Features: *Short Circuit Protected Outputs*True Differential Input Stage*Single Supply Operation: 3.0 V to 32 V (LM258/LM358) 3.0 V to 26 V (LM2904, A, V)*Low Input Bias Currents*Internally Compensated*Common Mode Range Extends to Negative Supply*Single and Split Supply Operation*ESD Clamps on th...
LM2904V: Features: *Short Circuit Protected Outputs*True Differential Input Stage*Single Supply Operation: 3.0 V to 32 V (LM258/LM358) 3.0 V to 26 V (LM2904, A, V)*Low Input Bias Currents*Internally Compens...
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LM158, LM158A LM258, LM258A LM358, LM358A LM2904V |
LM2904 | UNIT | ||
Supply voltage, VCC (see Note 1) | ±16 or 32 | ±13 or 26 | V | |
Differential input voltage, VID (see Note 2) | ±32 | ±26 | V | |
Input voltage, VI (either input) | −0.3 to 32 | −0.3 to 26 | V | |
Duration of output short circuit (one amplifier) to ground at (or below) 25°C free-air temperature (VCC 15 V) (see Note 3) |
Unlimited | Unlimited | ||
Package thermal impedance, JA (see Notes 4 and 5) | D package | 97 | 97 | °C/W |
DGK package | 172 | 172 | ||
P package | 85 | 85 | ||
PS package | 95 | 95 | ||
PW package | 149 | 149 | ||
Package thermal impedance, JC (see Notes 6 and 7) | FK package | 5.61 | °C/W | |
JG package | 14.5 | |||
Operating free-air temperature range, TA | LM158, LM158A | −55 to 125 | ||
LM258, LM258A | −25 to 85 | |||
LM358, LM358A | 0 to 70 | |||
LM2904 | −40 to 125 | −40 to 125 | ||
Operating virtual junction temperature, TJ | 150 | 150 | ||
Case temperature for 60 seconds | FK package | 260 | ||
Lead temperature 1,6 mm (1/16 inch) from case for 60 seconds | JG package | 300 | 300 | |
Storage temperature range, Tstg | −65 to 150 | −65 to 150 |
These devices LM2904V consist of two independent, high-gain, frequency-compensated operational amplifiers designed to operate from a single
supply over a wide range of voltages. Operation from split supplies also is possible if the difference between the two supplies is 3 V to 32 V (3 V to 26 V for the LM2904), and VCC is at least 1.5 V more positive than the input common-mode voltage. The low supply-current drain is independent of the magnitude of the supply voltage.
Applications include transducer amplifiers, dc amplification blocks, and all the conventional operational amplifier circuits that now can be implemented more easily in single-supply-voltage systems. For example, these devices can be operated directly from the standard 5-V supply used in digital systems and easily can provide the required interface electronics without additional ±5-V supplies.