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CIC Research probes are being used around the globe by various companies, government labs, and educational institutions from testing power conversion systems to nuclear research projects. Our recently released DP02, DP03, DP04, DP20 and DP30 probe families are designed to be integrated into systems as well as being used for general lab testing.
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August 2014 www.cic-research.com
High Voltage Products
Global Scope With increasing sales on four continents we are currently opening local offices outside of USA in order to cover regional purchases and offer direct customer support. The expansion of our business globally is a priority goal and a requirement of our marketing strategy. At the end of 2012 we opened our office in Bangkok, Thailand. This office will cover all the Asia sales and marketing in the near future. It will become an important R&D global center down the road.
Technology and Emerging Energy Technology is the key element in our growth. We’re focusing on technologies that improve our chances of developing unique products that have many applications. We will invest in the development of emerging energy technologies, such as wind and solar power energy, as well as integrating advanced solar technology into our operations.
Environment and Safety Maintaining a clean and safe environment will have a top priority for our business goal. Our employees are being encouraged to come up with energy saving solutions that make sense and provide safety for all of us.
Our Work We are aware that the world needs more energy and that the alternative power energy market as well as electrical transportation industry will be growing in the future and these will require advanced electronic equipment. We intend through our experience and continued R&D to provide this highly needed equipment.
CIC Research is the world’s leading High Voltage Differential Probe technology company. We are committed in providing the best products through continued research and development and employing cutting edge novel technologies. Our products are targeting alternative clean energy industries with focus on power conversion applications and high voltage testing. Companies like Boeing, General Electric, General Atomics, ABB, Siemens, Toshiba, and John Deere are among our dedicated clients that currently use our products.
We started our business in 1996. Since then our high voltage differential probes have progressed through different developmental stages and we are currently marketing the third generation probes which incorporate our latest technology. Our probes are not copies nor inspired by any of the high voltage differential probes available on the market. They are unique. We are proud to say that we succeeded in creating a superior product that our customers can really appreciate. The Achilles’ heel of the average high voltage differential probes is when they are exposed to high slew rate common mode transients that can be as low as 200Vpk - 400Vpk they have large glitches on the output that are not a correct representation of the input signal. We watched in various laboratories engineers and scientists “hunting ghosts” and spending considerable time in trying to solve measurement issues related to this typical sensitivity of the regular probes.
COMPANY PROFILE
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Company Profile ........................................................................................................................................... 1Selection Guide ............................................................................................................................................. 2 - 3High Voltage Differential Probes ........................................................................................................... 4 - 11 DP02 Series ...................................................................................................................................... 4 DP03 Series ...................................................................................................................................... 5 DP04 Series ...................................................................................................................................... 6 DP20 Series ...................................................................................................................................... 8 DP30 Series ...................................................................................................................................... 9Power Supplies ............................................................................................................................................. 12 - 13High Voltage RF Probes ............................................................................................................................. 14 - 15More Information ......................................................................................................................................... 18
TABLE OF CONTENTS
DP20 series has four models and can measure up to 30kV peak. All models have 50 Ω outputs.
DP20 Series
DP30 series has four models and can measure up to 30kV peak. All models have 50 Ω outputs.
DP30 Series
RFP250 with Flange
OUTPUT MECHANICALOperating
TempPowerSupply
PageOutputVoltage
Output Impedance Rise Time Accuracy NoiseCommon Mode Rejection
@ 100 HzCooling System Input Connectors Output Connector
±1.75 V 50 Ω < 3.5 ns
1.0%
10 μVrms
-120 db
Convection 4 mm safety plugs 50Ω BNC -40° C to +85° CPS02-
5.2VL/H(±5.20 V)
4
0.1% -130 db
1.0% -140 db
0.1% -150 db
1.0% -145db
0.1% -155 db
1.0% -145 db
0.1% -155 db
±6.0 V 50 Ω < 4.7 ns
1.0%
70 μVrms
-120 db
Convection 4 mm safety plugs 50Ω BNC -40° C to +85° CPS02-
15.2VL/H(±15.20 V)
5
0.1% -130 db
1.0% -140 db
0.1% -150 db
1.0% -145 db
0.1% -155 db
±1.75 V 50 Ω < 2.9 ns
1.0%
10 μVrms
-120 db
Convection 4 mm safety plugs 50Ω BNC -40° C to +85° CPS02-
5.2VL/H(±5.20 V)
6
0.1% -130 db
1.0% -145 db
0.1% -155 db
1.0% -145 db
0.1% -155 db
1.0% -145 db
0.1% -155 db
±1.75 V 50 Ω < 2.9 ns
1.0%
10 μVrms
-120 db
Convection 4 mm safety plugs 50Ω BNC -40° C to +85° CPS02-
5.2VL/H(±5.20 V)
80.1% -130 db
1.0% -145 db
0.1% -155 db
±6.0 V 50 Ω < 4.7 ns
1.0%
70 μVrms
-120 db
Convection 4 mm safety plugs 50Ω BNC -40° C to +85° CPS02-
15.2VL/H(±15.20 V)
90.1% -130 db
1.0% -120 db
0.1% -130 db
MECHANICAL Operating Temperature
Power Supply PageCooling System Output Connector
Convection BNC -40° C to +85° C N/A14
Convection BNC -40° C to +85° C N/A
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DP02 series has eight models and can measure up to 12kV peak. All models have 50 Ω outputs.
DP02 Series
DP03 series has six models and can measure up to 12kV peak. All models have 50 Ω outputs.
DP03 Series
DP04 series has eight models and can measure up to 12kV peak. All models have 50 Ω outputs.
DP04 Series
In addition to our standard probes we also provide custom designed probes with fast turnarounds. If you cannot find a probe that fits your testing needs please contact us.
Product Family Model Name
INPUT
Input Voltage Differential Mode (Peak)Bandwidth Division Ratio Impedance
±175 V ±600 V ±1.75 KV ±4.0 KV ±6.0 KV ±12.0 KV ±14.0 KV ±17.5 KV ±30.0 KV
DP02 Series
DP02-100 O
100 MHz
1:100
1 MΩ eachDP02-100-LVC O
DP02-1K O1:1000
DP02-1K-LVC O
DP02-2K O1:2000
10 MΩ eachDP02-2K-LVC O
DP02-10K O1:10000
DP02-10K-LVC O
DP03 Series
DP03-100-50 O
75 MHz
1:100 1 MΩ eachDP03-100-LVC-50 O
DP03-1K-50 O1:1000
10 MΩ eachDP03-1K-LVC-50 O
DP03-2K-50 O1:2000
DP03-2K-LVC-50 O
DP04 Series
DP04-100 O
120 MHz
1:100 1 MΩ eachDP04-100-LVC O
DP04-1K O1:1000
10 MΩ each
DP04-1K-LVC O
DP04-2K O1:2000
DP04-2K-LVC O
DP04-10K O1:10000
DP04-10K-LVC O
DP20 Series
DP20-10K O
120 MHz
1:1000020 MΩ each
DP20-10K-LVC O 50 MΩ each
DP20-20K O1:20000
20 MΩ each
DP20-20K-LVC O 50 MΩ each
DP30 Series
DP30-2K O
75 MHz
1:200020 MΩ each
DP30-2K-LVC O 50 MΩ each
DP30-10K O1:10000
20 MΩ each
DP30-10K-LVC O 50 MΩ each
High Voltage Differential Probes
Product Family Model NameINPUT OUTPUT
Input Voltage (Peak) Bandwidth Division Ratio Capacitance Output Voltage Output Impedance Accuracy
RFP250 SeriesRFP250-5 7.5 kV 25 MHz - 250 MHz 1:1000 0.8 pF 5 V 50 Ω 5%
RFP250-10 15.0 kV 25 MHz - 250 MHz 1:1000 0.6pF 10 V 50 Ω 5%
High Voltage RF Probe Selection Table
High Voltage Differential Probe Selection Table
High Voltage RF Probes
In addition to our standard probes we also provide custom designed probes with fast turnarounds. If you cannot find a probe that fits your testing needs please contact us.
The RFP250 series high voltage probes are capacitive dividers designed to cover 25 MHz to 250 MHz bandwidth frequencies and voltages of up to 10 kV RMS.
SELECTION GUIDE
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DP03 SERIES
INPUT DP03-100-50 DP03-100-LVC-50 DP03-1K-50 DP03-1K-LVC-50 DP03-2K-50 DP03-2K-LVC-50
Input Voltage CM RMS Max4 1.0 kV 4.0 kV
Input Voltage CM Peak Max 600 V 4.0 kV
Input Voltage CM Peak Max4 6.0 kV
Input Voltage DM RMS Max4 2.0 kV 8.0 kV
Input Voltage DM Peak 600 V 6.0 kV 12 kV
Input Voltage DM Peak Max4 12.0 kV
Bandwidth 75 MHz
Division Ratio 1:100 1:1,000 1:2,000
Input impedance 1 MΩ || 2.2 pF each input to GND 10 MΩ || 2.2 pF each input to GND
OUTPUT
Output Voltage DC, RMS ±6.0 V
Output Voltage Peak ±7.00 V
Output Impedance 50 Ω (50 Ω termination is required)
Rise Time <4.7 ns
Offset ±580 μV digitally adjustable (~36 μV/step) using the up (+) and down (-) momentary offset switches
Accuracy 1.0% 0.1% 1.0% 0.1% 1.0% 0.1%
Noise 70 μVrms
Common Mode Rejection
100Hz -120 dB -130 dB -140 dB -150 dB -145 dB -155 dB
100KHz -100 dB -110 dB -110 dB -120 dB -115 dB -125 dB
10MHz -90 dB -100 dB -100 dB -110 dB -100 dB -110 dB
ENVIRONMENT
Operating Temperature -40° C to +85° C
Storage Temperature -55° C to +100° C
MECHANICAL
Case Cover Aluminum (Aluminium)
Dimensions (L x W x D) 5.125” X 3.125” X 1.675” (130 mm X 79 mm X 43 mm)
Unit Weight 1.27 lb (575g)
Cooling System Convection
Input Connector 4 mm safety plugs
Output Connector 50Ω BNC
Power ±15.2 V @ 150 mA
GENERAL SPECIFICATIONS AND CHARACTERISTICS
Notes1) At 25°C ambient temperature horizontal mounting orientation.2) All parameters are typical specified at 25°C ambient temperature unless otherwise indicated. 3) Information and specifications contained within this publication may change without notice.4) Non-Measurable. Peak voltages can be applied for <5 s.5) CM stands for Common Mode and DM for Differential Mode.
HIGHLIGHTS & FEATURES
• Low Input Capacitance• 75 MHz Bandwidth• Up To 8 kV RMS, 12 kV Peak • Three Standard and Three Precision Models, up to 0.1% DC Accuracy • Unmatched Performance when Measuring High CM Slew Rate Signals• Digital Offset Adjustment• 6V DC in 50 Ω Output Capability
FEATURES The DP03 series probes offer new and innovative technologies that allow a significant increase in performance over conventional HV differential probes. This and other proprietary technologies improve the performance of our probes by a factor of ten times compared to others when used with high, common mode slew rate input signals. These probes offer accuracy along with very low offset voltage.A specially designed instrumentation power supply is being used to increase the stability and minimize noise levels. LVC models offer higher accuracy due to use of low voltage and temperature coefficient internal components. All probes have a 50 Ω output impedance for properly driving long coaxial cables. This makes them useful for testing in off-limits work areas which are outside of the main laboratory.
APPLICATIONS Our probes excel in power conversion system testing. Their low input capacitance reduces circuit loading at high frequencies. The DP03 series has a high resonant input frequency, greater than 150MHz, making them prime candidates for applications requiring good accuracy at high frequencies. A proprietary input stage prevents undesirable HF oscillations that are often found in other probes when making extremely high slew rate measurements. DP03 probes can be used in automotive industry, especially for R&D on electrical and hybrid vehicles. Other applications include megawatt traction inverters, power supply design, power generation, UPS’s, high energy research, electro-magnetic systems, fusion research and surge testing.The DP03 can be mounted inside systems allowing users to replace lower performance voltage measuring modules. Other possible uses are for close monitoring of in-system power switching devices for failure prevention in ultra-reliable equipment. Custom versions are available on request.
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HIGH VOLTAGE DIFFERENTIAL PROBESDP02 SERIES
INPUT DP02-100 DP02-100-LVC DP02-1K DP02-1K-LVC DP02-2K DP02-2K-LVC DP02-10K DP02-10K-LVC
Input Voltage CM RMS Max4 1.0 kV 4.0 kV 3.15 kV 4.0 kV 3.15 kV
Input Voltage CM Peak Max 175 V 1.75 kV 3.5 kV 6.0 kV
Input Voltage CM Peak Max4 6.0 kV
Input Voltage DM RMS Max4 2.0 kV 2.0 kV 8.0 kV 6.3 kV 8.0 kV 6.3 kV
Input Voltage DM Peak 175 V 1.75 kV 4.0 kV 12 kV
Input Voltage DM Peak Max4 12.0 kV
Bandwidth 100 MHz
Division Ratio 1:100 1:1,000 1:2,000 1:10,000
Input impedance 1 MΩ || 2.2 pF each input to GND 10 MΩ || 2.2 pF each input to GND
OUTPUT
Output Voltage DC, RMS ±1.75 V
Output Voltage Peak ±2.00 V
Output Impedance 50 Ω (50 Ω termination is required)
Rise Time <3.5 ns
Offset ±580 μV digitally adjustable (~36 μV/step) using the up (+) and down (-) momentary offset switches
Accuracy 1.0% 0.1% 1.0% 0.1% 1.0% 0.1% 1.0% 0.1%
Noise 10 μVrms
Common Mode Rejection
100Hz -120 dB -130 dB -140 dB -150 dB -145 dB -155 dB -145 dB -155 dB
100KHz -100 dB -110 dB -110 dB -120 dB -115 dB -125 dB -115 dB -125 dB
10MHz -90 dB -100 dB -100 dB -110 dB -100 dB -110 dB -100 dB -110 dB
ENVIRONMENT
Operating Temperature -40° C to +85° C
Storage Temperature -55° C to +100° C
MECHANICAL
Case Cover Aluminum (Aluminium)
Dimensions (L x W x D) 5.125” X 3.125” X 1.675” (130 mm X 79 mm X 43 mm)
Unit Weight 1.27 lb (575g)
Cooling System Convection
Input Connector 4 mm safety plugs
Output Connector 50Ω BNC
Power ±5.20 V @ 100 mA
GENERAL SPECIFICATIONS AND CHARACTERISTICS
Notes1) At 25°C ambient temperature horizontal mounting orientation.2) All parameters are typical specified at 25°C ambient temperature unless otherwise indicated. 3) Information and specifications contained within this publication may change without notice.4) Non-Measurable. Peak voltages can be applied for <5 s.5) CM stands for Common Mode and DM for Differential Mode.
HIGHLIGHTS & FEATURES
• Low Input Capacitance• 100 MHz Bandwidth• Up To 8 kV RMS, 12 kV Peak • Four Standard and Four Precision Models with up to 0.1% DC Accuracy • Unmatched Performance when Measuring High CM Slew Rate Signals• Digital Offset Adjustment• Low Noise
4 | www.cic-research.com
FEATURES The DP02 series probes offer new and innovative technologies that allow a significant increase in performance over conventional HV differential probes. This and other proprietary technologies improve the performance of our probes by a factor of ten times compared to others when used with high, common mode slew rate input signals. These probes offer accuracy along with very low offset voltage.A specially designed instrumentation power supply is being used to increase the stability and minimize noise levels. LVC models offer higher accuracy due to use of low voltage and temperature coefficient internal components. All probes have a 50 Ω output impedance for properly driving long coaxial cables. This makes them useful for testing in off-limits work areas which are outside of the main laboratory.
APPLICATIONS Our probes excel in power conversion system testing. Their low input capacitance reduces circuit loading at high frequencies. The DP02 series has a high resonant input frequency, greater than 150MHz, making them prime candidates for applications requiring good accuracy at high frequencies. A proprietary input stage prevents undesirable HF oscillations that are often found in other probes when making extremely high slew rate measurements. DP02 probes can be used in automotive industry, especially for R&D on electrical and hybrid vehicles. Other applications include megawatt traction inverters, power supply design, power generation, UPS’s, high energy research, electro-magnetic systems, fusion research and surge testing.The DP02 can be mounted inside systems allowing users to replace lower performance voltage measuring modules. Other possible uses are for close monitoring of in-system power switching devices for failure prevention in ultra-reliable equipment. Custom versions are available on request.
MECHANICAL DRAWINGS
SYSTEM MOUNTING
Mounting Flange Type A
Mounting Flange Type B
Direct Mounting
Note: Units are - mm [in]
DP02, DP03 and DP04 series probes can be mounted directly on a base plate or enclosure walls with 5 x 6-32 screws.Optional mounting flange models are available, shown below. These can be mounted with 4 x 10-32 (or M5) screws.
5 x 6-32
System Chassis
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HIGH VOLTAGE DIFFERENTIAL PROBESDP04 SERIES
INPUT DP04-100 DP04-100-LVC DP04-1K DP04-1K-LVC DP04-2K DP04-2K-LVC DP04-10K DP04-10K-LVC
Input Voltage CM RMS Max4 1.0 kV 4.0 kV 3.15 kV 4.0 kV 3.15 kV 4.0 kV 3.15 kV
Input Voltage CM Peak Max 175 V 1.75 kV 3.5 kV 6.0 kV
Input Voltage CM Peak Max4 6.0 kV
Input Voltage DM RMS Max4 2.0 kV 8.0 kV 6.3 kV 8.0 kV 6.3 kV 8.0 kV 6.3 kV
Input Voltage DM Peak 175 V 1.75 kV 4.0 kV 12 kV
Input Voltage DM Peak Max4 12.0 kV
Bandwidth 120 MHz
Division Ratio 1:100 1:1,000 1:2,000 1:10,000
Input impedance 1 MΩ || 2.2 pF each input to GND 10 MΩ || 2.2 pF each input to GND
OUTPUT
Output Voltage DC, RMS ±1.75 V
Output Voltage Peak ±2.00 V
Output Impedance 50 Ω (50 Ω termination is required)
Rise Time <2.9 ns
Offset ±580 μV digitally adjustable (~36 μV/step) using the up (+) and down (-) momentary offset switches
Accuracy 1.0% 0.1% 1.0% 0.1% 1.0% 0.1% 1.0% 0.1%
Noise 10 μVrms
Common Mode Rejection
100Hz -120 dB -130 dB -145 dB -155 dB -145 dB -155 dB -145 dB -155 dB
100KHz -100 dB -110 dB -115 dB -125 dB -115 dB -125 dB -115 dB -125 dB
10MHz -90 dB -100 dB -100 dB -110 dB -100 dB -110 dB -100 dB -110 dB
ENVIRONMENT
Operating Temperature -40° C to +85° C
Storage Temperature -55° C to +100° C
MECHANICAL
Case Cover Aluminum (Aluminium)
Dimensions (L x W x D) 5.125” X 3.125” X 1.675” (130 mm X 79 mm X 43 mm)
Unit Weight 1.27 lb (575g)
Cooling System Convection
Input Connector 4 mm safety plugs
Output Connector 50Ω BNC
Power ±5.20 V @ 100 mA
GENERAL SPECIFICATIONS AND CHARACTERISTICS
Notes1) At 25°C ambient temperature horizontal mounting orientation.2) All parameters are typical specified at 25°C ambient temperature unless otherwise indicated. 3) Information and specifications contained within this publication may change without notice.4) Non-Measurable. Peak voltages can be applied for <5 s.5) CM stands for Common Mode and DM for Differential Mode.
HIGHLIGHTS & FEATURES
• Low Input Capacitance• 120 MHz Bandwidth• Up To 8 kV RMS, 12 kV Peak • Four Standard and Four Precision Models with up to 0.1% DC Accuracy • Unmatched Performance when Measuring High CM Slew Rate Signals• Digital Offset Adjustment• Low Noise
FEATURES The DP04 series probes offer new and innovative technologies that allow a significant increase in performance over conventional HV differential probes. This and other proprietary technologies improve the performance of our probes by a factor of ten times compared to others when used with high, common mode slew rate input signals. These probes offer accuracy along with very low offset voltage. A specially designed instrumentation power supply is being used to increase the stability and minimize noise levels. LVC models offer higher accuracy due to use of low voltage and temperature coefficient internal components. All probes have a 50 Ω output impedance for properly driving long coaxial cables. This makes them useful for testing in off-limits work areas which are outside of the main laboratory.
APPLICATIONS Our probes excel in power conversion system testing. Their low input capacitance reduces circuit loading at high frequencies. The DP04 series has a high resonant input frequency, greater than 150MHz, making them prime candidates for applications requiring good accuracy at high frequencies. A proprietary input stage prevents undesirable HF oscillations that are often found in other probes when making extremely high slew rate measurements. DP04 probes can be used in automotive industry, especially for R&D on electrical and hybrid vehicles. Other applications include megawatt traction inverters, power supply design, power generation, UPS’s, high energy research, electro-magnetic systems, fusion research and surge testing. The DP04 can be mounted inside systems allowing users to replace lower performance voltage measuring modules. Other possible uses are for close monitoring of in-system power switching devices for failure prevention in ultra-reliable equipment. Custom versions are available on request.
6 | www.cic-research.com
INPUT DP30-2K DP30-2K-LVC DP30-10K DP30-10K-LVC
Input Voltage CM RMS Max4 10 kV 10 kV
Input Voltage CM Peak Max 15 kV 15 kV
Input Voltage CM Peak Max4 15 kV 15 kV
Input Voltage DM RMS Max4 12 kV (measurable) 20 kV (measurable)
Input Voltage DM Peak 14 kV 30 kV
Input Voltage DM Peak Max4 30 kV 30 kV
Bandwidth 75 MHz 75 MHz
Division Ratio 1:2,000 1:10,000
Input impedance 20 MΩ || 2 pF each input to GND 50 MΩ || 2 pF each input to GND 20 MΩ || 2 pF each input to GND 50 MΩ || 2 pF each input to GND
OUTPUT
Output Voltage DC, RMS ±6.0 V
Output Voltage Peak ±7.0 V
Output Impedance 50 Ω (50 Ω termination is required)
Rise Time <4.7 ns
Offset ±580 μV digitally adjustable (~36 μV/step) using the up (+) and down (-) momentary offset switches
Accuracy 1.0% 0.1% 1.0% 0.1%
Noise 70 μVrms
Common Mode Rejection
100Hz -120 dB -130 dB -120 dB -130 dB
100KHz -100 dB -110 dB -100 dB -110 dB
10MHz -90 dB -100 dB -90 dB -100 dB
ENVIRONMENT
Operating Temperature -40° C to +85° C
Storage Temperature -55° C to +100° C
MECHANICAL
Case Cover Aluminum (Aluminium)
Dimensions (L x W x D) 6.625” X 7.220” X 3.625” (168 mm X 183 mm X 92 mm)
Unit Weight 5.5 lb (2.5 kg)
Cooling System Convection
Input Connector 4 mm safety plugs
Output Connector 50Ω BNC
Power ±15.20 V @ 150 mA
GENERAL SPECIFICATIONS AND CHARACTERISTICS
Notes1) At 25°C ambient temperature horizontal mounting orientation.2) All parameters are typical specified at 25°C ambient temperature unless otherwise indicated. 3) Information and specifications contained within this publication may change without notice.4) Non-Measurable. Peak voltages can be applied for <5 s.5) CM stands for Common Mode and DM for Differential Mode.
HIGHLIGHTS & FEATURES
• Low Input Capacitance• 75 MHz Bandwidth• Up To 20 kV RMS, 30 kV Peak • Two Standard and Two Precision Models with up to 0.1% DC Accuracy • Unmatched Performance when Measuring High CM Slew Rate Signals• Digital Offset Adjustment• 6V DC in 50 Ω Output Capability
FEATURES The DP30 series probes offer new and innovative technologies that allow a significant increase in performance over conventional HV differential probes. This and other proprietary technologies improve the performance of our probes by a factor of ten times compared to others when used with high, common mode slew rate input signals. These probes offer accuracy along with very low offset voltage. A specially designed instrumentation power supply is being used to increase the stability and minimize noise levels. LVC models offer higher accuracy due to use of low voltage and temperature coefficient internal components. All probes have a 50 Ω output impedance for properly driving long coaxial cables. This makes them useful for testing in off-limits work areas which are outside of the main laboratory.
APPLICATIONS Our probes excel in power conversion system testing. Their low input capacitance reduces circuit loading at high frequencies. The DP30 series has a high resonant input frequency, greater than 150MHz, making them prime candidates for applications requiring good accuracy at high frequencies. A proprietary input stage prevents undesirable HF oscillations that are often found in other probes when making extremely high slew rate measurements. DP30 probes can be used in automotive industry, especially for R&D on electrical and hybrid vehicles. Other applications include megawatt traction inverters, power supply design, power generation, UPS’s, high energy research, electro-magnetic systems, fusion research and surge testing. The DP30 can be mounted inside systems allowing users to replace lower performance voltage measuring modules. Other possible uses are for close monitoring of in-system power switching devices for failure prevention in ultra-reliable equipment. Custom versions are available on request.
DP30 SERIES
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HIGH VOLTAGE DIFFERENTIAL PROBES
INPUT DP20-10K DP20-10K-LVC DP20-20K DP20-20K-LVC
Input Voltage CM RMS Max 10 kV
Input Voltage CM Peak Max 15 kV
Input Voltage CM Peak Max4 15 kV
Input Voltage DM RMS Max4 20 kV 20 kV (Measurable)
Input Voltage DM Peak 17.5 kV 30 kV
Input Voltage DM Peak Max4 30 kV 30 kV (Measurable)
Bandwidth 120 MHz
Division Ratio 1:10,000 1:20,000
Input impedance 20 MΩ || 2 pF each input to GND 50 MΩ || 2 pF each input to GND 20 MΩ || 2 pF each input to GND 50 MΩ || 2 pF each input to GND
OUTPUT
Output Voltage DC, RMS ±1.75 V
Output Voltage Peak ±2.00 V
Output Impedance 50 Ω (50 Ω termination is required)
Rise Time <2.9 ns
Offset ±580 μV digitally adjustable (~36 μV/step) using the up (+) and down (-) momentary offset switches
Accuracy 1.0% 0.1% 1.0% 0.1%
Noise 10 μVrms
Common Mode Rejection
100Hz -120 dB -130 dB -145 dB -155 dB
100KHz -100 dB -110 dB -115 dB -125 dB
10MHz -90 dB -100 dB -100 dB -110 dB
ENVIRONMENT
Operating Temperature -40° C to +85° C
Storage Temperature -55° C to +100° C
MECHANICAL
Case Cover Aluminum (Aluminium)
Dimensions (L x W x D) 6.625” X 7.220” X 3.625” (168 mm X 183 mm X 92 mm)
Unit Weight 5.5 lb (2.5 kg)
Cooling System Convection
Input Connector 4 mm safety plugs
Output Connector 50Ω BNC
Power ±5.20 V @ 100 mA
GENERAL SPECIFICATIONS AND CHARACTERISTICS
Notes1) At 25°C ambient temperature horizontal mounting orientation.2) All parameters are typical specified at 25°C ambient temperature unless otherwise indicated. 3) Information and specifications contained within this publication may change without notice.4) Non-Measurable. Peak voltages can be applied for <5 s.5) CM stands for Common Mode and DM for Differential Mode.
HIGHLIGHTS & FEATURES
• Low Input Capacitance• 120 MHz Bandwidth• Up To 20 kV RMS, 30 kV Peak • Two Standard and Two Precision Models with up to 0.1% DC Accuracy • Unmatched Performance when Measuring High CM Slew Rate Signals• Digital Offset Adjustment• Low Noise
FEATURES The DP20 series probes offer new and innovative technologies that allow a significant increase in performance over conventional HV differential probes. This and other proprietary technologies improve the performance of our probes by a factor of ten times compared to others when used with high, common mode slew rate input signals. These probes offer accuracy along with very low offset voltage. A specially designed instrumentation power supply is being used to increase the stability and minimize noise levels. LVC models offer higher accuracy due to use of low voltage and temperature coefficient internal components. All probes have a 50 Ω output impedance for properly driving long coaxial cables. This makes them useful for testing in off-limits work areas which are outside of the main laboratory.
APPLICATIONS Our probes excel in power conversion system testing. Their low input capacitance reduces circuit loading at high frequencies. The DP20 series has a high resonant input frequency, greater than 150MHz, making them prime candidates for applications requiring good accuracy at high frequencies. A proprietary input stage prevents undesirable HF oscillations that are often found in other probes when making extremely high slew rate measurements. DP20 probes can be used in automotive industry, especially for R&D on electrical and hybrid vehicles. Other applications include megawatt traction inverters, power supply design, power generation, UPS’s, high energy research, electro-magnetic systems, fusion research and surge testing. The DP20 can be mounted inside systems allowing users to replace lower performance voltage measuring modules. Other possible uses are for close monitoring of in-system power switching devices for failure prevention in ultra-reliable equipment. Custom versions are available on request.
DP20 SERIES
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+5.2V
+5.2V
-5.2V
GND GND
-5.2V
+15.2V
+15.2V
-15.2V
GND GND
-15.2V
HIGH VOLTAGE DIFFERENTIAL PROBE BLOCK DIAGRAM
POWER CONNECTOR PIN ASSIGNMENTS
R
R
X2DIFF AMP
50Ω
DIG. POT.(NON-
VOLATILE)
OFFSETADJUSTMENT
UP/DOWN
INPUT
INPUT
OUTPUT
POWERRi
Ri
DP02, PD04 and DP20 Series DP03 and DP30 Series
ACCESSORIES
1. Input Probes Set2. Power Supply3. Mounting Flange4. 50 Ω BNC Cable5. Mini-DIN 6 pin Cable6. AC Input Power Cord7. User Manual8. Aluminum Carrying Case
USER MANUAL
UM-DP02-1K-LVC
DP02-1K-LVCPRECISION HIGH VOLTAGE DIFFERENTIAL PROBE
1
2
3
8
7
7
4
5
Note: Units are - mm [in]
Direct Mounting
6 x 10-32
System Chassis
MECHANICAL DRAWINGS
SYSTEM MOUNTING
Mounting Flange Type A Mounting Flange Type B
DP20 and DP30 series probes can be mounted directly on a base plate or enclosure walls with 6 x 10-32 screws.
HIGH VOLTAGE DIFFERENTIAL PROBES
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MECHANICAL DRAWINGS
This is our standard desktop model.
Desktop or Benchtop
Product Type Model NameINPUT OUTPUT MECHANICAL DETAILS
PageVoltage Frequency Voltage Current
Cooling System
Power CordOutput
ConnectorsMounting
FlangeIndicator
PS02-5.2V Series
PS02-5.2VL115 V±10V
47-63Hz ±5.20 V ±100mA Convection
NEMA 1-15P to IEC 320-C7
125VAC/2.5A US CableMini-DIN 6 pin
No
2 Green LEDs
12
PS02-5.2VL-FA Yes
PS02-5.2VH230 V±10V
CEE 7/16 to IEC 320-C7
250VAC/2.5A EU
No
PS02-5.2VH-FA Yes
PS02-15.2V Series
PS02-15.2VL115 V±10V
47-63Hz ±15.20 V ±150mA Convection
NEMA 1-15P to IEC 320-C7
125VAC/2.5A US CableMini-DIN 6 pin
No
2 Blue LEDs
PS02-15.2VL-FA Yes
PS02-15.2VH230 V±10V
CEE 7/16 to IEC 320-C7
250VAC/2.5A EU
No
PS02-15.2VH-FA Yes
This flanged model is intended to be mounted inside systems using two screws.
System Integration
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POWER SUPPLY SELECTION
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Desktop or Benchtop System Integration
Note: Units are - mm [in]
INPUT PS02-5.2VL PS02-5.2VH PS02-15.2VL PS02-15.2VH
Input Voltage 115±10 VAC 230±10 VAC 115±10 VAC 230±10 VAC
Input Current (full load) 23.8 mA
Input Frequency 60±3 Hz 50±3 Hz 60±3 Hz 50±3 Hz
Input Power (full load)
Power Factor > 0.90 at full load
GENERAL SPECIFICATIONS AND CHARACTERISTICS
Notes1) At 25°C ambient temperature horizontal mounting orientation.2) All parameters are specified at 25°C ambient temperature unless otherwise indicated. 3) Information and specifications contained within this publication may change without notice.
HIGHLIGHTS & FEATURES• Designed for DP02, DP03, DP04, DP20, DP30• Low Output Noise• Accurate Tracking between Positive and Negative outputs • Two Case Models one with Flange and one without Flange• 115VAC (US) and 230VAC (EU) Input Models• Green LED’s for 5V and Blue LED’s for 15V Optical Indicators• Dual Output Tracking Linear Regulator Type
FEATURES PS02 series power supplies are high performance dual output tracking linear regulator types designed to power our high voltage differential probes.They offer a low output noise and excellent tracking between the positive and negative outputs. PS02 models come in.
APPLICATIONS PS02 power supplies are used for DP02, DP03, DP04, DP20, and DP30 series probes. These can be used with other measurement instruments that need dual tracking outputs in the 1W to 6W power range. Possible uses are audio preamplifiers, low power audio amplifiers, headphone amplifiers, bipolar amplifiers, and panel meters.
ENVIRONMENT
Operating Temperature 0° C to +70° C
Storage Temperature 0° C to +85° C
OUTPUT
Output Voltage 5.2±0.1 VDC 5.2±0.1 VDC 15.2±0.1 VDC 15.2±0.1 VDC
Output Current 100 mA 150 mA
Ripple@Noise < 1 mVp-p
MECHANICAL
Case ABS Plastic
Dimensions (L x W x D) 4.11” x 2.23” x 1.59” (104.39mm x 56.64mm x 40.39mm)
Unit Weight 0.463 lbs (0.21 kg)
Cooling System Convection
Power Cord NEMA 1-15P to IEC 320-C7125VAC/2.5A US
CEE 7/16 to IEC 320-C7 250VAC/2.5A EU
NEMA 1-15P to IEC 320-C7 125VAC/2.5A US
CEE 7/16 to IEC 320-C7 250VAC/2.5A EU
Output Connector Cable Mini-DIN 6 pin
Indicator 2 Green LEDs 2 Blue LEDs
Power ±5.20 V @ 100 mA ±15.20 V @ 150mA
POWER SUPPLIESPS02 SERIES
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MECHANICAL DRAWINGS RFP250-5
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SYSTEM MOUNTING RFP250-5
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Probe with Mounting Flange
Custom Mounting
Mounting Flange
Flange Mounting
System Chassis
System Chassis
Note: Units are - mm [in]
Note: Units are - mm [in]
INPUT RFP250-5 RFP250-10
Input Voltage RMS 5 kV 10 kV
Input Voltage Peak 7.5 kV 15 kV
Bandwidth 25 MHz - 250MHz
Division Ratio 1:1000
Input Capacitance 0.8 pF 0.6 pF
OUTPUT
Output Voltage 5 V 10 V
Output Impedance 50 Ω
Accuracy 5%
MECHANICAL
Case Aluminum
Dimensions (L x W x D) 3.700” x 2.000” x 2.000” (93.98 mm x 50.8 mm x 50.8 mm) 7.200” x 4.000” x 4.000” (182.88 mm x 101.60 mm x 101.60 mm)
Unit Weight 1 lbs (0.454 kg) 3.2 lbs (1.453 kg)
Cooling System Convection
Output Connector 50Ω BNC
GENERAL SPECIFICATIONS AND CHARACTERISTICS
Notes1) At 25°C ambient temperature horizontal mounting orientation.2) All parameters are specified at 25°C ambient temperature unless otherwise indicated. 3) All information and specifications contained within this publication may change without notice.
HIGHLIGHTS & FEATURES
• Low Input Capacitance• 25 MHz to 250 MHz Bandwidth• Two Models up to 10 kV RMS• Compact Built• 50 Ω Output• 1:1000 Ratio
FEATURES The RFP250 series high voltage probes are capacitive dividers designed to cover the 25 MHz to 250 MHz frequency range and voltages of up to 10 kV RMS. The output impedance is 50 Ω and they are very compact allowing mounting in tight spaces.
APPLICATIONS
High frequency plasma research, high power RF transmitters, and high voltage RF pulse generators are a few possible applications for the RFP250 series probes.
ENVIRONMENT
Operating Temperature -40° C to +85° C
Storage Temperature -55° C to +100° C
HIGH VOLTAGE RF PROBESRFP250 SERIES
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NOTESHIGH VOLTAGE RF PROBESRFP250 SERIES
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MECHANICAL DRAWINGS RFP250-10
SYSTEM MOUNTING RFP250-10
Probe with Mounting Flange
Custom Mounting
Mounting Flange
Flange Mounting
System Chassis
System Chassis
Note: Units are - mm [in]
Note: Units are - mm [in]
ASIA NORTH AMERICA
CIC Research Co., Ltd.589/99 Central City Tower, 18th FloorBangna-Trad Rd Km 3, Bangna, Bangkok, ThailandTel: +662 745 7387Fax: +662 745 7388
CIC Research560 S Grand Ave, San Jacinto, CA 92582U.S.A.Tel: 1 951 260 0584Fax: 1 360 566 6777
www.cic-research.co.th www.cic-research.com
www.high-voltage-differential-probes.com
© 2014 CIC Research. All rights reserved.
August 2014 - Information and specifications contained within this publication may change without notice.
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