BK Precision 817050088922 Manual Download Page 25

 

26 

4. Application 

4.1  Test Leads Connection 

Auto balancing bridge has four terminals (H

CUR

, H

POT

, L

CUR

 and L

POT

) to connect to the 

device under test

 (DUT). 

It is important to understand what connection method will affect the measurement accuracy. 

 

 2-Terminal (2T) 

2-Terminal is the easiest way to connect the DUT, but it contents many errors that are the inductance and 
resistance  as  well  as  the  parasitic  capacitance  of  the  test  leads  (Figure  4.1).  Due  to  these  errors  in 
measurement, the effective impedance measurement range will be limited at 100

 to 10K

 

R

H

CUR

H

POT

DUT

(b) BLOCK DIAGRAM

DUT

V

A

Co

o

L

o

R

o

L

o

(a) CONNECTION

(c) TYPICAL IMPEDANCE MEASUREMENT RANGE(£[)

2T

1m 10m 100m 1 10

1K 10K 100K 1M

100

10M

L

POT

L

CUR

 

(c) Typical Impedance Measurement Range (Ω) 

Figure 4.1  

 3-Terminal (3T) 

3-Terminal uses coaxial cable to reduce the effect of the parasitic capacitor (Figure 4.2). The shield of the 
coaxial cable should connect to guard of the instrument to increase the measurement range up to 10M

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

(c) Typical Impedance Measurement Range (Ω) 

 

 

 

 

 

 

 

 

 

 

(d) 2T Connection with Shielding 

Figure 4.2 

 4-Terminal (4T) 

4-Terminal connection reduces the effect of the test lead resistance (Figure 4.3). This connection can improve 
the measurement range down to 10m

. However, the effect of the test lead inductance can’t be eliminated. 

 

 

 

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Summary of Contents for 817050088922

Page 1: ...C Resistance Measurement 16 2 2 5 AC Impedance Measurement 16 2 2 6 Capacitance Measurement 16 2 2 7 Inductance Measurement 16 3 OPERATION MODES 17 3 1 REMOTE MODE COMMAND SYNTAX 20 3 2 REMOTE MODE CO...

Page 2: ...LCR meter may be adequately substituted for a more expensive LCR bridge in many situations Also with the basic accuracy of 0 4 in voltage and current measurements the 889B performs the functions of a...

Page 3: ...o be seen as the polar coordinates The Z is the magnitude and is the phase of the impedance Ohm Reactance Resistance Impedance S S X R Z s R s X Tan Sin Z s X s X s R Z Cos Z s R Z s jX s R Z 1 2 2 Th...

Page 4: ...9999 180 0 to 180 0 Voltage Current Measurements V 0 0 mV to 600 V A 0 000 mA to 2 A Accuracy Ae 1 DC Voltage Measurement Range 2V 20V 200V and 600V Resolution 1mV 10mV 100mV and 1V Accuracy 0 4 3 dig...

Page 5: ...AC voltage current measurements is only applied when in 5 100 of the range 5 LCR Measurement Z Accuracy Ae Zx Freq 20M 10M 10M 1M 1M 100K 100K 10K 10K 1K 1K 100 100 1 1 0 1 DCR 2 1 1 1 0 5 1 0 2 1 0 1...

Page 6: ...1 100KHz NA 0 159pF 1 591pF 1 591pF 15 91pF 15 91pF 159 1pF 159 1pF 1 591nF 1 591nF 15 91nF 15 91nF 1 591uF 1 591uF 15 91uF NA 5 1 2 1 1 1 0 4 1 1 1 2 1 5 1 200KHz NA 0 079pF 0 795pF 0 795pF 7 957pF...

Page 7: ...795 7uH 795 7uH 79 57uH 79 57uH 0 795uH 0 795uH 0 079uH NA 5 1 2 1 1 1 0 4 1 1 1 2 1 5 1 D Accuracy Zx Freq 20M 10M 10M 1M 1M 100K 100K 10K 10K 1K 1K 100 100 1 1 0 1 100Hz 0 020 0 010 0 005 0 002 0 0...

Page 8: ...Then 1590 9 10 100 3 10 2 1 2 1 Cx f Zx Refer to the accuracy table get CAe 0 1 L Accuracy Lx f Zx 2 LAe Ae of L f Test Frequency Hz Lx Measured Inductance Value H Zx Measured Impedance Value Accurac...

Page 9: ...00nF Then 1590 9 10 100 3 10 2 1 2 1 Cx f Zx Refer to the accuracy table get CAe 0 1 59 1 100 Ae Xx Ae ESR D Accuracy 100 Ae Ae D DAe Ae of D measurement value Accuracy applies when Dx measured D valu...

Page 10: ...3 6 3 10 3 10 2 2 Lx f Zx Refer to the accuracy table get LAe 0 5 005 0 100 Ae De If measured Qx 20 Then 1 0 1 2 1 2 De Qx De Qx Ae Q Accuracy 100 Ae 180 Ae Example Test Condition Frequency 1KHz Level...

Page 11: ...s disconnect the power cord from the instrument disconnect all other connections for example test leads computer interface cables etc discharge all circuits and verify there are no hazardous voltages...

Page 12: ...e used to determine the capacitance per foot Do not use too short length such as one foot because any error becomes magnified in the total length calculations Sometimes the affecting stray capacitance...

Page 13: ...9 Model Number 10 LPOT Terminal 11 D Q ESR Function Key 12 HPOT Terminal 13 Open Calibration Key 14 DCV ACV Function Key 15 Relative Key 16 HCUR Terminal 17 Short Calibration Key 18 Diode Continuity F...

Page 14: ...After it is finished the 889B will beep to show that the calibration is done 2 2 2 Relative Mode The relative mode lets the user to make a quick sort of a bunch of components First insert the standard...

Page 15: ...selected the D Q and ESR can be shown on the secondary display If the parallel mode Cp is selected only the D and Q can be shown on the secondary display The following shows some examples of capacitan...

Page 16: ...e locked Remote Binning mode is opened for users to design your own private fast and high efficient application programs Users can design a server or driver any software component that can do server s...

Page 17: ...tive Relative 1 Normal Normal Bit 7 0 Calibration Calibration 1 Normal Normal Bit 10 Bit 8 Reserved 000 Lp 001 Ls 010 Cp 011 Cs 100 Z 101 DCR 110 Reserved 111 Reserved Bit 12 Bit 11 Reserved 00 D 01 Q...

Page 18: ...e format shown as following Lead_code1 02 Lead_code2 09 Data_code 8 byte long two 32 bit floating point number format the first 4 byte is the main reading Cp and the second 4 byte is the secondary rea...

Page 19: ...COMMAND means a query or a measuring command For example CpD sets the measurement mode to Cp and D CpD sets the measurement mode to Cp and D as well as measures the values and send them back 5 The CO...

Page 20: ...and angle Deg measurement mode setting or querying command ZTR Impedance and angle Rad measurement mode setting or querying command DCV DC Voltage measurement mode setting or query command ACV AC Vol...

Page 21: ...back FREQ PARAMETER Set query the measurement frequency FREQ PARAMETER Set the measurement frequency according to the parameter When setting command is entered the 889B will return OK string after se...

Page 22: ...will be returned 1 Frequency 2 Level 3 Measurement mode 4 Unit of primary display 5 Unit of secondary display The existence of field 5 depends on the measurement mode For example there s no field 5 i...

Page 23: ...rameter OK string will be returned when setting is complete PARAMETER ASCII string Numerical code pF 0 nF 1 uF 2 mF 3 F 4 nH 8 uH 9 mH 10 H 11 KH 12 mOhm 17 Ohm 18 KOhm 19 MOhm 20 mV 21 V 22 mA 23 A 2...

Page 24: ...and return the measured value Example CPD OK READ 0 22724 0 12840 return value DCR OK READ 5 1029 return value The DCR DCV and ACV measurements will send only one measured value The other measurement...

Page 25: ...A Co o Lo Ro Lo a CONNECTION c TYPICAL IMPEDANCE MEASUREMENT RANGE 2T 1m 10m 100m 1 10 1K 10K 100K 1M 100 10M LPOT LCUR c Typical Impedance Measurement Range Figure 4 1 3 Terminal 3T 3 Terminal uses...

Page 26: ...easurement Range Figure 4 3 5 Terminal 5T 5 Terminal connection is the combination of 3T and 4T Figure 4 4 It has four coaxial cables Due to the advantage of the 3T and 4T this connection can widely i...

Page 27: ...surement Range Figure 4 5 Eliminating the Effect of the Parasitic Capacitor When measuring the high impedance component i e low capacitor the parasitic capacitor becomes an important issue Figure 4 6...

Page 28: ...sation the 889B has Yp and Zs that can then be used for the real Zdut calculation Figure 4 7 d HCUR HPOT LCUR LPOT Zdut Co Rs Ls Go Zm Redundant Impedance Zs Parastic Conductance Yo Parastic of the Te...

Page 29: ...tional when test frequency is fixed Therefore the larger inductance equals to higher impedance and vice versa Figure 4 9 shows the equivalent circuit of inductor When the inductance is small the Rs be...

Page 30: ...h these requirements BEFORE APPLYING POWER Verify that the product is set to match the available line voltage is installed SAFETY SYMBOLS Caution risk of electric shock Earth ground symbol Equipment p...

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