ncs7101 ON Semiconductor, ncs7101 Datasheet

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ncs7101

Manufacturer Part Number
ncs7101
Description
1.8 V Rail-to-rail Operational Amplifier
Manufacturer
ON Semiconductor
Datasheet

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NCS7101
1.8 Volt Rail−to−Rail
Operational Amplifier
on both the input and output. The output can swing within 50 mV of
each rail. This rail−to−rail operation enables the user to make full use
of the entire supply voltage range available. It is designed to work at
very low supply voltages (1.8 V and ground), yet can operate with a
supply of up to 10 V and ground. The NCS7101 is available in the
space saving SOT−23−5 package with two industry standard pinouts.
Features
Typical Applications
© Semiconductor Components Industries, LLC, 2006
February, 2006 − Rev. 3
The NCS7101 operational amplifier provides rail−to−rail operation
and Ground)
0.9 MHz at 1.8 V
Low Voltage, Single Supply Operation (1.8 V and Ground to 10 V
1.0 pA Input Bias Current
Unity Gain Bandwidth of 1.0 MHz at 5.0 V,
Output Voltage Swings Within 50 mV of Both Rails @ 1.8 V
No Phase Reversal on the Output for Over−Driven Input Signals
Input Offset Trimmed to 1.0 mV
Low Supply Current (I
Works Down to Two Discharged NiCd Battery Cells
ESD Protected Inputs Up to 2.0 kV
Pb−Free Packages are Available
Dual NiCd/NiMH Cell Powered Systems
Portable Communication Devices
Low Voltage Active Filters
Power Supply Monitor and Control
Interface to DSP
1.8 V
10 V
to
Rail to Rail Input
This device contains 68 active transistors.
Figure 1. Typical Application
D
= 1.0 mA)
+
Rail to Rail Output
1
NCS7101SN1T1
NCS7101SN1T1G
NCS7101SN2T1
NCS7101SN2T1G
†For information on tape and reel specifications,
including part orientation and tape sizes, please
refer to our Tape and Reel Packaging Specifications
Brochure, BRD8011/D.
Non−Inverting
Non−Inverting
OPERATIONAL AMPLIFIER
Device
(Note: Microdot may be in either location)
5
1
AAx AYWG
ORDERING INFORMATION
5
V
V
Input
Input
V
V
OUT
OUT
LOW VOLTAGE
MARKING DIAGRAM
RAIL−TO−RAIL
CC
PIN CONNECTIONS
EE
Style 1 Pin Out (SN1T1)
Style 2 Pin Out (SN2T1)
G
http://onsemi.com
1
1
2
3
1
2
3
SOT−23−5
SOT−23−5
SOT−23−5
SOT−23−5
(Pb−Free)
(Pb−Free)
Package
+ −
+ −
x = C for SN1
A = Assembly Location
Y = Year
W = Work Week
G = Pb−Free Package
Publication Order Number:
SN SUFFIX
SOT−23−5
CASE 483
D for SN2
5
4
5
4
3000 Tape & Reel
V
Inverting
Input
V
Inverting
Input
EE
CC
(7 inch Reel)
Shipping
NCS7101/D

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ncs7101 Summary of contents

Page 1

... This rail−to−rail operation enables the user to make full use of the entire supply voltage range available designed to work at very low supply voltages (1.8 V and ground), yet can operate with a supply and ground. The NCS7101 is available in the space saving SOT−23−5 package with two industry standard pinouts. Features • ...

Page 2

... −5 25° 600 2 −40°C to 85° 600 2 NCS7101 Symbol IDR V ICR qJA stg V ESD − 300 GND 25°C, unless otherwise noted.) ...

Page 3

... −2 25° −40°C to 85° 5 −5 25° −40°C to 85°C A NCS7101 to GND 25°C, unless otherwise noted Symbol V OL CMRR PSRR http://onsemi.com 3 Min Typ Max Unit V − ...

Page 4

... Power Bandwidth (V = 4.0 Vpp Total Harmonic Distortion (V = 4.0 Vpp 1.0 kHz kHz Differential Input Resistance ( Differential Input Capacitance ( Equivalent Input Noise Voltage (Freq = 1.0 kHz) NCS7101 to GND 25°C, unless otherwise noted Symbol = 1. GBW Am φ 2.0 kW 1.0) THD ...

Page 5

... Figure 2. Output Saturation Voltage versus Load Resistance 1000 100 10 1.0 0 AMBIENT TEMPERATURE (°C) A Figure 4. Input Bias Current versus Temperature t, time (500 ns/Div) Figure 6. Transient Response NCS7101 −0.4 = ±2 ±2 −0 GND GND 25°C ...

Page 6

... Figure 10. Power Supply Rejection versus Frequency 140 Output Pulsed Test 120 at 3% Duty Cycle 100 ±1.0 ±2.0 ±3 SUPPLY VOLTAGE (V) S Figure 12. Output Short Circuit Sourcing Current versus Supply Voltage NCS7101 100 1 25° − ...

Page 7

... Rate 1.2 = ±2.5 V −Slew Rate 0.8 0.4 = ±0.9 V +Slew Rate ±0.9 V −Slew Rate −50 − AMBIENT TEMPERATURE (°C) A Figure 18. Slew Rate versus Temperature (Avg.) NCS7101 1000 V 1 100 V 0.1 = ±2 4.0 V out PP 0. 25° ...

Page 8

... DIFFERENTIAL SOURCE RESISTANCE (W) t Figure 22. Gain and Phase Margin versus Differential Source Resistance 12 10 8.0 6.0 4.0 2 2.0 4.0 6.0 V − SUPPLY VOLTAGE ( Figure 24. Output Voltage Swing versus Supply Voltage NCS7101 − 100 25°C − −100 50 −140 40 −180 30 −220 20 − ...

Page 9

... 25° −5 −10 −15 −20 −1.0 −0.8 −0.6 −0.4 −0 COMMON MODE INPUT VOLTAGE (V) CM Figure 28. Input Offset Voltage versus Common Mode Input Voltage Range, V NCS7101 20 = ±2 ∞ 1 25° − ...

Page 10

... The ultra low input bias current of the NCS7101 allows the use of extremely high value source and feedback resistor without reducing the amplifier’s gain accuracy. These high ...

Page 11

... NCS7101 Figure 32. Small Signal Transient Response with Large Capacitive Load Figure 33. Small Signal Transient Response with Large Capacitive Load and Isolation Resistor. http://onsemi.com 11 ...

Page 12

... 470 470 k Figure 35. Variable Duty Cycle Pulse Generator NCS7101 Output Voltage Timing Capacitor Voltage f = 1.5 kHz O The non−inverting input threshold levels are set so that the capacitor voltage oscillates between 1/3 and 2 This requires the resistors R CC equal value ...

Page 13

... Figure 38. High Compliance Current Sink 5 sense 1 1 − 3.3 k Figure 39. High Side Current Sense NCS7101 Figure 37. Voice Band Filter V supply sink R sense − R sense R ...

Page 14

... L Figure 40. Current Source − + Figure 41. Current to Voltage Converter − Figure 42. Voltage to Current Converter http://onsemi.com NCS7101 Note that − ...

Page 15

... NCS7101 − Figure 43. Differential Amplifier − Figure 44. Summing Amplifier http://onsemi.com and the equation simplifies to ...

Page 16

... G 0.85 1.05 0.0335 0.0413 H 0.013 0.100 0.0005 0.0040 J 0.10 0.26 0.0040 0.0102 K 0.20 0.60 0.0079 0.0236 L 1.25 1.55 0.0493 0.0610 2.50 3.00 0.0985 0.1181 2.4 0.094 mm inches ON Semiconductor Website: http://onsemi.com Order Literature: http://www.onsemi.com/litorder For additional information, please contact your local Sales Representative. NCS7101/D ...

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