
Overview about what Arbin product to choose – Regenerative features
Energy efficiency is a crucial concern for every factory and department…
Information and Instructions for using the Simulation control types. 1. General Description Simulation refers to the ability to input data collected from a non-formulated dynamic regime (i.e. other than Constant Current, Constant Voltage, Constant Power, Ramp, Staircase, Pulse, or Formula) as a control function. There are three control types: 1. Current Simulation – uses a […]
I. Introduction to 3E cell In a battery with 2 electrode, when you measure the battery voltage, you measure the potential difference between the cathode and anode of the battery. In this case, you only see the total difference in potentials and do not know how much each electrode contribute to this difference. You would […]
Arbin continues to power innovation in many areas of battery research, including electrochemical experiments such as cyclic voltammetry (CV). Arbin equipment is designed to perform electrochemical experiments with the precise circuitry required for linear voltage ramps, while the MITS software gives the user a wide variety of options to create test schedule profiles. Understanding the […]
Mechanism explanations: Arbin’s MITS software uses pulse method to calculate IR. In order to achieve better accuracy, the software measures the IR 10 times and takes the average. The pulse looks like the graph bellow: IIR is the amplitude value T2 is the extra control value1 I0 is the offset value IR Calculation Formula: IR […]
I. Purpose and Applicability Battery testing—whether for electric vehicles, consumer electronics, or industrial systems—demands strict safety protocols. One often overlooked but critical element in test chamber safety is the door switch interlock system. This simple yet powerful mechanism helps prevent injuries, equipment damage, and test data corruption. In this article, we’ll explore how door switch […]
According to the standard specifications published by Arbin, integrating a Gamry device with an Arbin system typically limits the device’s original frequency capability from 2 MHz down to 100 kHz. However, in this article, we will introduce a solution that allows the system to retain the full 2 MHz frequency, with some trade-offs to consider. Pre-Conditions for Achieving […]
IR 측정은 배터리에 대한 통찰력을 확보하는 데 매우 중요합니다. 배터리의 IR을 측정하는 방법에는 여러 가지 표준이 있습니다. 이 글에서는 IEC 61960 표준과 아빈의 장비를 사용하여 이를 구현하는 방법을 소개합니다. 배터리 IR에 대한 IEC 61960 표준: 이 표준에서는 0.2C의 방전 펄스가 10 [...]에 대해 주어집니다.
Introduction Electrochemical Impedance Spectroscopy (EIS) is a foundational diagnostic technique for evaluating battery health, internal resistance, degradation mechanisms, and electrochemical behavior over time. However, EIS is traditionally limited by hardware complexity and high per-channel cost, making it difficult to scale across large battery test systems. To address these challenges, Arbin Instruments offers an integrated EIS […]
I. 목적 및 범위: 보호 회로 모듈(PCM)은 소형 가전제품부터 대규모 산업 장비에 이르기까지 광범위한 애플리케이션에서 장치를 모니터링하고 보호하는 역할을 하는 중요한 전자 부품입니다. 핵심 기능은 과충전, 과방전, 과전류 및 단락과 같은 위험한 상태를 방지하여 배터리 및 장치의 안전을 보장하는 것입니다 [...].
소개 Arbin 보조 전압 입력 모듈을 사용하면 표준 I/V 채널 이상의 측정이 필요한 배터리 테스트 어플리케이션에서 정밀한 고해상도 전압 모니터링을 수행할 수 있습니다. 일반적인 사용 사례로는 더 큰 팩 내의 개별 셀 또는 모듈 전압 모니터링, 3전극 셀의 기준 전극 측정 또는 BMS 데이터를 직접 측정한 값과 비교하는 것이 있습니다. 각 모듈은 [...]을 지원합니다.
Introduction Battery temperature measurement is essential for evaluating safety, longevity, and performance in modern testing environments. Arbin supports three primary sensor technologies—thermocouples (Type T and K), RTDs (PT100), and thermistors (10kΩ)—each available through dedicated auxiliary input modules. These sensors enable precise temperature control, monitoring, and safety logic throughout battery R&D and production Description Battery testing […]
아시다시피 배터리는 충전 및 방전 주기에 따라 용량이 감소합니다. 충전 및 방전 전류를 1A, 2A 등과 같이 고정된 값으로 설정하면 배터리 용량이 감소하기 때문에 각 사이클의 길이가 점차 줄어들게 됩니다: 사이클 시간 = (충전 용량 + 방전 용량)/전류 때때로 사용자는 [...]를 원합니다.