Manufacturers
Manufacturers
Testimonials
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★★★★★
"Fantastic deal. The oscilloscope is in very good condition. Packed for shipment to survive anything"Jeff
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★★★★★
"Premium equipment. Excellent communication. Fast. Best value!"Avi
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★★★★★
"Practically in new condition"Darcy
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★★★★★
"There was a small issue; The people at BRL Test were 100% responsive and issue resolved. Thanks!"Mike
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★★★★★
"Best packing ever! I would let you ship one of my children!"Todd
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★★★★★
"Unit received in great shape. Passed Agilent calibration. Good job!!"Lee
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★★★★★
"In every aspect these guys are great!"Sarah
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Stanford Research Systems
SR552 - Stanford Research Systems Preamplifiers
100.0kHz | High end frequency limit
The SR552 Voltage Preamplifier is designed to work with SRS lock-in amplifiers, providing gain where it is needed most—right at the experiment....
SR550 - Stanford Research Systems Preamplifiers
100.0kHz | High end frequency limit
The SR550 Voltage Preamplifier is designed to work with any SRS lock-in amplifier. Preamplifiers provide gain close to the experimental detector,...
SR530 - Stanford Research Systems Lock-in Amplifiers
100.00kHz | High end frequency limit
0.5 Hz to 100 kHz frequency rangeCurrent and voltage inputsUp to 80 dB dynamic reserveTracking band-pass and line filtersInternal reference...
SR510 - Stanford Research Systems Lock-in Amplifiers
100.00kHz | High end frequency limit
0.5 Hz to 100 kHz frequency range Current and voltage inputsUp to 80 dB dynamic reserveTracking band-pass and line filtersInternal reference...
SR445A - Stanford Research Systems Preamplifiers
350.0MHz | High end frequency limit
The Model SR445A 350 MHz Preamplifier contains four wide-bandwidth, DC-coupled amplifiers, each with a gain of 5. The four channels may be used...
SR240A - Stanford Research Systems Preamplifiers
350.0MHz | High end frequency limit
The model SR240A 350 MHz Preamplifier is a 4-channel, DC-coupled instrument with a gain of 5 per channel. The amplifiers can be used independently or...
SIM918 - Stanford Research Systems Current Amplifiers
22.00kHz | Bandwidth
The SIM918 Current Preamplifier is ideal in applications in which the input offset voltage must be kept to a minimum. The DC voltage difference...
SIM914 - Stanford Research Systems Preamplifiers
350.0MHz | High end frequency limit
The SIM914 350 MHz Preamplifier contains two wide-bandwidth, DC-coupled amplifiers, each with a gain of 5 (14 dB). Its fast rise time, low noise and...
SIM911 - Stanford Research Systems Preamplifiers
1.0MHz | High end frequency limit
The SIM910 and SIM911 are low-noise, programmable preamplifiers which are ideal for a wide range of small signal applications. The primary...
SIM910 - Stanford Research Systems Preamplifiers
1.0MHz | High end frequency limit
The SIM910 and SIM911 are low-noise, programmable preamplifiers which are ideal for a wide range of small signal applications. The primary...
PS350 - Stanford Research Systems Power Supplies DC
5.0kV | Max. Voltage
The PS300 High Voltage Power Supply series consists of three efficient, microprocessor-controlled, switching DC power supplies capable of delivering...
PS325 - Stanford Research Systems Power Supplies DC
2.5kV | Max. Voltage
The PS300 High Voltage Power Supply series consists of three efficient, microprocessor-controlled, switching DC power supplies capable of delivering...
PS310 - Stanford Research Systems Power Supplies DC
1.3kV | Max. Voltage
The PS300 High Voltage Power Supply series consists of three efficient, microprocessor-controlled, switching DC power supplies capable of delivering...
DS360 - Stanford Research Systems Function Generators
200.0kHz | Frequency Range Max.
1 mHz to 200 kHz frequency range
DS345 - Stanford Research Systems Arbitrary Waveform Generators
40.00MSa/sec | Sampling Rate
The DS345 Function /Arbitrary Waveform Generator is a full-featured, 30 MHz instrument that uses an innovative Direct Digital Synthesis (DDS)...
DS340 - Stanford Research Systems Arbitrary Waveform Generators
40.00MSa/sec | Sampling Rate
The DS340 is a 15 MHz function and arbitrary waveform generator based on Direct Digital Synthesis (DDS). A combination of features, performance and...
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