TC7S02F TOSHIBA | Alldatasheet
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TOSHIBA CMOS DIGITAL INTEGRATED CIRCUIT SILICON MONOLITHIC TC7SO2F, TC7SO2FU 2-INPUT NOR GATE The TC7S02 is a high speed C?MOS 2-INPUT NOR GATE TC7S02F fabricated with silicon gate CMOS technology. It achieves high speed operation similar to equivalent LSTTL while maintaining the C2MOS low power dissipation. The internal circuit is composed of 3 stages including | buffer output, which enables high noise immunity and 4 stable output. e All inputs are equipped with protection circuits against > static discharge or transient excess voltage. Output currents are 1/2 compared to TC74HC series models. SSOPS5-P-0.95 TC7S02FU
FEATURES
Véc=5V Ta=25°C = 28% Vcc (Min.) =2mA (Min.) SSOP5-P-0.65A ; 0.0069 (Typ.) © Wide Operating Voltage Range ... VCC (opr) =2~6V MAXIMUM RATINGS MARKING CHARACTERISTIC SYMBOL RATING UNIT Va pe Name Supply Voltage Range aA DC Input Voltage ~O5=Vec +05 DC Output Voltage Vout _| -0.5~Vcc +0.5 =a=E= Input Diode Current Output Diode Current | ioe | #20 | ma] _PIN ASSIGNMENT (TOP view) DC Output Current we Ta CJ] cc DC Vcc /Ground current__| icc | #25 | ma | L. [Power Dissipation | Pp | _200__| mw | wa DLE Storage Temperature | Tyg] 65-150] | | [ead Temperature (105) cx EY our 2610016802 malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress. It is the responsibility of the buyer, when utilizing TOSHIBA products, to observe standards of safety, and to avoid situations in which a malfunction or failure of a TOSHIBA product could cause loss of human life, bodily injury or damage to property. In developing your designs, please ensure that TOSHIBA products are used within specified operating ranges as set forth in the most recent products specifications. Also, please keep in mind the precautions and conditions set forth in the TOSHIBA Semiconductor Reliability Handbook. 1997-04-07 1/5
(4) INA 2) | > fs our RECOMMENDED OPERATING CONDITIONS CHARACTERISTIC SYMBOL RATING UNIT Supply Voltage Output Voltage VouT 0~Vcc Operating Temperature -40~85 0~1000 (Vcc =2.0V) Input Rise and Fall Time tr, te O~ 500 (Vcc =4.5V) 0~ 400 (Vcc =6.0V) DC ELECTRICAL CHARACTERISTICS Ta =25°C Ta = -40~85°C, CHARACTERISTIC | SYMBOL TEST CONDITION UNIT [cwmacrensrc [srwaor] Test conomon yee famn MAN TMA High-Level 2.0 1.5 1.5 Invun Vott VK 45 | 3.15 3.15 v input Voltage 6.0 | 4.2 42 Low-Level 2.0 05 05 P Vit 45 1.35 135] V Input Voltage 6.0 18 18 2.0 1.9] 2.0 1.9 : loH=-20vA | 45] 44] 45 44 Gishtevel I Vou |VIN=ViL 6.0 | 5.9] 6.0 5.9 v utput Voltage TOH= —2mA 4.18 | 4.31 4.13 loH = —2.6mA 5.80 | 5.80 5.63 2.0 0.0} 0.1 0.1 lol = 202A 45 0.0] 0.1 0.1 Low-Level VoL ViN=ViH 60 ool o1 o1| y Output Voltage or VIL ToL=2mA 0.17 | 0.26 lol =2.6mA 0.18 | 0.26 Input Leakage _ + + Current Vin=Vcc or GND £0.11 +1.0 ; 5 7 Quiescent _ sce [ee woveew om fowl [=| ef — || Output currents are 1/2 compared to TC74HC series models.
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© ‘The information contained herein is presented only as a guide, for the applications, of our products. No_ responsibilty is assumed by, TOSHIBA CORPORATION for any infringements of intellectual property or other rights of the third parties which may result from its use. No license is granted by implication or otherwise under any intellectual property or other rights of TOSHIBA CORPORATION or others @ The information contained herein is subject to change without notice 1997-04-07 2/5
AC ELECTRICAL CHARACTERISTICS (C; = 15pF, Input tp=t¢=6ns, Vcc =5V) Ta=25°C UNIT CHARACTERISTIC SYMBOL TEST CONDITION Lame aa UN | Output Transition tTLH 10 Time tTHL Propagation Delay tpLH 7 Time ‘tpHL AC ELECTRICAL CHARACTERISTICS (C, =50pF, Input t; = t¢ = 6ns) Ta =25°C Ta = -40~85°C, HARACTERISTI: YY MBOL TEST NDITION UNIT cranacrensmc|svisot| TEST CONDMON Py-—TmT HVE AIRC] MIN MAR Output T iti t 2.0 50 | 125 155 Outpu ransition TH 45 14 25 31 ° THL 6.0 12 | 21 26 P ion Del 2.0 48 | 100 125 Propagation relay Ni 45 12 20 25 ns 'me PHL 6.0 9| 17 21 input Capacitance | Gy [| SSSS—C—i | | oP — | 10 | Power Dissipation pF ‘Note 1 Note 1: Cpp defined as the value of internal equivalent capacitance of IC which is calculated from the operating current consumption without load (refer to Test Circuit). Average operating current can be obtained by the equation hereunder. Ic (opr) = CPD'Vcc "FIN + Ice SWITCHING CHARACTERISTICS TEST CIRCUIT lec (opr) TEST CIRCUIT 6n: én: i vi / \\ om Yee Vec=5V ce VIN 50% cc= 10% © VIN ene VIN Pepper ra PHP von a ihe 90% YOH a Vout 50% f 10% VOL Input waveform is the same as that [| in case of switching characteristics test. tpHL tpLH 1997-04-07 3/5
SSOP5-P-0.95 units mm 2.8755 1.635 yl 15 _ S| 3 Noel is EH 1 oO an ‘e S fas) Weight : 0.016g (Typ.) arr a
SSOP5-P-0.65A Unit : mm 2.1+0.1 1.2540.1 —— , al © 1-44 L45 =e o| 3 SP a| # 2-8 nN Oo} 28 So NX] or 3-8 2 g 4 fo) oO x <7 ¥ = a So oO S Oo Weight : 0.006g (Typ.) 1997-04-07 5/5