link to page 15 link to page 15 link to page 15 link to page 15 link to page 14 link to page 14 link to page 15 link to page 15 link to page 14 link to page 14 link to page 14 link to page 14 AD5520PIN CONFIGURATION AND FUNCTION DESCRIPTIONSTUTUTIOOIN2IN1IN0OUT2OUT1OUT0SVOUASFGNDASFGNDCC_BEACLLCLHFINMMEREMERECOMPCOMPCOMPCOMPCOMPCOMPAVFOH64 63 626160 59 5857 56 55 54 53 52 51 50 49CPH148AVEE_BCPLPIN 1247 MEASI5HDV346MEASI4HDDCPOH445 FOH3CPOL544 MEASI3HCPCK643 FOH2AD5520DGND742 MEASI2HTOP VIEWCLHDETECT8(Not to Scale)41 FOH1CLLDETECT940MEASI1HQM4 1039 FOH0QM5 1138 MEASI0HMOE 1237 MEASILCS 1336 MEASVHSTB 1435 GUARD(NC)AC0 1534 MEASVLAC1 1633 AVCC_G17 181920 21 22 23 24 25 26 27 28 29 30 31 32NC = NO CONNECTGDDEECCNCAM2AM1AM0SELEE_DGNDDVFSELMPSELAVAVAGNDANDBYCAVGUARDT SGUARDIN 03701-004 Figure 4. Pin Configuration Table 4. Pin Function Descriptions Pin No.MnemonicDescription 1 CPH Upper Comparator Threshold Voltage Input, CPH > CPL. 2 CPL Lower Comparator Threshold Voltage Input, CPL < CPH. 3, 18 DVDD Digital Supply Voltage. 4 CPOH Logic Output. When high, indicates MEASVOUT or MEASIOUT > CPH. 5 CPOL Logic Output. When high, indicates MEASVOUT or MEASIOUT < CPL. 6 CPCK Logic Input. Used to initiate comparator sampling and update CPOH and CPOL. 7, 17 DGND Digital Ground. 8 CLHDETECT Logic Output. When high, indicates upper clamp active. See the Clamp Function section. 9 CLLDETECT Logic Output. When high, indicates lower clamp active. See the Clamp Function section. 10 QM4 Logic Output. When high, indicates current range Mode 4 is enabled. May be used to drive external relay or switch. See the High Current Ranges section. 11 QM5 Logic Output. When high, indicates current range Mode 5 is enabled. May be used to drive external relay or switch. See the High Current Ranges section. 12 MOE Active Low MEASOUT Enable. 13 CS Active Low Logic Input. The device is selected when this pin is low. See the Interface section. 14 STB Active Low Logic Input. Used in conjunction with CPCK and CS to configure the device for different configurations. Rising edge of STB triggers sequence inputs. See the Interface section. 15 AC0 Logic Input. Used in conjunction with AC1 to select one of three external compensation capacitors. See the Force Control Amplifier section. 16 AC1 Logic Input. Used in conjunction with AC0 to select one of three external compensation capacitors. See the Force Control Amplifier section. 19 AM2 Logic Input. Used in conjunction with AM1 and AM0 to select one of six current ranges or to enable standby mode. See the Current Ranges section. 20 AM1 Logic Input. Used in conjunction with AM2 and AM0 to select one of six current ranges or to enable standby mode. See the Current Ranges section. 21 AM0 Logic Input. Used in conjunction with AM2 and AM1 to select one of six current ranges or to enable standby mode. See the Current Ranges section. 22 STANDBY Logic Input. When high, device is in standby mode of operation. See the Standby Mode section. Rev. B | Page 8 of 24 Document Outline FEATURES APPLICATIONS GENERAL DESCRIPTION FUNCTIONAL BLOCK DIAGRAM TABLE OF CONTENTS SPECIFICATIONS TIMING CHARACTERISTICS ABSOLUTE MAXIMUM RATINGS ESD CAUTION PIN CONFIGURATION AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION INTERFACE STANDBY MODE FORCE VOLTAGE OR FORCE CURRENT MEASURED PARAMETER CURRENT RANGES RS SELECTION FORCE CONTROL AMPLIFIER COMPARATOR FUNCTION AND STROBING CLAMP FUNCTION HIGH CURRENT RANGES CIRCUIT OPERATION FORCE VOLTAGE MEASURE CURRENT FORCE CURRENT MEASURE VOLTAGE SHORT CIRCUIT PROTECTION SETTLING TIME CONSIDERATIONS PCB LAYOUT AND POWER SUPPLY DECOUPLING TYPICAL CONNECTION CIRCUIT FOR THE AD5520 TYPICAL APPLICATION CIRCUIT EVALUATION BOARD FOR THE AD5520 OUTLINE DIMENSIONS ORDERING GUIDE