AD5520JST Analog Devices Inc, AD5520JST Datasheet - Page 15

IC SNGL PARAMETRIC MEASURE64LQFP

AD5520JST

Manufacturer Part Number
AD5520JST
Description
IC SNGL PARAMETRIC MEASURE64LQFP
Manufacturer
Analog Devices Inc
Type
Per-pin Parametric Measurement Unit (PPMU)r
Datasheet

Specifications of AD5520JST

Rohs Status
RoHS non-compliant
Applications
Automatic Test Equipment
Mounting Type
Surface Mount
Package / Case
64-LQFP
Operating Temperature (min)
0C
Operating Temperature (max)
70C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
For Use With
EVAL-AD5520EBZ - BOARD EVAL FOR AD5520
Lead Free Status / RoHS Status
Not Compliant

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FORCE CONTROL AMPLIFIER
The force control amplifier requires external capacitors
connected between the COMPOUTx and COMPINx pins.
For stability with large capacitance at the DUT, the largest
capacitance value (3000 pF) should be selected. The force
control amplifier should always contribute the dominant
pole in the control loop. Settling times increase with
larger capacitances. ACx inputs select which external
compensation capacitor is used.
Table 10. AC0, AC1 Compensation Capacitor Selection
AC0
Low
High
Low
COMPARATOR FUNCTION AND STROBING
The AD5520 has an on-board window comparator that
provides two bits of useful information, DUT too low or
DUT too high. CPSEL is the digital input that controls
this function, selecting whether it should compare to the
voltage sense or the current sense amplifier.
Table 11. Comparator Function Select
CPSEL
Low
High
After CPSEL has selected which amplifier output is of interest,
logic input CPCK is used to initiate comparator sampling and
update the logic outputs CPOH and CPOL. This indicates
whether the voltages at MEASIOUT or MEASVOUT have
exceeded voltages set at CPL or CPH (thus providing DUT too
high or DUT too low information). A rising edge on STB is
required to clock the CPOH and CPOL data out.
Table 12. CPCK Synchronous Logic Outputs
CPOH
Low
High
CPOL
Low
High
AC1
Low
Low
High
Function
MEASVOUT or MEASIOUT < CPH MEASVOUT or
MEASIOUT > CPH
Function
MEASVOUT or MEASIOUT > CPL MEASVOUT or
MEASIOUT < CPL
Function
Compare CPL, CPH to MEASVOUT
Compare CPL, CPH to MEASIOUT
Function
Select External Compensation Capacitor 0
Select External Compensation Capacitor 1
Select External Compensation Capacitor 2
Rev. B | Page 15 of 24
CLAMP FUNCTION
Clamp circuitry, which is also included on-chip, clamps the
force amplifier’s output if the voltage or current applied to the
DUT exceeds the clamp levels, CLL and CLH. The clamp
circuitry also comes into play in the event of a short or open
circuit. When in force current range, the voltage clamps protect
the DUT from an open circuit. Likewise, when forcing a voltage
and a short circuit occurs, the current clamps protect the DUT.
The clamps also function to protect the DUT if a transient
voltage or current spike occurs when changing to a different
operating mode, or when programming the device to a different
current range.
The digital output flags, which indicate a clamp limit has been
hit, are CLHDETECT for the upper clamp, and CLLDETECT
output for the lower clamp.
Table 13. Clamp Detect Outputs
CLHDETECT
Low
High
CLLDETECT
Low
High
HIGH CURRENT RANGES
With the use of an external high current amplifier, two high
current ranges are possible. The current range values can be set
as required in the application through appropriate selection of
the sense resistors connected between MEASI5H, MEASI4H,
and MEASIL. When one of these high current ranges (Mode 4
or Mode 5) is selected via the AMx control lines, the appro-
priate QM4 or QM5 output is enabled. As a result, these outputs
can be used to control relays connected in series with the high
current amplifier, as shown in Figure 26.
Table 14. High Current Range Logic Outputs
QM4
High
Low
QM5
Low
High
Function
Current Range Mode 4 Enable Output
Current Range Mode 5 Enable Output
Function
Upper Clamp Inactive
Upper Clamp Active
Function
Lower Clamp Inactive
Lower Clamp Active
AD5520

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