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PDF MAX9972 Data sheet ( Hoja de datos )

Número de pieza MAX9972
Descripción 300Mbps ATE Drivers/Comparators
Fabricantes Maxim Integrated Products 
Logotipo Maxim Integrated Products Logotipo



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MAX9972
Quad, Ultra-Low-Power, 300Mbps ATE
Drivers/Comparators
General Description
The MAX9972 four-channel, ultra-low-power, pin-elec-
tronics IC includes, for each channel, a three-level pin
driver, a window comparator, a passive load, and
force-and-sense Kelvin-switched parametric measure-
ment unit (PMU) connections. The driver features a
-2.2V to +5.2V voltage range, includes high-impedance
and active-termination (3rd-level drive) modes, and is
highly linear even at low voltage swings. The window
comparator features 500MHz equivalent input band-
width and programmable output voltage levels. The
passive load provides pullup and pulldown voltages to
the device-under-test (DUT).
Low-leakage, high-impedance, and terminate controls
are operational configurations that are programmed
through a 3-wire, low-voltage, CMOS-compatible serial
interface. High-speed PMU switching is realized through
dedicated digital control inputs.
This device is available in an 80-pin, 12mm x 12mm
body, 0.50mm pitch TQFP with an exposed 6mm x 6mm
die pad on the bottom of the package for efficient heat
removal. The MAX9972 is specified to operate over the
0°C to +70°C commercial temperature range, and fea-
tures a die temperature monitor output.
Applications
NAND Flash Testers
DRAM Probe Testers
Low-Cost Mixed-Signal/System-on-Chip (SoC)
Testers
Active Burn-In Systems
Structural Testers
Features
o Small Footprint—Four Channels in 0.3in2
o Low-Power Dissipation: 325mW/Channel (typ)
o High Speed: 300Mbps at 3VP-P
o -2.2V to +5.2V Operating Range
o Active Termination (3rd-Level Drive)
o Integrated PMU Switches
o Passive Load
o Low-Leak Mode: 20nA (max)
o Low Gain and Offset Error
Ordering Information
PART
TEMP
RANGE
PIN-
HEAT
PACKAGE EXTRACTION
MAX9972ACCS+
0°C to
+70°C
80 TQFP-EP*
Bottom
+Denotes a lead(Pb)-free/RoHs-compliant package.
*EP = Exposed pad.
Pin Configuration appears at end of data sheet.
For pricing, delivery, and ordering information, please contact Maxim Direct
at 1-888-629-4642, or visit Maxim’s website at www.maximintegrated.com.
19-0474; Rev 10; 8/14

1 page




MAX9972 pdf
MAX9972
Quad, Ultra-Low-Power, 300Mbps ATE
Drivers/Comparators
ELECTRICAL CHARACTERISTICS (continued)
(VDD = +8V, VSS = -5V, VL = +3V, VCOMPHI = +1V, VCOMPLO = 0V, VLDV_ = 0V, LOAD EN LOW = LOAD EN HIGH = 0,
TJ = +75°C. All temperature coefficients measured at TJ = +50°C to +100°C, unless otherwise noted.) (Note 1)
PARAMETER
LOGIC OUTPUTS
SYMBOL
CONDITIONS
MIN TYP MAX UNITS
Reference Voltages COMPHI and
COMPLO
(Note 15)
0
+3.6
V
Output High Voltage Offset
IOUT = 0mA, relative to COMPHI at
VCOMPHI = 1V
±50 mV
Output Low Voltage Offset
Output Resistance
Current Limit
IOUT = 0mA, relative to COMPLO at
VCOMPLO = 0V
ICHV_ = ICLV_ = ±10mA
±50 mV
40 50 60
Ω
25 mA
Rise/Fall Time
20% to 80%, VCHV_ = 1VP-P,
load = T-line, 50Ω, > 1ns
0.7 ns
PASSIVE LOAD
DC CHARACTERISTICS (RDUT_ 10MΩ)
LDV_ Voltage Range
Gain
Gain Temperature Coefficient
Offset
Offset Temperature Coefficient
Power-Supply Rejection Ratio
PSRR
-2.2
0.99
0.02
0.02
10
+5.2
1.01
±100
V
V/V
%/°C
mV
mV/°C
mV/V
Output Resistance
Tolerance—High Value
IDUT_ = ±0.2mA, VLDV_ = 1.5V
7.125 7.5 7.875 kΩ
Output Resistance
Tolerance—Low Value
IDUT_ = ±0.1mA, VLDV_ = 1.5V
1.90 2.0 2.10
kΩ
Switch Resistance Variation
Maximum Output Current
(Note 16)
Linearity Error, Full Range
Relative to 1.5V
0 to 3V
Full range
VLDV_ = -2V, VDUT_ = +5V
VLDV_ = +5V, VDUT_ = -2V
Measured at -2.2V, +1.5V, and +5.2V
(Note 16)
±10
±30
±4
±4
±25
%
mA
mV
AC CHARACTERISTICS
Settling Time, LDV_ to Output
VLDV_ = -2V to +5V step, RDUT_ = 100kΩ
(Note 17)
0.5 µs
Output Transient Response
VLDV_ = +1.5V, VDUT_ = -2V to +5V square
wave at 1MHz, RDUT_ = 50Ω
20
ns
Maxim Integrated
5

5 Page





MAX9972 arduino
MAX9972
Quad, Ultra-Low-Power, 300Mbps ATE
Drivers/Comparators
(TA = +25°C, unless otherwise noted.)
Typical Operating Characteristics (continued)
CROSSTALK, DUT_ DRIVEN BY
DLV_ WITH DTV_ VARIED
100
80
VDHV_ = 3V
VDLV_ = 0
60
40
20
0
-20
-40
-60
-80 NORMALIZED AT VDTV_ = 1.5V
-100
-2.5 -1.5 -0.5 0.5 1.5 2.5 3.5 4.5
VDTV_ (V)
5.5
1.0008
DRIVER GAIN vs. TEMPERATURE
1.0006
1.0004
1.0002
1.0000
0.9998
0.9996
50
NORMALIZED AT TJ = +85°C
60 70 80 90
TEMPERATURE (°C)
100
COMPARATOR OFFSET
vs. COMMON-MODE VOLTAGE
0.20
0.15
0.10
0.05
0
-0.05
-0.10
-0.15
-0.20
-0.25 NORMALIZED AT VCM = 1.5V
-0.30 OTHER COMPARATOR REFERENCE = -2.5V
-0.35
-2.5 -1.5 -0.5 0.5 1.5 2.5 3.5 4.5
COMMON-MODE VOLTAGE (V)
5.5
Maxim Integrated
CROSSTALK, DUT_ DRIVEN BY
DTV_ WITH DHV_ VARIED
100
80
VDTV_ = +1.5V
VDLV_ = -1.5V
60
40
20
0
-20
-40
-60
-80 NORMALIZED AT VDHV_ = 3V
-100
-2.5 -1.5 -0.5 0.5 1.5 2.5 3.5 4.5 5.5
VDHV_ (V)
DRIVER OFFSET vs. TEMPERATURE
5
4
3
2
1
0
-1
-2
-3
50
NORMALIZED AT TJ = +85°C
60 70 80 90
TEMPERATURE (°C)
100
COMPARATOR WAVEFORM TRACKING
400
300 VDUT_ FALLING
200 VDUT_ RISING
100
0
-100
-200
-300 NORMALIZED AT 50% REFERENCE
VDUT_ = 0 TO 1V PULSE
-400
0 20 40 60 80
REFERENCE LEVEL (%)
100
CROSSTALK, DUT_ DRIVEN BY
DTV_ WITH DLV_ VARIED
100
80
VDHV_ = 3V
VDTV_ = 1.5V
60
40
20
0
-20
-40
-60
-80 NORMALIZED AT VDLV_ = 0
-100
-2.5 -1.5 -0.5 0.5 1.5 2.5 3.5 4.5 5.5
VDLV_ (V)
COMPARATOR RESPONSE TO
0 TO 3V SIGNAL
VCHV_ = VCLV_ = 1.5V, RL = 50Ω
VCOMPHI = 1V, VCOMPLO = 0
t = 2.0ns/div
COMPARATOR TIMING VARIATION
vs. PULSE WIDTH
50
30
10
-10
-30
-50
-70
-90
-110
-130
NORMALIZED AT PW = 10ns
-150
1 2 3 4 5 6 7 8 9 10
PULSE WIDTH (ns)
11

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