amplifiers comparators

LM2904

Every spec below is cited to the manufacturer datasheet. Pick your exact ordering code, compare the closest alternatives, then ask the assistant what it means for your design.

00 — Overview

What the LM2904 family does

The LM2904x family comprises low-power dual operational amplifiers available in standard, automotive, and high-temperature grades. These devices feature internal frequency compensation, a wide bandwidth of 1.1 MHz, and a large DC voltage gain of 100 dB. They operate from a single supply of 3 to 30 V while drawing only 6 µA per amplifier. The input bias current is exceptionally low at 20 nA, and the input common-mode range extends to the negative rail. Designed for automotive and industrial control systems, these amplifiers are typically used as transducer amplifiers, DC gain blocks, and general-purpose op amp circuits in single-supply applications.

Next step
Start building with LM2904 → Every number above is cited straight from the datasheet — ask what they mean for your design, and the assistant answers from the same source documents.
Ordering code:
01 — Key specifications

LM2904 datasheet parameters

ParameterMinTypMaxConditionsSource
quiescent current 700 µA 1.2 mA icc; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
output current 20 mA 40 mA 60 mA isource; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
supply voltage range 3 V 30 V Family Comparison TI datasheet, p. 1 — Family Comparison
abs max voltage (abs max) -32 V 32 V TI datasheet, p. 4 — 5.1 Absolute Maximum Ratings
input offset voltage drift 7 µV/°C 30 µV/°C $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
input offset voltage 2 mV 7 mV Input Offset VoltageVCC = 5.0 V to 30 V, VIC = 0 V to VCC-1.7 V, VO≈ 1.4 V, RS = 0 ΩTA = 25°CTA = Thigh(Note 8)TA = Tlow(Note 8); vio onsemi datasheet, p. 5
gain bandwidth 700 kHz 1.1 MHz gbp; Electrical characteristics ST datasheet, p. 7 — Electrical characteristics
cmrr 70 dB 85 dB cmr; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
operating temperature -55 °C 125 °C Family Comparison TI datasheet, p. 1 — Family Comparison
input offset current drift 10 pA/°C TA = Thigh to Tlow, typical onsemi datasheet, p. 5
input offset current 500 pA 4 nA TA = -40°C to +85°C(1); ios TI datasheet, p. 6 — 5.5 Electrical Characteristics: LM358B and LM358BA
input bias current 20 nA 150 nA iib; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
slew rate 0.3 V/µs 0.6 V/µs $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
psrr 115 dB ST datasheet, p. 10
input voltage noise density 40 nV/√Hz RS = 100 Ω, Vi = 0 V, f = 1 kHz (see Figure 12); vn; 6.9 Operating Conditions TI datasheet, p. 8 — 6.9 Operating Conditions
output voltage high 24 V VCC = \text{MAX}, Non-V device; Full range; T_A(2) = 23; r{ k}; 6.6 Electrical Characteristics for LM2904 TI datasheet, p. 6 — 6.6 Electrical Characteristics for LM2904
output voltage low 5 mV 20 mV vol; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
channel count 2 onsemi datasheet, p. 1
02 — FAQ

LM2904 frequently asked questions

What is the absolute maximum voltage for the LM2904?

The absolute maximum voltage is 32 V.

What is the channel count of the LM2904?

The channel count is 2.

What is the CMRR of the LM2904 when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL connected to GND, and Tamb = 25 °C?

The CMRR is 85 dB.

What is the gain bandwidth product (gbp) specified in the Electrical characteristics?

The gain bandwidth product is 1.1 MHz.

What is the input bias current (iib) of the LM2904 when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The input bias current is 20 nA.

What is the input offset current (ios) for the LM2904 at TA = -40°C to +85°C(1)?

The input offset current (ios) is 500 pA at TA = -40°C to +85°C(1).

What is the typical input offset current drift for the LM2904 when TA ranges from Thigh to Tlow?

The typical input offset current drift is 10 pA/°C when TA = Thigh to Tlow.

What is the input offset voltage when VCC = 5.0 V to 30 V, VIC = 0 V to VCC-1.7 V, VO≈ 1.4 V, RS = 0 Ω, and TA = 25°C?

The input offset voltage is 2 mV.

What is the input offset voltage drift for the LM2904 when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL connected to GND, and Tamb = 25 °C?

The input offset voltage drift is 7 µV/°C.

What is the input voltage noise density when RS = 100 Ω, Vi = 0 V, and f = 1 kHz?

The input voltage noise density is 40 nV/√Hz.

What is the maximum operating temperature for the LM2904 under Family Comparison conditions?

The maximum operating temperature is 125 °C.

What is the source output current (Isource) of the LM2904 when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The source output current is 40 mA.

01 — Key specifications

LM2904A datasheet parameters

ParameterMinTypMaxConditionsSource
quiescent current 700 µA 1.2 mA icc; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
output current 20 mA 40 mA 60 mA isource; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
supply voltage range 3 V 30 V vcc; Operating conditions ST datasheet, p. 5 — Table 2. Operating conditions
input offset voltage drift 7 µV/°C 30 µV/°C $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
input offset voltage 2 mV 7 mV Input Offset VoltageVCC = 5.0 V to 30 V, VIC = 0 V to VCC-1.7 V, VO≈ 1.4 V, RS = 0 ΩTA = 25°CTA = Thigh(Note 8)TA = Tlow(Note 8); vio onsemi datasheet, p. 5
gain bandwidth 700 kHz 1.1 MHz gbp; Electrical characteristics ST datasheet, p. 7 — Electrical characteristics
cmrr 70 dB 85 dB cmr; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
operating temperature -40 °C 125 °C toper; Operating conditions ST datasheet, p. 5 — Table 2. Operating conditions
input offset current drift 10 pA/°C TA = Thigh to Tlow, typical onsemi datasheet, p. 5
input offset current 2 nA 30 nA iio; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
input bias current 20 nA 150 nA iib; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
slew rate 0.3 V/µs 0.6 V/µs $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
psrr 115 dB ST datasheet, p. 10
input voltage noise density 55 nV/√Hz en; Electrical characteristics ST datasheet, p. 7 — Electrical characteristics
output voltage high 26 V 27 V voh; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
output voltage low 5 mV 20 mV vol; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
channel count 2 onsemi datasheet, p. 1
02 — FAQ

LM2904A frequently asked questions

What is the channel count of the LM2904A?

The channel count is 2.

What is the CMRR of the LM2904A when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL connected to GND, and Tamb = 25 °C?

The CMRR is 85 dB.

What is the gain bandwidth product (gbp) specified in the Electrical characteristics?

The gain bandwidth product (gbp) is 1.1 MHz.

What is the input bias current (iib) for the LM2904A when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The input bias current is 20 nA.

What is the input offset current (iio) when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL connected to GND, and Tamb = 25 °C?

The input offset current is 2 nA.

What is the input offset current drift for the LM2904A?

The input offset current drift is 10 pA/°C at TA = Thigh to Tlow, typical.

What is the input offset voltage when VCC = 5.0 V to 30 V, VIC = 0 V to VCC-1.7 V, VO≈ 1.4 V, RS = 0 Ω, TA = 25°C, TA = Thigh(Note 8), and TA = Tlow(Note 8)?

The input offset voltage is 2 mV.

What is the input offset voltage drift for the LM2904A under the conditions of $ VCC^{+} = 5 ext{ V} $, $ VCC-^{-} = ext{ground} $, $ VO = 1.4 ext{ V} $, $ RL $ connected to GND, and $ Tamb = 25 ext{ }^{ ext{o}} ext{C} $?

The input offset voltage drift is 7 µV/°C.

What is the input voltage noise density (en) listed in the Electrical characteristics?

The input voltage noise density (en) is 55 nV/√Hz.

What is the maximum operating temperature (toper) for the LM2904A?

The operating temperature (toper) is 125 °C.

What is the source output current (Isource) of the LM2904A when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The source output current (Isource) is 40 mA.

What is the output voltage high (VOH) when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The output voltage high is 27 V.

01 — Key specifications

LM2904AW datasheet parameters

ParameterMinTypMaxConditionsSource
quiescent current 700 µA 1.2 mA icc; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
output current 20 mA 40 mA 60 mA isource; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
supply voltage range 3 V 30 V vcc; Operating conditions ST datasheet, p. 5 — Table 2. Operating conditions
input offset voltage drift 7 µV/°C 30 µV/°C $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
input offset voltage 2 mV 7 mV vio; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
gain bandwidth 700 kHz 1.1 MHz gbp; Electrical characteristics ST datasheet, p. 7 — Electrical characteristics
cmrr 70 dB 85 dB cmr; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
operating temperature -40 °C 125 °C toper; Operating conditions ST datasheet, p. 5 — Table 2. Operating conditions
input offset current drift 10 pA/°C ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
input offset current 2 nA 30 nA iio; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
input bias current 20 nA 150 nA iib; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
slew rate 0.3 V/µs 0.6 V/µs $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
psrr 115 dB ST datasheet, p. 10
input voltage noise density 55 nV/√Hz en; Electrical characteristics ST datasheet, p. 7 — Electrical characteristics
output voltage high 26 V 27 V voh; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
output voltage low 5 mV 20 mV vol; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
channel count 2 ST datasheet, p. 1
02 — FAQ

LM2904AW frequently asked questions

What is the channel count of the LM2904AW?

The channel count is 2.

What is the CMRR of the LM2904AW when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL connected to GND, and Tamb = 25 °C?

The CMRR is 85 dB.

What is the gain bandwidth product (gbp) of the LM2904AW under Electrical characteristics?

The gain bandwidth product (gbp) is 1.1 MHz.

What is the input bias current (iib) of the LM2904AW when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The input bias current is 20 nA.

What is the input offset current (iio) when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The input offset current is 2 nA.

What is the input offset current drift for the LM2904AW?

The input offset current drift is 10 pA/°C.

What is the input offset voltage (vio) when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The input offset voltage is 2 mV.

What is the input offset voltage drift for the LM2904AW?

The input offset voltage drift is 7 µV/°C when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C.

What is the input voltage noise density (en) listed in the Electrical characteristics?

The input voltage noise density (en) is 55 nV/√Hz.

What is the maximum operating temperature (toper) under operating conditions?

The operating temperature (toper) under operating conditions is 125 °C.

What is the output current (isource) when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The output current is 40 mA.

What is the output voltage high (VOH) when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The output voltage high is 27 V.

01 — Key specifications

LM2904W datasheet parameters

ParameterMinTypMaxConditionsSource
quiescent current 700 µA 1.2 mA icc; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
output current 20 mA 40 mA 60 mA isource; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
supply voltage range 3 V 30 V vcc; Operating conditions ST datasheet, p. 5 — Table 2. Operating conditions
input offset voltage drift 7 µV/°C 30 µV/°C $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
input offset voltage 2 mV 7 mV vio; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
gain bandwidth 700 kHz 1.1 MHz gbp; Electrical characteristics ST datasheet, p. 7 — Electrical characteristics
cmrr 70 dB 85 dB cmr; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
operating temperature -40 °C 125 °C toper; Operating conditions ST datasheet, p. 5 — Table 2. Operating conditions
input offset current drift 10 pA/°C ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
input offset current 2 nA 30 nA iio; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
input bias current 20 nA 150 nA iib; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
slew rate 0.3 V/µs 0.6 V/µs $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
psrr 115 dB ST datasheet, p. 10
input voltage noise density 55 nV/√Hz en; Electrical characteristics ST datasheet, p. 7 — Electrical characteristics
output voltage high 26 V 27 V voh; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
output voltage low 5 mV 20 mV vol; $ VCC^{+} = 5 \, V $, $ VCC-^{-} = \text{ground} $, $ VO = 1.4 \, V $, $ RL $ connected to GND, $ Tamb = 25 \, ^{\circ}C $ (unless otherwise specified) ST datasheet, p. 6 — Table 3. , , , connected to GND, (unless otherwise specified)
channel count 2 ST datasheet, p. 1
02 — FAQ

LM2904W frequently asked questions

What is the channel count of the LM2904W?

The channel count is 2.

What is the Common Mode Rejection Ratio (CMRR) of the LM2904W?

The CMRR is 85 dB when cmr; $ VCC^{+} = 5 ext{ V} $, $ VCC-^{-} = ext{ground} $, $ VO = 1.4 ext{ V} $, $ RL $ connected to GND, $ Tamb = 25 ext{ }^{ ext{o}} ext{C} $ (unless otherwise specified).

What is the gain bandwidth product (gbp) under Electrical characteristics?

The gain bandwidth product (gbp) is 1.1 MHz.

What is the input bias current (iib) for the LM2904W when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL connected to GND, and Tamb = 25 °C?

The input bias current is 20 nA.

What is the input offset current (iio) when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL connected to GND, and Tamb = 25 °C?

The input offset current is 2 nA.

What is the input offset current drift for the LM2904W?

The input offset current drift is 10 pA/°C.

What is the input offset voltage (vio) when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The input offset voltage is 2 mV.

What is the input offset voltage drift for the LM2904W when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL connected to GND, and Tamb = 25 °C?

The input offset voltage drift is 7 µV/°C.

What is the input voltage noise density (en) listed in the Electrical characteristics?

The input voltage noise density (en) is 55 nV/√Hz.

What is the maximum operating temperature (toper) under operating conditions?

The maximum operating temperature (toper) under operating conditions is 125 °C.

What is the source output current (Isource) of the LM2904W when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The source output current is 40 mA.

What is the output voltage high (VOH) when VCC+ = 5 V, VCC- = ground, VO = 1.4 V, RL is connected to GND, and Tamb = 25 °C?

The output voltage high is 27 V.

03 — Alternatives

Closest matches to LM2904

LM258 6.3× lower output voltage high, 2.0× lower slew rate, 1.4× lower input voltage noise density
LM158 2.1× lower quiescent current, 2.0× lower slew rate, 1.4× lower input voltage noise density
LM258A 2.1× lower quiescent current, 2.0× lower input offset voltage, 2.0× lower slew rate
LM124 2.5× higher output voltage low, 2.1× lower quiescent current, 1.6× lower input voltage noise density
LM324ADR 2.1× lower quiescent current, 1.5× higher input offset voltage, 1.3× higher output voltage high
AS321 4.3× lower quiescent current, 2.5× higher input offset current, 1.9× lower operating temperature
LM158DR 2.3× higher input bias current, 1.5× lower quiescent current, 1.5× higher input offset current
LM321A 20.0× lower input offset voltage, 13.6× lower quiescent current, 1.4× higher cmrr
Design help What do I need around the LM2904? →