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Parts by Number Top

Part # Distributor Manufacturer Product Category Description
MCP1601 Microchip Technology, Inc. Microchip Technology, Inc. Not Provided The MCP1601 is a synchronous Buck (step-down) switching regulator that can continuously supply 500mA of load current. This DC/DC converter can provide output voltages of 0.9V to Vin with an operating efficiency that can exceed 92%. Although ideally suited for a single Li-Ion, or 2 to 3 cell NiCd...
MCP1257 Microchip Technology, Inc. Microchip Technology, Inc. Not Provided batteries or by one primary lithium MnO2 (or similar) coin cell battery. The MCP1256, MCP1257, MCP1258 and MCP1259 provide high efficiency by automatically switching between 1.5x and 2x boost operation. In addition, at light output loads, the MCP1256 and MCP1257 can be placed in a SLEEP mode lowering...
MCP1256 Microchip Technology, Inc. Microchip Technology, Inc. Not Provided batteries or by one primary lithium MnO2 (or similar) coin cell battery. The MCP1256, MCP1257, MCP1258 and MCP1259 provide high efficiency by automatically switching between 1.5x and 2x boost operation. In addition, at light output loads, the MCP1256 and MCP1257 can be placed in a SLEEP mode lowering...
12M0300115 Radwell Contrex Drives, Drive Board CIRCUIT BOARD LOAD CELL AMPLIFIER
12M0300115 Radwell Fenner Drives, Drive Board CIRCUIT BOARD LOAD CELL AMPLIFIER
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Conduct Research Top

  • Introduction to Load Cells
    Load Cell: A load cell is a transducer that converts a load acting on it into an analog electrical signal. This conversion is achieved by the physical deformation of strain gages which are bonded into the load cell beam and wired into a wheatstone bridge configuration. A load cell is a transducer
  • General Procedures For The Use of Load Cells
    Interface load cells all contain a full bridge circuit, which is shown in simplified form in Figure 1. Each leg is usually 350 ohms, except for the model series 1500 and 1923 which have 700 ohm legs. The preferred excitation voltage is 10 VDC, which guarantees the user the closest match
  • Building a 10-Bit Bridge Sensing Circuit Using the PIC16C6XX and MCP601Operational Amplifier
    Sensors that use Wheatstone bridge configurations, such as pressure sensors, load cells, or thermistors have a great deal of commonality when it comes to the signal conditioning circuit. This application note delves into the inner workings of the electronics of the signal conditioning path
  • Building a 10-Bit Bridge Sensing Circuit Using the PIC16C6XX and MCP601Operational Amplifier
    Sensors that use Wheatstone bridge configurations, such as pressure sensors, load cells, or thermistors have a great deal of commonality when it comes to the signal conditioning circuit. This application note delves into the inner workings of the electronics of the signal conditioning path
  • Weigh Scale Applications for the MCP3551
    and the -Input terminals of the load cell). bridge. Strain gauges are one such sensor. As a The goal is to develop a variety of circuits that can material is strained, there is a corresponding change in quantify this change via an analog-to-digital converter resistance. In many cases, each side
  • Medical Device Link .
    Advances in Load Cell Technology for Medical Applications Miniaturization and automation are paving the way for new uses for load cells in medical devices. To measure strain with a strain gauge, an electric circuit is used that is capable of measuring extremely low resistance changes from induced
  • Application Note: AAT3110/AAT3111 On/Off Enable Control
    a regulated voltage output for application loads up to 100mA. The device features very low quiescent current and high efficiency over a wide operating load range. Operating in a voltage-doubling mode, the AAT3110/AAT3111 uses pulse-skipping techniques to provide a regulated output from varying input
  • More pop for power packs
    to keep basic circuits alive during brief interruptions of power. Now ECCs are taking on a new role. Recent developments have let them serve as adjuncts to batteries during normal operation. The big benefit: A battery of a given capacity can power certain kinds of loads far longer with an ECC

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