M56620AP MITSUBISHI | Alldatasheet

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Bi-CMOS 8-BIT PARALLEL-INPUT LATCHED DRIVER M 56620AP MITSUBISHI <CONTROL / DRIVER IC> DES CRIPT IO N The M 56620AP is a semiconductor integrated circuit fabricated using Bi-CMOS technology. It contains bipolar 8 output drivers of CMOS latch. FEAT URES l Enable input for output control l Input level is compatible with standard CMOS APP LICAT IO N Thermal printer head dot driver, Relay driver, Solenoid driver FUNCT IO N When data is applied to inputs IN1 – IN8 and LATCH input is set to “H”, the data will be latchedance with the truth table. Note that when an “H” signal is applied to the RESET input, the latch will maintain the reset state. When the EN input is set to “L” and the data maintained in the latch are “H”, the corresponding output will be ON and become “L”. When both the LATCH and RESET inputs are “L”, the latch will maintain the prior state irrespective of input signals IN1 – IN8. B LOC K D IAGR A M Outline 22P4 fi fi fi fi fi fi fi fi fi fi fi fi fi fi fi fi fi fi RESET LATCH IN1 IN2 IN3 IN4 IN5 IN6 IN7 IN8 GND Reset input Latch input Parallel inputs EN VCC COM Enable input Parallel outputs COMMON 185 176 167 158 149 1310 1211 M56620AP PIN C O N FIG URAT IO N (TO P VIEW ) O1 O2 O3 O4 O5 O6 Parallel outputs 2021 19 18 17 16 15 14 13 12 3 4 5 6 7 8 9 10 11 O7 COMO8VCC IN1 IN2 IN3 IN4 IN5 IN6 IN7 IN8 GND Parallel inputs COMMON EN RESET LATCH Enable input Reset input Latch input (8 latch circuits)

Bi-CMOS 8-BIT PARALLEL-INPUT LATCHED DRIVER M 56620AP MITSUBISHI <CONTROL / DRIVER IC> TRUT H TABL E L: low level H: high level x: low level or high level t-1: previous state t: current state H output: OFF state L output: ON state Input Output On INn L H x x x LATCH H H x x L RESET L L H x L EN L L x H L t-1 x x x x L t H L H H L xL L L H H LO G IC DIAG RAM (O ne circuit) IN PUT /O U TPUT EQ UIVAL ENT C IR CUITS

1 Input circuits

(INn, LATCH, RESET)

2 Input circuit (EN)

(n= 1 – 8)Common block R IN VCC GND INn R IN VCC GND EN (n = 1 – 8)

Bi-CMOS 8-BIT PARALLEL-INPUT LATCHED DRIVER M 56620AP MITSUBISHI <CONTROL / DRIVER IC>

3 Output circuits

(O1 – O8) Symbol Ratings UnitParameter Conditions ABS O LUT E M AXIM UM RAT ING S (Ta=-20 to 75°C, unless otherwise noted) VCC VI VO IO Pd Topr Tstg Supply voltage Input voltage Output voltage Output current Power dissipation Operating temperature Storage temperature Output: OFF Output: ON Ta=25°C -0.3 – +8 -0.3 – VCC +0.3 0 – +50 500 1.25 -20 – 75 -55 – 125 V V V mA W Limits Min. Typ. Max.Symbol Conditions UnitParameter REC O M M ENDE D O PERAT IN G C O NDITIO N (Ta=-20 to 75°C, unless otherwise noted) VCC VO IO Supply voltage Output apply voltage Output current (per circuit) Output: OFF All outputs go in ON state simultaneously. Duty cycle < 15% 45 6 350 V V mA Limits Min. Typ. Max.Symbol Test conditions UnitParameter EL ECT R ICAL CHARACT ERISTICS (Ta=25°C, VCC =5V, unless otherwise noted) High-level input voltage Low-level input voltage Input resistance Low-level output voltage Output leak current Clamping diode forward voltage Clamping diode reverse current Supply current VIH VIL R IN VOL1 VOL2 VOL3 IOLK VF IR ICC1 ICC2 Ta=-20 – 75°C VIN=1.5 – 3.5V IOL =100mA IOL =200mA IOL =350mA VO =50V IF=350V VR =50V EN=5V, All other inputs = 0V EN=0V, One output is ON. 0.7VCC 1.0 VCC 0.3VCC 2000 1.1 1.3 1.6 1.5 V V kW V V V mA V mA mA mA GND VCC COM On

Bi-CMOS 8-BIT PARALLEL-INPUT LATCHED DRIVER M 56620AP MITSUBISHI <CONTROL / DRIVER IC> TIM ING CHART Limits Min. Typ. Max.Symbol Test conditions UnitParameter SW ITCHING CHARA CT ER ISTICS (Ta=25°C, VCC =5V, unless otherwise noted) tPLH tPHL tPLH tPHL tPLH Low-to-high-level output propagation time From input LATCH to output On High-to-low-level output propagation time From input LATCH to output On Low-to-high-level output propagation time From input EN to output On High-to-low-level output propagation time From input EN to output On Low-to-high-level output propagation time From input RESET to output On VIH=5V VIL=0V R L=100W C L=15pF 0.5 0.5 ms ms ms ms ms TIM ING CHART Limits Min. Typ. Max.Symbol Test conditions UnitParameter TIM ING REQ U IR EM EN TS (Ta=-20 to 75°C, unless otherwise noted) tw(L) tw(R) tsu th Latch pulse width Reset pulse width Data setup time Data hold time 0.1 0.1 0.05 0.1 ms ms ms ms tPLH 2.5V EN On RESET LATCH 2.5V 2.5V 2.5V tPHL tPLH tPHL tPLH INn Enable input Output Reset input Latch input Parallel input 50% tw(L) tsu INn LATCH RESET 50% th 50% 50% tw(R) 50% 50%Reset input Latch input Parallel input VCC

Bi-CMOS 8-BIT PARALLEL-INPUT LATCHED DRIVER M 56620AP MITSUBISHI <CONTROL / DRIVER IC> TEST CIRCUI T TYPICAL CHARACT ERISTICS VCC R L C L Input PG 50W M5 6620A P Output The input waveform: tr £ 20ns, tf£ 20ns The capacitance C L includes the wiring stray capacitance and probe input capacitance. Thermal derating (Absolute maximum rating) Ambient temperatureTa (°C ) Power dissipation Pd(max) (W) 0.5 1.0 1.5 25 50 75 100 Ta = -20°C Ta = 25°C Ta = 75°C Supply voltage vs. supply current (one circuit : ON) Supply voltage VCC (V) Supply current ICC (mA) 123 45 67 89 10 01 2 Intput current II (mA) Input voltage VI (V) Ta = 75°C Ta = 25°C Ta = -20°C Ta = -20°C Ta = 25°C Ta = 75°C 34 5 -10 -12 -14 -16 -18 -20 0 1234 5 Input voltage vs. input current (INn, LATCH and RESET) Input voltage vs. input current (EN) Input current II (mA) Input voltage VI (V)

Bi-CMOS 8-BIT PARALLEL-INPUT LATCHED DRIVER M 56620AP MITSUBISHI <CONTROL / DRIVER IC> Duty cycle vs. allowable output current Duty cycle(%) Output current IO (mA) 40 60 80 100 100 200 300 400 500 Low-level output voltage (V) Low-level output current (mA) 0.5 1 1.5 2 100 200 300 400 500 600 700 Low-level output voltage vs. current Duty cycle vs. allowable output current Duty cycle(%) Output current IO (mA) 40 60 80 100 100 200 300 400 500 Ta = 75°C Ta = 25°C Ta = -25°C Ta = 25°C Repetitive frequency >10H Z Each figure in a circle shows the number of output circuits which operate simultaneously. Current value : output current per circuit 1 2 Ta = 75°C Repetitive frequency >10H Z Each figure in a circle shows the number of output circuits which operate simultaneously. Current value : output current per circuit