Contents
General Description . . . . . . . . . . . . . Features . . . . . . . . . . . . . . . . . . . . . . Applications . . . . . . . . . . . . . . . . . . . Pin Assignment . . . . . . . . . . . . . . . . . Marking . . . . . . . . . . . . . . . . . . . . . . Logic Diagram . . . . . . . . . . . . . . . . . Physical Dimensions . . . . . . . . . . . . . Ordering . . . . . . . . . . . . . . . . . . . . . . Absolute Maximum Ratings . . . . . . . Recommended Operating Conditions DC Characteristics . . . . . . . . . . . . . . AC Characteristics . . . . . . . . . . . . . . Input Pin Equivalent Circuit . . . . . . . . Frequently Asked Questions . . . . . . .
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INVERTER
S-75V04ANC
n General Description
The S-75V04ANC is a INVERTER fabricated by utilizing advanced silicon-gate CMOS technology which provides the inherent benefit of CMOS low power consumption to achieve ultra high speed operation correspond to LSTTL IC’s. All gates of the internal circuitry have buffered outputs to ensure high noise immunity and output stability. Input voltage is allowed to be applied even if power voltage is not supplied because no diode is inserted between an input pin and VCC. This allows for interfaces between power supplies of different voltage, output level conversion from 5 V to 3 V and battery backup applications.
n Features
Ÿ Wide power supply range: Ÿ Low current consumption: Ÿ Typical propagation delay: Ÿ High noise immunity: Ÿ Power down protection: Ÿ Very small plastic package: 2 V to 5.5 V 1.0 µA max. (at 5.5 V, 25°C) tpd = 3.8 ns (at 5 V) VNIH=VNIL=28% VCC minimum All pins SC-88A
n Applications
Ÿ Personal computers, peripherals Ÿ Cellular phones Ÿ Cameras Ÿ Games
n Pin Assignment
n Marking
NC
1
5
VCC
5
4 Model name
IN A
2
5V5
4 OUT Y 1 (Top view) 2 (Top view) 3
GND
3
n Logic Diagram
True Values A IN A OUT Y L H Y H L
Seiko Instruments Inc.
1
Miniaturized Logic IC Family S-75V04ANC
n Physical Dimensions (Unit:mm)
SC-88A
2.0 ( 2.2 max.) 0.15 1.3±0.1 5
+0.1 −0.05
0.15 4 0.0 to 0.1 1.25 2.1±0.1
1 0.2
+0.1 −0.05
2
3
0.65
0.9±0.1
n Ordering
Delivery form: Model name: Taping only S-75V04ANC-5V5-T2
n Absolute Maximum Ratings
Ta =25 °C
Item Power Supply Voltage Input Voltage Output Voltage Input Parasitic Diode Current Output Parasitic Diode Current Output Current VCC/GND Current Power Dissipation Storage Temp. Range Lead Temperature (10 sec.)
Symbol VCC VIN VOUT IIK IOK IOUT ICC PD Tstg TL
Conditions
Ratings -0.5 to +7.0 -0.5 to+7.0 -0.5 to VCC+0.5 -20 ±20 ±25 ±50 200 -65 to +150 260
Unit V V V mA mA mA mA mW °C °C
2
Seiko Instruments Inc.
Miniaturized Logic IC Family S-75V04ANC
n Recommended Operating Conditions
Parameter Power Voltage Input Voltage Output Voltage Op. Temp. Range Input Rise and Fall Time
Symbol VCC VIN VOUT Topr dt/dv
Standard 2 to 5.5 0 to 5.5 0 to VCC -40 to +85 0 to 100 (VCC=3.3±0.3V) 0 to 20 (VCC=5±0.5V)
Unit V V V °C ns/V
n DC Characteristics
Parameter Sym. Conditions
VCC 2.0 MIN. 1.5 VCCX0.7 – – 1.9 2.9 4.4 2.58 3.94 – – – – – – –
Ta=25°C
TYP. – – – – 2.0 3.0 4.5 – – 0 0 0 – – – – MAX. – – 0.5 VCCX0.3 – – – – – 0.1 0.1 0.1 0.36 0.36 ±0.1 1.0
Ta=-40 to 85°C
MIN. 1.5 VCCX0.7 – – 1.9 2.9 4.4 2.48 3.80 – – – – – – – MAX. – – 0.5 VCCX0.3 – – – – – 0.1 0.1 0.1 0.44 0.44 ±1.0 10.0
Unit
"H" level Input Voltage "L" level
VIH
3 to 5.5 2.0
V
VIL IOH= VIN=VIL -50µA
3 to 5.5 2.0 3.0 4.5 IOH=-4mA 3.0 4.5 2.0 3.0 4.5 IOH=4mA IOH=8mA 3.0 4.5 0 to 5.5 5.5
"H" level Output Voltage
VOH
IOH=-8mA IOH= VIN=VIH 50µA
V
"L" level
VOL
Input Current Current Consump.
IIN ICC
VIN=5.5Vor GND VIN=VCC or GND
µA µA
Seiko Instruments Inc.
3
Miniaturized Logic IC Family
S-75V04ANC
n
AC Characteristics
Input tr = tf = 3 ns (unless otherwise specified)
Parameter
Sym.
Measurement Conditions
VCC(V) CL(pF) 15 MIN. – – – – – Note1 –
Ta=25°C
TYP. 5.0 9.6 3.8 5.7 4 13 MAX. 7.1 13.5 5.5 8.0 10 –
Ta=-40 to 85°C
MIN. 1.0 1.0 1.0 1.0 – – MAX. 8.5 14.5 6.5 9.0 10 –
Unit
Output Rise/Fall Time
tpLH tpHL
3.3±0.3
50 15
nS
5.0±0.5 Input Capacitance Equiv. Int. Capacitance CIN CPD
50
pF pF
Note1
CPD is the no-load equivalent capacitance inside the circuitry. Refer to the measurement circuit shown below. Current consumption is averaged by the following equation.
ICC(opr)= CPD ⋅ VCC ⋅ fin+ICC
Measurement Circuit
3ns 3ns VCC VIN VIN 90% 10% VOUT 50% GND
PG
50Ω
tpHL
CL VOUT 50%
tpLH
50%
VOH
VOL Remark: No-load output during measurement of current consumption.
n Input Pin Equivalent Circuit
Input pin
4
Seiko Instruments Inc.
Collection of Product FAQs
Author: Shirai Masaaki B: Index: Division name: 01 IC Category 1: Category 2: Cal. No.: Related documents: 17 ASSP 3. Mini Logic Overall For Distri & Rep (Printing N.G.) A: General Date: 99/01/12 (Tuesday) 12:49 (modified: 99/01/18(Monday))
Question:
What are the competitors’ names, and what are the model numbers of the competing products? (crossreference table)
Answer:
See the cross-reference table below. companies in all specifications. In particular, the S-75V-series products have a longer delay time than that of the other companies’ products due to their load capacity (see 75L, 75V). When a customer refers to any product name in the SOT-23-5-equivalent column during a businessrelated conversation, introduce SII’s SC88A products to this customer if new substrates are to be produced. For Toshiba and NS, each row includes two products. The lower product is almost equivalent to SII’s (that is, operates at an equivalent speed). The upper product operates at a slower speed than SII’s, so the corresponding SII products can be introduced as upgrade versions. The SII products are not compatible with those of other
-
5
Mini logic cross-reference
SC88A equivalent
Company name Name Product name
SOT-23-5 equivalent
Toshiba Tl SingleGate L-MOS SN74AHC1G00DCK TC7S00F TC7SH00F SN74AHC1G02DCK TC7S02F TC7SH02F SN74AHC1G04DCK TC7S04F TC7SH04F SN74AHC1GU04DCK TC7SU04F TC7SHU04F SN74AHC1G08DCK TC7S08F TC7SH08F SN74AHC1G14DCK TC7S14F TC7SH14F SN74AHC1G32DCK TC7S32F TC7SH32F SN74AHC1G86DCK TC7S86F TC7SH86F TC7SL00F TC7SL02F TC7SL04F TC7SLU04F TC7SL08F TC7SL32F NS(FAIRCHILD) T‚l TinyLogic SingleGate NC7S00M5 SN74AHC1G00DBV NC7SZ00M5 NC7S02M5 SN74AHC1G02DBV NC7SZ02M5 NC7S04M5 SN74AHC1G04DBV NC7SZ04M5 NC7SU04M5 SN74AHC1GU04DBV NC7SZU04M5 NC7S08M5 SN74AHC1G08DBV NC7SZ08M5 NC7S14M5 SN74AHC1G14DBV NC7SZ14M5 NC7S32M5 SN74AHC1G32DBV NC7SZ32M5 NC7S86M5 SN74AHC1G86DBV NC7SZ86M5
SII Mini-Logic S-75V00ANC
Toshiba L-MOS TC7S00FU TC7SH00FU S-75V02ANC TC7S02FU TC7SH02FU S-75V04ANC TC7S04FU TC7SH04FU S-75VU04ANC TC7SU04FU TC7SHU04FU S-75V08ANC TC7S08FU TC7SH08FU S-75V14ANC TC7S14FU TC7SH14FU S-75V32ANC TC7S32FU TC7SH32FU S-75V86ANC TC7S86FU TC7SH86FU S-75L00ANC TC7SL00FU S-75L02ANC S-75L04ANC S-75LU04ANC S-75L08ANC S-75L14ANC S-75L32ANC S-75L86ANC Speed image Slow TC7SL02FU TC7SL04FU TC7SLU04FU TC7SL08FU TC7SL32FU
NS(FAIRCHILD) j TinyLogic NC7S00P5 NC7SZ00P5 NC7S02P5 NC7SZ02P5 NC7S04P5 NC7SZ04P5 NC7SU04P5 NC7SZU04P5 NC7S08P5 NC7SZ08P5 NC7S14P5 NC7SZ14P5 NC7S32P5 NC7SZ32P5 NC7S86P5 NC7SZ86P5
Fast
Note) Not all types are compared. For details, see individual specifications.
S-75L** S-75V** NC7SZ** TC7S** NC7S** TC7SH** TC7SL** SN74AHC1**
FAQ No.: 17S75001
6
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