Keysight BV0003B Selection Guide

Power Products Solutions
A guide to selecting power products to match your test and measurement needs.
SELECTION GUIDE
March 2019
Introduction
Today, your products are changing the way we all work and play — wearables, electric vehicles, and beyond. For more than 50 years, Keysight system and benchtop DC power supplies have been changing the way engineers prove their design, understand the issues and ensure product quality. On a bench or in a system, our supplies are ready for your application, offering optimal choices in voltage, current, capability and performance. Test with confidence with Keysight — and power your next insight.
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Page 2
BenchVue Software: Control. Automate. Simplify.
Keysight BenchVue software for the PC eliminates the many of the issues around bench testing. By making it simple to connect, control instruments, and automate test sequences you can quickly move past the test development phase and access results faster than ever before. Dedicated instrument apps allow you to quickly configure the most commonly used measurements and setups for each instrument family. Rapidly build custom test sequences with the integrated Test Flow app to automate and visualize test results without the need for instrument programming. Powerful BenchVue apps enable you to significantly reduce test development time.
Use BenchVue apps to:
– Configure the most commonly used controls and measurements from your Keysight
instruments – Visualize multiple measurements simultaneously – Easily log and export data and screen images in just a few clicks for faster analysis – Create automated test sequences fast with minimal instrument knowledge – Access deeper instrument controls and measurement solutions – Save time with software that offers multiple instrument apps in one platform
BenchVue software works with hundreds of Keysight digital multimeters, power supplies, function/waveform generators, spectrum analyzers, data acquisition units, network analyzers, oscilloscopes, power meters, power sensors, electronic loads, universal counters and more — look for the BenchVue enabled icon for compatible products.
Star t accelerating your workflow today and download a 30-day trial version at
www.keysight.com/find/BenchVue
For the specific BenchVue power high­lights for:
– BenchVue Power Supply app – BenchVue eLoad app – BenchVue power analyzer app – 145 8 5A sof twar e – BenchVue SAS
Look For This Icon
throughout the catalog to identify BenchVue software enabled products.
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Power product software
Software products Model number Key features
BenchVue Power Supply Control and Automation app
BenchVue Electronic Load Control and Automation app
Control and Analysis Software for Advanced Power Supplies
BenchVue Solar Array Simulator Control app
BenchVue Power Analyzer Control and Analysis app
BV0003B Easily set parameters, build automated tests,
and visualize power output and voltage/current over time.
BV0012B Easily set parameters, build automated tests,
and visualize power output and voltage/current over time for better device characterization.
14585A Utilize advanced PC controls and easily create
complex waveforms and data log (gapless) measurements for DC power analyzers.
DG8901A Conveniently view and control your N8900APV
Series PV Simulator. Quickly create and download photovoltaic I-V curves.
N/A Control your AC power analyzers, quickly
visualize measurements and easily log data.
Page 3
In This Guide:
Power Supply Categories / 5
Selecting the Right System and Benchtop DC Power Supply For Your Application / 6 - 9
DC Voltage and Current At a Glance / 10 - 11
DC Power Supply Details /12 - 18
– E36300, E36100, E3600 and U8000 Series Bench Power Supplies / 12
– NEW E36100B Series Bench Power Supplies / 12
– N5700 and N8700 Series Basic DC Power Supplies / 13 – N8900 Series Autoranging System DC Power Supplies / 14 – B2961A/B2962A 6.5 Digit Low Noise Power Source / 15 – N6900 and N7900 Advanced Power System (APS) / 16 – N6700 Low-Profile Modular Power System / 17 – High Power N6700 DC Power Modules / 17 – N6705C DC Power Analyzer / 18
DC Electronic Load Details / 19 - 20
– NEW N6790 Series DC Electronic Load / 19
– N3300 Series DC Electronic Load / 20
AC Single-Phase Power Sources / 21
– NEW AC6800B Series Basic AC Power Sources / 21
– 6800C Series Performance AC Power Sources/Analyzers / 21
Application-Specific Power Products
– NEW RP7900 Series Regenerative Power System / 22
– N6780 Series Source Measure Units (SMUs) / 23 – B2900A Series Precision Source/Measure Units / 24 – U2720 USB Modular Source Measure Units / 25 – E5260A/E5270B Precision IV Analyzer/Source Monitor Unit Mainframe Series / 26 – B1500A Semiconductor Device Analyzer / 27 – B1505A Power Device Analyzer/Curve Tracer / 28 – B1506A Power Device Analyzer for Circuit Design / 29 – N6783A Application-Specific Modules / 30 – 66300 Mobile Communications DC Sources / 31 – E4360 Modular Solar Array Simulators / 32 – N8937APV and N8957APV Photovoltaic Array Simulators / 33 – PA2201A and PA2203A IntegraVision Power Analyzers / 34
DC Power Supply Discontinuance and Replacement Products / 35 - 37
– 6600 Series High-Performance DC Power Supplies / 38 – 66000 Modular Power System / 39
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Page 4
Power Supply Categories
E36312A DC power supply
N6705C DC power analyzer
Basic
Affordable, quiet and stable power supplies for both manual and simple computer-con­trolled operation. The Keysight line of basic bench power supplies is optimized to provide DC power in applications where speed and accuracy are a low consideration. These power supplies are a high-value fit for the bench and in a system rack.
Performance
Speed, precision and advanced programming features make the performance power supplies the right choice when the DC power supply is a factor in test performance. With features such as DUT protection, fast programming times and downloadable V and I sequences, these DC power supplies can reduce your risk during test and system development.
Specialty
Sometimes it is best to have a power supply with unique capabilities that are tailored to a specific application. For example, the Keysight 66300 Mobile Communications DC Sources are designed to emulate the unique characteristics of a battery for mobile device testing and maintain those characteristics even when using long load leads, such as in an ATE system. The Keysight E4360 Solar Array Simulator simulates solar panel I-V characteristics for satellite development and testing.
6811C AC power source/analyzer
DC electronic load mainframe
Modular
Keysight offers fully programmable power supplies in a modular format: the N6700 low-profile modular power system, N6705C DC power analyzer, and 66000 modular power system series. With this feature, you now have an extensive choice of power options—from basic through performance. Additionally, all modules interact in the same way at a single interface node, which simplifies system architecture and reduces cost when the test system inevitably changes.
AC sources
Keysight provides a full line of basic and performance AC sources to help you test a variety of AC-powered devices. Basic sources provide reliable power while performance sources provide advanced measurements and waveform generation.
DC electronic loads
Electronic loads sink current and dissipate power in an accurate and controlled manner. Connected to circuit under test, an electronic load provides a convenient way to vary the load on the circuit’s output in order to understand the circuit’s performance.
Keysight of fers two families of electronic loads, the N3300 family which is a modular, multiple output family; and the new N6790 Series DC Electronic Load. The N6790A Series is available in the N6700C, N6701C, N6702C low profile modular mainframe system and the N6705C DC Power Analyzer mainframe for bench use.
N6790 Series DC Electronic Loads
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Page 5
Selecting the Right System and Benchtop DC Power Supply For Your Application
When you need just a basic power supply, it’s quite easy to pick the right one based on your voltage and current requirements. The voltage and current tables are found on pages 10 and 11. From there you can go to the product page(s) for more detail.
When you have specialized requirements that need features such as source and measure, it is quite easy to select from a set of power supplies that are designed exactly for those requirements. Refer to page 21 for specialty power products.
But when you have more complex requirements and you know the power supply is an important part of your test bench, where do you start and what do you need to consider?
Of course you need to select the right voltage and current, but there are other factors to consider when selecting a benchtop DC power supply for your applications. This guide gives a definition of the feature, states why it’s important, and tells you how to use that feature when specifying the right power supply. In addition, the product families are listed so you can quickly see which product best fits your application. With that information, you can go to the product pages for detailed specifications.
Use the following information to help select the features you need in a DC power supply. Then go to the product page(s) for more detail.
Output characteristics
Ripple and noise
Use the ripple and noise specification to determine what, if any, affects these variations will have on your circuit or device.
Programming accuracy
Use programming accuracy to determine if the power supply can produce a voltage and current within the precision needed by your device.
Ideally, an output is free from any variations in voltage. In practice, there are periodic variations, called ripple, and random variations, called noise. Typically specified as either Vrms or Vp-p, the most useful spec is Vp-p. With Vp-p you will know the maximum variation away from the DC setpoint.
Programming accuracy is a measure of how closely the output will be to the setpoint. Specified as a percent of output plus an offset, you can calculate whether or not the power supply has the precision required. In addition, many power supplies have built-in voltmeters and ammeters to measure its output.
LOW ripple and noise < 10 mVp-p
66309B-32A B2961A-62A E3600 Series E36300 Series N6751A-66A N6781A-84A N6900 Series N7900 Series U8031A-32A
HIGH accuracy < 0.03%
B2961A-62A N6751A-66A N6781A-82A N6784A-86A N6900 Series N7900 Series
p30 p15 p12 p12 p17 p23 p16 p16 p12
p15 p17 p23 p23 p16 p16
MEDIUM ripple and noise 10 to 500 mVp-p
E36100 Series N5700 Series N6731B-46B N6773A-77A N6785A-86A N8700 Series N8900 Series RP7900 Series U8001A-02A
MEDIUM accuracy > 0.05%
E3600 Series E36100 Series E36300 Series N5700 Series N6731B-46B N6773A-77A N6783A N8700 Series N8900 Series RP7900 Series U8000 Series
p12 p13 p17 p17 p23 p13 p14 p22 p12
p12 p12 p12 p13 p17 p17 p23 p13 p14 p22 p12
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Page 6
Selecting the Right System and Benchtop DC Power Supply For Your Application (Continued)
Output characteristics (Continued)
Output response
Use this specification to select the power supply that is fast enough for your application.
Control
Computer interface
Specify power supplies with the appropriate hardware and software interface for computer control.
When the setpoint changes it will take some time before the output reaches the setting. How fast it reaches the setpoint is a result of its regulation design and the output bandwidth. The specifications are typically for a voltage change from 10 to 90% of its rated output or a load change of 50 to 100 %.
Many DC power supplies have both manual and computer control. Some are only manually controlled. Hardware interfaces for DC power supplies include GPIB, USB, and LAN (LXI Core). Software interfaces include the SCPI language and drivers such as IVI-C, IVI-COM, and VXI plug&play.
FAST output response < 15 ms
66300 Series B2961A-62A N6751A-66A N6781A-86A N6900 Series N7900 Series
Manual only Computer and manual
E3620A-30A U8000 Series
p31 p15 p17 p23 p16 p16
p12 p12
MEDIUM output response < 200 ms
E36100 Series E36300 Series N5700 Series N6731B-46B N6773A-77A N8700 Series N8900 Series RP7900 Series U8001A-02A
control
All others
p12 p12 p13 p17 p17 p13 p14 p22 p12
Analog voltage control signal
Specify a power supply with an analog input whenever you need to amplify the power or need to track an analog voltage.
Output measurements
Measure V & I output
Specify power supplies with built-in measurements whenever you need to check the actual voltage and current.
Some power supplies provide an analog voltage control input to cause the voltage output to follow this input. Essentially, it amplifies the power since the power supply can provide current up to its rated maximum.
Many power supplies have a built in voltmeter and ammeter to read back their own output. The measurements can be displayed on the front panel or queried by a computer connected to the interface. These measurements are particularly useful in computer­controlled systems. Measurement (or read back) accuracy is specified as a percent of full scale plus an offset.
WITH analog input
N5700 Series N8700 Series N8900 Series
p13 p13 p14
WITHOUT analog input
All others
Built-in measurement
All others
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Page 7
Selecting the Right System and Benchtop DC Power Supply For Your Application (Continued)
Packaging
Physical size
Use the size specification to match bench or system use.
Front or rear output terminals
Select the model with its output terminals in the best location for your application on either the bench or in a system rack.
Number of outputs
Specify multiple outputs per unit when you need to save space on the bench or in a system rack.
Keysight power supplies have standard EIA 19-inch rack dimensions. The width is either half rack width or full rack width while the height ranges from 1U to 5U (1.75 to 8.57 in). While any size can be used on the bench or in a system rack, the half rack width is generally better for bench applications while the full rack width works well in system racks. Of special note is the 1U height of the N5700 and N6700 Series.
The output terminals can be located on the front of the power supply or the rear. System and high-current power supplies have their outputs located on the rear panel while bench and some low current power supplies have outputs on the front.
Keysight power supplies are configured with 1 to 8 outputs per unit. Multiple output power supplies can save space on the bench or in a rack. Of special note are the 66000 and N6700 modular mainframes that can hold up to 8 and 4 modules respectively.
QUARTER rack
E36100 Series p12 B2961A-62A
FRONT terminals
B2961A-62A E3620A-30A E36100 Series N6705C U8000 Series
SINGLE outputs
All others B2961A-62A
p15 p12 p12 p18 p12
HALF rack
E3600 Series E36300 Series U8000 Series
REAR terminals
All others
MULTIPLE outputs
E3620-31A E3646A-49A E36300 Series E4360 mfg N6700 mfr N6705C U8031A-32A
p15 p12 p12 p12
p15 p12 p12 p12 p32 p17 p18 p12
FULL rack
All others
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mfr = mainframes for the E4360, N6700, N6707C, N6705C and 66000 modular power supplies
Page 8
Selecting the Right System and Benchtop DC Power Supply For Your Application (Continued)
Specialty
DUT protection
Select power supplies with DUT protection whenever your load may be damaged by over voltage or over current.
Computer Interface
Specify power supplies with the appropriate hardware and software interface for computer control.
Output disconnect or polarity reversal
Select power supplies with optional output relays when your application requires power to be physically disconnected from the device.
Many power supplies can be set for a maximum voltage and current to protect the device under test (DUT). When set, the power supply will limit the voltage and/or current regardless of the load. This feature provides a margin of safety when something goes wrong.
Many DC power supplies have both manual and computer control. Some are only manually controlled. Hardware interfaces for DC power supplies include GPIB, USB, and LAN (LXI Core). Software interfaces include the SCPI language and drivers such as IVI-C, IVI-COM, and VXI plug&play.
Automatic connect, disconnect, and polarity reversal can be accomplished with programmable output relays. By doing so, you will eliminate an external relay and have an easy method to programmatically actuate the relay.
WITH DUT protection
All others E3620A-31A p12
WITH LIST memory
B2961A-62A E4360 Series N6700 Series N6705C N6900 Series N7900 Series RP7900 Series
WITH optional relays
66300 Series N6700 Series N7900 Series
p15 p32 p17 p18 p16 p16 p22
p31 p17 p16
WITHOUT DUT protection
WITHOUT LIST memory
All others
WITHOUT optional relays
All others
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Page 9
DC Voltage and Current At a Glance
Voltage ranges: 5 to 40 V
Model numbers Page Outputs 5 to 9 V 12 to 20 V 21 to 40 V
66309B-32A 31 1 to 2 0 to 15 V, 3 A (all 663xx) E36102B- 06B 12 1 0 to 6 V, 5 A (E36102B) 0 to 20 V, 2 A (E36103B) 0 to 35 V, 1A (E36104B) E3620A 12 2 0 to 25 V, 1 A (E3620A x2) E36311A-13A 12 3 0 to 6 V, 5 A (E36311A-12A)
0 to 6 V, 10 A (E36313A)
E3630A-31A 12 3 0 to 6 V, 2.5 (E3630A x1)
0 to ± 20 V, 0.5 A (E3630A x2) 0 to ± 25 V, 1 A (E3631A x2)
0 to 6 V, 5 A (E3631A x1)
E3632A-34A
2
12 1 0 to 8 V, 20 A (E3633A r1) 0 to 15 V, 7 A (E3632A r1)
0 to 20 V, 10 A (E3633A r2)
E3640A-45A
E3646A-49A
N5741A-52 A 13 1 0 to 6 V, 100 A (N5741A)
N5761A-72A 13 1 0 to 6 V, 180 A (N5761A)
N6731B-36B 17 1 to 4 10 to 5 V, 10 A (N6731B)
2
2
12 1 0 to 8 V, 3 A (E3640A r1)
0 to 8 V, 5 A (E3642A r1) 0 to 8 V, 8 A (E3644A r1)
12 2 0 to 8 V, 3 A (E3646A r1)
0 to 8 V, 5 A (E3648A r1)
0 to 20 V, 1.5 A (E3640A r2) 0 to 20 V, 2.5 A (E3642A r2) 0 to 20 V, 4 A (E3644A r2)
0 to 20 V, 1.5 A (E3646A r2) 0 to 20 V, 2.5 A (E3648A r2)
0 to 12.5 V, 60 A (N5743A)
0 to 8 V, 90 A (N5742A)
0 to 20 V, 38 A (N5744A) 0 to 12.5 V, 120 A (N5763A)
0 to 8 V, 165 A (N5762A)
0 to 20 V, 76 A (N5764A) 0 to 20 V, 2.5 A (N6733B) 0 to 35 V, 1.5 A (N6734B)
0 to 8 V, 6.25 A (N6732B)
N6 741B - 4 6B 17 1 to 4 10 to 5 V, 20 A (N6741B)
0 to 20 V, 5 A (N6743B) 0 to 35 V, 3 A (N6744B)
0 to 8 V, 12.5 A (N6742B)
N6751A-52A
17 1 to 4
1
0 to 20 V, 15 A (N6773A) 0 to 35 V, 8.5 A (N6774A) N6761A-62A N6773A-77A
N6753A-56A N6763A-66A
17 2
1
0 to 20 V, 50 A (N6753A)
0 to 20 V, 50 A (N6755A)
0 to 20 V, 50 A (N6763A)
0 to 20 V, 50 A (N6765A) N6781A-86A 23 1 to 4 10 to 6 V, +3 to-2 A
(N6783A-MFG) 0 to 8 V, +3 to-2 A
0 to 20 V, ± 3 A (N6781A-82A)
0 to ±20 V, ± 3 A (N6784A)
0 to 20V, ± 8 A (N6785-86A)
(N6783A-BAT)
N6950A-52A, N6970A-72A N7950A-52A, N7970A-72A161611
0 to 9 V, 100 A (N69/N7950A) 0 to 9 V, 200 A (N69/N7970A)
0 to 20 V, 50 A (N69/N7951A)
0 to 20 V, 100 A (N69/N7971A) N8731A-42A 13 1 0 to 8 V, 400 A (N8771A) 0 to 10 V, 300 A (N8732A)
0 to 15 V, 220 A (N8733A)
0 to 20 V, 165 A (N8734A) N8754A-62A 13 1 0 to 20 V, 250 A (N8754A) 0 to 30 V, 170 A (N8755A)
RP7931A-36A 22 21 0-20 V, ± 400 A (RP7931A/41A) RP7941A- 4 6 A 22 21 0-20 V, ± 800 A (RP7933A/43A) U8001A 12 1 0 to 30 V, 3 A U8002A 12 1 0 to 30 V, 5 A U8031A 12 3 0 to 30 V, 6 A (Output 1 and 2); 5 V,
0 to ± 25 V, 1 A (E36311A x 2) 0 to 25 V, 1 A (E36312A x 2) 0 to 25 V, 2 A (E36313A x 2)
0 to 30 V, 4 A (E3632A r2) 0 to 25 V, 7 A (E3634A r1)
0 to 35 V, 0.8 A (E3641A r1) 0 to 35 V,1.4 A (E3643A r1) 0 to 35 V, 2.2 A (E3645A r1)
0 to 35 V, 0.8 A (E3647A r1) 0 to 35 V, 1.4 A (E3649A r1)
0 to 30 V, 25 A (N5745A) 0 to 40 V, 19 A (N5746A)
0 to 30 V, 50 A (N5765A) 0 to 40 V, 38 A (N5766A)
0 to 40 V, 25 A (N69/N7952A) 0 to 40 V, 50 A (N69/N7972A)
0 to 30 V, 110 A (N8735A) 0 to 40 V, 85 A (N8736A)
0 to 40 V, 125 A (N8756A)
3 A (Output 3)
1. Power modules that require a modular mainframe (66000 Series, N670 0 Series, N6705).
2. Dual range power supplies; r1 denotes range 1; r2 denotes range 2.
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Page 10
DC Voltage and Current At a Glance (Continued)
Voltage ranges: 50 to 1500 V
Model numbers Page Outputs 50 to 80 V 100 to 210 V 300 to 1500 V
B150 0A 28 1 to 10 350 to 80 V: 0 to ± 200 V, ± 0.1 A
to ± 1 A B2901A/02A/11A/12A 23 1 to 2 0 to ± 210 V, ± 0.105 A to ± 3 A 0 to ± 210 V, ± 0.105 A to ± 3 A B2961A-62A 15 1 to 2 0 to ± 210 V, ± 0.105 A to ± 3 A 0 to ± 210 V, ± 0.105 A to ± 3 A E36102B- 06B 12 1 0 to 60 V, 0.6A (E36105B) 0 to 100 V, 0.4 A (E36106B) E3632A-34A E3640A-45A
2
2
12 1 0 to 50 V, 4 A (E3634A r2) 12 1 0 to 60 V, 0.5 A (E3641A r2)
0 to 60 V, 0.8 A (E3643A r2)
0 to 60 V, 1.3 A (E3645A r2) E3646A-49A
2
12 2 0 to 60 V, 0.5 A (E3647A r2)
0 to 60 V, 0.8 A (E3649A r2) E4361A-62 A 32 1 to 2 10 to 65 V, 8.5 A (E4361A) 0 to 130 V, 5 A (E4362A) E5260/70 26 1 to 8 150 to 80V: 0 to ± 200 V, ± 0.1 A
to ± 1 A E5262/63 26 2 50 to 80 V 0 to ± 200 V, ± 0.2 A (E5262A); 0 to ± 200 V, ± 0.2 A to ± 1 A (E5263A)
100 to 210 A 0 to ± 200 V, + 0.2 A to 1 A
N5741A-52 A 13 1 0 to 60 V, 12.5 A (N5747A)
0 to 80 V, 9.5 A (N5748A) N5761A-72A 13 1 0 to 60 V, 25 A (N5767A)
0 to 80 V, 19 A (N5768A) N6731B-36B 17 1 to 4 10 to 60 V, 0.8 A (N6735B) 0 to 100 V, 0.5 A (N6736B) N6 741B - 4 6B 17 1 to 4 10 to 60 V, 1.6 A (N6745B) 0 to 100 V, 1 A (N6746B) N6751A-52A
N6761A-62A N6773A-77A
17 1 to 4 10 to 50 V, 5 A (N6751A)
0 to 50 V, 10 A (N6752A)
0 to 50 V, 1.5 A (N6761A)
0 to 50 V, 3 A (N6762A)
0 to 60 V, 5 A (N6775A) N6753A-56A
N6763A-66A
17 2
1
0 to 60 V, 20 A (N6754A)
0 to 60 V, 17 A (N6756A)
0 to 60 V, 20 A (N6764A)
0 to 60 V, 17 A (N6766A) N6953A-54A
N6 973 A-77A N7953A-54A N7973A-77A
16 16 16 16
1 1 1 1
0 to 60 V, 16.7 A (N69/N7953A)
0 to 60 V, 33.3 A (N69/N7973A)
0 to 80 V, 12.5 A (N69/N7954A)
0 to 80 V, 25 A (N69/N7974A) N8731A-42A 13 1 0 to 60 V, 55 A (N8737A)
0 to 80 V, 42 A (N8738A) N8754-62A 13 1 0 to 60 V, 85 A (N8757A)
0 to 80 V, 42 A (N8738A) N8 9 20A- 57A
N8937APV/57APV
14141
1
0 to 80 V, 340 A (N8925A /45A)
0 to 80 V, 170 A (N8920A/40A)
0 to 80 V, 510 A (N8931A/51A)
RP7931A-36A RP7941A- 4 6 A RP7951A-53A RP7961A-63A RP7951A-53A RP7961A-63A
22 22 22 22 22 22
21 21 21 21 1 1
0-80 V, ± 125 A (RP7932A/42A)
0-80 V, ± 250 A (RP7935A/45A)
U8032A 12 3 0 to 60 V, 3 A (Output 1 and 2);
5 V, 3 A (Output 3)
1. Power modules that require a modular mainframe (66000 Series, N670 0 Series, N6705).
2. Dual range power supplies; r1 denotes range 1; r2 denotes range 2.
3. Maximum number of modules depends on the configuration.
100 to 210 A: 0 to ± 200 V, ± 0.1 A to ± 1 A
100 to 210 A: 0 to ± 200 V, ± 0.1 A to ± 1 A
0 to ± 200 V, ± 0.2 A (E5262A); 0 to ± 200 V, ± 0.2 A to ± 1 A (E5263A) 0 to 100 V, 7.5 A (N5749A)
0 to 150 V, 5 A (N5750A) 0 to 100 V, 15 A (N5769A)
0 to 150 V, 10 A (N5770A)
0 to 300 V, 2.5 A (N5751A) 0 to 600 V, 1.3 A (N5752A)
0 to 300 V, 5 A (N5771A) 0 to 600 V, 2.6 A (N5772A)
0 to 100 V, 3 A (N6776A) 0 to 150 V, 2 A (N6777A)
0 to 120 V, 16.7 A (N69/ N7976A) 0 to 160 V, 12.5 A (N69/ N7977A)
0 to 100 V, 33 A (N8739A) 0 to 150 V, 22 A (N8740A)
0 to 100 V, 50 A (N8759A) 0 to 150 V, 34 A (N8760A)
0 to 200 V, 70 A (N8921A/41A) 0 to 200 V, 140 A (N8926A/46A) 0 to 200 V, 210 A (N8932A/52A)
0 to 300 V, 11 A (N8741A) 0 to 600 V, 5.5 A (N8742A)
0 to 300 V, 17 A (N8761A) 0 to 600 V, 8.5 A (N8762A)
0 to 500 V, 30 A (N8923A /43A) 0 to 500 V, 60 A (N8928A/48A) 0 to 500 V, 90 A (N8934A/54A) 0 to 750 V, 20 A (N8924A/44A) 0 to 750 V, 40 A (N8929A/49A) 0 to 750 V, 60 A (N8935A/55A) 0 to 1000 V, 30 A (N8930A/50A) 0 to 1500 V, 30 A (N8937A/57A/APV)
0-160 V, ± 125 A (RP7936A/46A) 0-500 V, ± 20 A (RP7951A/61A)
0-500 V, ± 40 A (RP7952A/62A)
0-950 V, ± 20 A (RP7953A/63A) 0 to 500 V, ± 20 A (RP7951A/61A) 0 to 500 V, ± 40 A (RP7952A /62A) 0 to 950 V, ± 20 A (RP7953A/63A)
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Page 11
E36300, E36100, E3600 and U8000 Series Bench Power Supplies
When you need reliable power with minimal features, you can rely on the E36300, E36100, E3600 and U8000 Series bench power supplies.
NEW E36100B Series Bench Power Supplies
The NEW E36100B series will impress you from every angle, size, display and I/O.
– Small footprint 2U 1/4 rack – Up to 100V, up to 5A – Clean and stable DC power – Excellent programming and readback
accuracy – LAN (LXI Core), and USB – Rack mount up to 4 units
E36300 Series Bench Power Supplies
The triple output E36300 Series gives you the performance of system power supplies at an affordable price. Three models (E36311A, E36312A and E36313A) are available.
– 4.3” color LCD Display – Color-coded channels and display for
fast and error-free control – Individual voltage/current knobs with
rotary encoder control for precise
setting – Intuitive, easy-to-use front panel
interface – Meter view to display more info on a
selected channel – Auto series/parallel connection
E3600 and U8000 Series bench power supplies
The E3600 Series offers an extensive choice of voltages, programmability, and number of outputs.
The U8000 Series offers more affordable DC power and provides features typical only found in programmable power supplies (like output sequencing, save/ recall, and more).
– 30 to 375 W outputs, 6 to 60 V, and
0.5 to 20 A – Single- to triple-output models – Low noise, linear regulation – Dual range outputs to provide more
current at lower voltage settings
1. Output 1 / Output 2 / Output 3.
2. NOTE: RU refers to rack unit of a standard 19” EIA equipment rack. The width is either 1/2 or full The
BenchVue software enabled
Model
E36 311A 80 E3 6 312A 80 6 V/25 V/25 V 5 A/1 A/1 A 3 1 LAN, E36313A 16 0 6 V/25 V/25 V 10 A/2 A/2 A 3 1 2 1
NEW
E36102B
NEW
E36103B
NEW
E36104B
NEW
E36105B
NEW
E36106B E3632A 120 15 V r1 / 30 V r2 7 A r1 / 4 A r2 1 2 GPIB 2 1 ½ RU w E3633A 200 8 V r1 / 20 V r2 20 A r1 / 10 A r2 1 2 3 1
Basic
E3634A 200 25 V r1 / 50 V r2 7 A r1 / 4 A r2 1 2 3 3 E3640A 30 8 V r1 / 20 V r2 3 A r1 / 1.5 A r2 1 2 GPIB 5 5 ½ RU w E36 41A 30 35 V r1 / 60 V r2 0.8 A r1 / 0.5 A r2 1 2 8 5 E3642A 50 8 V r1 / 20 V r2 5 A r1 / 2.5 A r2 1 2 5 5 E3643A 50 35 V r1 / 60 V r2 1.4 A r1 / 0.8 A r2 1 2 8 5 E3644A 80 8 V r1 / 20 V r2 8 A r1 / 4 A r2 1 2 5 5 E3645A 80 35 V r1 / 60 V r2 2.2 A r1 / 1.3 A r2 1 2 8 5 E3646A 60 8 V r1 / 20 V r2 3 A r1 / 1.5 A r2 2 2 GPIB 5 5 ½ RU w E3647A 60 35 V r1 / 60 V r2 0.8 A r1 / 0.5 A r2 2 2 8 5 E3648A 100 8 V r1 / 20 V r2 5 A r1 / 2.5 A r2 2 2 5 5 E3649A 100 35 V r1 / 60 V r2 1.4 A r1 / 0.8 A r2 2 2 8 5 U8001A 90 30 3 1 1 No 12 10 ½ RU w U8002A 150 30 5 1 1 12 10 U8031A 375 30 6 3 1 No 10 10 ½ RU w U8032A 375 60 3 3 1 10 10
height is in number of rack units which are 1.75” (44.4 mm) each. For example: a 3 RU h has a height of 5.25” (133.3 mm).
Power (W)
30 6 5 1 1 LAN,
40 20 2 1 1 30 1
35 35 1 1 1 60 2
36 60 0.6 1 1 100 3
40 100 0.4 1 1 150 6
Maximum V (V)
6 V/+25 V/-25 V
Maximum I (A)
5 A/1 A/1 A 3
Number of outputs
Number of ranges
1 USB
USB, GPIB
USB
Computer interface
Ripple and noise mVp-p
Program. or meter res. mV
2
1 ½ RU w
2 1
10 1 ¼ RU w
2
Size
x 3 RU h
x 2 RU h
x 3 RU h
x 2 RU h
x 3 RU h
x 2 RU h
x 4 RU h
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