The Datasheet Archive - 100 Million Datasheets from 7500 Manufacturers.    


Datasheet Search Engine   
 
Part # or Description: • 5V RS232 Driver • 2SC5066* • "Real Time Clock" • "USB connector" • "blue led" 5mm • 10 watt zener diode • 2N3055* motorola
 
Search Tip: Try entering the part number only. Include a wildcard (eg. lm317* or 1n4148*)

 

 

Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers MAX4708/


Datasheet Thumbnail

  

Download PDF



Top Searches for this datasheet



19-4804; 9/02
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers
MAX4708/MAX4709 8-to-1 dual 4-to-1 fault-protected multiplexers compatible with industrystandard DG508/DG509. MAX4708/MAX4709 similar MAX4508/MAX4509, these devices have clamp diodes supply rails switch outputs. These multiplexers feature fault-protected inputs, Rail-to-Rail® signal-handling capability, require power-supply sequencing. Both devices offer ±40V overvoltage protection with supplies off, ±36V protection with supplies feature (max) on-resistance with (max) matching between channels. MAX4708/MAX4709 operate with dual supplies ±4.5V ±20V single supply +36V. digital inputs have logiccompatible thresholds, ensuring both CMOS logic compatibility when using single +12V supply dual ±15V supplies. low-voltage applications requiring fault protection, refer MAX4711/MAX4712/MAX4713 data sheet. Channels with Power Rail-to-Rail Signal Handling (max) On-Resistance ±40V Fault Protection with Power ±25V Fault Protection with ±15V Supplies 100ns Fault-Response Time ±4.5V ±20V Dual Supplies +36V Single Supply TTL/CMOS-Compatible Logic Inputs
Features
Power-Supply Sequencing Required
MAX4708/MAX4709
Ordering Information
PART MAX4708ESE MAX4708EWE MAX4708EPE MAX4709ESE MAX4709EWE MAX4709EPE TEMP RANGE -40°C +85°C -40°C +85°C -40°C +85°C -40°C +85°C -40°C +85°C -40°C +85°C PIN-PACKAGE Narrow Wide Plastic Narrow Wide Plastic
Applications
Data-Acquisition Systems Industrial Process Control Avionics Signal Routing Redundancy/Backup Systems Systems Swap
Rail-to-Rail registered trademark Nippon Motorola, Ltd.
Configurations/Functional Diagrams
VIEW MAX4708
LOGIC NO1A NO2A NO3A NO4A COMA LOGIC
MAX4709
NO1B NO2B NO3B NO4B COMB
SO/DIP
SO/DIP
Configurations/Functional Diagrams continued data sheet. Maxim Integrated Products
pricing, delivery, ordering information, please contact Maxim/Dallas Direct! 1-888-629-4642, visit Maxim's website www.maxim-ic.com.
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers MAX4708/MAX4709
ABSOLUTE MAXIMUM RATINGS
(All Voltages Referenced GND) .-0.3V +44.0V .-44.0V +0.3V V-.-0.3V +44.0V COM_, (Note 0.3V) 0.3V) NO_.(V+ 40V) 40V) COM_ .-36V +36V Voltage with Switch Power .-30V +30V Voltage with Switch Power .-40V +40V Continuous Current into Terminal. .±30mA Peak Current into Terminal (pulsed 1ms, duty cycle).±100mA Continuous Power Dissipation +70°C) Narrow (derate 8.70mW/°C above +70°C) .696mW Plastic (derate 10.53mW/°C above +70°C) .842mW Wide (derate 9.52mW/°C above +70°C).762mW Operating Temperature Range MAX4708E_ E/MAX4709E_E .-40°C +85°C Junction Temperature +150°C Storage Temperature Range .-65°C +160°C Lead Temperature (soldering, 10s) .+300°C
Note COM_, pins fault protected. Signals COM_, exceeding clamped internal diodes. Limit forward-diode current maximum current rating.
Stresses beyond those listed under "Absolute Maximum Ratings" cause permanent damage device. These stress ratings only, functional operation device these other conditions beyond those indicated operational sections specifications implied. Exposure absolute maximum rating conditions extended periods affect device reliability.
ELECTRICAL CHARACTERISTICS-Dual Supplies
+15V, -15V, VA_H +2.4V, VA_L +0.8V, +2.4V, TMIN TMAX, unless otherwise noted. Typical values +25°C.) (Note
PARAMETER ANALOG SWITCH Fault-Free Analog Signal Range On-Resistance On-Resistance Match Between Channels Off-Leakage Current VNO_ INO_(OFF) (Notes VCOM_ ±10V, INO_ 0.2mA VCOM_ ±10V, INO_ 0.2mA (Note VCOM_ ±10V, VNO_ ±10V (Note MAX4708 MAX4709 MAX4708 MAX4709 +25°C +25°C +25°C +25°C +25°C +25°C +25°C -0.5 V300 +0.5 SYMBOL CONDITIONS UNITS
COM_ Off-Leakage Current
VCOM_ ±10V, ICOM_(OFF) VNO_ ±10V (Note
COM_ On-Leakage Current
VCOM_ ±10V, ICOM_(ON) VNO_ ±10V, floating (Note
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers
ELECTRICAL CHARACTERISTICS-Dual Supplies (continued)
+15V, -15V, VA_H +2.4V, VA_L +0.8V, +2.4V, TMIN TMAX, unless otherwise noted. Typical values +25°C.) (Note
PARAMETER FAULT PROTECTION Fault-Protected Analog Signal Range (Notes COM_ Output Leakage Current, Supplies Input Leakage Current, Supplies Input Leakage Current, Supplies Fault-Trip Threshold ±Fault Output Turn-Off Delay ±Fault Recovery Time LOGIC INPUT (VEN, VA_) Logic Threshold High Logic Threshold Input Leakage Current 0.8V 2.4V VNO_ ±10V, 35pF, Figure (Note VNO_ ±10V, 35pF, Figure (Note 35pF, Figure (Note VNO_ 35pF 0.1% 0.01% +25°C +25°C +25°C +25°C +25°C 10k, VNO_ ±25V 10k, VNO_ ±25V VNO_ ICOM_ INO_ INO_ Power Power VNO_ ±25, VNO_ ±25V, VCOM_ ±10V, VNO_ ±40V, VCOM +25°C +25°C +25°C +25°C +25°C +25°C SYMBOL CONDITIONS UNITS
MAX4708/MAX4709
SWITCH DYNAMIC CHARACTERISTICS Enable Turn-On Time Enable Turn-Off Time Transition Time Settling Time Break-Before-Make Time Delay Charge Injection Off-Isolation tOFF tTRANS tSETT tBBM VISO
VNO_ ±10V, Figure (Note VNO_ 1.0nF, Figure 1MHz, VNO_ 1VRMS, 15pF, Figure (Note
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers MAX4708/MAX4709
ELECTRICAL CHARACTERISTICS-Dual Supplies (continued)
+15V, -15V, VA_H +2.4V, VA_L +0.8V, +2.4V, TMIN TMAX, unless otherwise noted. Typical values +25°C.) (Note
PARAMETER Channel-to-Channel Crosstalk Off-Capacitance COM_ Off-Capacitance COM_ On-Capacitance POWER SUPPLY Power-Supply Range Supply Current Supply Current Supply Current IIGND VA_= VNO_ VNO_ VA_= VNO_ +25°C +25°C +25°C ±4.5 ±20.0 SYMBOL CN_(OFF) CONDITIONS 1MHz, VNO_ 1VRMS, 15pF, Figure (Note 1MHz, Figure MAX4708 MAX4709 MAX4708 MAX4709 +25°C +25°C +25°C +25°C UNITS
CCOM_(OFF) 1MHz, Figure CCOM_(ON) 1MHz, Figure
ELECTRICAL CHARACTERISTICS-Single +12V Supply
+12V, VA_H +2.4V, VA_L +0.8V, +2.4V, TMIN TMAX, unless otherwise noted. Typical values +25°C.) (Note
PARAMETER ANALOG SWITCH Fault-Free Analog Signal Range On-Resistance On-Resistance Match Between Channels Off-Leakage Current VNO_ INO_(OFF) Power (Note VCOM_ 10V, INO_ 0.2mA VCOM_ 10V, INO_ 0.2mA (Note VCOM_ 10V, VNO_ (Notes MAX4708 MAX4709 +25°C +25°C +25°C +25°C +25°C -0.5 0.01 -0.3 1100 +0.5 SYMBOL CONDITIONS UNITS
COM_ Off-Leakage Current
VCOM_ 10V, ICOM_(OFF) VNO_ (Notes
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers
ELECTRICAL CHARACTERISTICS-Single +12V Supply (continued)
+12V, VA_H +2.4V, VA_L +0.8V, +2.4V, TMIN TMAX, unless otherwise noted. Typical values +25°C.) (Note
PARAMETER SYMBOL CONDITIONS MAX4708 MAX4709 +25°C +25°C 0.03 UNITS
MAX4708/MAX4709
COM_ On-Leakage Current
VCOM_ 10V, ICOM_(ON) VNO_ 10V, floating (Notes
FAULT PROTECTION Fault-Protected Analog Signal Range (Notes COM_ Output Leakage Current, Supplies Input Leakage Current, Supplies Input Leakage Current, Supply LOGIC INPUT (VEN, VA_) Logic Threshold High Logic Threshold Input Leakage Current 0.8V 2.4V VCOM_ 10V, 35pF, Figure (Note VCOM_ 10V, 35pF, Figure (Note 35pF, Figure (Note VNO_ 35pF 0.1% 0.01% +25°C +25°C +25°C +25°C +25°C +25°C +25°C +25°C VNO_ ICOM_ INO_ INO_ Power Power VNO_ ±36V, (Notes VNO_ ±36V, VCOM_ (Notes VNO_ ±40V, (Notes +25°C +25°C +25°C
SWITCH-DYNAMIC CHARACTERISTICS Enable Turn-On Time Enable Turn-Off Time Transition Time Settling Time Break-Before-Make Time Delay Charge Injection Off-Capacitance COM_ Off-Capacitance COM_ On-Capacitance tOFF tTRANS tSETT tBBM CNO_(OFF)
VCOM_ 10V, Figure (Note VNO_ Figure 1MHz, VNO_ Figure
CCOM_(OFF) 1MHz, VNO_ Figure 1MHz, VCOM_ VNO_ CCOM_(ON) Figure
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers MAX4708/MAX4709
ELECTRICAL CHARACTERISTICS-Single +12V Supply (continued)
+12V, VA_H +2.4V, VA_L +0.8V, +2.4V, TMIN TMAX, unless otherwise noted. Typical values +25°C.) (Note
PARAMETER Off-Isolation Channel-to-Channel Crosstalk POWER SUPPLY Power-Supply Range VNO_ Supply Current +25°C SYMBOL VISO CONDITIONS 1MHz, VNO_ 1VRMS, 15pF, Figure (Note 1MHz, VNO_ 1VRMS, 15pF, Figure (Note +25°C +25°C UNITS
VNO_ +25°C
Note algebraic convention used this data sheet; most negative value shown minimum column. Note pins fault protected COM_ pins fault protected. input voltage pins depends COM_ load configuration. Generally, input voltage ±36V with ±15V supplies load referred ground. more detailed information, Input Voltage section. Note Guaranteed design production tested. Note RON(MAX) RON(MIN). Note Leakage parameters 100% tested maximum rated temperature guaranteed correlation +25°C. Note Dynamic testing 100% functionally tested system correlated with initial design characterization Figures Note Off-Isolation log10 (VCOM_ VNO_), where VCOM_ output VNO_ input open switch. Note Between analog inputs. Note Guaranteed testing with dual supplies.
Typical Operating Characteristics
+15V, -15V, +2.4V, +25°C, unless otherwise noted.)
ON-RESISTANCE VCOM (DUAL SUPPLIES)
MAX4708/09 toc01
ON-RESISTANCE VCOM (SINGLE SUPPLY)
MAX4708/09 toc02
ON-RESISTANCE VCOM TEMPERATURE (DUAL SUPPLIES)
+15V -15V +70°C +125°C +85°C
MAX4708/09 toc03
1000 +4.5V -4.5V +10V -10V +15V -15V
1000
+12V +15V
+20V
+30V
+20V -20V VCOM
+36V VCOM
+25°C -40°C VCOM -55°C
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers
Typical Operating Characteristics (continued)
+15V, -15V, +2.4V, +25°C, unless otherwise noted.)
MAX4708/MAX4709
ON-RESISTANCE VCOM TEMPERATURE (SINGLE SUPPLY)
MAX4708/09 toc04
LEAKAGE CURRENT TEMPERATURE
+15V, -15V, VCOM 10V, ±10V ICOM_ON
MAX4708/09 toc05
CHARGE INJECTION VCOM
MAX4708/09 toc06
1000
+12V +125°C +70°C +85°C
1000
LEAKAGE CURRENT (pA)
DUAL SUPPLIES: ±15V SINGLE SUPPLY: +12V
ICOM_OFF
INO_OFF
+25°C
-40°C
-55°C VCOM TEMPERATURE (°C)
VCOM
ENABLE TURN-ON/OFF TIMES SUPPLY VOLTAGE (DUAL SUPPLIES)
MAX4708/09 toc07
ENABLE TURN-ON/OFF TIMES SUPPLY VOLTAGE (SINGLE SUPPLY)
GND, VNO_ +10V
MAX4708/09 toc08
(pC)
ENABLE ON/OFF TIMES TEMPERATURE
+15V -15V
MAX4708/09 toc09
VNO_ ±10V
tOFF
tON/tOFF (ns)
tOFF
tON/tOFF (ns)
tON/tOFF (ns)
tOFF
SUPPLY VOLTAGE (V+,
SUPPLY VOLTAGE (V+)
TEMPERATURE (°C)
SUPPLY CURRENT TEMPERATURE (VA_
MAX4708/09 toc10
SUPPLY CURRENT TEMPERATURE (VA_ +5V)
MAX4708/09 toc11
LOGIC-LEVEL THRESHOLD VOLTAGE SUPPLY VOLTAGE
MAX4708/09 toc12
SUPPLY CURRENT (µA) -100 -200 -300 -400 -500
+15V, -15V,
SUPPLY CURRENT (µA) -100 -200 -300 -400
+15V, -15V,
THRESHOLD VOLTAGE
DUAL SUPPLIES SINGLE SUPPLY
IGND
IGND
TEMPERATURE (°C) SUPPLY VOLTAGE
TEMPERATURE (°C)
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers MAX4708/MAX4709
Typical Operating Characteristics (continued)
+15V, -15V, +2.4V, +25°C, unless otherwise noted.)
FAULT CURRENT FAULT VOLTAGE (DUAL SUPPLIES)
MAX4708/09 toc14 MAX4708/09 toc13
FREQUENCY RESPONSE
ICOM (µA) LOSS (dB) CROSSTALK -100 0.001 0.01 1000 FREQUENCY (MHz) OFF-ISOLATION -100 -150 -200 +15V -15V BANDWIDTH
FAULT CURRENT FAULT VOLTAGE (SINGLE SUPPLY)
ICOM (µA) -100 +12V
MAX4708/09 toc15
+15V -15V
|VCOM| VSUPPLY, ICOM VCOM
-150 -200
VCOM VSUPPLY, ICOM VCOM
VCOM
VCOM
INPUT OVERVOLTAGE OUTPUT VOLTAGE
MAX4708/09 toc16
INPUT OVERVOLTAGE OUTPUT VOLTAGE
MAX4708/09 toc17
FAULT RECOVERY TIME (POSITIVE INPUT)
MAX4708/09 toc18
VNO_ INPUT 10V/div VNO_ INPUT 10V/div VCOM_ OUTPUT 200mV/div VCOM_ OUTPUT 10V/div VNO_ INPUT 10V/div
VCOM_ OUTPUT 5V/div
4.00µs
200µs
1.00µs
FAULT RECOVERY TIME (NEGATIVE INPUT)
MAX4708/09 toc19
FAULT RESPONSE TIME (POSITIVE INPUT)
MAX4708/09 toc20
FAULT RESPONSE TIME (NEGATIVE INPUT)
MAX4708/09 toc21
VNO_ INPUT 10V/div
VNO_ INPUT 10V/div VCOM_ OUTPUT 5V/div
VNO_ INPUT 10V/div
VCOM_ OUTPUT 5V/div
VCOM_ OUTPUT 5V/div
1.00µs
100ns/div
100ns/div
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers
Descriptions
MAX4708 (Single 8-to-1 Mux)
NAME VNO1 Address Enable Negative Supply Voltage. Bypass with 0.1µF capacitor. Channel Input Channel Input Channel Input Channel Input Analog Output Channel Input Channel Input Channel Input Channel Input Positive Supply Voltage. Bypass with 0.1µF capacitor. Ground Address Address FUNCTION
MAX4708/MAX4709
MAX4709 (Dual 4-to-1 Mux)
NAME VNO1A NO2A NO3A NO4A COMA COMB NO4B NO3B NO2B NO1B Address Enable Negative Supply Voltage. Bypass with 0.1µF capacitor. Channel Input Channel Input Channel Input Channel Input Output Output Channel Input Channel Input Channel Input Channel Input Positive Supply Voltage. Bypass with 0.1µF capacitor. Ground Address FUNCTION
Truth Tables
MAX4708 (Single 8-to-1 Mux)
SWITCH None
MAX4709 (Dual 4-to-1 Mux)
COMA None NO1A NO2A NO3A NO4A COMB None NO1B NO2B NO3B NO4B
Don't care.
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers MAX4708/MAX4709
Detailed Description
Several unique features differentiate MAX4708/ MAX4709 from traditional fault-protected multiplexers. First, instead three series FETs utilized older designs, MAX4708/MAX4709 design employs parallel FETs lower on-resistance improved flatness. Second, older devices limited range signal amplitudes switch could pass much below supply rails. MAX4708/MAX4709 feature rail-to-rail signal handling that allows devices transmit signals with amplitudes slightly beyond supply rails. Finally, former designs (MAX4508/ MAX4509), when fault occurred, devices clamped held output voltage appropriate supply rail until fault removed. Instead, MAX4708/MAX4709 disconnect COM_ from during fault condition, making COM_ high-impedance output long fault present. Operation identical both positive negative fault polarities. When voltage ranges beyond supply rails (fault condition), input becomes high impedance, regardless switch state load resistance. power removed, fault voltage still present, terminals remain high impedance. fault voltage ±40V, with COM_ pins fault protected. Limit voltage sources connected COM_ supply rails. Figure shows internal construction single normally open (NO) switch, with analog signal paths shown bold. parallel combination N-channel P-channel form analog switch. During normal operation, these FETs driven simultaneously according control voltages During fault condition, both FETs turn off.
Normal Operation
comparators continuously compare voltage with supply voltages. When signal ranges between multiplexer operates normally, with FETs turning response control signals (Figure When switch state parallel combination forms low-value resistor between COM_ that signals pass equally well either direction. When switch state off, both COM_ high-impedance inputs.
Fault Conditions
fault condition occurs when voltage input exceeds supply rail. this point, output fault comparators goes high, effectively turning both FETs With FETs position, both switch input (NO_) output (COM_) into high-impedance state. They remain high impedance regardless state control voltages until fault removed. input voltage must exceed absolute maximum rating moment (see Absolute Maximum Ratings section).
Transient Fault Condition
When fast rising falling transient exceeds there 100ns delay before fault protection turns (see Typical Operating Characteristics, Fault Response Time). COM_ follows until fault protection turns This delay switch on-resistance circuit capacitance ground. When input transient returns within supply rails, there longer output recovery time (see Typical Operating Characteristics, Fault Response Times). These values depend COM_ output resistance capacitance. Higher COM_ output resistance capacitance increase recovery times. delays depend fault amplitude.
Input Voltage
maximum allowable input voltage safe operation depends whether supplies off, load configuration COM_. COM_ referred voltage other than ground, within supplies, VNO_ range higher lower than supplies, provided absolute value |VNO_ VCOM_| less than 40V. example, with load referred +10V COM_, then voltage range from +50V -30V. supplies ±15V COM_ referenced ground through load, maximum voltage ±36V. supplies output referenced ground, maximum voltage ±40V.
GND, COM_, pins fault protected. ESD-protection diodes internally connect both signal GND, COM_, exceeds more than 300mV, excessive current flow from supplies, possibly damaging device.
Logic-Level Thresholds
logic-level thresholds CMOS compatible with +15V -15V. Logic levels change increases (see Typical Operating Characteristics, Logic-Level Threshold Voltage Supply Voltage.)
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers
Applications Information
Ground
power internal logic logic-level translators. logic-level translators convert logic-level inputs drive gates internal FETs. this design, there galvanic connection inside MAX4708/MAX4709 between analog signal paths GND. ESD-protection diodes connect
MAX4708/MAX4709
Chip Information
TRANSISTOR COUNT: SUBSTRATE INTERNALLY CONNECTED
Package Information
latest package outline information, www.maxim-ic.com/packages.
Supply Current Reduction
Driving logic signals rail-to-rail from +15V -15V +15V reduces current consumption from 370µA (typ) 200µA (typ) (see Electrical Characteristics table, Power Supplies).
Power Supplies
MAX4708/MAX4709 operate with bipolar supplies between ±4.5V ±20V. supplies need symmetrical, cannot exceed absolute maximum rating. MAX4708/MAX4709 operate from single supplies between +36V when connected GND.
Configurations/Functional Diagrams (continued)
NORMALLY OPEN SWITCH CONSTRUCTION HIGH FAULT FAULT COM_
MAX4708 MAX4709
VESD DIODES
Figure Functional Diagram
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers MAX4708/MAX4709
Test Circuits/Timing Diagrams
NO2-NO7 +10V
MAX4708
+2.4V
-10V VOUT SWITCH OUTPUT VOUT LOGIC INPUT VNO1
20ns 20ns
NO1A-NO4A NO1B +10V
VNO8
+2.4V
MAX4709
NO4B COMB
-10V VOUT
tTRANS
tTRANS
Figure Address Transition Time
NO2-NO8 +10V
MAX4708
VOUT LOGIC INPUT tON(EN) 20ns 20ns tOFF(EN)
NO1B
+10V
NO1A-NO4A NO2B-NO4B, COMA
SWITCH OUTPUT VOUT
MAX4709
COMB VOUT
Figure Enable Switching Time
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers
Test Circuits/Timing Diagrams (continued)
MAX4708/MAX4709
+2.4V
NO1-NO8 LOGIC INPUT VOUT 35pF SWITCH OUTPUT VOUT
20ns 20ns
+10V
MAX4708
tOPEN
Figure Break-Before-Make Interval
CHANNEL SELECT VVOUT VOUT MEASURED VOLTAGE CHARGE TRANSFER ERROR VCTE WHEN CHANNEL TURNS OFF. VCTE VOUT VOUT LOGIC INPUT VOUT
MAX4708
Figure Charge Injection
10nF 10nF
VOUT
MAX4708
10nF OFF-ISOLATION 20log VOUT
MAX4708
VOUT
10nF
CROSSTALK 20log
VOUT
Figure Off-Isolation
Figure Crosstalk
Fault-Protected, Single 8-to-1/ Dual 4-to-1 Multiplexers MAX4708/MAX4709
Test Circuits/Timing Diagrams (continued)
VNO_ 1MHz CAPACITANCE ANALYZER 1MHz -15V +25V +15V VCOM_
CHANNEL SELECT
MAX4708
-25V
Figure NO_, COM_ Capacitance
Figure Transient Behavior Fault Condition
Functional Diagrams/Truth Tables
MAX4708
DECODERS/DRIVERS VGND
MAX4708
SWITCH NONE
LOGIC +0.8V, LOGIC +2.4V
MAX4709
NO1A NO2A NO3A NO4A NO1B NO2B NO3B NO4B
COMA COMB DECODERS/DRIVERS
MAX4709
SWITCH NONE
LOGIC +0.8V, LOGIC +2.4V
Maxim cannot assume responsibility circuitry other than circuitry entirely embodied Maxim product. circuit patent licenses implied. Maxim reserves right change circuitry specifications without notice time.
_Maxim Integrated Products, Gabriel Drive, Sunnyvale, 94086 408-737-7600 2002 Maxim Integrated Products Printed registered trademark Maxim Integrated Products.

Other recent searches


TP0202K - TP0202K   TP0202K Datasheet
STP8NM50 - STP8NM50   STP8NM50 Datasheet
STP8NM50FP - STP8NM50FP   STP8NM50FP Datasheet
NTE1890 - NTE1890   NTE1890 Datasheet
MTSM7100LB-AR - MTSM7100LB-AR   MTSM7100LB-AR Datasheet
MTSM7100LB-G - MTSM7100LB-G   MTSM7100LB-G Datasheet
MTSM7100LB-UA - MTSM7100LB-UA   MTSM7100LB-UA Datasheet
MTSM7100LB-UBL - MTSM7100LB-UBL   MTSM7100LB-UBL Datasheet
MTSM7100LB-UG - MTSM7100LB-UG   MTSM7100LB-UG Datasheet
MTSM7100LB-UO - MTSM7100LB-UO   MTSM7100LB-UO Datasheet
MTSM7100LB-UR - MTSM7100LB-UR   MTSM7100LB-UR Datasheet
MTSM7100LB-UY - MTSM7100LB-UY   MTSM7100LB-UY Datasheet
MTSM7100LB-Y - MTSM7100LB-Y   MTSM7100LB-Y Datasheet
LT1355 - LT1355   LT1355 Datasheet
LT1356 - LT1356   LT1356 Datasheet
LC86F3364A - LC86F3364A   LC86F3364A Datasheet
IDT72T4088 - IDT72T4088   IDT72T4088 Datasheet
IDT72T4098 - IDT72T4098   IDT72T4098 Datasheet
IDT72T40108 - IDT72T40108   IDT72T40108 Datasheet
IDT72T40118 - IDT72T40118   IDT72T40118 Datasheet

 

Privacy Policy | Disclaimer
© 2012 Datasheet Archive