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Hantek 1832C User Manual

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Handheld LCR Meter

User’s Manual

V1.0.1

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Summary of Contents for Hantek 1832C

  • Page 1
    Handheld LCR Meter User’s Manual V1.0.1…
  • Page 2: Table Of Contents

    Content Content ……………………….I Safety ……………………….1 Safety Guidelines ……………………1 Safety Symbols ……………………. 1 Introduction ……………………..3 Chapter 1 Overview of front panel ……………….. 4 1.1 Front panel ……………………4 1.2 User’s Interface ………………….6 Measurement Interface ………………..6 System settings interface ……………….

  • Page 3
    5.1 General Specification ………………..23 5.2 Accuracy ……………………23 Chapter 6 Maintenance ………………….28 6.1 Service ……………………28 6.2 Clean ……………………. 28 Accessories ……………………..29…
  • Page 4: Safety

    Safety Review the following safety precautions carefully before operate the device to avoid any personal injuries or damages to the device and any products connected to it. To avoid potential hazards use the device as specified by this user’s guide only. …

  • Page 5
    Environment  Please do not operate the instrument in the place that is dusty, vibrative, under direct sunlight or where there is corrosive air.  The normal working temperature is 0℃~40℃, relative humidity ≤75%, so the instrument should be used under above condition to guarantee the accuracy. …
  • Page 6: Introduction

    Introduction This handheld LCR meter is used to measure inductance, capacitance, resistance and other components of the parameters, small size, using 7.4V lithium battery power supply, can be applied to desktop applications, more mobile measurement and handheld measurement occasions to provide great convenience. It provides a resolution of four thousands digits for main parameters and a resolution of 0.0001 for secondary parameter.

  • Page 7: Chapter 1 Overview Of Front Panel

    Chapter 1 Overview of front panel 1.1 Front panel Description of the front panel is shown in the figure (Note: In this manual, long press means holding the key for more than 2 seconds). 1. Display: 2.8 inch TFT LCD screen, which display all functions of the instrument. 2.

  • Page 8
    10. Main parameter key: Switch to the main parameters quickly. You can select Auto, R, L, C, Z in turn. Auto is the function of automatic parameters. LCR selects the appropriate combination of main parameters and secondary parameters according to the properties of the current tested component.
  • Page 9: User’s Interface

    1.2 User’s Interface Measurement Interface 1. Main parameter display 2. Secondary parameter display 3. ’HOLD’ indicates the data holding state. USB connection state, displayed when it is connected to the PC and hidden at any other time; When connected the instrument to the computer in the initial, the USB icon is white, which means that the USB is connected.

  • Page 10: System Settings Interface

    System settings interface On the system settings interface users can set the language, auto power off, brightness, power setting and buzzer. And view the model and version of the instrument. Press [SET] key to enter the system setting interface, press the arrow key to select the setting option and highlight, and press the arrow key for specific setting.

  • Page 11: Chapter 2 Operation Instruction

    Chapter 2 Operation instruction 2.1 Startup and shutdown Press the power key to start the instrument and the measurement interface is shown (default). Press the power key again to shutdown it. 2.2 Test parameter 2.2.1 Test frequency Handheld LCR applies AC test signal to the DUT for measurement. Frequency is one of the main parameters of the AC source.

  • Page 12: Test Range

    the up and down arrow keys to switch levels. 2.2.3 Test range There are two ways to change the test range: Method 1: Press [RANGE] key to switch between different test ranges. Method 2: Turn on the instrument and the measurement display is shown, press the left and right arrow keys to move the cursor to the RANGE zone, and the up and down arrow keys to switch the range (AUTO, 100Ω, 1kΩ, 10kΩ, 100kΩ).

  • Page 13: Equivalent Mode

    1. Turn on the instrument and the measurement display is shown, the component with required nominal should be placed on the test clip of the instrument. 2. Long press [COMPARE] to turn on the comparator, and the nominal value is the value of the measured element.

  • Page 14: Reading Hold Mode (Hold)

    2.4 Reading hold mode (HOLD) The data hold function is used to freeze the displayed data. The measurement is still in progress, but the data on the LCD is not updated as the measurements proceed. Turn on reading hold: Press the [HOLD] key, and «LOLD» will be shown on the LCD to indicate that the data hold function is activated.

  • Page 15: Firmware Update

    successful, the secondary display shows «SUCESS»; or it shows «FAILED». Note: Do not change the state of the test terminals during the correction. 3. Once finished the correction ends, press [REL] key to return to the measurement display. 2.7 Firmware Update 1.

  • Page 16
    If the device is not identified, please repeat step 2. 4. Close the “DfuSe Demo” software.
  • Page 17: Chapter 3 Quick Application Guide

    Chapter 3 Quick application guide Warning:  Do not measure the charged capacitor, or it may cause damage to the instrument.  In case of measurement of on-board devices, make sure the power is turned off. The active circuit cannot be measured directly. …

  • Page 18: Resistance Measurement

    3.1 Resistance measurement See the below figure for the connection test. 1. Press the power key to start the instrument. 2. Press the [AUTO/R/C/L/Z] key until Rs/Rp is displayed on the interface which means to select resistance measurement. 3. Insert the resistor into the test notch, or choose the appropriate test accessories (rubber plug — alligator clip) and connect it with the measured resistance.

  • Page 19: Capacitance Measurement

    3.2 Capacitance measurement Warning: Make sure that the capacitor has been fully discharged before measuring. See the below figure for the connection test. 1. Press the power key to start the instrument. 2. Press the [AUTO/R/C/L/Z] key until Cs/Cp is displayed on the interface which means to select capacitance measurement.

  • Page 20: Impedance Measurement

    1. Press the power key to start the instrument. 2. Press the [AUTO/R/C/L/Z] key until Ls/Lp is displayed on the interface which means to select inductance measurement. 3. Insert the inductor into the test notch, or choose the appropriate test accessories (rubber plug — alligator clip, Kelvin test fixture, etc.) and connect it with the measured inductor.

  • Page 21: Chapter 4 Telecommunication

    Chapter 4 Telecommunication The instrument can be connected to PC through the Type C-USB interface. After installing the driver on the PC, handheld LCR can be controlled from or the test results acquired by the PC through the virtual serial port. 4.1 Connect the instrument to PC Please refer to following steps to connect to PC: 1.

  • Page 22
    Data type The data in the form of ASCII characters transmitted on the bus may have the following types: Type Meaning Example <NR1> Integer +800,-200,100 <NR2> Decimal +1.56,-0.001 <NR3> Exponential floating +2.345678E+04 number -1.345678E-02 Rules of grammar Notation Definition Colon, enter the next level of the command Semicolon, the same level of command Asterisk, public command Comma, multi-parameter separator…
  • Page 23: Command Reference

    Terminator You can choose anyone of the following characters to end. <CR> (Enter 0x0D) <LF> (Line break 0x0A) <CR> <LF> 4.2 Command Reference 4.2.1 Public command Public command applied universally to various kinds of instrument defined by the public command IEEE488, the public command starts with *. For example, *IDN?,*GTL,*LLO. This machine supports only a few Public commands.

  • Page 24
    Return: None (2) FUNCtion:impa ? Description: Query the main parameter type Parameter: None Return: <l-auto|c-auto|z-auto|r|l|c> (3) FUNCtion:impb <X|Q|D|THETA|ESR> Description: Select a secondary parameter type Parameter: <X|Q|D|THETA|ESR> Return: None (4) FUNCtion:impb ? Description: Query a secondary parameter type Parameter: None Return: <rec|q-auto|d-auto|theta-auto|x|q|d|theta|esr> (5) FUNCtion:RANGe <AUTO|10|100|1000|10000|100000>…
  • Page 25
    FETCh Subsystem FETCh ? Description: Query data Parameter: None Return: <NR3,NR3,NR1> Main parameters, secondary parameters, gear number…
  • Page 26: Chapter 5 Specification

    Chapter 5 Specification The general and measurement precision specification of LCR are described below. 5.1 General Specification Model Hantek1832C Hantek1833C Main parameter: L/C/R/Z Secondary parameter: Measurement parameters X/D/Q/θ/ESR Equivalent mode Series, parallel Mode of range Manual, automatic Measurement speed Fast(4 times/s), medium(2 times/s), slow(1 times/s) Configuration of the test terminal 3-terminal, 5-terminal Short circuit, Open circuit…

  • Page 27
    calculated based on the measurement results; Capacitance C and dissipation D  100Hz/120Hz/400Hz Equivalent mode Range Range of display Accuracy Ce Accuracy De recommended 20mF 4.000mF∼20.000mF 8.00%+5 digits 0.0800 Series 400.0μF∼3.9999mF 2.00%+3 digits 0.0200 Series 400μF 40.00μF∼399.99μF 0.60%+2 digits 0.0060 Series 40μF 4.000μF∼39.999μF…
  • Page 28
    4μF 400.0nF∼3.9999μF 1.0%+2 digits 0.0100 Series 400nF 40.00nF∼399.99nF 0.6%+2 digits 0.0060 Series 40nF 4.000nF∼39.999nF 0.6%+2 digits 0.0060 —— 400.0pF∼3.9999nF 0.6%+2 digits 0.0060 Parallel 400pF 40.00pF~399.99pF 1%+3 digits 0.0100 Parallel 40pF 0.000pF~39.999pF 3%+5 digits —— Parallel  75KHz/100kHz Equivalent mode Range Range of display Accuracy Ce Accuracy De…
  • Page 29
    100H 40.00H∼100.00H 2.0%+3 digits 0.0200 Parallel 4.000H∼39.999H 0.60%+2 digits 0.0060 Parallel 400.0mH∼3.9999H 0.40%+2 digits 0.0040 Parallel 400mH 40.00mH∼399.99mH 0.4%+2 digits 0.0040 —— 40mH 4.000mH∼39.999mH 0.4%+2 digits 0.0040 Series 400.0uH∼3.9999mH 1%+3 digits 0.0100 Series 400uH 0.00uH~399.99uH 3.0%+5 digits —— Series  40kHz/50KHz Accuracy Equivalent mode…
  • Page 30
     40kHz/50KHz  Equivalent mode Range Range of display Accuracy Ze Accuracy recommended 20MΩ 4.000MΩ~20.000MΩ Parallel 7.0%+41 digits 4.0° 4MΩ 400.0kΩ~3.9999MΩ Parallel 2.5%+3 digits 1.4° 400kΩ 40.00kΩ~399.99kΩ 1.0%+4 digits 0.6° Parallel 40kΩ 4.000kΩ~39.999kΩ 1.0%+4 digits 0.6° —— 4kΩ 400.0Ω~3.9999kΩ Series 0.5%+3 digits 0.3°…
  • Page 31: Chapter 6 Maintenance

    Chapter 6 Maintenance Warning:  Do not repair the instrument arbitrarily; it should be maintained and repaired by professional personnel.  Keep the instrument away from liquid; do not leave articles especially conductive objects in the instrument. 6.1 Service If the equipment fails and cannot be switched on, you should first check the battery and external power supply, power jack, etc.;…

  • Page 32: Accessories

    Accessories Standard accessories list:  Handheld LCR (lithium battery installed)   A type C-USB communication cable  An AC power adapter  A pair of red / black rubber plugs –alligator clip test line  A short-circuit bar Please check according to the accessories list after the box is opened, if any component is missing, please immediately contact the company or the related dealer.

This manual is also suitable for:

1833c

Случились два удачных приобретения и может быть эта информация будет полезна кому-либо.

Первая покупка — измеритель LCR Hantek1833C (http://hantek.com.cn/products/detail/16180?fbclid=IwAR1V1QzLTsvI64GEaIhsheO4h5j7RP2Myo0xsthIcy_Yi1NGiXjVAGp5SQs).
Необходимость сего недешевого приобретения была вызвана двумя причинами:

1) отсутствием возможности измерения малых индуктивностей (мкГн и нГн) в моих приборах
2) отсутствием возможности измерения емкости конденсаторов менее 10 пФ с достаточной точностью.

Заплатил за это чудо 10 698 рублей, но покупкой прибора доволен однозначно по следующим причинам:

1) точность измерения конденсаторов малой емкости оказалась даже лучше ожидаемой — взял для примера два типа дорогих ВЧ конденсаторов ATC800B емкостью 1.0 пФ и 0.9 пФ — прибор с удивительной точностью различил по 5 штук каждого номинала как 1.096 пФ и 0.999 пФ соответственно с дисперсией 0.034 пФ. Точность измерения емкости конденсаторов с номинальной емкостью 0.3 пФ также впечатлила.

2) точность измерения малых значений индуктивностей оказалась также высокой — для примера измерялась SMD индуктивность 56 нГн типоразмера 0805 LQN21A56NJ04 — с учетом того, что расстояние между SMD индуктивностью и измерительными контактами прибора с каждой стороны составляло по 4 мм, то измеренное значение как 61 нГн вполне справедливо.

3) измеритель предлагается в двух вариантах как 1832С и 1833С. Версия 1833С существенно дороже, но она благодаря возможности измерения на более высоких частотах позволяет точно измерять существенно меньшие значения емкости и индуктивности.

4) прибор поставляется в комплекте с хорошим чехлом для хранения, зарядным устройством, кабелем питания и соединения с ПК; измерительными щупами и калибровочным устройством.

5) ПО для работы с ПК поставляется с официального сайта и позволяет достаточно комфортно работать с результати измерений и осуществлять их обработку при длительных испытаниях в различных условиях.

6) дисплей экрана обеспечивает хорошее качество отображения измеряемых величин, однако не имеет высокой яркости, что сказывается на ярком свете — это, пожалуй, единственный замеченный мною недостаток.

Ссылка на руководство по Hantek 1833 — http://www.hantek.com/Product/Hantek183X/Hantek183X%20Series%20Manual_EN.pdf?fbclid=IwAR2oHtwP_wvknCPMtEl9izSN-FT9Yg5vmqQ7qbWxrk5JxEw5j8O31m-GTME
Место покупки — https://aliexpress.ru/item/4000210477515.html?spm=a2g0s.9042311.0.0.274233edsSxQyw&fbclid=IwAR3INxvPqnGCsOdkKGEHHU_lny38_6RPjuUaS9PXrq4hfqc_4-wufnBnc8k

Второе приобретение попроще, но тоже полезное для тех кто занимается разработкой электроники — держатель печатных плат. Изначально это устройство предназначалось для ремонта сотовых телефонов, но путем несложной модернизации в виде снятия лишних элементов (смотри фото) легко превращается в более универсальное устройство, которое оказалось весьма полезным в процессе монтажа и измерений.

Ссылка на место покупки — https://aliexpress.ru/item/4000240704026.html?spm=a2g0s.9042311.0.0.274233edsSxQyw&fbclid=IwAR2CFpPVN4qS3AS_kqS2S7SlDizlyxzQljJOokVFEszdPK5NIXZbroDmQO8

      Hantek1832C/Hantek1833C handheld LCR Meter is a portable handheld measuring instrument to measure the parameters of the component such as inductance, capacitance, resistance and so on. small volume, powered by 5V lithium battery, it can meet the requirements of desktop LCR application, and can also be applied to flow measurement and handheld measurement.

  • 100Hz, 120Hz, 400Hz, 1kHz, 4kHz, 10kHz, 40kHz, 50kHz, 75kHz, 100kHz 10 typical
    test frequency (Hantek1832C) 7 typical test frequency
  • 2.8 inch TFT LCD, Switch
    between Chinese and English
  • HD display, dual
    display of measurement data, the result is clear
  • Support data record analysis
  • Support PC upper computer, easy to control and measure remotely
  • Test lead: 3 terminal/5
    terminal switch
  • Measuring speed: high
    speed/intermediate speed/low speed switch
  • Range: support
    manual/auto switch, easy to do quick measurement
  • LCR adopted rechargeable design, Large capacity lithium battery, super standby
  • Double shock protection sleeve, all-round protection, shakeproof, fall-arrest, protect
  • the machine from damage, longer use time, more comfortable measurement
  • Bracket design, easy to put and measure

 LCR high precision  test instrument:

 

Industrial design&small and portable:

personalized keyboard layout&easy to use:

Bracket design:

High definition large screen dual display:

Charge 2 hours can work for 1 whole day:

Standard with upper computer software, easier to measure:

Complete accessories&get and use:

Software function:

Accessories:

Model Hantek1832C Hantek1833C
Test frequency

100Hz, 120Hz, 400Hz, 1kHz, 4kHz, 10kHz,

40kHz

100Hz, 120Hz, 400Hz, 1kHz, 4kHz, 10kHz, 

40kHz, 50kHz, 75kHz, 100kHz

Accuracy 0.30%
Equivalent
Circuit
series, parallel
Test level 0.6Vrms 0.6Vrms, 0.3Vrms
Measurement
way
manual, auto
Display
screen
2.8 inch TFT LCD
Measurement
parameters
principle parameter: L/C/R/Z   deputy parameter: X/D/Q/θ/ESR
Principle
parameter
L/C/R/Z
Deputy
parameter
X/D/Q/θ/ESR
Inductance Measurement
range
(L) 0-2000H
Capacitance Measurement
range
(C) 0-20mF
Resistance  Measurement
range
(R) 0-20MΩ
Measurement
speed
high speed(4 times/s)intermediate speed(twice/s)low speed(once/s)
Reset
function
open circuit calibration, short-circuit calibration
Test terminal configuration 3 terminal, 5 terminal
General
feature
standard with 1.Type-C data cable; 2.power
adapte; 
3.short circuit card; 4.red and black rubber plug; 5.large
capacity lithium battery
Capacitance
C and dissipationD
100Hz/120Hz/400Hz
Range Display
range
Accuracy
Ce 
Accuracy
De 
Recommended
equivalent mode
20mF  4.000mF~20.000mF  8.00%+5
digits
0.08 series
4mF  400.0μF~3.9999mF  2.00%+3
digits
0.02 series
400μF  40.00μF~399.99μF  0.60%+2
digits 
0.006 series
40μF  4.000μF~39.999μF  0.40%+2
digits
0.004 series
4μF  400.0nF~3.9999μF  0.40%+2
digits
0.004 —- 
400nF  40.00nF~399.99nF  0.4%+2
digits
0.004 parallel
40nF  4.000nF~39.999nF  0.5%+3
digits
0.005 parallel
4nF  0pF~3.999nF  1.5%+5
digits 
——  parallel
1KHz/4kHz
Range Display
range
Accuracy
Ce 
Accuracy
De 
Recommended
equivalent mode
1000uF  400.0uF~999.9uF  3.00%+5
digits
0.03 series
400μF  40.00μF~399.99μF  1.50%+3
digits
0.015 series
40μF  4.000μF~39.999μF  0.60%+2
digits 
0.006 series
4μF  400.0nF~3.9999μF  0.40%+2
digits
0.004 ——
400nF  40.00nF~399.99nF  0.4%+2
digits
0.004 parallel
40nF  4.000nF~39.999nF  0.6%+3
digits
0.006 parallel
4nF  400.0pF~3.9999nF  0.6%+3
digits
0.006 parallel
400pF 0.0pF~399.9pF 3%+5
digits
—— parallel
10KHz
Range Display
range
Accuracy
Ce 
Accuracy
De 
Recommended
equivalent mode
100μF  40.00μF~100.00μF  4.00%+5
digits 
0.04 series
40μF  4.000μF~39.999μF  2.0%+3
digits
0.02 series
4μF  400.0nF~3.9999μF  0.60%+2
digits
0.006 series
400nF  40.00nF~399.99nF  0.4%+2
digits
0.004 series
40nF  4.000nF~39.999nF  0.4%+2
digits
0.004 —— 
4nF  400.0pF~3.9999nF  0.4%+2
digits
0.004 parallel
400pF 40.00pF~399.99pF 0.6%+3
digits
0.006 parallel
40pF 0.00pF~39.99pF 2.5%+5
digits
——  parallel
40KHz/50KHz
Range Display
range
Accuracy
Ce 
Accuracy
De 
Recommended
equivalent mode
100μF  40.00μF~100.00μF  6.00%+5
digits
0.06 series
40μF  4.000μF~39.999μF  4.0%+3
digits 
0.04 series
4μF  400.0nF~3.9999μF  1.0%+2
digits 
0.01 series
400nF  40.00nF~399.99nF  0.6%+2
digits
0.006 series
40nF  4.000nF~39.999nF  0.6%+2
digits 
0.006 —— 
4nF  400.0pF~3.9999nF  0.6%+2
digits 
0.006 parallel
400pF 40.00pF~399.99pF 1%+3
digits
0.01 parallel
40pF 0.000pF~39.999pF 3%+5
digits
——  parallel
75KHz/100KHz
Range Display
range
Accuracy
Ce 
Accuracy
De 
Recommended
equivalent mode
10μF  4.000μF~10.000μF  8.0%+20
digits
0.08 series
4μF  400.0nF~3.9999μF  5.0%+10
digits 
0.05 series
400nF  40.00nF~399.99nF  1.5%+5
digits
0.015 series
40nF  4.000nF~39.999nF  1%+2
digits
0.01 series
4nF  400.0pF~3.999nF  1%+2
digits
0.01 ——  
400pF 40.00pF~399.99pF 1.5%+2
digits
0.015 parallel
40pF 4.000pF~39.999pF 2%+5
digits
0.02 parallel
4pF 0.000pF~3.999pF 5%+10
digits
——  parallel
Inductance L and quality factor
100Hz/120Hz/400Hz
Range Display
range
Accuracy
Le 
Accuracy
De*
Recommended
equivalent mode
1000H  400.0H~999.9H  2.00%+3
digits
0.02 parallel
400H  40.000H~399.99H  0.60%+2
digits
0.006 parallel
40H  4.000H~39.999H  0.40%+2
digits
0.004 parallel
4H  400.0mH~3.9999H  0.40%+2
digits 
0.004 —- 
400mH  40.00mH~399.99mH  0.4%+2
digits
0.004 series
40mH  4.000mH~39.999mH  0.6%+3
digits
0.006 series
4mH  0uH~3.999mH  3.0%+5
digits
——  series
 1kHz/4KHz
Range Display
range
Accuracy
Le 
Accuracy
De*
Recommended
equivalent mode
1H  400.0mH~999.9mH  1.50%+3
digits
0.015 parallel
400mH  40.00mH~399.99mH  0.4%+2
digits
0.004 parallel
40mH  4.000mH~39.999mH  0.4%+2
digits
0.004 —— 
4mH  400.0uH~3.9999mH  0.4%+2
digits
0.004 series
400uH 40.00uH~399.99uH 0.8%+3
digits
0.008 series
40uH 0.00uH~39.99uH 3.0%+5
digits
—— series
10kHz
Range Display
range
Accuracy
Le 
Accuracy
De*
Recommended
equivalent mode
100H  40.00H~100.00H  2.0%+3
digits 
0.02 parallel
40H  4.000H~39.999H  0.60%+2
digits
0.006 parallel
4H  400.0mH~3.9999H  0.40%+2
digits 
0.004 parallel
400mH  40.00mH~399.99mH  0.4%+2
digits
0.004 —— 
40mH  4.000mH~39.999mH  0.4%+2
digits
0.004 series
4mH  400.0uH~3.9999mH  1%+3
digits
0.01 series
400uH 0.0uH~399.9uH 3.0%+5
digits
—— series
40kHz/50kHz
Range Display
range
Accuracy
Le 
Accuracy
De*
Recommended
equivalent mode
1H  400.0mH~999.9mH  2.0%+4
digits
0.02 parallel
400mH  40.00mH~399.99mH  0.8%+2
digits
0.008 parallel
40mH  4.000mH~39.999mH  0.8%+2
digits
0.008 —— 
4mH  400.0uH~3.9999mH  0.8%+2
digits
0.008 series
400uH 40.00uH~399.99uH 1.5%+3
digits
0.015 series
40uH 0.000uH~39.999uH 4.0%+5
digits
—— series
75KHz/100kHz
Range Display
range
Accuracy
Le 
Accuracy
De
Recommended
equivalent mode
100mH  40.00mH~399.99mH  2.5%+2
digits
0.025 parallel
40mH  4.000mH~39.999mH  1.5%+2
digits
0.015 parallel
4mH  400.0uH~3.9999mH  1.0%+2
digits
0.01 —— 
400uH 40.00uH~399.99uH 1.0%+2
digits
0.01 series
40uH 4.000uH~39.999uH 1.5%+5
digits
0.015 series
4uH 0.000uH~3.999uH 4%+10
digits
—— series
 Impedance Z and phase
angle
100Hz/120Hz/400Hz/1kHz/10kHz
Range Display
range
Accuracy
Ze
Accuracy Recommended
equivalent mode
20MΩ 4.000MΩ~20.000MΩ 3.0%+10 digits 3.4° parallel
4MΩ 400.0kΩ~3.9999MΩ 1.2%+3
digits
0.7° parallel
400kΩ 40.00kΩ~399.99kΩ 0.3%+3
digits
0.2° parallel
40kΩ 4.000kΩ~39.999kΩ 0.25%+2
digits
0.1° ——
4kΩ 400.0Ω~3.9999kΩ 0.25%+2
digits
0.1° series
400Ω 40.00Ω~399.99Ω 0.25%+2
digits
0.1° series
40Ω 4.000Ω~39.999Ω 0.5%+3
digits
0.3° series
0.4000Ω~3.9999Ω 2.0%+3
digits
1.1° series
0.4Ω 0.0000Ω~0.3999Ω 4.0%+3
digits
—— series
40kHz/50KHz
Range Display
range
Accuracy
Ze
Accuracy Recommended
equivalent mode
20MΩ 4.000MΩ~20.000MΩ 7.0%+41
digits
4.0° parallel
4MΩ 400.0kΩ~3.9999MΩ 2.5%+3
digits
1.4° parallel
400kΩ 40.00kΩ~399.99kΩ 1.0%+4
digits
0.6° parallel
40kΩ 4.000kΩ~39.999kΩ 1.0%+4
digits
0.6° ——
4kΩ 400.0Ω~3.9999kΩ 0.5%+3
digits
0.3° series
400Ω 40.00Ω~399.99Ω 0.5%+3
digits
0.3° series
40Ω 4.000Ω~39.999Ω 0.7%+4
digits
0.4° series
0.4000Ω~3.9999Ω 2.0%+6
digits
1.1° series
0.4Ω 0.0000Ω~0.3999Ω 5.0%+10
digits
—— series
75KHz/100kHz
Range Display
range
Accuracy
Ze
Accuracy Recommended
equivalent mode
20MΩ 4.000MΩ~20.000MΩ 9.0%+20
digits
5.2° parallel
4MΩ 400.0kΩ~3.9999MΩ 4.0%+10
digits
2.3° parallel
400kΩ 40.00kΩ~399.99kΩ 1.5%+4
digits
0.9° parallel
40kΩ 4.000kΩ~39.999kΩ 1.0%+2
digits
0.6° parallel
4kΩ 400.0Ω~3.9999kΩ 0.7%+2
digits
0.4° ——
400Ω 40.00Ω~399.99Ω 0.7%+2
digits
0.4° series
40Ω 4.000Ω~39.999Ω 1.0%+5
digits
0.6° series
0.4000Ω~3.9999Ω 3.0%+10
digits
1.7° series
0.4Ω 0.0000Ω~0.3999Ω 7%+20
digits
—— series

Specification:

Model Hantek1832C Hantek1833C
Test frequency

100Hz, 120Hz, 400Hz, 1kHz, 4kHz, 10kHz, 

40kHz

100Hz, 120Hz, 400Hz, 1kHz, 4kHz, 10kHz,

40kHz, 50kHz, 75kHz, 100kHz

Accuracy 0.30%
Equivalent
Circuit
series, parallel
Test level 0.6Vrms 0.6Vrms, 0.3Vrms
Measurement
way
manual, auto
Display
screen
2.8 inch TFT LCD
Measurement
parameters
principle parameter: L/C/R/Z   deputy parameter: X/D/Q/θ/ESR
Principle
parameter
L/C/R/Z
Deputy
parameter
X/D/Q/θ/ESR
Inductance Measurement
range
(L) 0-2000H
Capacitance Measurement
range
(C) 0-20mF
Resistance  Measurement
range
(R) 0-20MΩ
Measurement
speed
high speed(4 times/s)intermediate speed(twice/s)low speed(once/s)
Reset
function
open circuit calibration, short-circuit calibration
Test terminal configuration 3 termianl, 5 terminal
General
feature
standard with 1.Type-C data cable; 2.power
adapte; 
3.short circuit card; 4.red and black rubber plug; 5.large
capacity lithium battery
Capacitance
C and dissipationD
100Hz/120Hz
Range Display
range
Accuracy
Ce 
Accuracy
De 
Recommended
equivalent mode
20mF  4.000mF~20.000mF  8.00%+5
digits
0.08 series
4mF  400.0μF~3.9999mF  2.00%+3
digits
0.02 series
400μF  40.00μF~399.99μF  0.60%+2
digits 
0.006 series
40μF  4.000μF~39.999μF  0.40%+2
digits
0.004 series
4μF  400.0nF~3.9999μF  0.40%+2
digits
0.004 —- 
400nF  40.00nF~399.99nF  0.4%+2
digits
0.004 parallel
40nF  4.000nF~39.999nF  0.5%+3
digits
0.005 parallel
4nF  0pF~3.999nF  1.5%+5
digits 
——  parallel
1KHz
Range Display
range
Accuracy
Ce 
Accuracy
De 
Recommended
equivalent mode
1000uF  400.0uF~999.9uF  3.00%+5
digits
0.03 series
400μF  40.00μF~399.99μF  1.50%+3
digits
0.015 series
40μF  4.000μF~39.999μF  0.60%+2
digits 
0.006 series
4μF  400.0nF~3.9999μF  0.40%+2
digits
0.004 —- 
400nF  40.00nF~399.99nF  0.4%+2
digits
0.004 parallel
40nF  4.000nF~39.999nF  0.6%+3
digits
0.006 parallel
4nF  400.0pF~3.9999nF  0.6%+3
digits
0.006 parallel
400pF 0.0pF~399.9pF 3%+5
digits
——  parallel
10KHz
Range Display
range
Accuracy
Ce 
Accuracy
De 
Recommended
equivalent mode
100μF  40.00μF~100.00μF  4.00%+5
digits 
0.04 series
40μF  4.000μF~39.999μF  2.0%+3
digits
0.02 series
4μF  400.0nF~3.9999μF  0.60%+2
digits
0.006 series
400nF  40.00nF~399.99nF  0.4%+2
digits
0.004 series
40nF  4.000nF~39.999nF  0.4%+2
digits
0.004 —— 
4nF  400.0pF~3.9999nF  0.4%+2
digits
0.004 parallel
400pF 40.00pF~399.99pF 0.6%+3
digits
0.006 parallel
40pF 0.00pF~39.99pF 2.5%+5
digits
——  parallel
40KHz
Range Display
range
Accuracy
Ce 
Accuracy
De 
Recommended
equivalent mode
100μF  40.00μF~100.00μF  6.00%+5
digits
0.06 series
40μF  4.000μF~39.999μF  4.0%+3
digits 
0.04 series
4μF  400.0nF~3.9999μF  1.0%+2
digits 
0.01 series
400nF  40.00nF~399.99nF  0.6%+2
digits
0.006 series
40nF  4.000nF~39.999nF  0.6%+2
digits 
0.006 —— 
4nF  400.0pF~3.9999nF  0.6%+2
digits 
0.006 parallel
400pF 40.00pF~399.99pF 1%+3
digits
0.01 parallel
40pF 0.000pF~39.999pF 3%+5
digits
——  parallel
100KHz
Range Display
range
Accuracy
Ce 
Accuracy
De 
Recommended
equivalent mode
10μF  4.000μF~10.000μF  8.0%+20
digits
0.08 series
4μF  400.0nF~3.9999μF  5.0%+10
digits 
0.05 series
400nF  40.00nF~399.99nF  1.5%+5
digits
0.015 series
40nF  4.000nF~39.999nF  1%+2
digits
0.01 series
4nF  400.0pF~3.999nF  1%+2
digits
0.01 ——  
400pF 40.00pF~399.99pF 1.5%+2
digits
0.015 parallel
40pF 4.000pF~39.999pF 2%+5
digits
0.02 parallel
4pF 0.000pF~3.999pF 5%+10
digits
——  parallel
Inductance L and quality factor
100Hz/120Hz
Range Display
range
Accuracy
Le 
Accuracy
De*
Recommended
equivalent mode
1000H  400.0H~999.9H  2.00%+3
digits
0.02 parallel
400H  40.000H~399.99H  0.60%+2
digits
0.006 parallel
40H  4.000H~39.999H  0.40%+2
digits
0.004 parallel
4H  400.0mH~3.9999H  0.40%+2
digits 
0.004 —- 
400mH  40.00mH~399.99mH  0.4%+2
digits
0.004 series
40mH  4.000mH~39.999mH  0.6%+3
digits
0.006 series
4mH  0uH~3.999mH  3.0%+5
digits
——  series
 1kHz
Range Display
range
Accuracy
Le 
Accuracy
De*
Recommended
equivalent mode
1H  400.0mH~999.9mH  1.50%+3
digits
0.015 parallel
400mH  40.00mH~399.99mH  0.4%+2
digits
0.004 parallel
40mH  4.000mH~39.999mH  0.4%+2
digits
0.004 —— 
4mH  400.0uH~3.9999mH  0.4%+2
digits
0.004 series
400uH 40.00uH~399.99uH 0.8%+3
digits
0.008 series
40uH 0.00uH~39.99uH 3.0%+5
digits
—— series
10kHz
Range Display
range
Accuracy
Le 
Accuracy
De*
Recommended
equivalent mode
100H  40.00H~100.00H  2.0%+3
digits 
0.02 parallel
40H  4.000H~39.999H  0.60%+2
digits
0.006 parallel
4H  400.0mH~3.9999H  0.40%+2
digits 
0.004 parallel
400mH  40.00mH~399.99mH  0.4%+2
digits
0.004 —— 
40mH  4.000mH~39.999mH  0.4%+2
digits
0.004 series
4mH  400.0uH~3.9999mH  1%+3
digits
0.01 series
400uH 0.0uH~399.9uH 3.0%+5
digits
—— series
40kHz
Range Display
range
Accuracy
Le 
Accuracy
De*
Recommended
equivalent mode
1H  400.0mH~999.9mH  2.0%+4
digits
0.02 parallel
400mH  40.00mH~399.99mH  0.8%+2
digits
0.008 parallel
40mH  4.000mH~39.999mH  0.8%+2
digits
0.008 —— 
4mH  400.0uH~3.9999mH  0.8%+2
digits
0.008 series
400uH 40.00uH~399.99uH 1.5%+3
digits
0.015 series
40uH 0.000uH~39.999uH 4.0%+5
digits
—— series
100kHz
Range Display
range
Accuracy
Le 
Accuracy
De
Recommended
equivalent mode
100mH  40.00mH~399.99mH  2.5%+2
digits
0.025 parallel
40mH  4.000mH~39.999mH  1.5%+2
digits
0.015 parallel
4mH  400.0uH~3.9999mH  1.0%+2
digits
0.01 —— 
400uH 40.00uH~399.99uH 1.0%+2
digits
0.01 series
40uH 4.000uH~39.999uH 1.5%+5
digits
0.015 series
4uH 0.000uH~3.999uH 4%+10
digits
—— series
 Impedance Z and phase
angle
100Hz, 120Hz, 1kHz, 10kHz
Range Display
range
Accuracy
Ze
Accuracy Recommended
equivalent mode
20MΩ 4.000MΩ~20.000MΩ 3.0%+10 digits 3.4° parallel
4MΩ 400.0kΩ~3.9999MΩ 1.2%+3
digits
0.7° parallel
400kΩ 40.00kΩ~399.99kΩ 0.3%+3
digits
0.2° parallel
40kΩ 4.000kΩ~39.999kΩ 0.25%+2
digits
0.1° ——
4kΩ 400.0Ω~3.9999kΩ 0.25%+2
digits
0.1° series
400Ω 40.00Ω~399.99Ω 0.25%+2
digits
0.1° series
40Ω 4.000Ω~39.999Ω 0.5%+3
digits
0.3° series
0.4000Ω~3.9999Ω 2.0%+3
digits
1.1° series
0.4Ω 0.0000Ω~0.3999Ω 4.0%+3
digits
—— series
40kHz
Range Display
range
Accuracy
Ze
Accuracy Recommended
equivalent mode
20MΩ 4.000MΩ~20.000MΩ 7.0%+41
digits
4.0° parallel
4MΩ 400.0kΩ~3.9999MΩ 2.5%+3
digits
1.4° parallel
400kΩ 40.00kΩ~399.99kΩ 1.0%+4
digits
0.6° parallel
40kΩ 4.000kΩ~39.999kΩ 1.0%+4
digits
0.6° ——
4kΩ 400.0Ω~3.9999kΩ 0.5%+3
digits
0.3° series
400Ω 40.00Ω~399.99Ω 0.5%+3
digits
0.3° series
40Ω 4.000Ω~39.999Ω 0.7%+4
digits
0.4° series
0.4000Ω~3.9999Ω 2.0%+6
digits
1.1° series
0.4Ω 0.0000Ω~0.3999Ω 5.0%+10
digits
—— series
100kHz
Range Display
range
Accuracy
Ze
Accuracy Recommended
equivalent mode
20MΩ 4.000MΩ~20.000MΩ 9.0%+20
digits
5.2° parallel
4MΩ 400.0kΩ~3.9999MΩ 4.0%+10
digits
2.3° parallel
400kΩ 40.00kΩ~399.99kΩ 1.5%+4
digits
0.9° parallel
40kΩ 4.000kΩ~39.999kΩ 1.0%+2
digits
0.6° parallel
4kΩ 400.0Ω~3.9999kΩ 0.7%+2
digits
0.4° ——
400Ω 40.00Ω~399.99Ω 0.7%+2
digits
0.4° series
40Ω 4.000Ω~39.999Ω 1.0%+5
digits
0.6° series
0.4000Ω~3.9999Ω 3.0%+10
digits
1.7° series
0.4Ω 0.0000Ω~0.3999Ω 7%+20
digits
—— series

【Tip: up to 4 products can be compared】

Select Model Bandwidth Channels Sampling rate Other

Hantek1832C/Hantek1833C

2021-07-20

2020-11-25

2022-06-22

2019-11-09

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