137507A-03L
National Instruments
137507A-03L
National Instruments
Description
The 137507A-03L NI PXIe-4135 System SMU, also known as the National Instruments PXIe-4135 Low Current Source Measure Unit, is a powerful instrument for precise DC control, featuring 4 quadrants and capable of sourcing up to 20 W. With exceptional analog-to-digital converter technology and a rapid communication bus, engineers can achieve high-accuracy measurements and customize the SMU response for different devices under test.
The 137507A-03L NI PXIe-4135 System SMU, also known as the National Instruments PXIe-4135 Low Current Source Measure Unit, is a powerful and versatile instrument for precise DC control. Featuring 4 quadrants and capable of sourcing up to 20 W, this unit offers low current estimations with a 10 nA go and triaxial network. With its exceptional analog-to-digital converter technology, users can achieve high-accuracy measurements with a current resolution as fine as 10 fA or rapid acquisitions at speeds up to 1.8 MS/s. The hardware-timed instrument includes a fast sequencing engine for synchronized acquisitions across multiple SMUs. Direct DMA transmission between the host PC and SMU allows for the transfer of extensive waveforms and measurement data at the full testing frequency of the instrument. Engineers can utilize the modular PXIe-4135 to create high-channel-count frameworks, scaling up to several channels in a single PXIe chassis. Rapid communication bus, deterministic hardware sequencing, and digital control loop technology can optimize test throughput and customize the SMU response for different devices under test. Interactive soft front panels and driver features with ready-to-run example projects make test code development efficient and flexible. The part number 137507A-03L is essential for identifying this advanced SMU unit.
| Made By | National Instruments |
|---|---|
| Part Number | 137507A-03L, 783762-01, 783762-02, 157420 |
| Power Source | Up to 20 W for DC control (783762-02, 40W version) |
| Current Resolution | 10 fA with high-accuracy |
| Acquisition Speed | Up to 1.8 MS/s |
| Channel Count | Up to 68 SMU channels in a single PXIe chassis |
Distribution Cache Shipping Info and Options
Shipping Carriers: Here at Distribution Cache we ship using UPS, FedEx, DHL, or TNT. In most cases we get very competitive rates based on our volume and will be happy quote shipping cost to your location upon request. We also know that many customers would prefer to ship collect on their own account numbers and welcome this option.
Shipping Blind: We recognize that many of our customers intend to re-sell the product to their end user. We respect our customer’s relationships with their clients and offer blind shipping as an option to ensure that the package arrives in the most clandestine way possible.
Shipping Process: We take pride in the way we package your order and spare no cost in making sure that it arrives safely at your facility. In the case of new parts, we are always sure to package the factory box inside another larger box for safe transit. For reconditioned parts we often use Distribution Cache customized packaging that is specially made to protect the products from the bumps and falls present during shipment.
Shipping Options:
Next Day Air Early AM - This service is the fastest overnight delivery option available. For most locations the package will be guaranteed by 8:30AM.
Next Day Air – This service guarantees delivery by 10:30AM and is the most frequently used option for overnight shipments.
Next Day Air Saver – This cost saving overnight alternative guarantees delivery by 3PM the next day.
2nd Day Air – For domestic shipments that would take 3-5 days if shipped via Ground, sometimes having the order in 2 days is a great way to go
Ground – Ground is the most inexpensive shipping option provided. Please ask if we are doing a “free domestic ground” shipping promotion on your order. We often provide free ground shipping on larger orders.
Emergency Courier – At times we can help work with a courier service to get the part to your facility during downtimes scenarios. We prefer that the customer sets up the courier but we can be there to make sure the product is handed off to the driver. Please give us a call to see if this is an option on your order.
Please Note: Products listed as “ships today” can ship same-day if an order is placed before 4PM. For larger drives and motors we ask that notification for same-day shipments be provided by 2PM at the latest. For any products listed as “ships in 3-5 days”, please give us a call to see if this can be expedited.
Question:
What is the 137507A-03L known as and what is its primary function?
Answer:
The 137507A-03L NI PXIe-4135 System SMU is also known as the National Instruments PXIe-4135 Low Current Source Measure Unit. Its primary function is to serve as a powerful and versatile instrument for precise DC control.
Question:
What are the capabilities of this unit in regards to sourcing and low current estimations?
Answer:
This unit is capable of sourcing up to 20 W and offers low current estimations with a 10 nA go and triaxial network.
Question:
What kind of measurements and speeds can users achieve with the NI PXIe-4135?
Answer:
Users can achieve high-accuracy measurements with a current resolution as fine as 10 fA or rapid acquisitions at speeds up to 1.8 MS/s with the NI PXIe-4135.
Question:
What features does the NI PXIe-4135 have to facilitate waveform and measurement data transfer?
Answer:
The NI PXIe-4135 includes direct DMA transmission between the host PC and SMU, allowing for the transfer of extensive waveforms and measurement data at the full testing frequency of the instrument.
Question:
What advantages does the modular PXIe-4135 offer for engineers in terms of test throughput optimization?
Answer:
Engineers can utilize the modular PXIe-4135 to create high-channel-count frameworks, optimize test throughput, and customize the SMU response for different devices under test with its rapid communication bus, deterministic hardware sequencing, and digital control loop technology.