage (at 5uA) and approx transconductance (for span of 3mA-5mA).
- IGBTs (insulated gate bipolar transistors). Measures on-threshold (at 5mA).
- Diodes and Diode networks.
- LEDs and bicolour LEDs (2 lead and 3 lead types).
- Zener Diodes with measurement of zener voltage up to 9V at 5mA.
- Voltage regulators (measures regulation voltage, drop-out voltage, quiescent current).
- Triacs and Thyristors that require less than 10mA of gate current and holding current.
Stand-alone or with a PC
The instrument can be used stand-alone or connected to a PC. Either way, the DCA Pro will automatically identify the component type, identify the pinout and also measure a range of component parameters such as transistor gain, leakage, MOSFET and IGBT threshold voltages, pn characteristics and much more.
Curve Tracing
When connected to a PC using the supplied USB cable, a range of low current curve-tracing functions can be performed. Various graph types are available, with more to follow:
- Bipolar transistor output characteristics, IC vs VCE.
- Bipolar transistor gain characteristics, hFE vs VCE.
- Bipolar transistor gain characteristics, hFE vs IC.
- MOSFET and IGBT output function, ID vs VDS.
- MOSFET and IGBT transfer function, ID vs VGS.
- JFET output function, ID vs VDS.
- JFET transfer function, ID vs VGS.
- Voltage regulator, VOUT vs VIN.
- Voltage regulator, IQ vs VIN.
- PN junction I/V curves, forward and reverse options (for Zener diodes).
Curve tracing is performed using test parameters in the range of +/-12V or +/-12mA. All curve-tracing data can be instantly pasted into Excel© for further graphing and analysis. PC Software is included with the DCA Pro on a Peak USB memory stick. Software designed for Windows 10, 8, 7, XP (all 32 or 64 bit).Building on the continued success of Peak\'s existing component identification and analysis instruments, the DCA Pro brings an array of exciting new features for the hobbyist and professional alike.
Key Features
The DCA Pro is an advanced new design that features a graphics display, USB communications, PC Software and an enhanced component identification library.
- Automatic component type identification.
- Automatic pinout identification (connect any way round).
- The DCA Pro supports all the components that the popular Peak Atlas DCA55 supports, but adds plenty more. Components supported include:
- Transistors (including Darlingtons), Silicon and Germanium types. Measures gain, Vbe and leakage.
- MOSFETs, enhancement mode and depletion mode types. Measure on-threshold (at 5mA) and approx transconductance (for span of 3mA-5mA).
- JFETs, including normally off SiC types. Measures pinch-off voltage (at 5uA) and approx transconductance (for span of 3mA-5mA).
- IGBTs (insulated gate bipolar transistors). Measures on-threshold (at 5mA).
- Diodes and Diode networks.
- LEDs and bicolour LEDs (2 lead and 3 lead types).
- Zener Diodes with measurement of zener voltage up to 9V at 5mA.
- Voltage regulators (measures regulation voltage, drop-out voltage, quiescent current).
- Triacs and Thyristors that require less than 10mA of gate current and holding current.
Stand-alone or with a PC
The instrument can be used stand-alone or connected to a PC. Either way, the DCA Pro will automatically identify the component type, identify the pinout and also measure a range of component parameters such as transistor gain, leakage, MOSFET and IGBT threshold voltages, pn characteristics and much more.
Curve Tracing
When connected to a PC using the supplied USB cable, a range of low current curve-tracing functions can be performed. Various graph types are available, with more to follow:
- Bipolar transistor output characteristics, IC vs VCE.
- Bipolar transistor gain characteristics, hFE vs VCE.
- Bipolar transistor gain characteristics, hFE vs IC.
- MOSFET and IGBT output function, ID vs VDS.
- MOSFET and IGBT transfer function, ID vs VGS.
- JFET output function, ID vs VDS.
- JFET transfer function, ID vs VGS.
- Voltage regulator, VOUT vs VIN.
- Voltage regulator, IQ vs VIN.
- PN junction I/V curves, forward and reverse options (for Zener diodes).
Curve tracing is performed using test parameters in the range of +/-12V or +/-12mA. All curve-tracing data can be instantly pasted into Excel© for further graphing and analysis. PC Software is included with the DCA Pro on a Peak USB memory stick. Software designed for Windows 10, 8, 7, XP (all 32 or 64 bit).ParameterMinTypMaxNoteBipolar Transistors Measurable current gain (hFE) range2 320002hFE accuracy (hFE<2000)±3% ±5 hFE2,8hFE test voltage (VCEO)3.0V 9.0V2hFE collector test current4.75mA5.00mA5.25mA Base current for Darlington identification0.95V1.00V1.80V3VBE for Darlington (shunted types)0.75V0.80V1.80V4VBE threshold for germanium 0.55V Acceptable VBE 1.80V Base-emitter shunt threshold50kΩ60kΩ70kΩ Acceptable collector leakage 1.5mA6Leakage current accuracy±2% mode VGS(ON) range0.0V 10.0V5Depletion mode ±0.01V5Drain current at VGS(ON)4.75mA5.00mA5.25mA Drain-Source voltage at VGS(ON)3.5V 9.0V5Acceptable gate-source resistance8kΩ IGBT collector saturation VGS(OFF) range-10.0V 2.5V Pinch-off drain-source current4.5μA5.0μA5.5μA Turn-on VGS(ON) range-9.0V 2.5V Turn-on drain-source test ±0.01V Transconductance (gfs) range 99mA/V gfs test drain current span3.0mA to 5.0mA gfs accuracy (<20mA/V)±5% ±2mA/V gfs accuracy (<20mA/V)±10% and Triacs Gate trigger test current8.0mA10.0mA12.0mA7Load hold test current 10.0mA15.0mA Diodes and LEDs Diode forward test current4.75mA5.00mA5.25mA Diode forward voltage accuracy±1% ±0.006V Acceptable VF for a diode @ 5mA0.15V VF for LED identification1.5V 4.0V Zener Diodes Zener voltage range at 5mA1.8V 9.0V Zener voltage range below 5mA 9.0V12.0V Zener diode test current0.50mA5.00mA5.25mA Voltage Regulators Input test voltage range (IQ<3.0mA)1.1V 10.0V Input test voltage range (IQ<5.0mA) 8.0V Quiescent current range (IQ)0.00mA 5.00mA Quiescent current accuracy±2% ±0.02mA Dropout voltage range (VDO)0.0V 3.0V Dropout voltage accuracy±2% ±0.02V Output voltage accuracy±1% ±0.006V Load test current0.13mA 1.25mA General Parameters Peak test current into S/C-15.5mA 15.5mA1Peak test voltage across O/C-13.5V 13.5V1Short circuit threshold5Ω10Ω20Ω1Battery type (x1)Alkaline AAA, LR03, MN2400Battery voltage range1.0V1.5V1.6V Battery warning threshold 1.0V USB current consumption500mA pk active. ≤2mA sleepDimensions (body)103 x 70 x 20 mm 4.1\" x 2.8\" x 0.8\" Operating temperature />1. Between any pair of test clips.
2. Collector current of 5.0mA. Gain accuracy valid for gains less than 2000.
3. Resistance across reverse biased base-emitter > 60kΩ.
4. Resistance across reverse biased base-emitter < 60kΩ.
5. Load current of 5.0mA.
6. Collector-emitter voltage of 10.0V.
7. Thyristor quadrant I, Triac quadrants I and III.
8. BJT with no shunt resistors.
9. Load current typically 10.0mA.
10. Subject to acceptable LCD visibility.
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