For full functionality of this site it is necessary to enable JavaScript.
EMIN.VN
0

Maximizing Battery Life of IoT Devices By Minimizing Load Current Draw

2018年05月03日 09時54分49秒

The Challenge of Measuring Low IoT Currents To maximize battery life, your product current draw must be kept to an absolute minimum. This requires that you use low power components and efficient techniques to de-energize components when they are not in use. You need sensitive measurement instrumentation to measure current levels as low as nA.

Maximizing Battery Life of IoT Devices

By Minimizing Load Current Draw

The Challenge of Measuring Low IoT Currents

To maximize battery life, your product current draw must be kept to an absolute minimum. This requires that you use low power components and efficient techniques to de-energize components when they are not in use. You need sensitive measurement instrumentation to measure current levels as low as nA.

Determine the load current profile

It can be difficult to characterize the load current profile of a prototype IoT device, because you must measure the current in a wide range of operating states:

  • sleep mode (from nA to µA),
  • standby modes (from hundreds of microamps to tens of milliamps), and
  • active states (from milliamps to amps), including short current bursts due to wireless transmissions

To accurately capture these widely varying load current levels, you need an exceptional measurement solution that includes:

  • A wide current measurement range, from hundreds of nanoamps to amps
  • The measurement speed to capture current pulses just a few microseconds wide
  • A large memory buffer to store the prototype device’s current profile

Keithley’s DMM7510 7½-digit Graphical Sampling Multimeter is well-equipped to meet these demands, as it offers:

  • pA current sensitivity
  • 1 Msample/s sampling
  • 27 M data points of memory

Watch now to learn how to solve the IoT measurement challenges.

Determine the Average Current of an IoT Device


Simulate any battery type

How low can the battery voltage drop before your IoT device turns off? Gauging battery performance at different stages of battery discharge is difficult, as it requires instrumentation that can accurately simulate battery performance.

To address this, Keithley’s 2281S-20-6 Battery Simulator makes it easy to model any type of battery. It allows you to efficiently test prototype IoT devices in any battery state, with high repeatability to effectively estimate battery life. Combining a 2281S-20-6 Battery Simulator with a DMM7510 Graphical Sampling Multimeter will give you a complete solution for assessing power consumption and battery life of your IoT prototypes.

Program the battery simulator for any state of charge, such as near the completely discharged state, to determine how a product performs under a low battery condition and to determine the low battery shut-off voltage.

Model any type of battery

Create any battery model.

The final piece of the puzzle is to create a model for the battery that powers your IoT device. Keithley’s 2450 or 2460 Graphical SourceMeter® Source Measure Unit (SMU) instruments make it easy to create the model for the battery used by your product.

A battery model-generating script operates the SMU instrument as a controlled current load and derives the model parameters.

 

 

 

相关新闻

Engine Running Jerkily, VFD Reporting Encoder Fault, How to Check for Encoder Pulse Loss
2026年09月08日 10時09分36秒

Encoder là bộ phận nhỏ gắn trên trục động cơ, làm nhiệm vụ đếm chính xác động cơ đang quay bao nhiêu vòng, đang ở vị trí nào, rồi gửi tín hiệu xung liên tục về biến tần hoặc bộ điều khiển. Hệ thống dựa hoàn toàn vào chuỗi xung này để biết động cơ đang chạy đúng tốc độ, đúng vị trí hay chưa. Mất xung tín hiệu encoder tương đương hệ thống đột ngột mất khả năng nhìn thấy động cơ đang làm gì, kết quả thường thấy nhất là động cơ chạy sai lệch, giật cục, hoặc biến tần dừng khẩn cấp kèm mã lỗi như Encoder Fault, PG Fault.

[Tech News Roundup – September 2026] Chips, Solar Panels, and Storage Batteries Accelerate
2026年09月07日 16時42分26秒

The daily barrage of technology news can easily lead readers to conflate various figures as belonging to the same timeframe. This article categorizes information into three distinct layers newly emerging events, summary data based on reporting periods, and long-term cumulative trends thereby helping readers identify exactly what type of information they are consuming.

Diffuse Reflective Fiber Optic Sensor Head
2026年09月07日 15時17分17秒

Diffuse-reflective fiber-optic sensor probes solve automation challenges where machine space is too confined to install opposed-mode transmitter-receiver pairs. Both the emitter and receiver components are housed within a single probe, allowing it to scan one side of an object without requiring equipment to be placed on the opposite side

Reading Solar Irradiance and Inverter Power Output Charts
2026年09月07日 14時16分25秒

A rooftop solar system might develop a problem as early as the morning, yet a technician might not discover it until the afternoon during an on-site roof inspection; meanwhile, monitoring software could have detected signs of an anomaly much earlier

获取优惠更新

获取专属批量折扣、批发价格更新和新产品通知,直接发送到您的邮箱。

订阅即表示您同意我们的服务条款隐私政策

快速支持

直接联系认证专家