APX6219 ANPEC | Alldatasheet

Document overview

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Technical content

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G31 /G41/G4E/G50/G45/G43/G20/G72/G65/G73/G65/G72/G76/G65/G73/G20/G74/G68/G65/G20/G72/G69/G67/G68/G74/G20/G74/G6F/G20/G6D/G61/G6B/G65/G20/G63/G68/G61/G6E/G67/G65/G73/G20/G74/G6F/G20/G69/G6D/G70/G72/G6F/G76/G65/G20/G72/G65/G6C/G69/G61/G62/G69/G6C/G69/G74/G79/G20/G6F/G72/G20/G6D/G61/G6E/G75/G66/G61/G63/G74/G75/G72/G61/G62/G69/G6C/G69/G74/G79/G20/G77/G69/G74/G68/G6F/G75/G74/G20/G6E/G6F/G74/G69/G63/G65/G2C/G20/G61/G6E/G64/G20/G61/G64/G76/G69/G73/G65 /G63/G75/G73/G74/G6F/G6D/G65/G72/G73/G20/G74/G6F/G20/G6F/G62/G74/G61/G69/G6E/G20/G74/G68/G65/G20/G6C/G61/G74/G65/G73/G74/G20/G76/G65/G72/G73/G69/G6F/G6E/G20/G6F/G66/G20/G72/G65/G6C/G65/G76/G61/G6E/G74/G20/G69/G6E/G66/G6F/G72/G6D/G61/G74/G69/G6F/G6E/G20/G74/G6F/G20/G76/G65/G72/G69/G66/G79/G20/G62/G65/G66/G6F/G72/G65/G20/G70/G6C/G61/G63/G69/G6E/G67/G20/G6F/G72/G64/G65/G72/G73/G2E

  • •••• Able to Drive Both Windings of Bipolar Stepper Motor
  • •••• Up to 750 mA Continuous Output Current for Each Winding
  • •••• Up to 28V Output Sustaining Voltage
  • •••• Internal PWM Current Control
  • •••• Built-in Protection Diode
  • •••• Low Output Saturation Voltage
  • •••• Internal Thermal Shutdown
  • Lead Free Available (RoHS Compliant) /G46/G65/G61/G74/G75/G72/G65/G73 /G47/G65/G6E/G65/G72/G61/G6C/G20/G44/G65/G73/G63/G72/G69/G70/G74/G69/G6F/G6E The APX6219 is designed to drive both winding of a two-phase bipolar stepper motor or bidirectionally control 2 DC motors. APX6219 includes two H- bridges capable of continuous output current of ±750 mA with peak start up to 1A and operating voltages up to 28V. Motor winding current can be controlled by the internal fixed-frequency, pulse-width modulated (PWM), current-control circuitry. Wide range current control is controlled by means of two logic inputs with a external reference voltage for each bridge. The peak load current limit is set by the user’s selection of a reference voltage and current-sensing resistor. Two logic-level select output current limits of 0%,33%, 67%, or 100% of the maximum level. A phase input to each bridge determines load current direction. A thermal shutdown protection circuit disables the out- puts if the chip temperature over the safe operation limit. The APX6219 come in SOP-24 package. /G41/G70/G70/G6C/G69/G63/G61/G74/G69/G6F/G6E/G73
  • Scanner
  • Stepping Motor Control
  • Thermal Printer /G50/G69/G6E/G20/G43/G6F/G6E/G66/G69/G67/G75/G72/G61/G74/G69/G6F/G6E SOP-24 (Top View) OUT1A OUT2A SENSE2 GND COMP.INPUT1 l01 GND OUT2B COMP.INPUT2 l02 I12 OUT1B GND l11 PHASE1 RC1 VBB(LOAD SUPPLY) 9 16 VCC (LOGIC SUPPLY) VREF1 SENSE1 GND PHASE2 VREF2 RC2 PWM Stepper Motor Driver

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G32 K : SOP - 24 Temp. Range I : -40 C to 85 C Handling Code TU : Tube TR : Tape & Reel Lead Free Code L : Lead Free Blank : Original Device Handling Code Temp. Range Package Code APX6219 K : APX6219 XXXXX XXXXX - Date Code Lead Free Code ° /G50/G69/G6E/G20/G44/G65/G73/G63/G72/G69/G70/G74/G69/G6F/G6E PIN NO. Name I/O Description 1,2 OUTPUT A O H- bridge Output connection. The output stage is a “H” bridge formed by four transistors and four-protection diode for switching applications. 3,23 Sense Resistor O Connection to lower emitters of output stage for insertion of current sensor resistor to check the peak value of output current 4,22 Comparator Input I The voltage across the sense resistor is feedback to this input through the low pass filter RC CC. The higher power transistors are disabled when the sense voltage exceeds the reference voltage of selected comparator. The current decays for a time set by R T CT when this happen 5,21 OUTPUT B O See pins 1,2 6,7,18,19 Ground Ground connection These pins are logic inputs which select the outputs of the comparators to set the output current level. Current also depends on the sensing resistor and reference voltage. I0 I1 Current level H H L H H L 8,9 I02/I12 I L L No current Low current 1/3 IO max Medium current 2/3 IO max Maximum current IO max 20,17 I01/I11 I See pins 8,9; current level control for channel2 10,16 PHASE I This TTL-compatible logic input sets the current flow direction through load. A schmitt trigger with this input provides the noise immunity and a delay circuit prevents output stage short circuits during switching 11,15 Reference Voltage I A voltage apply this pin sets the input of a comparator to control the output current 12,14 R TCT O A R TCT connection to this pin sets the off time of higher power transistor

13 V CC Logic supply voltage

24 V BB Load supply voltage

/G4F/G72/G64/G65/G72/G69/G6E/G67/G20/G61/G6E/G64/G20/G4D/G61/G72/G6B/G69/G6E/G67/G20/G49/G6E/G66/G6F/G72/G6D/G61/G74/G69/G6F/G6E Notes: ANPEC lead-free products contain molding compounds/die attach materials and 100% matte in plate termi- nation finish; which are fully compliant with RoHS and compatible with both SnPb and lead-free soldiering operations. ANPEC lead-free products meet or exceed the lead-free requirements of IPC/JEDEC J STD-020C for MSL classifica- tion at lead-free peak reflow temperature.

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G33 /G42/G6C/G6F/G63/G6B/G20/G44/G69/G61/G67/G72/G61/G6D LOGIC SURRENT SELECT POWER BRIDGE LOGIC SURRENT SELECT THERMAL SHUTDOWN POWER BRIDGE (22) COMPARATOR INPUT1 (14) RC1 (13)/GA1/G29 LOGIC SUPPLY (24) LOAD SUPPLY (1) OUT1A (21) OUT1B WINDING1 (2) OUT2A (5) OUT2B WINDING2 (20) I01 /GA1/G5D17/GA1/G5EI11 (16) PHASE1 (15) VREF1 (11) VREF2 (8) I02 (9) I12 (10) PHASE2 (6,7,18,19) GND (4) COMPARATOR INPUT2 (12) RC2 (23) SENSE1 RSENSE1 (3) SENSE2 R SENSE2 /G41/G62/G73/G6F/G6C/G75/G74/G65/G20/G4D/G61/G78/G69/G6D/G75/G6D/G20/G52/G61/G74/G69/G6E/G67/G73 Symbol Parameter Rating Unit VBB Load Supply Voltage 30 V IO Output Current (Peak) ±1 A IO Output Current (Continuous) ±750 mA VCC Logic Supply Voltage 7 V VIN Logic Input Voltage -0.3 to VCC +0.3 V VSENSE Driver Output Sense Voltage 1.5 V R TH,JA Thermal Resistance – Junction to Ambient* S O P - 2 4 75 °C/W R TH,JC Thermal Resistance – Junction to Case S O P - 2 4 15 °C/W PD Power Dissipation Internally Limited W TJ Junction Temperature 0 to 150 °C TOP Operating Temperature Range 0 to 70 °C TSTG Storage Temperature Range -65 to +150 °C TL Lead Temperature (Soldering, 10 second) 260 °C (*) With minimized copper area.

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G34 /G45/G6C/G65/G63/G74/G72/G69/G63/G61/G6C/G20/G43/G68/G61/G72/G61/G63/G74/G65/G72/G69/G73/G74/G69/G63/G73 APX6219 Symbol Parameter Test Conditions Min. Typ. Max. Unit Output drivers (OUTA or OUTB) VBB Motor Supply Voltage 10 28 V ILEAK Output Leakage Current VOUT =V BB VOUT =0 <1 <-1 -50 µA VCE (sat) Output Saturation Voltage Sink driver, IOUT =+500mA Sink driver, IOUT =+750mA Source driver, IOUT =-500mA Source driver, IOUT =-750mA 0.4 0.8 1.1 1.4 0.7 1.1 1.4 1.7 V IR Clamp Diode Leakage Current VR =28V <1 50 µA VF Clamp Diode Forward Voltage Sink diode Source diode IF=750mA 1.6 1.6 2 V IBB (on) Driver Supply Current Both bridges ON, no load 14 25 mA IBB (off) Driver Supply Current Both bridges OFF 2 10 mA Control logic VIH Voltage Input All inputs 2.4 V VIL Voltage Input All inputs 0.8 V IIH Input Current VIN=2.4V <1 20 µA IIL Input Current VIN=0.8V -5 -50 µA VREF Reference Voltage 1.5 7.5 V ICC (on) Logic Supply Current I0=I1=0.8V, no load 47 57 mA ICC (off) Logic Supply Current I0=I1=2.4V, no load 8 14 mA VREF /VSENSE Current Limit Threshold (at trip point) I0=I1=0.8V I0=2.4V,I1=0.8V I0=0.8V,I1=2.4V 9.5 13.5 25.5 10.5 16.5 34.5 TOFF Cutoff Time R T=56KΩ , CT=820pF 45 µs TD Turn off Delay 2 µs Protection Over Temperature Shutdown 150 °C OTS Over Temperature Shutdown Hystersis Hystersis 20 °C Unless otherwise noted these specifications apply over full temperature, VBB =28V, VCC =4.75 to 5.25V, VREF =5V, TJ=0 to 125°C . Typical values refer to TJ=25°C .

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G35 /G50/G57/G4D/G20/G4F/G75/G74/G70/G75/G74/G20/G43/G75/G72/G72/G65/G6E/G74/G20/G57/G61/G76/G65/G66/G6F/G72/G6D V PHASE ITRIP =V REF /10 RS td toff ITRIP 0IOUT Rs motor V BB Bridge on Source off Al l off /G4C/G6F/G61/G64/G20/G43/G75/G72/G72/G65/G6E/G74/G20/G50/G61/G74/G68/G73

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G36 I01 I11 Phase1 Motor2 current 167 mA /G31/G32/G33/G34/G35/G36/G37/G38 /G78 /G78 Half-step motor drive Full-step motor driveStand-by -333 mA -500mA /G31/G32/G33/G34/G35/G36/G37/G38 500mA Phase2 I02 I12 Motor1 Current -167 mA -333 mA -500mA 500mA 333 mA 333 mA /G78/G78 I01 I11 Phase1 Motor2 current 167 mA /G31/G32/G33/G34/G35/G36/G37/G38 /G78 /G78 Half-step motor drive Full-step motor driveStand-by -333 mA -500mA /G31/G32/G33/G34/G35/G36/G37/G38 500mA Phase2 I02 I12 Motor1 Current -167 mA -333 mA -500mA 500mA 333 mA 333 mA /G78/G78 /G50/G72/G69/G6E/G63/G69/G70/G6C/G65/G20/G4F/G70/G65/G72/G61/G74/G69/G6E/G67/G20/G53/G65/G71/G75/G65/G6E/G63/G65

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G37 R C R S C C R C R S C C R T C T R TC T V CC V REF1 V BB STEPPER MOTOR V REF2 Fom µ P Fom µ P R T =56K Ω , CT =820pF R C =1K Ω , CC =820pF R S =1 Ω 0.1µ F 0.1µ F 0.1µ F 100 µ F /G54/G79/G70/G69/G63/G61/G6C/G20/G41/G70/G70/G6C/G69/G63/G61/G74/G69/G6F/G6E/G20/G43/G69/G72/G63/G75/G69/G74 V REF ÷10 CMP R s One shot R T 56k Ω C T 820pf OUTA motor Sense Source Disabl e OUTB 20k Ω 40k Ω 10k Ω V BB R C C C COMP I N /G31/G37 /G32/G34 /G32/G30 /G31/G35 /G32/G32 /G31/G34 /G32/G33 RC V REF ÷10 CMP R s One shot R T 56k Ω C T 820pf OUTA motor Sense Source Disabl e OUTB 20k Ω 40k Ω 10k Ω V BB R C C C COMP I N /G31/G37 /G32/G34 /G32/G30 /G31/G35 /G32/G32 /G31/G34 /G32/G33 RC HLL LHH OUTBOUTAPhase HLL LHH OUTBOUTAPhase True Table /G50/G57/G4D/G20/G43/G75/G72/G72/G65/G6E/G74/G2D/G43/G6F/G6E/G74/G72/G6F/G6C/G20/G43/G69/G72/G63/G75/G69/G74/G72/G79

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G38 0.2 0.4 0.6 0.8 1.2 1.4 1.6 1.8 4 4.5 5 5.5 6 0.5 1.5 2.5 44 . 555 . 56 /G54/G79/G70/G69/G63/G61/G6C/G20/G43/G68/G61/G72/G61/G63/G74/G65/G72/G69/G73/G74/G69/G63/G73 All Bridge Enable Time ( 0.1ms/div) IL(0~300mA) VOUT1A (1V/div) All Bridge Disable Time ( 0.1ms/div) IL(0~300mA) VOUT1A (1V/div) I0, I1 Threshold Voltage VCC (V) I0 , I1(V) IIO=0µA VBB =12V PHASE Pin Threshold Voltage VCC (V) PHASE (V) VPHASE+ VPHASE- IPHASE+= IPHASE- =0µA VBB =12V

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G39 100 200 300 400 500 600 700 800 900 100 110 0 1 02 03 04 05 06 07 08 09 0 1 0 0 /G54/G79/G70/G69/G63/G61/G6C/G20/G43/G68/G61/G72/G61/G63/G74/G65/G72/G69/G73/G74/G69/G63/G73 VCE (V) IE (mA) Sink Output Saturation Voltage Source R TC T vs. Cut Off Time RT (kΩ ) Cut Off Time(µs) C T=470pF 820pF 1000pF Operating Waveform1 Time (1ms/div) Time (0.1ms/div) VPHASE1 (5V/div) IL(500mA~-500mA) VOUT1A (10V/div) R T=56kΩ ,CT=820pF, R C =1kΩ,C C =820pF VOUT1B (10V/div) Operating Waveform2 IL(300mA~-300mA) VCOMP INPUT1 VRC1 (1.6V~4.2V) VOUT1A (10A/div) R T=56kΩ ,CT=820pF, R C =1kΩ,C C =820pF V CC =5V VBB =12V

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G31/G30 /G54/G79/G70/G69/G63/G61/G6C/G20/G43/G68/G61/G72/G61/G63/G74/G65/G72/G69/G73/G74/G69/G63/G73 Time (5ms/div) V RC1 (1.6V~4.2V) IL(300mA~-300mA) VOUT1A (10V/div) VOUT1B (10V/div) Half Stage Operation

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G31/G31 /G41/G70/G70/G6C/G69/G63/G61/G74/G69/G6F/G6E/G20/G49/G6E/G66/G6F/G72/G6D/G61/G74/G69/G6F/G6E PWM Current Control The APX6219 dual bridge is designed to drive both windings of a bipolar stepper motor. Output current is sensed and controlled independently in each bridge by an external sense resistor (R S), internal comparator, and monostable multivibrator. When the bridge is turned on, current increases in the motor winding and it is sensed by the external sense resistor until the sense voltage (V COMPIN ) reaches the level set at the comparator’s input: ITRIP = VREF /10 RS The comparator then triggers the monostable which turns off the source driver of the bridge. The actual load current peak will be slightly higher than the trip point (especially for low-inductance loads) because of the internal logic and switching delays. This delay (T D ) is typically 2µs. After turn-off, the motor current decays, going through the ground-clamp diode and sink transistor (source off). The source driver’s off time is determined by the external RC timing components, where T OFF = RTC T within the range of 30kΩ to 100kΩ and 470pF to 1000pF.When VRC drop to certain voltage, the source driver will be re-enabled automati- cally (bridge on), the winding current is again limited at the desired level. Loads with high V BB , low L , high-frequency and low current will may result in high turn-on current peaks. This peak (appearing across R S) will attempt to trip the comparator, resulting in erroneous current control or high-frequency oscillations. An external R C C C time delay should be used to form low pass filter to reduce noise to avoid the comparator’s fault operation. The locations of R C , CC , RC components should be as close to the APX6219 as possible. Logic Control Of Output Current Two logic level inputs (l0 and I1) allow digital selection of the motor winding current at 100%, 67%, 33%, or 0% of the maximum level per the table. The 0% out- put current condition turns off all drivers in the bridge and can be used as an OUTPUT Disable/Enable function. During half-step operations, the l0 and l1 allow the µP to control the motor at a constant torque between all positions in an eight-step sequence. This is accom- plished by digitally selecting 67% drive current when two phases are on. When all drivers are turn off will make rapid current decay when phases be changed. This helps to ensure proper motor operation at high step rates. The logic control inputs can also be used to select a reduced current level (and reduced power dissipation) for ‘hold’ conditions and/or increased current (and avail- able torque) for start-up conditions. General The PHASE input to each bridge determines the di- rection motor winding current flows. An internally gen- erated deadtime (approximately 2µs) prevents shoot through that can occur when switching the PHASE input. Thermal protection circuitry turns off all drivers when the junction temperature reaches +150°C. It is only intended to protect the device from failures due to excessive junction temperature and should not im- ply that output short circuits are permitted. The out- put drivers are re-enabled when the junction tempera- ture cools to +130°C. The APX6219 output drivers are optimized for low out- put saturation, less than 2V (source plus sink) at load- ing 500mA.Under normal operating conditions, this allows continuous operation of both bridges simulta- neously at 750mA (such as Typical Application).

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G31/G32 /G50/G61/G63/G6B/G61/G67/G65/G20/G49/G6E/G66/G6F/G72/G6D/G61/G74/G69/G6F/G6E SO – 300mil ( Reference JEDEC Registration MS-013) Millimeters Variations- D Inches Variations- D D See variations SO-24 15.20 15.60 D See variations SO-24 0.599 0.614 H 10 10.65 H 0.394 0.419 L 0.40 1.27 L 0.016 0.050 N See variations N See variations φ 10 ° 8°φ 10 ° 8° N 12 3 EH D L GAUGE PLANE e B A1 A

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G31/G33 t 25 C to Peak tp Ramp-up tL Ramp-down ts Preheat Tsmax Tsmin T L T P Temperature Time Critical Zone T L to TP °/G20 /G50/G68/G79/G73/G69/G63/G61/G6C/G20/G20/G53/G70/G65/G63/G69/G66/G69/G63/G61/G74/G69/G6F/G6E/G73 Terminal Material Solder-Plated Copper (Solder Material : 90/10 or 63/37 SnPb), 100%Sn Lead Solderability Meets EIA Specification RSI86-91, ANSI/J-STD-002 Category 3. /G20 /G52/G65/G66/G6C/G6F/G77/G20/G43/G6F/G6E/G64/G69/G74/G69/G6F/G6E/G20(IR/Convection or VPR Reflow) /G43/G6C/G61/G73/G73/G69/G66/G69/G63/G61/G74/G69/G6E/G20/G52/G65/G66/G6C/G6F/G77/G20/G50/G72/G6F/G66/G69/G6C/G65/G73 Profile Feature Sn-Pb Eutectic Assembly Pb-Free Assembly Average ramp-up rate (TL to TP) 3°C/second max. 3 °C/second max. Preheat /G2D/G20Temperature Min (Tsmin) /G2D/G20Temperature Max (Tsmax) /G2D/G20Time (min to max) (ts) 100°C 150°C 60-120 seconds 150°C 200°C 60-180 seconds Time maintained above: /G2D/G20Temperature (TL) /G2D/G20Time (tL) 183°C 60-150 seconds 217°C 60-150 seconds Peak/Classificatioon Temperature (Tp) See table 1 See table 2 Time within 5°C of actual Peak Temperature (tp) 10-30 seconds 20-40 seconds Ramp-down Rate 6°C/second max. 6 °C/second max. Time 25°C to Peak Temperature 6 minutes max. 8 minutes max. Notes: All temperatures refer to topside of the package .Measured on the body surface.

Table 2. Pb-free Process – Package Classification Reflow Temperatures including the stated classification temperature (this means Peak reflow temperature +0°C. For example 260°C+0 °C) at the rated MSL level. Table 1. SnPb Entectic Process – Package Peak Reflow Temperatures

/G43/G6F/G70/G79/G72/G69/G67/G68/G74/G20 /G41/G4E/G50/G45/G43/G20/G45/G6C/G65/G63/G74/G72/G6F/G6E/G69/G63/G73/G20/G43/G6F/G72/G70/G2E /G52/G65/G76/G2E/G20/G41/G2E/G34/G20/G2D/G20/G41/G70/G72/G2E/G2C/G20/G32/G30/G30/G35 /G41/G50/G58/G36/G32/G31/G39 /G77/G77/G77/G2E/G61/G6E/G70/G65/G63/G2E/G63/G6F/G6D/G2E/G74/G77/G31/G35 Application Carrier Width Cover Tape Width Devices Per Reel SOP- 24 24 21.3 1000 /G20 Application A B C J T1 T2 W P E F D D1 Po P1 Ao Bo Ko tSOP- 24 ( m m ) Anpec Electronics Corp. Head Office : 5F, No. 2 Li-Hsin Road, SBIP, Hsin-Chu, Taiwan, R.O.C. Tel : 886-3-5642000 Fax : 886-3-5642050 Taipei Branch : 7F, No. 137, Lane 235, Pac Chiao Rd., Hsin Tien City, Taipei Hsien, Taiwan, R. O. C. Tel : 886-2-89191368 Fax : 886-2-89191369 /G43/G75/G73/G74/G6F/G6D/G65/G72/G20/G53/G65/G72/G76/G69/G63/G65 /G43/G6F/G76/G65/G72/G20/G54/G61/G70/G65/G20/G44/G69/G6D/G65/G6E/G73/G69/G6F/G6E/G73 /G43/G61/G72/G72/G69/G65/G72/G20/G54/G61/G70/G65/G28/G43/G6F/G6E/G74/G2E/G29 A J B C