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IEC Digital Ammeter 2A DC

Order code: LB2122-010
Purchase QTY: (Each) 1+
Scientrific's price   $110.00
Educational special   $108.00
Note: Prices do NOT include GST or freight

IEC DIGITAL AMMETER 2A DC
This Australian made IEC Digital Ammeter is an accurate, rugged, reliable, broad range general purpose digital instrument for laboratory or classroom use and is designed to be almost indestructible in the hands of students.

There are no ranges to select and polarity can be reversed.
Connection by 4mm banana safety sockets is provided so that cables with either safety plugs or normal banana plugs can be used.

To conserve battery, the meter features AUTO POWER OFF and pressing the ON button provides 20 minute run time.

Specifications:
• Display: Large 3-1/2 digit LCD display reading up to +/- 1.999 Amps
• Shunt: Super low resistance shunt is able to carry up to 15 amps. The microscopic amount of resistance added to the current circuit will have no measurable affect.
• Range: +/- 0-1.999 Amps DC.
• Resolution: 0.001 Amps (1 milliamp)
• If connected in reverse, a negative symbol appears on the display.
• Battery: Standard 9V battery, type 216. When almost flat the display indicates ‘LoBat’
• Auto Off: When Off, if the button is pressed the meter is ON for further 20 minutes.
• Over Range: If current exceeds 2A DC a small red LED indicates as warning but there will be no damage to the meter itself.

User ManualIEC Digital Ammeter 2A DC

NOTE: This is a genuine IEC product.
We believe in supporting Australian industry and only sell genuine IEC products, we do NOT sell imported clones of IEC products.


Dimensions
  • Product size: (HxWxD): 40x100x120mm
  • Weight: 200g

    Last edited 29th Apr 2024

    This product is used in teaching these Australian Curriculum codes:
    ACSPH044 - Thermal nuclear and electrical physics - Electrical circuits - Circuit analysis and design involve calculation of the potential difference across, the current in, and the power supplied to, components in series, parallel and series/parallel circuits
    ACSPH044 - Thermal nuclear and electrical physics - Electrical circuits - Circuit analysis and design involve calculation of the potential difference across, the current in, and the power supplied to, components in series, parallel and series/parallel circuits
    ACSPH039 - Thermal nuclear and electrical physics - Electrical circuits - Energy is conserved in the energy transfers and transformations that occur in an electrical circuit
    ACSPH039 - Thermal nuclear and electrical physics - Electrical circuits - Energy is conserved in the energy transfers and transformations that occur in an electrical circuit
    ACSPH041 - Thermal nuclear and electrical physics - Electrical circuits - Energy is required to separate positive and negative charge carriers; charge separation produces an electrical potential difference that can be used to drive current in circuits
    ACSPH041 - Thermal nuclear and electrical physics - Electrical circuits - Energy is required to separate positive and negative charge carriers; charge separation produces an electrical potential difference that can be used to drive current in circuits
    ACSPH042 - Thermal nuclear and electrical physics - Electrical circuits - Power is the rate at which energy is transformed by a circuit component; power enables quantitative analysis of energy transformations in the circuit
    ACSPH042 - Thermal nuclear and electrical physics - Electrical circuits - Power is the rate at which energy is transformed by a circuit component; power enables quantitative analysis of energy transformations in the circuit
    ACSPH043 - Thermal nuclear and electrical physics - Electrical circuits - Resistance for ohmic and non­ohmic components is defined as the ratio of potential difference across the component to the current in the component
    ACSPH043 - Thermal nuclear and electrical physics - Electrical circuits - Resistance for ohmic and non­ohmic components is defined as the ratio of potential difference across the component to the current in the component
    ACSPH040 - Thermal nuclear and electrical physics - Electrical circuits - The energy available to charges moving in an electrical circuit is measured using electric potential difference, which is defined as the change in potential energy per unit charge between two defined points in the circuit
    ACSPH040 - Thermal nuclear and electrical physics - Electrical circuits - The energy available to charges moving in an electrical circuit is measured using electric potential difference, which is defined as the change in potential energy per unit charge between two defined points in the circuit
    ACSCH103 - Equilibrium acids and redox reactions - Oxidation and reduction - A range of reactions, including displacement reactions of metals, combustion, corrosion, and electrochemical processes, can be modelled as redox reactions involving oxidation of one substance and reduction of another substance

    Click a curriculum code to see other products that relate.

     
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    Documents:
    CatalogueMay 2024 Web Catalogue
    User ManualIEC Digital Ammeter 2A DC

    Note: Prices do NOT include GST or freight