19-6092; Rev 0; 12/11
MAX19005
Quad, Ultra-Low-Power,
200Mbps ATE Drivers/Comparators
General Description
The MAX19005 four-channel, ultra-low-power, pin-
electronics IC includes a two-level pin driver, a window
comparator, a passive load, and force-and-sense
Kelvin-switched parametric measurement unit (PMU)
connections for each channel. The driver features a
-1V to +5.2V voltage range, includes high-impedance
modes, and is highly linear even at low voltage swings.
The window comparator features 240MHz equivalent
input bandwidth and programmable output voltage
levels. The passive load provides pullup and pulldown
voltages to the device-under-test (DUT).
Low leakage and high impedance 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, 0.5mm pitch TQFP with an exposed 6mm x 6mm
die pad on the bottom of the package for efficient heat
removal. The device is specified to operate over the 0NC
to +70NC commercial temperature range and features a
die temperature monitor output.
Ordering Information
appears at end of data sheet.
Features
S
Small Footprint: Four Channels in 0.3in
2
S
Low-Power Dissipation: 340mW/Channel (typ)
S
High Speed: 200Mbps at 3V
P-P
S
-1V to +5.2V Operating Range
S
Integrated Pin Switch (with -1V to +24V Off Range)
S
Integrated PMU Switches with -1V to +24V
Operating Range
S
Passive Load
S
Low-Leakage Mode by Pin Switch Off: 10nA (max)
S
Low Gain and Offset Error
Applications
NAND Flash Testers
DRAM Probe Testers
Low-Cost Mixed-Signal/System-on-Chip (SoC)
Testers
Active Burn-In Systems
Structural Testers
For related parts and recommended products to use with this part, refer to:
www.maxim-ic.com/MAX19005.related
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Maxim Integrated Products
1
For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642,
or visit Maxim’s website at www.maxim-ic.com.
MAX19005
Quad, Ultra-Low-Power,
200Mbps ATE Drivers/Comparators
ABSOLUTE MAXIMUM RATINGS
V
DD
to GND..........................................................-0.3V to +9.4V
V
SS
to GND ........................................................-6.25V to +0.3V
V
DD
- V
SS
...................................................................... +15.65V
V
L
to GND ...............................................................-0.3V to +5V
DHV_, DLV_ to GND with
Integrated Pin Switch Off ................V
SS
- 0.3V to V
DD
+ 0.3V
DHV_, DLV_ to GND with
Integrated Pin Switch On ........... V
SSSW
- 0.3V to V
DD
+ 0.3V
DATA_, RCV_, V
BBI
to GND....................................-0.3V to +5V
LDV_ to GND .................................. V
SSSW
- 0.3V to V
DD
+ 0.3V
CHV_, CLV_ COMPHI, COMPLO
to GND.............................................V
SS
- 0.3V to V
DD
+ 0.3V
CMPH_, CMPL_, V
BBO
to GND ..............................-0.3V to V
DD
LD,
DIN, SCLK,
CS,
SWEN to GND. ....................... -0.3V to +V
L
CHV_, CLV_ to DUT_ with Integrated Pin Switch On..............8V
DUT_ to GND with Integrated Pin Switch Off…V
SSSW
to V
DDSW
DUT_ to GND with Integrated Pin Switch On….. . V
SSSW
to V
DD
FORCE, SENSE, PMU_ to GND ...................... V
SSSW
to V
DDSW
V
DDSW
to V
SSSW
................................................................ +27V
V
DDSW
to V
SS
……………………………………… ... ……+31.35V
V
DDSW
to GND ...................................................-0.3V to +26.1V
V
SSSW
to GND…………………………………… …-2.4V to +0.3V
DUT_, CMPH_, CMPL_ Short-Circuit Duration ..........Continuous
DOUT to GND ......................................................... -0.3V to +V
L
TEMP to GND ..........................................................-0.3V to V
DD
TEMP Short-Circuit Duration .....................................Continuous
PMU Force Switch Continuous Current .......................... ±35mA
PMU Force Switch Peak Current................................... ±160mA
PMU Sense Switch Continuous Current........................... ±1mA
PMU Sense Switch Peak Current .................................... ±30mA
All Digital Inputs .............................................................. ±30mA
Continuous Power Dissipation (T
A
= +70°C)
TQFP (derate 35.7mW/°C above +70°C) ...................2857mW
Storage Temperature Range............................ -65°C to +150°C
Junction Temperature .....................................................+150°C
Lead Temperature (soldering, 10s) ................................+300°C
Soldering Temperature (reflow) ......................................+260°C
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional opera-
tion of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect device reliability.
ELECTRICAL CHARACTERISTICS
(V
DD
= +8V, V
SS
= -5V, V
L
= +3V, V
DDSW
= +24.6V, V
SSSW
= -1.25V, V
COMPHI
= +1V, V
COMPLO
= 0V, V
LDV__
= 0V, LOAD EN
LOW_ = LOAD EN HIGH_ = 0, SWEN = 1, T
J
= +70°C with an accuracy of ±15NC. Specification compliance with supply and
temperature variations is verified by guard-banding mean shifts of characterization data, unless otherwise noted. All temperature
coefficients measured at T
J
= +50°C to +90°C, unless otherwise noted.) (Note 1)
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS
DRIVER (all specifications apply when DUT½ = DHV½ or DUT½ = DLV½)
DC CHARACTERISTICS (R
DUT½
R
10MI, unless otherwise noted)
Voltage Range
Gain
Gain Temperature Coefficient
Offset
Offset Temperature Coefficient
V
DHV_
= +2V, V
DLV_
= 0V
V
DHV_
= +1.5V
PSRR
V
DD
, V
SS
independently varied over full
range, V
DHV_
= +1.5V
V
DDSW
, V
SSSW
independently varied
over full range, V
DHV_
= +1.5V
Q40
I
DUT_
=
Q10mA,
DATA_ = 1,
trim condition, target = 49.5I
I
DUT_
=
Q10mA,
DATA_ = 1
47.5
49.0
49.5
52.0
51.5
55.0
Q250
Q18
Q10
Measured at 0V and +3V
-1.0
0.995
1
50
Q10
+5.2
1.005
V
V/V
ppm/NC
mV
FV/NC
mV/V
mV/V
mA
I
I
Power-Supply Rejection Ratio
Maximum DC Drive Current
DC Output Resistance
DC Output Resistance
(V
DDSW
= + 15V)
I
DUT_
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Maxim Integrated Products
2
MAX19005
Quad, Ultra-Low-Power,
200Mbps ATE Drivers/Comparators
ELECTRICAL CHARACTERISTICS (continued)
(V
DD
= +8V, V
SS
= -5V, V
L
= +3V, V
DDSW
= +24.6V, V
SSSW
= -1.25V, V
COMPHI
= +1V, V
COMPLO
= 0V, V
LDV__
= 0V, LOAD EN
LOW_ = LOAD EN HIGH_ = 0, SWEN = 1, T
J
= +70°C with an accuracy of ±15NC. Specification compliance with supply and
temperature variations is verified by guard-banding mean shifts of characterization data, unless otherwise noted. All temperature
coefficients measured at T
J
= +50°C to +90°C, unless otherwise noted.) (Note 1)
PARAMETER
DC Output Resistance Variation
DC Output Resistance Variation
(V
DDSW
= +15V)
DC Crosstalk, DHV_ to DLV_,
DLV_ to DHV_
Linearity Error
SYMBOL
CONDITIONS
I
DUT_
= -40mA to +40mA, DATA_ = 1
(Note 2)
I
DUT_
= -40mA to +40mA, DATA_ = 1
(Note 2)
V
DLV_
= +1.5V, V
DHV_
= -1V, +5.2V
V
DHV_
= +1.5V, V
DLV_
= -1V, +5.2V
+1.5V (Note 3)
-1V and +5.2V (Note 3)
(Note 5)
+0.2V to 4V
P-P
swing (Note 6)
DHV_/high-Z, V
DLV_
= -1V, V
DHV_
= 0V
DLV_/high-Z, V
DLV_
= 0V, V
DHV_
= +1V
V
DHV_
= +3V, V
DLV_
= 0V,
average of t
LH
and t
HL
V
DHV_
= +3V, V
DLV_
= 0V
V
DHV_
= +3V, V
DLV_
= 0V
V
DHV_
= +3V, V
DLV_
= 0V
3V
P-P
, 40MHz,
PW = 4ns to 21ns
1V
P-P
, 40MHz,
PW = 2.5ns to 22.5ns
2.5
Q60
5% + 10
25
25
3.5
1
70
100
Q40
ps
Q90
Q80
ps
5.1
MIN
TYP
MAX
5.0
8.0
Q5
Q5
Q5
Q15
UNITS
I
I
mV
mV
AC CHARACTERISTICS (R
DUT½
= 50I to GND, unless otherwise noted) (Note 4)
Dynamic Output Current
Drive Mode Overshoot, Undershoot,
and Preshoot
High-Impedance Mode Spike
Propagation Delay, Data to Output
Propagation Delay Temperature
Coefficient
Propagation Delay Match, t
LH
vs. t
HL
Propagation Delay Skew, Drivers
Within Package
Propagation Delay Change
vs. Pulse Width
Propagation Delay Change vs.
Common-Mode Voltage
Propagation Delay, Drive to High
Impedance, High Impedance to
Drive
Minimum Voltage Swing
mA
mV
mV
ns
ps/NC
ps
ps
Relative to
12.5ns pulse
1V
P-P
, V
DLV_
= 0V to +3V, relative to
delay at V
DLV_
= +1V
V
DHV_
= +1.5V, V
DLV_
= -1V,
average of both directions of t
LH
and t
HL
(Note 7)
3.9
100
ns
mV
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Maxim Integrated Products
3
MAX19005
Quad, Ultra-Low-Power,
200Mbps ATE Drivers/Comparators
ELECTRICAL CHARACTERISTICS (continued)
(V
DD
= +8V, V
SS
= -5V, V
L
= +3V, V
DDSW
= +24.6V, V
SSSW
= -1.25V, V
COMPHI
= +1V, V
COMPLO
= 0V, V
LDV__
= 0V, LOAD EN
LOW_ = LOAD EN HIGH_ = 0, SWEN = 1, T
J
= +70°C with an accuracy of ±15NC. Specification compliance with supply and
temperature variations is verified by guard-banding mean shifts of characterization data, unless otherwise noted. All temperature
coefficients measured at T
J
= +50°C to +90°C, unless otherwise noted.) (Note 1)
PARAMETER
SYMBOL
CONDITIONS
V
DHV_
= +0.2V, V
DLV_
= 0V, 20% to 80%
V
DHV_
= +1V, V
DLV_
= 0, 20% to 80%
Rise/Fall Time
(Average Rise/Fall Time)
V
DHV_
= +3V, V
DLV_
= 0V, 10% to 90%
V
DHV_
= +4V, V
DLV_
= 0V,
R
DUT_
= 500I, 10% to 90%
V
DHV_
= +5V, V
DLV_
= 0V,
R
DUT_
= 500I, 10% to 90%
V
DHV_
= +0.2V
Rise/Fall Time Matching
V
DHV_
= +1V
V
DHV_
= +3V and +5V
Minimum Pulse Width
(Average Positive/Negative Pulse)
(Note 8)
0.2V
P-P
, V
DHV_
= +0.2V, V
DLV_
= 0V
1V
P-P
, V
DHV_
= +1V, V
DLV_
= 0V
3V
P-P
, V
DHV_
= +3V, V
DLV_
= 0V
V
DLV_
= 0V
1.4
MIN
TYP
0.8
0.8
2.0
2.5
3.1
Q50
Q15
Q5
1.8
2.0
2.6
ns
%
2.7
ns
MAX
UNITS
COMPARATOR (driver in high-impedance mode) (Note 9)
DC CHARACTERISTICS
Input Voltage Range
Differential Input Voltage
Hysteresis
Input Offset Voltage
Input Offset Temperature Coefficient
Common-Mode Rejection Ratio
Linearity Error
CMRR
V
DUT_
- V
CHV_,
V
DUT_
- V
CLV_
V
CHV_
= V
CLV_
= +1.5V
V
DUT_
= +1.5V, V
COMPHI
= +0.8V,
V
COMPLO
= +0.2V (Note 10)
(Note 10)
V
DUT_
= 0V and +3V (Note 10)
V
DUT_
= +1.5V (Notes 3, 10)
V
DUT_
= -1V, +5.2V (Notes 3, 10)
PSRR
V
DUT_
= +1.5V, V
DD
, V
SS
, V
DDSW
,
V
SSSW
supplies independently varied
over full range (Note 10)
V
DLV_
= 0V termination mode, V
DUT_
=
1V
P-P
, t
R
= t
F
= 500ps input, calculated
from 10% to 90% redigitization waveform
V
DUT_
= 1V
P-P
, V
CHV_
or V
CLV_
= +0.5V
V
DUT_
= 1V
P-P
, V
CHV_
or V
CLV_
= +0.5V
Absolute value of delta for each
comparator, V
DUT_
= 1V
P-P
1.1
60
Q5
Q10
Q5
Q25
-1.0
-6.2
8
Q10
+5.2
+6.2
V
V
mV
mV
FV/NC
dB
mV
Power-Supply Rejection Ratio
AC CHARACTERISTICS (Note 11)
Equivalent Input Bandwidth
Prop Delay
Prop-Delay Temperature Coefficient
Prop-Delay Match, t
LH
to t
HL
mV/V
300
2.0
2
Q250
3.3
MHz
ns
ps/NC
ps
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Maxim Integrated Products
4
MAX19005
Quad, Ultra-Low-Power,
200Mbps ATE Drivers/Comparators
ELECTRICAL CHARACTERISTICS (continued)
(V
DD
= +8V, V
SS
= -5V, V
L
= +3V, V
DDSW
= +24.6V, V
SSSW
= -1.25V, V
COMPHI
= +1V, V
COMPLO
= 0V, V
LDV__
= 0V, LOAD EN
LOW_ = LOAD EN HIGH_ = 0, SWEN = 1, T
J
= +70°C with an accuracy of ±15NC. Specification compliance with supply and
temperature variations is verified by guard-banding mean shifts of characterization data, unless otherwise noted. All temperature
coefficients measured at T
J
= +50°C to +90°C, unless otherwise noted.) (Note 1)
PARAMETER
Prop-Delay Skew, Comparators
Within Package
Prop-Delay Dispersions vs.
Common-Mode Voltage (Note 12)
SYMBOL
CONDITIONS
Same edges (LH and HL),
V
DUT_
= 1V
P-P
V
CHV_
or V
CLV_
= 0 to +4.9V,
V
DUT_
= 0.2V
P-P
V
CHV_
or V
CLV_
= -0.9 to +4.9V,
V
DUT_
= 0.2V
P-P
V
DLV_
= 0V termination mode,
V
DUT_
= 1V
P-P
, t
R
= t
F
= 500ps input,
90% (rising edge) and 10% (falling edge)
relative to timing at 50% point
2ns to 23ns pulse width, relative to
12.5ns pulse width
+0.5V/ns to +2V/ns
MIN
TYP
Q100
Q20
ps
Q30
MAX
UNITS
ps
Prop-Delay Dispersions vs. Overdrive
Q600
ps
Prop-Delay Dispersions vs.
Pulse Width
Prop-Delay Dispersions vs.
Slew Rate
Input Voltage Range,
V
COMPHI
and V
COMPLO
Differential Input Voltage,
V
COMPHI
- V
COMPLO
Differential Input Voltage,
V
COMPHI
- V
COMPLO
Reference Output,
V
BBO
Output High-Voltage Offset
Output Low-Voltage Offset
Output Resistance,
CMPH_ and CMPL_
Maximum Current Limit,
CMPH_ and CMPL_
Maximum Current Limit,
V
BBO
Q60
Q50
ps
ps
LOGIC INPUTS AND OUTPUTS (COMPHI, COMPLO, CMPH½, CMPL½, V
BBO
)
0
V
COMPHI
R
V
COMPLO
, CMPH_ and
CMPL_ with no load
V
COMPHI
R
V
COMPLO
, CMPH_ and
CMPL_ with 50I to V
TTCMP
, V
COMPHI
R
V
TTCMP
R
V
COMPLO
Relative to (V
COMPHI
+ V
COMPLO
)/2 at
V
COMPHI
= +1V and V
COMPLO
= 0V
I
OUT
= 0mA, relative to V
COMPHI
at
V
COMPHI
= +1V
I
OUT
= 0mA, relative to V
COMPLO
at
V
COMPLO_
= 0V
I
CMPH_
= I
CMPL_
=
Q10mA,
V
COMPHI
=
+1V, V
COMPLO
= 0V, CMPH_, CMPL_ at
high-level output
V
COMPHI
= +1.8V, V
COMPLO
= 0V,
CMPH_, CMPL_ at high-level output,
V
FORCE
= 0V, +3.6V
V
COMPHI
= +1V, V
COMPLO
= 0V, at
V
BBO
= +0.5V output
40
50
0
3.6
3.6
V
V
0
1.0
V
Q50
Q65
Q65
mV
mV
mV
60
I
-15
+15
mA
-1
+1
mA
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Maxim Integrated Products
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