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MAX9967 PDF预览

MAX9967

更新时间: 2023-12-18 00:00:00
品牌 Logo 应用领域
美信 - MAXIM 驱动器比较器
页数 文件大小 规格书
30页 664K
描述
Dual, Low-Power, 500Mbps ATE Driver/Comparator with 35mA Load

MAX9967 数据手册

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19-3195; Rev 1; 2/05  
Dual, Low-Power, 500Mbps ATE  
Driver/Comparator with 35mA Load  
General Description  
Features  
The MAX9967 dual, low-power, high-speed, pin electron-  
ics driver/comparator/load (DCL) IC includes, for each  
channel, a three-level pin driver, a dual comparator, vari-  
able clamps, and an active load. The driver features a  
wide voltage range and high-speed operation, includes  
high-impedance and active-termination (3rd-level drive)  
modes, and is highly linear even at low-voltage swings.  
The dual comparator provides low dispersion (timing  
variation) over a wide variety of input conditions. The  
clamps provide damping of high-speed device-under-  
test (DUT) waveforms when the device is configured as a  
high-impedance receiver. The programmable load sup-  
plies up to 35mA of source and sink current. The load  
facilitates contact/continuity testing, at-speed parametric  
testing of IOH and IOL, and pullup of high-output-imped-  
ance devices.  
Low Power Dissipation: 1.15W/Channel (typ)  
High Speed: 500Mbps at 3V  
P-P  
Programmable 35mA Active-Load Current  
Low Timing Dispersion  
Wide -1.5V to +6.5V Operating Range  
Active Termination (3rd-Level Drive)  
Low Leakage Mode: 60nA  
Integrated Clamps  
Interfaces Easily with Most Logic Families  
Integrated PMU Connection  
Digitally Programmable Slew Rate  
Internal Termination Resistors  
Low Gain and Offset Error  
The MAX9967A provides tight matching of gain and off-  
set for the drivers, and offset for the comparators and  
active load, allowing reference levels to be shared  
across multiple channels in cost-sensitive systems. Use  
the MAX9967B for system designs that incorporate  
independent reference levels for each channel.  
Ordering Information  
The MAX9967 provides high-speed, differential control  
inputs with optional internal termination resistors that  
are compatible with ECL, LVPECL, LVDS, and GTL.  
ECL/LVPECL or flexible open-collector outputs with  
optional internal pullup resistors are available for the  
comparators. These features significantly reduce the  
discrete component count on the circuit board.  
PART  
TEMP RANGE  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
0°C to +70°C  
PIN-PACKAGE  
100 TQFP-EPR**  
100 TQFP-EPR**  
100 TQFP-EPR**  
100 TQFP-EPR**  
100 TQFP-EPR**  
100 TQFP-EPR**  
100 TQFP-EPR**  
100 TQFP-EPR**  
100 TQFP-EPR**  
100 TQFP-EPR**  
100 TQFP-EPR**  
100 TQFP-EPR**  
MAX9967ADCCQ*  
MAX9967AGCCQ*  
MAX9967ALCCQ  
MAX9967AMCCQ*  
MAX9967AQCCQ*  
MAX9967ARCCQ*  
MAX9967BDCCQ  
MAX9967BGCCQ  
MAX9967BLCCQ  
MAX9967BMCCQ  
MAX9967BQCCQ*  
MAX9967BRCCQ  
A 3-wire, low-voltage, CMOS-compatible serial interface  
programs the low-leakage, slew-rate limit, and tri-  
state/terminate operational configurations of the  
MAX9967.  
The MAX9967’s operating range is -1.5V to +6.5V with  
power dissipation of only 1.15W per channel. The  
device is available in a 100-pin, 14mm x 14mm body,  
and 0.5mm pitch TQFP. An exposed 8mm x 8mm die  
pad on the top of the package facilitates efficient heat  
removal. The device is specified to operate with an  
internal die temperature of +70°C to +100°C, and  
features a die temperature monitor output.  
*Future product—contact factory for availability.  
**EPR = Exposed pad reversed (TOP).  
Pin Configuration and Typical Application Circuits appear at  
end of data sheet.  
Selector Guide appears at end of data sheet.  
Applications  
Low-Cost Mixed-Signal/System-on-Chip ATE  
Commodity Memory ATE  
PCI or VXI Programmable Digital Instruments  
________________________________________________________________ Maxim Integrated Products  
1
For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at  
1-888-629-4642, or visit Maxim’s website at www.maxim-ic.com.  

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