Details, datasheet, quote on part number: MAX1488ECPD
PartMAX1488ECPD
CategoryPower Management => Protection and Isolation
Description15kV ESD-Protected, Quad, Low-power RS-232 Line Driver
CompanyMaxim Integrated Products
DatasheetDownload MAX1488ECPD datasheet
Cross ref.Similar parts: SN75C188N, MC1488, SN55188, SN75150, SN75188
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Features, Applications

The MAX1488E quad, low-power line driver is designed for EIA/TIA-232, EIA/TIA-562, and CCITT V.28 communications in harsh environments. Each transmitter output is protected against 15kV electrostatic discharge (ESD) shocks. The inputs are TTL and CMOS compatible with minimal loading. The outputs feature internally controlled slew-rate limiting and current limiting. This device has a guaranteed 120kbps data rate. Powersupply current is less than 180A over to 13.2V supply voltage range. The MAX1488E is pin compatible with the SN75C188, DS1488, and It is available in 14-pin plastic DIP and SO packages.

o ESD Protection: 15kV--Human Body Model 6kV--IEC801-2, Contact Discharge 15kV--IEC801-2, Air-Gap Discharge o Latchup Free, Even During an ESD Event o Low 85A Supply Current from IEE or ICC o Guaranteed 120kbps Data Rate o No External Capacitors Required for Slew-Rate Limiting o Pin Compatible with SN75C188, DS1488, and DS14C88

PC Motherboards Modems Interface Data Terminal Equipment (DTE) with Data Circuit-Terminating Equipment (DCE) Equipment Meeting IEC1000-4-2 (formerly or 15kV ESD Protection

PART MAX1488EC/D MAX1488EEPD TEMP. RANGE to +85C PIN-PACKAGE 14 Plastic DIP 14 SO Dice* 14 Plastic DIP 14 SO

VEE 1 TTL/CMOS LOGIC INTERCONNECTING CABLE TTL/CMOS LOGIC INPUT A 2 OUTPUT A 3 INPUT B1 4
13 INPUT D1 12 INPUT D2 11 OUTPUT D 10 INPUT 9 8 INPUT C2 OUTPUT C
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Positive Supply Voltage (VCC).............................................+14V Negative Supply Voltage (VEE).............................................-14V Input Voltage to +15V Driver Output Voltage..........................................................15V Continuous Power Dissipation (TA = +70C) Plastic DIP (derate 10.00mW/C above +70C)..........800mW SO (derate 8.7mW/C above +70C)...........................695mW Operating Temperature Ranges to +85C Storage Temperature to +160C Lead Temperature (soldering, 10sec).............................+300C

Stresses beyond those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. These are stress ratings only, and functional operation 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.

(VCC to 13.2V, VEE TA = TMIN to TMAX, unless otherwise noted. Typical values are = +25C.) PARAMETER DC CHARACTERISTICS VCC = -VEE = 3k VCC = -VEE = 3k VCC = -VEE = 3k VCC = -VEE RL = open VCC = -VEE = 3k VCC = -VEE = 3k VCC = -VEE = 3k VCC = -VEE RL = open No load No load Output shorted to ground (Note VCC = VEE = 0V IVOI 2.0V VCC = 4.5V, VEE = 50pF tPLH VCC = 9.0V, VEE = 50pF VCC = 12.0V, VEE = 50pF Output Propagation Delay, High to Low Propagation Delay Skew, VCC = 4.5V, VEE = 50pF tPHL VCC = 9.0V, VEE = 50pF VCC = 12.0V, VEE = 50pF VCC = 4.5V, VEE = 50pF tSK VCC = 9.0V, VEE = 50pF VCC = 12.0V, VEE = 50pF Human Body Model ESD Protection IEC-1000-4-2 (Contact Discharge) IEC-1000-4-2 (Air-Gap Discharge) kV s SYMBOL CONDITIONS MIN TYP MAX UNITS

Operating Voltage Range Positive Supply Current Negative Supply Current Output Short-Circuit Current Input High Voltage Input Low Voltage Input Current Output Resistance

TIMING CHARACTERISTICS (see Figure 1) Output Propagation Delay, Low to High

(VCC to 13.2V, VEE TA = TMIN to TMAX, unless otherwise noted. Typical values are = +25C.) PARAMETER SYMBOL tR1 Output Rise Time tR2 tF1 Output Fall Time tF2 CONDITIONS = 5k, VOUTPUT_ from = 5k, VOUTPUT_ from = 5k, VOUTPUT_ from = 5k, VOUTPUT_ from to 7k, VCC = 12V, VEE = +25C, VOUTPUT_ from to 7k, VCC = 12V, VEE +25C 4 MIN TYP ns 765 MAX UNITS

Note 1: The IOS value is for one output at a time. If more than one output is shorted simultaneously, damage may occur.


 

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