LM324 SS | Alldatasheet

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Technical content

Quad Operational Amplifier – LM324 Low power, Quad Operational Amplifier in bare die form Rev 1.0 16/06/18 Features: /g3 The LM324 consists of x4 independent, frequency compensated operational amplifiers specifically designed to operate from a single power supply over a wide input voltage range. Input common-mode voltage range includes ground and output voltage can also swing to ground. Unity gain crossover frequency and input bias current are temperature-compensated to provide high stability. Split-supply operation is also possible with supply current drain independent of voltage supplied for low power consumption. The part operates over the commercial temperature range.

Description

ƒ Temperature compensated bandwidth (unity gain) ƒ Temperature compensated I B(MAX): 500nA ƒ Wide power supply range, single supply: 3V-32V or dual supplies: ±1.5V to ±16V ƒ Low V OS: 2mV, and IOS : 5nA ƒ Differential input voltage range equal to the power supply voltage ƒ Large output voltage: 0V to V CC -1.5V swing ƒ Input Common-Mode Voltage range includes GND Ordering Information Die Dimensions in µm (mils) The following part suffixes apply: 1270 (50) 1200 (47) ƒ No suffix - MIL-STD-883 /2010B Visual Inspection For a higher electrical grade version of this product please see LM324A For High Reliability versions of this product please see LM124 and LM124A Supply Formats: Mechanical Specification ƒ Default – Die in Waffle Pack (400 per tray capacity) Die Size (Unsawn) 1270 x 1200 µm 50 x 47 mils ƒ Sawn Wafer on Tape – On request 90 x 90 µm Minimum Bond Pad Size 3.54 x 3.54 mils ƒ Unsawn Wafer – On request 280 (±10) µm Die Thickness 11.02 (±0.39) mils ƒ Die Thickness <> 280µm(11 Mils) – On request Top Metal Composition Al ƒ Assembled into Ceramic Package – On request Back Metal Composition N/A – Bare Si Page 1 of 6 www.siliconsupplies.com

www.siliconsupplies.com d Quad Operational Amplifier – LM324 Rev 1.0 16/06/18 COORDINATES (µm) PAD FUNCTION X Y

1 OUTPUT 1 532 84

2 INPUT 1‐ 532 280

3 INPUT 1+ 532 496

4 VCC 0 497

5 INPUT 2+ ‐ 532 496

6 INPUT 2‐ ‐532 280

7 OUTPUT 2 ‐ 532 84

8 OUTPUT 3 ‐ 532 ‐ 84

9 INPUT 3‐ ‐532 ‐ 280

10 INPUT 3+ ‐ 532 ‐ 496

11 GND 0 ‐ 497

12 INPUT 4+ 532 ‐ 496

13 INPUT 4‐ 532 ‐ 280

14 OUTPUT 4 532 ‐ 84

CHIP BACK POTENTIAL IS FLOAT Pad Layout and Functions Logic Diagram 1270µm (50.00 mils) 1200µm (47.24 mils) DIE ID 34 5 10 11 12 0,0 PAD 4 = VCC PAD 11 = GND IN 1- (2) IN 1+ (3) OUT 1 IN 2+ (5) IN 2- (6) OUT 2 IN 3- (9) IN 3+ (10) OUT 3 IN 4+ (12) IN 4- (13) OUT 4

www.siliconsupplies.com Quad Operational Amplifier – LM324 Rev 1.0 16/06/18 PARAMETER SYMBOL MIN MAX UNITS DC Supply Voltage VCC ±2.5 or 5 ±16 or 32 V Operating Temperature TA 0 +70 °C Recommended Operating Conditions Absolute Maximum Ratings1 PARAMETER SYMBOL VALUE UNIT Supply Voltage – Single Supply 40 V Supply Voltage – Split Supply VCC ±20 V Input Differential Voltage Range VIDR 40 V Input Common Mode Voltage Range VICR -0.3 to 40 V Output Short Circuit to Ground - Continuous - Junction Temperature TJ 150 °C Input Current (per pin)2 I IN 50 mA LIMITS PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS 25°C - 2 7 Input Offset Voltage VIO VO =1.4V, RS = 0Ω, VCC = 5V to 30V VICM=0V to VCC-1.5V 70°C - - 9 mV Input Offset Voltage Drift ΔVIO /ΔT RS = 0Ω - 7 - µV/°C 25°C - 5 50 Input Offset Current IIO II(+) or II(-), VCM = 0V 70°C - - 150 nA Input Offset Current Drift ΔIIO /ΔT RS = 0Ω - 10 - pA/°C 25°C - 45 150 Input Bias Current IIB I I(+) or II(-), VCM = 0V 70°C - - 500 nA RL=∞,VCC = 5V, VO = 0V - 0.7 1.2 Supply Current ICC RL=∞,VCC=30V, VO = 0V - 1.5 3 mA 25°C 0 - VCC -1.5 Common Mode Input Voltage range3 VICR VCC = 30V 70°C 0 - VCC -2 V Differential Input Voltage range3 VIDR All VIN ≥ GND or VCC- (if used) - - VCC V 3. The input signal voltage and the input common mode voltage should not be allowed to go negative by more than 0.3V. The positive limit of the common mode voltage range is VCC - 1.5V, but either or both inputs can go to +32V without damage. 1. Operation above the absolute maximum rating may cause device failure. Operation at the absolute maximum ratings, for extended periods, may reduce device reliability. 2. VIN < -0.3V. This input current exists when voltage is driven negative at any of the input leads