25.65CHF
ab 10 23.43CHF

NTE725 Dual Low Noise Preamp/OP Amp

Bestell-Nr.:    NTE725


Verfügbarkeit:     PICTURE_ONLY_FULL
  Sofort lieferbar!


NTE725 Dual Low Noise Preamp/OP Amp

Formerly: ECG725

Integrated Circuit Dual Low Noise Preamp/OP Amp

Description:

The NTE725 consists of two identical high-gain operational amplifiers cinstructed on a single chip. These 3-stage amplifiers use Class A PNP transistor output stages with uncommitted collectors. This enables a variety of loads to be employed for general purpose applications from DC to 10MHz, where two high end performance operation amplifiers are required. In addition, the outputs may be wired-OR for use as a dual comparator or they may function as diodes in low threshold rectifying circuits such as absolute value amplifiers, peak detectors, etc.

Features:

  • Single or Dual Supply Operation
  • Low Power Consumption
  • High Gain
  • Large Common Mode Range:  +11V, -13V
  • Excellent Gain Stability vs. Supply Voltage
  • No Latch-Up
  • Output Short Circuit Protected
Absolute Maximum Ratings:
Supply Voltage     ±18V
Internal Power Dissipation     650mW
Differential Input Voltage     ±5V
Input Voltage (Note 1)     ±15V
Output Short Circuit Duration (TA = +25°C, Note 2)     30sec
Operating Temperature Range     0° to +70°C
Storage Temperature Range     -55° to +125°C
Lead Temperature (During Soldering, 60sec)     +260°C

Note 1.For supply voltages less than ±15V, the absolute maximum input voltage is equal to the supply voltage.
Note 2.Short circuit may be to GND or either supply.

Electrical Characteristics: (TA = +25°C, V+ = ±15V, RL = 5k Ohms to Pin7 unless otherwise specified)

Parameter Test Conditions Min Typ Max Unit
Input Offset Voltage RS = 200 Ohms - 1.0 6.0 mV
V+ = ±4V, RL = 10k Ohms to Pin7, RS = 200 Ohms - 1.0 6.0 mV
Input Offset Current   - 50 1000 nA
V+ = ±4V, RL = 10k Ohms to Pin7 - 50 1000 nA
Input Bias Current   - 0.3 2.0 µA
V+ = ±4V, RL = 10k Ohms to Pin7 - 300 - µA
Input Resistance   37 150 - k Ohms
Large Signal Voltage Gain VOUT = ±10V 6.5k 20k - V / V
V+ = ±4V, RL = 10k Ohms to Pin7, VOUT = ±2V 2.5k 15k - V / V
Positive Output Voltage Swing   +12 +13 - V
V+ = ±4V, RL = 10k Ohms to Pin7 +2.5 +2.8 - V
Negative Output Voltage Swing   -14 -15 - V
V+ = ±4V, RL = 10k Ohms to Pin7 -3.6 -4.0 - V
Output Resistance f = 1kHz - 5.0 - k Ohm
Common Mode Rejection Ratio RS = 200 Ohms, VIN = +11.5V to -13.5V 70 90 - dB
Supply Voltage Rejection Ratio RS = 200 Ohms - 50 - µV / V
Input Voltage Range   -10 - +11 V
Internal Power Dissipation V+ = ±4V, RL = 10k Ohms to Pin7, VOUT = 0 - 20 - mW
Supply Current VOUT = 0 - 9 14 mA
V+ = ±4V, RL = 10k Ohms to Pin7, VOUT = 0 - 2.5 - mA
Broadband Noise Figure RS = 10k Ohms, BW = 10Hz to 10kHz - 2.0 - dB
Turn-On Delay Open Loop, VIN = ±20mV - 0.2 - µs
Turn-Off Delay Open Loop, VIN = ±20mV - 0.3 - µs
Slew Rate (Unity Gain) C1 = 0.02µF, R1 = 33 Ohm, C2 = 10pF - 1.0 - V / µs
Channel Separation RS = 1k Ohm, f = 10kHz - 140 - dB



This product is discontinued.
Only while stock lasts.


NTE-ECG replacement list as pdf-file
Diagrams and Info of most NTE-ECG Components


Unser Halbleiter Katalog (ohne NTE-Sortiment)
NTE Sortiment (unser ganzes Sortiment)
Einzel-Halbleiter (ganzes Sortiment)

Fehler und Änderungen bei technischen Daten, Abmessungen und Preisen bleiben vorbehalten. Bild kann vom Original abweichen.
Hat sich ein Fehler eingeschlichen? Bitte hier melden


Suchen Sie nach einem Ersatztypen?

Anmerkung zu den NTE/ECG Austauschhalbleiter:
NTE-Austauschhalbleiter (früher ECG Philips und Sylvania) sind sorgfältig ausgesuchte und erprobte Halbleiter, die einen sicheren Ersatz für Originaltypen verschiedenster Hersteller und Ursprünge für fast alle Applikationsbereiche im Wartungsdienst bieten.
Alle NTE-Austausch-Halbleiter sind einzeln in durchsichtigen Plastikbeuteln verpackt, auf welchen die wichtigsten Daten vermerkt sind.

Anzahl:
Bewertungen

Kunden, die dieses Produkt gekauft haben, haben auch folgende Produkte gekauft:
Schnellsuche
0 Waren
Hersteller
Hersteller Info
andere Produkte
Sprachen
English Deutsch
Währungen