Datasheet ADG5248F, ADG5249F (Analog Devices) - 8

HerstellerAnalog Devices
BeschreibungUser Defined Fault Protection and Detection, 0.8 pC QINJ, 8:1/Dual 4:1 Multiplexers
Seiten / Seite34 / 8 — ADG5248F/ADG5249F. Data Sheet. −40°C to. Parameter. +25°C. +85°C. +125°C. …
RevisionA
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DokumentenspracheEnglisch

ADG5248F/ADG5249F. Data Sheet. −40°C to. Parameter. +25°C. +85°C. +125°C. Unit. Test Conditions/Comments

ADG5248F/ADG5249F Data Sheet −40°C to Parameter +25°C +85°C +125°C Unit Test Conditions/Comments

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ADG5248F/ADG5249F Data Sheet −40°C to −40°C to Parameter +25°C +85°C +125°C Unit Test Conditions/Comments
Drain Off Leakage, ID (Off) ±0.1 nA typ VS = 1 V/10 V, VD = 10 V/1 V, see Figure 36 ±1 ±5 ±10 nA max Channel On Leakage, ID (On), IS (On) ±0.3 nA typ VS = VD = 1 V/10 V, see Figure 37 ±1.5 ±20 ±25 nA max FAULT Source Leakage Current, IS With Overvoltage ±63 µA typ VDD = 13.2 V, VSS = 0 V, GND = 0 V, VS = ±55 V, see Figure 35 Power Supplies Grounded or Floating ±25 µA typ VDD = 0 V or floating, VSS = 0 V or floating, GND = 0 V, Ax = 0 V or floating, VS = ±55 V, see Figure 34 Drain Leakage Current, ID With Overvoltage ±10 nA typ VDD = 13.2 V, VSS = 0 V, GND = 0 V, VS = ±55 V, see Figure 35 ±50 ±70 ±90 nA max Power Supplies Grounded ±500 nA typ VDD = 0 V, VSS = 0 V, GND = 0 V, VS = ±55 V, Ax = 0 V, see Figure 34 ±700 ±700 ±700 nA max Power Supplies Floating ±50 ±50 ±50 µA typ VDD = floating, VSS = floating, GND = 0 V, VS = ±55 V, Ax = 0 V, see Figure 34 DIGITAL INPUTS Input Voltage High, VINH 2.0 V min Low, VINL 0.8 V max Input Current, IINL or IINH ±0.7 µA typ VIN = GND or VDD ±1.1 ±1.2 µA max Digital Input Capacitance, CIN 5.0 pF typ Output Voltage High, VOH 2.0 V min Low, VOL 0.8 V max DYNAMIC CHARACTERISTICS1 Transition Time, tTRANSITION 165 ns typ RL = 1 kΩ, CL = 35 pF 205 215 230 ns max VS = 8 V, see Figure 50 tON (EN) 160 ns typ RL = 1 kΩ, CL = 35 pF 200 215 230 ns max VS = 8 V, see Figure 49 tOFF (EN) 125 ns typ RL = 1 kΩ, CL = 35 pF 150 155 155 ns max VS = 8 V, see Figure 49 Break-Before-Make Time Delay, tD 100 ns typ RL = 1 kΩ, CL = 35 pF 60 ns min VS = 8 V, see Figure 48 Overvoltage Response Time, tRESPONSE 110 ns typ RL = 1 kΩ, CL = 5 pF, see Figure 43 145 145 145 ns max Overvoltage Recovery Time, tRECOVERY 500 ns typ RL = 1 kΩ, CL = 5 pF, see Figure 44 655 720 765 ns max Interrupt Flag Response Time, tDIGRESP 95 ns typ CL = 12 pF, see Figure 45 Interrupt Flag Recovery Time, tDIGREC 65 µs typ CL = 12 pF, see Figure 46 900 ns typ CL = 12 pF, RPULLUP = 1 kΩ, see Figure 47 Charge Injection, QINJ 0.2 pC typ VS = 6 V, RS = 0 Ω, CL = 1 nF, see Figure 51 Off Isolation −75 dB typ RL = 50 Ω, CL = 5 pF, f = 1 MHz, see Figure 41, worst case channel Channel-to-Channel Crosstalk RL = 50 Ω, CL = 5 pF, f = 1 MHz, see Figure 40 Adjacent Channels −75 dB typ Nonadjacent Channels −88 dB typ Total Harmonic Distortion Plus Noise, 0.044 % typ RL = 10 kΩ, VS = 6 V p-p, f = 20 Hz to 20 kHz, THD + N see Figure 39 Rev. A | Page 8 of 34 Document Outline FEATURES APPLICATIONS FUNCTIONAL BLOCK DIAGRAMS GENERAL DESCRIPTION PRODUCT HIGHLIGHTS TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS ±15 V DUAL SUPPLY ±20 V DUAL SUPPLY 12 V SINGLE SUPPLY 36 V SINGLE SUPPLY CONTINUOUS CURRENT PER CHANNEL, Sx, D, OR Dx ABSOLUTE MAXIMUM RATINGS ESD CAUTION PIN CONFIGURATIONS AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS TEST CIRCUITS TERMINOLOGY THEORY OF OPERATION SWITCH ARCHITECTURE ESD Performance Trench Isolation USER DEFINED FAULT PROTECTION Power-On Protection Power-Off Protection Digital Input Protection Overvoltage Interrupt Flag APPLICATIONS INFORMATION POWER SUPPLY RAILS POWER SUPPLY SEQUENCING PROTECTION SIGNAL RANGE POWER SUPPLY RECOMMENDATIONS HIGH VOLTAGE SURGE SUPPRESSION INTELLIGENT FAULT DETECTION LARGE VOLTAGE, HIGH FREQUENCY SIGNALS OUTLINE DIMENSIONS ORDERING GUIDE