SlideShare a Scribd company logo
1 of 19
Download to read offline
HA17741/PS
General-Purpose Operational Amplifier
(Frequency Compensated)
Description
The HA17741/PS is an internal phase compensation high-performance operational amplifier, that is
appropriate for use in a wide range of applications in the test and control fields.
Features
• High voltage gain : 106 dB (Typ)
• Wide output amplitude : ±13 V (Typ) (at RL ≥ 2 kΩ)
• Shorted output protection
• Adjustable offset voltage
• Internal phase compensation
Ordering Information
Application Type No. Package
Industrial use HA17741PS DP-8
Commercial use HA17741
Pin Arrangement
−
+
1
2
3
4
8
7
6
5
NC
VCC
Vout
Offset
Null
Offset
Null
Vin(−)
Vin(+)
VEE
(Top view)
HA17741/PS
2
Circuit Structure
VCC
Vout
VEE
To VCCTo VCC
Offset Null
Vin(+)
Vin(−)
Pin5Pin1
Absolute Maximum Ratings (Ta = 25°C)
Ratings
Item Symbol HA17741PS HA17741 Unit
Power-supply voltage VCC +18 +18 V
VEE –18 –18 V
Input voltage Vin ±15 ±15 V
Differential input voltage Vin(diff) ±30 ±30 V
Allowable power dissipation PT 670 * 670 * mW
Operating temperature Topr –20 to +75 –20 to +75 °C
Storage temperature Tstg –55 to +125 –55 to +125 °C
Note: These are the allowable values up to Ta = 45°C. Derate by 8.3 mW/°C above that temperature.
HA17741/PS
3
Electrical Characteristics
Electrical Characteristics-1 (VCC = –VEE = 15 V, Ta = 25°C)
Item Symbol Min Typ Max Unit Test Condition
Input offset voltage VIO — 1.0 6.0 mV RS ≤ 10 kΩ
Input offset current IIO — 18 200 nA
Input bias current IIB — 75 500 nA
Power-supply ∆VIO/∆VCC — 30 150 µV/V RS ≤ 10 kΩ
rejection ratio ∆VIO/∆VEE — 30 150 µV/V RS ≤ 10 kΩ
Voltage gain AVD 86 106 — dB RL ≥ 2 kΩ, Vout = ±10 V
Common-mode
rejection ratio
CMR 70 90 — dB RS ≤ 10 kΩ
Common-mode input
voltage range
VCM ±12 ±13 — V RS ≤ 10 kΩ
Maximum output VOP-P ±12 ±14 — V RL ≥ 10 kΩ
voltage amplitude ±10 ±13 — V RL ≥ 2 kΩ
Power dissipation Pd — 65 100 mW No load
Slew rate SR — 1.0 — V/µs RL ≥ 2 kΩ
Rise time tr — 0.3 — µs Vin = 20 mV, RL = 2 kΩ,
Overshoot Vover — 5.0 — % CL = 100 pF
Input resistance Rin 0.3 1.0 — MΩ
Electrical Characteristics-2 (VCC = –VEE = 15 V, Ta = –20 to +75°C)
Item Symbol Min Typ Max Unit Test Condition
Input offset voltage VIO — — 9.0 mV RS ≤ 10 kΩ
Input offset current IIO — — 400 nA
Input bias current IIB — — 1,100 nA
Voltage gain AVD 80 — — dB RL ≥ 2 kΩ, Vout = ±10 V
Maximum output
voltage amplitude
VOP-P ±10 — — V RL ≥ 2 kΩ
HA17741/PS
4
IC Operational Amplifier Application Examples
Multivibrator
A multivibrator is a square wave generator that uses an RC circuit charge/discharge operation to generate
the waveform. Multivibrators are widely used as the square wave source in such applications as power
supplies and electronic switches.
Multivibrators are classified into three types, astable multivibrators, which have no stable states,
monostable multivibrators, which have one stable state, and bistable multivibrators, which have two stable
states.
1. Astable Multivibrator
−
+
R3
VCC
VEE
Vout
R1
R2
RL
Vin(−)
Vin(+)
C1
Figure 1 Astable Multivibrator Operating Circuit
Vin(+) 0
Vin(−) 0
Vout 0
Vertical:
Horizontal:
Circuit constants
R1 = 8 kΩ, R2 = 4 kΩ
R3 = 100 kΩ, C1 = 0.1 µF
RL = ∞
VCC = 15 V, VEE = −15 V
5 V/div
2 ms/div
Figure 2 HA17741 Astable Multivibrator Operating Waveform
HA17741/PS
5
2. Monostable Multivibrator
−
+
R3
VCC
VEE
Vout
RL
R1R2
C2
C1
Input
0
Figure 3 Monostable Multivibrator Operating Circuit
Vertical:
Horizontal:
Circuit constants
R1 = 10 kΩ, R2 = 2 kΩ
R3 = 40 kΩ, C1 = 0.47 µF
C2 = 0.0068 µF
RL = ∞
VCC = 15 V, VEE = −15 V
Trigger input 0
Vin(+) 0
Vin(−) 0
Vout 0
Figure 4 HA17741 Monostable Multivibrator Operating Waveform
3. Bistable Multivibrator
−
+
Vin(−)
Vin(+)
Input
0
C R2
RL
VEE
VCC
R1
Vout
Figure 5 Bistable Multivibrator Operating Circuit
HA17741/PS
6
Trigger input 0
Vin(+) 0
Vout 0
Vertical:
Horizontal:
Circuit constants
5 V/div
2 ms/div
R1 = 10 kΩ, R2 = 2 kΩ
C = 0.0068 µF
RL = ∞
VCC = 15 V, VEE = −15 V
Figure 6 HA17741 Bistable Multivibrator Operating Waveform
Wien Bridge Sine Wave Oscillator
−
+
R4
470 kΩ
1 MΩ
1S2074 H
R3C3
2SK16 H
500 Ω Rin
C2 R2 C1
R1
5.1 kΩ
RS
RL
50 kΩ
Vout
Figure 7 Wien Bridge Sine Wave Oscillator
VCC = 15 V,
VEE = −15 V
C1 = C2/10
R1 = 110 kΩ,
R2 = 11 kΩ
VOP-P = 2 V
VOP-P = 20 V
30 k
10 k
3 k
1 k
300
100
30
10
30 p 100 p 300 p 1,000 p 3,000 p 0.01 µ 0.03 µ 0.1 µ
C1 Capacitance (F)
OscillatorFrequencyf(Hz)
Figure 8 HA17741 Wien Bridge Sine Wave Oscillator f–C Characteristics
HA17741/PS
7
Vertical:
Horizontal:
Test circuit condition
5 V/div
0.5 ms/div
VCC = 15 V, VEE = −15 V
R1 = 110 kΩ, R2 = 11 kΩ
C1 = 0.0015 µF, C2 = 0.015 µF
Test results
f = 929.7 Hz, T.H.P = 0.06%
Figure 9 HA17741 Wien Bridge Sine Wave Oscillator Operating Waveform
Quadrature Oscillator
−
+
A2
−
+
A1
V4
R11
R22
R44
R33
V8
D1
D2
Cos outSin out
CT2
RT2
CT1
RT1 C1
R1
Figure 10 Quadrature Sine Wave Oscillator
Figure 10 shows the circuit diagram for a quadrature sine wave oscillator. This circuit consists of two
integrators and a limiter circuit, and provides not only a sine wave output, but also a cosine output, that is,
it also supplies the waveform delayed by 90°. The output amplitude is essentially determined by the limiter
circuit.
HA17741/PS
8
30
10
CT1 = 102 pF
CT2 = 99 pF
C1 = 106 pF
VCC = −VEE = 15 V
RT1 = 150 kΩ, RT2 = 150 kΩ
R1 = 151.2 kΩ
R11 = 15 kΩ, R22 = 10 kΩ
R33 = 15 kΩ, R44 = 10 kΩ
CT1, CT2, C1 → 1,000 pF
Use a Mylar capacitor.
With VOP-P = 21 VP-P and
R22 = R44 = 10 kΩ
the frequency of the sine
wave will be under 10 kHz.
Sin out
Cos out
3
1.0
0.3
0.1
0.03
0.01
100 p 1,000 p 0.01 µ 0.1 µ
CT1, CT2, C1 (F)
Figure 11 HA17741 Quadrature Sine Wave Oscillator
f−CT1, CT2, C1 Characteristics
Vertical:
Horizontal:
Circuit constants
5 V/div
0.2 ms/div
CT1 = 1000 pF (990), CT2 = 1000 pF (990)
RT1 = 150 kΩ, RT2 = 150 kΩ
C1 = 1000 pF (990), R1 = 160 kΩ
R11 = 15 kΩ, R22 = 10 kΩ
R33 = 16 V, R44 = 10 kΩ
VCC = 15 V, VEE = −15 V
← Sin out
0
← Cos out
Figure 12 Sine and Cosine Output Waveforms
Triangular Wave Generator
−
+
A1
−
+
A2
D1 R3
D2 R4
C
R1
R2
Vout2
VA
R1/R2
Vout1
Hysteresis comparator
Integrator
Figure 13 Triangular Wave Generator Operating Circuit
HA17741/PS
9
Vertical:
Horizontal:
Circuit constants
10 V/div
10 ms/div
VCC = 15 V, VEE = −15 V
R1 = 10 kΩ, R2 = 20 kΩ
R3 = 100 kΩ, R4 = 200 kΩ
C = 0.1 µF
0
0
0
Vout1
Vout2
VA
Figure 14 HA17741 Triangular Wave Generator Operating Waveform
Sawtooth Waveform Generator
+
−
+
−
Vin
R2
6 kΩ
VA
R4
3 kΩ
VB
R3
6 kΩ
R1
IR5
2.7 kΩ
R6
2.7 kΩ
C1 Q1
VR
5 kΩ
2SC1706 H
Vout
R7
2.7 kΩ
R8
2.7 kΩ
VC
Figure 15 Sawtooth Waveform Generator
0
0
VR
Vout
Vertical:
Horizontal:
Circuit constants
5 V/div
2 ms/div
VCC = 15 V, VEE = −15 V
R1 = 100 kΩ, C1 = 0.1 µF
Vin = 10 V
Figure 16 HA17741 Sawtooth Waveform Generator Operating Waveform
HA17741/PS
10
Characteristic Curves
2
3
1
5
6
±3 ±6 ±12 ±15
20
16
12
8
4
0
InputoffsetcurrentIIO(nA)
Power-supply voltage VCC, VEE (V)
Input Offset Current vs.
Power-Supply Voltage Characteristics
±9 ±18
R1
R2
R2
R1
R
a = 100%a = 0%
VEE
Voltage Offset Adjustment Circuit
±3 ±6 ±12 ±15
100
80
60
40
20
0
PowerdissipationPd(mW)
Power-supply voltage VCC, VEE (V)
Power Dissipation vs.
Power-Supply Voltage Characteristics
±9 ±18 ±3 ±6 ±12 ±15
120
110
100
90
80
70
VoltagegainAVD(dB)
Power-supply voltage VCC, VEE (V)
Voltage Gain vs.
Power-Supply Voltage Characteristics
±9 ±18
RL ≥ 2 kΩ
No load
HA17741/PS
11
±3 ±6 ±12 ±15
20
16
12
8
4
0
Maximumoutputvoltageamplitude
±VOP-P(V)
Power-supply voltage VCC, VEE (V)
Maximum Output Voltage Amplitude vs.
Power-Supply Voltage Characteristics
±9 ±18 −20 0 20 40 60
5
4
3
2
1
0
InputoffsetvoltageVIO(mV)
Ambient temperature Ta (°C)
Input Offset Voltage vs.
Ambient Temperature Characteristics
80
VCC = +15 V
VEE = −15 V
RS ≤ 10 kΩ
RL ≥ 2 kΩ
−V
O
P-P
+V
O
P-P
−20 0 20 40 60
20
16
12
8
4
0
InputoffsetcurrentIIO(nA)
Ambient temperature Ta (°C)
Input Offset Current vs.
Ambient Temperature Characteristics
80 −20 0 20 40 60
120
100
80
60
40
20
0
InputbiascurrentIIB(nA)
Ambient temperature Ta (°C)
Input Bias Current vs.
Ambient Temperature Characteristics
80
VCC = +15 V
VEE = −15 V
VCC = +15 V
VEE = −15 V
HA17741/PS
12
−20 0 20 40 60
120
110
100
90
80
70
VoltagegainAVD(dB)
Ambient temperature Ta (°C)
Voltage Gain vs.
Ambient Temperature Characteristics
80−20 0 20 40 60
90
80
70
60
50
40
PowerdissipationPd(mW) Power Dissipation vs.
Ambient Temperature Characteristics
80
Ambient temperature Ta (°C)
VCC = +15 V
VEE = −15 V
No load
VCC = +15 V
VEE = −15 V
RL ≥ 2 kΩ
−20 0 20 40 60
20
16
12
8
4
0
OutputshortedcurrentIOS(mA)
Ambient temperature Ta (°C)
Output Shorted Current vs.
Ambient Temperature Characteristics
80−20 0 40 60
16
12
8
4
0
−4
−8
−12
Maximumoutputvoltageamplitude
VOP-P(V)
Maximum Output Voltage Amplitude vs.
Ambient Temperature Characteristics
20 80
Ambient temperature Ta (°C)
VO = VCC
VCC = +15 V
VEE = −15 V
VCC = +15 V
VEE = −15 V
RL = 10 kΩ
HA17741/PS
13
200 500 1 k 2 k 5 k
16
12
8
4
0
−4
−8
−12
Maximumoutputvoltageamplitude
VOP-P(V)
Maximumoutputvoltageamplitude
VOP-P(V)
Maximum Output Voltage Amplitude vs.
Load Resistance Characteristics
10 k
Load resistance RL (Ω)
0
1.6
1.2
0.8
0.4
0
−0.4
−0.8
−1.2
−1.6
OutputvoltageVout(V)
20 40 60 80 100
VCC = +15 V
VEE = −15 V
VCC = +15 V, VEE = −15 V
R1 = 51 Ω, R2 = 5.1 kΩ
See the voltage offset
adjustment circuit diagram.
Offset Adjustment
Characteristics
Resistor position a (%)
R = 10 kΩ
R = 5 kΩ
R = 20 kΩ
500 1 k 50 k 100 k
28
24
20
16
12
8
4
Frequency f (Hz)
Maximum Output Voltage Amplitude vs.
Frequency Characteristics
200 2 k 5 k 10 k 20 k 200 k 500 k 100 500 1 k 50 k 100 k
1.4
1.2
1.0
0.8
0.6
0.4
0.2
0
InputresistanceRin(MΩ)
Frequency f (Hz)
Input Resistance vs.
Frequency Characteristics
200 2 k 5 k 10 k 20 k 200 k 500 k 1 M
0
VCC = +15 V
VEE = −15 V
RL = 10 kΩ
100
HA17741/PS
14
50 200 1 k 50 k 100 k
40
0
−40
−80
−120
−160
−200
Phaseφ(deg.)
Frequency f (Hz)
Phase vs.
Frequency Characteristics
100 2 k 5 k 10 k 20 k 200 k 500 k
−240
500 1 M 2 M
10 50 200 10 k 20 k
120
100
80
60
40
20
0
−20
VoltagegainAVD(dB)
Frequency f (Hz)
Voltage Gain vs
Frequency Characteristics
20 500 1 k 2 k 5 k 50 k 100 k
40
100 500 k 2 M200 k 1 M
VCC = +15 V
VEE = −15 V
Open loop
VCC = +15 V
VEE = −15 V
Open loop
10 50 200 10 k 20 k
120
100
80
60
40
20
0
VoltagegainAVD(dB)
Frequency f (Hz)
Voltage Gain and Phase vs.
Frequency Characteristics (1)
20 500 1 k 2 k 5 k 50 k 100 k
−20
100 200 k 500 k 1 M 2 M
10 50 200 10 k 20 k
120
100
80
60
40
20
0
−20
VoltagegainAVD(dB)
Frequency f (Hz)
Voltage Gain and Phase vs.
Frequency Characteristics (2)
20 500 1 k 2 k 5 k 50 k 100 k
−40
100 200 k 500 k 1 M 2 M
VCC = +15 V
VEE = −15 V
Closed loop gain = 60 dB
VCC = +15 V
VEE = −15 V
Closed loop gain = 40 dB0
−60
−120
−180
0
−60
−120
−180
Phaseφ(deg.)
Phaseφ(deg.)
AVD
φ φ
AVD
HA17741/PS
15
10 50 200 10 k 20 k
120
100
80
60
40
20
0
−20
VoltagegainAVD(dB)
Frequency f (Hz)
Voltage Gain and Phase vs.
Frequency Characteristics (3)
20 500 1 k 2 k 5 k 50 k 100 k100 200 k 500 k 1 M 2 M
0
−60
−120
−180
Phaseφ(deg.)
−40
VCC = +15 V
VEE = −15 V
Closed loop gain = 20 dB
AVD
φ
10 50 200 10 k 20 k
120
100
80
60
40
20
0
−20
VoltagegainAVD(dB)
Frequency f (Hz)
Voltage Gain and Phase vs.
Frequency Characteristics (4)
20 500 1 k 2 k 5 k 50 k 100 k100 200 k 500 k 1 M 2 M
0
−60
−120
−180
Phaseφ(deg.)
−40
VCC = +15 V
VEE = −15 V
Closed loop gain = 0 dB
AVD
φ
2
3
6
±3 ±6 ±9 ±12 ±15
0.8
0.6
0.4
0.2
0
Risetimetr(µs)
Power-supply voltage VCC, VEE (V)
Rise time vs.
Power-Supply Voltage Characteristics
±18
Impulse Response
Characteristics Test Circuit
Vout
RLCL
V2
90%
10%
Vout
tr
V1
Vout = × 100 (%)
V2
V1
Vin = 20 mV
RL = 2 kΩ
CL = 100 pF
Vin
HA17741/PS
16
±3 ±6 ±9 ±12 ±15
40
30
20
10
0
OvershootVover(%)
Power-supply voltage VCC, VEE (V)
Overshoot vs.
Power-Supply Voltage Characteristics
±18 0 0.4 0.8 1.2
40
30
20
10
0
OutputvoltageVout(mV)
Time t (µs)
Impulse Response
Characteristics
1.6
Vin = 20 mV
RL = 2 kΩ
CL = 100 pF
VCC = +15 V
VEE = −15 V
RL = 2 kΩ
CL = 100 pF
Vin = 20 mV
HA17741/PS
17
Package Dimensions
Hitachi Code
JEDEC
EIAJ
Mass (reference value)
DP-8
Conforms
Conforms
0.54 g
Unit: mm
1 4
58
9.6
10.6 Max
0.89 1.3 6.3
7.4Max
2.54Min5.06Max
2.54 ± 0.25 0.48 ± 0.10
7.62
0.25
+ 0.10
– 0.05
0° – 15°
0.1Min
1.27 Max
HA17741/PS
18
Cautions
1. Hitachi neither warrants nor grants licenses of any rights of Hitachi’s or any third party’s patent,
copyright, trademark, or other intellectual property rights for information contained in this document.
Hitachi bears no responsibility for problems that may arise with third party’s rights, including
intellectual property rights, in connection with use of the information contained in this document.
2. Products and product specifications may be subject to change without notice. Confirm that you have
received the latest product standards or specifications before final design, purchase or use.
3. Hitachi makes every attempt to ensure that its products are of high quality and reliability. However,
contact Hitachi’s sales office before using the product in an application that demands especially high
quality and reliability or where its failure or malfunction may directly threaten human life or cause risk
of bodily injury, such as aerospace, aeronautics, nuclear power, combustion control, transportation,
traffic, safety equipment or medical equipment for life support.
4. Design your application so that the product is used within the ranges guaranteed by Hitachi particularly
for maximum rating, operating supply voltage range, heat radiation characteristics, installation
conditions and other characteristics. Hitachi bears no responsibility for failure or damage when used
beyond the guaranteed ranges. Even within the guaranteed ranges, consider normally foreseeable
failure rates or failure modes in semiconductor devices and employ systemic measures such as fail-
safes, so that the equipment incorporating Hitachi product does not cause bodily injury, fire or other
consequential damage due to operation of the Hitachi product.
5. This product is not designed to be radiation resistant.
6. No one is permitted to reproduce or duplicate, in any form, the whole or part of this document without
written approval from Hitachi.
7. Contact Hitachi’s sales office for any questions regarding this document or Hitachi semiconductor
products.
Hitachi, Ltd.
Semiconductor & Integrated Circuits.
Nippon Bldg., 2-6-2, Ohte-machi, Chiyoda-ku, Tokyo 100-0004, Japan
Tel: Tokyo (03) 3270-2111 Fax: (03) 3270-5109
Copyright ' Hitachi, Ltd., 1998. All rights reserved. Printed in Japan.
Hitachi Asia Pte. Ltd.
16 Collyer Quay #20-00
Hitachi Tower
Singapore 049318
Tel: 535-2100
Fax: 535-1533
URL NorthAmerica : http:semiconductor.hitachi.com/
Europe : http://www.hitachi-eu.com/hel/ecg
Asia (Singapore) : http://www.has.hitachi.com.sg/grp3/sicd/index.htm
Asia (Taiwan) : http://www.hitachi.com.tw/E/Product/SICD_Frame.htm
Asia (HongKong) : http://www.hitachi.com.hk/eng/bo/grp3/index.htm
Japan : http://www.hitachi.co.jp/Sicd/indx.htm
Hitachi Asia Ltd.
Taipei Branch Office
3F, Hung Kuo Building. No.167,
Tun-Hwa North Road, Taipei (105)
Tel: <886> (2) 2718-3666
Fax: <886> (2) 2718-8180
Hitachi Asia (Hong Kong) Ltd.
Group III (Electronic Components)
7/F., North Tower, World Finance Centre,
Harbour City, Canton Road, Tsim Sha Tsui,
Kowloon, Hong Kong
Tel: <852> (2) 735 9218
Fax: <852> (2) 730 0281
Telex: 40815 HITEC HXHitachi Europe Ltd.
Electronic Components Group.
Whitebrook Park
Lower Cookham Road
Maidenhead
Berkshire SL6 8YA, United Kingdom
Tel: <44> (1628) 585000
Fax: <44> (1628) 778322
Hitachi Europe GmbH
Electronic components Group
Dornacher Straβe 3
D-85622 Feldkirchen, Munich
Germany
Tel: <49> (89) 9 9180-0
Fax: <49> (89) 9 29 30 00
Hitachi Semiconductor
(America) Inc.
179 East Tasman Drive,
San Jose,CA 95134
Tel: <1> (408) 433-1990
Fax: <1>(408) 433-0223
For further information write to:
This datasheet has been download from:
www.datasheetcatalog.com
Datasheets for electronics components.

More Related Content

What's hot

Manual de serviço xt 600 e
Manual de serviço xt 600 eManual de serviço xt 600 e
Manual de serviço xt 600 e
williammagalhaes
 
Adjetivo e suas classificações exercícios básicos (gabarito)
Adjetivo e suas classificações   exercícios básicos (gabarito)Adjetivo e suas classificações   exercícios básicos (gabarito)
Adjetivo e suas classificações exercícios básicos (gabarito)
Nivea Neves
 

What's hot (20)

Exercícios colocação pronominal
Exercícios colocação pronominalExercícios colocação pronominal
Exercícios colocação pronominal
 
Motobomba Bd 700-cf-e- 705-cf-e-710-cf-e
Motobomba  Bd 700-cf-e- 705-cf-e-710-cf-eMotobomba  Bd 700-cf-e- 705-cf-e-710-cf-e
Motobomba Bd 700-cf-e- 705-cf-e-710-cf-e
 
Manual de serviço xt 600 e
Manual de serviço xt 600 eManual de serviço xt 600 e
Manual de serviço xt 600 e
 
Exercícios sobre gêneros literários
Exercícios sobre gêneros literáriosExercícios sobre gêneros literários
Exercícios sobre gêneros literários
 
2006 toyota yaris service repair manual
2006 toyota yaris service repair manual2006 toyota yaris service repair manual
2006 toyota yaris service repair manual
 
Pás Carregadeiras Case W 20E
 Pás Carregadeiras Case W 20E Pás Carregadeiras Case W 20E
Pás Carregadeiras Case W 20E
 
Locuções adjetivas
Locuções adjetivasLocuções adjetivas
Locuções adjetivas
 
Atrás trás e traz
Atrás trás e trazAtrás trás e traz
Atrás trás e traz
 
Boards_ScoutGuest_part1.pdf
Boards_ScoutGuest_part1.pdfBoards_ScoutGuest_part1.pdf
Boards_ScoutGuest_part1.pdf
 
Manual de serviço xlx350 r rodadian
Manual de serviço xlx350 r rodadianManual de serviço xlx350 r rodadian
Manual de serviço xlx350 r rodadian
 
Atividades com poema e poesia
Atividades com poema e poesiaAtividades com poema e poesia
Atividades com poema e poesia
 
Catálogo de peças roçadeiras Baldan
Catálogo de peças roçadeiras BaldanCatálogo de peças roçadeiras Baldan
Catálogo de peças roçadeiras Baldan
 
Kuhn stubble cultivator discover xl60
Kuhn stubble cultivator discover xl60Kuhn stubble cultivator discover xl60
Kuhn stubble cultivator discover xl60
 
Atividades d portugues
Atividades d portuguesAtividades d portugues
Atividades d portugues
 
6º ano vi4
6º ano   vi46º ano   vi4
6º ano vi4
 
Simulado língua portuguesa 9º ano - SAEPE
Simulado língua portuguesa 9º ano - SAEPESimulado língua portuguesa 9º ano - SAEPE
Simulado língua portuguesa 9º ano - SAEPE
 
Adjetivo e suas classificações exercícios básicos (gabarito)
Adjetivo e suas classificações   exercícios básicos (gabarito)Adjetivo e suas classificações   exercícios básicos (gabarito)
Adjetivo e suas classificações exercícios básicos (gabarito)
 
Prova brasil lp 5º ano
Prova brasil lp   5º anoProva brasil lp   5º ano
Prova brasil lp 5º ano
 
Flexão de número dos substantivos compostos
Flexão de número dos substantivos compostosFlexão de número dos substantivos compostos
Flexão de número dos substantivos compostos
 
Língua portuguesa 5 ano
Língua portuguesa  5 anoLíngua portuguesa  5 ano
Língua portuguesa 5 ano
 

Viewers also liked

Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)
kaushikbandopadhyay
 
Optics Fourier Transform Ii
Optics Fourier Transform IiOptics Fourier Transform Ii
Optics Fourier Transform Ii
diarmseven
 
Optics Fourier Transform I
Optics Fourier Transform IOptics Fourier Transform I
Optics Fourier Transform I
diarmseven
 
Bjt+and+jfet+frequency+response
Bjt+and+jfet+frequency+responseBjt+and+jfet+frequency+response
Bjt+and+jfet+frequency+response
Student
 
Electronic devices-and-circuit-theory-10th-ed-boylestad-chapter-9
Electronic devices-and-circuit-theory-10th-ed-boylestad-chapter-9Electronic devices-and-circuit-theory-10th-ed-boylestad-chapter-9
Electronic devices-and-circuit-theory-10th-ed-boylestad-chapter-9
Shiwam Isrie
 

Viewers also liked (20)

Ptek NR3
Ptek NR3Ptek NR3
Ptek NR3
 
Ptek NR1
Ptek NR1Ptek NR1
Ptek NR1
 
Electronics and Communication Engineering : Communications, THE GATE ACADEMY
Electronics and Communication Engineering : Communications, THE GATE ACADEMYElectronics and Communication Engineering : Communications, THE GATE ACADEMY
Electronics and Communication Engineering : Communications, THE GATE ACADEMY
 
Electronics and Communication Engineering : Analog circuits, THE GATE ACADEMY
 Electronics and Communication Engineering : Analog circuits, THE GATE ACADEMY Electronics and Communication Engineering : Analog circuits, THE GATE ACADEMY
Electronics and Communication Engineering : Analog circuits, THE GATE ACADEMY
 
Drinking water alarm
Drinking water alarmDrinking water alarm
Drinking water alarm
 
IC 4017 Pin Configuration and Its Application
IC 4017 Pin Configuration and Its ApplicationIC 4017 Pin Configuration and Its Application
IC 4017 Pin Configuration and Its Application
 
Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)
 
Optics Fourier Transform Ii
Optics Fourier Transform IiOptics Fourier Transform Ii
Optics Fourier Transform Ii
 
Function Generator
Function GeneratorFunction Generator
Function Generator
 
Clap switch
Clap switchClap switch
Clap switch
 
Ptek NRE3
Ptek NRE3Ptek NRE3
Ptek NRE3
 
Clap switch by ajay & vinod
Clap switch by ajay & vinodClap switch by ajay & vinod
Clap switch by ajay & vinod
 
Fractional Fourier Transform: Fractional Wiener Filter in Scilab
Fractional Fourier Transform: Fractional Wiener Filter in ScilabFractional Fourier Transform: Fractional Wiener Filter in Scilab
Fractional Fourier Transform: Fractional Wiener Filter in Scilab
 
Optics Fourier Transform I
Optics Fourier Transform IOptics Fourier Transform I
Optics Fourier Transform I
 
Bjt+and+jfet+frequency+response
Bjt+and+jfet+frequency+responseBjt+and+jfet+frequency+response
Bjt+and+jfet+frequency+response
 
HAL STEG PPT
HAL STEG PPTHAL STEG PPT
HAL STEG PPT
 
Amplifier frequency response(part 1)
Amplifier frequency response(part 1)Amplifier frequency response(part 1)
Amplifier frequency response(part 1)
 
The discrete fourier transform (dsp) 4
The discrete fourier transform  (dsp) 4The discrete fourier transform  (dsp) 4
The discrete fourier transform (dsp) 4
 
Electronic devices-and-circuit-theory-10th-ed-boylestad-chapter-9
Electronic devices-and-circuit-theory-10th-ed-boylestad-chapter-9Electronic devices-and-circuit-theory-10th-ed-boylestad-chapter-9
Electronic devices-and-circuit-theory-10th-ed-boylestad-chapter-9
 
Amplifier frequency response (part 2)
Amplifier frequency response (part 2)Amplifier frequency response (part 2)
Amplifier frequency response (part 2)
 

Similar to HA17741 General Purpose Operational Amplifier

Similar to HA17741 General Purpose Operational Amplifier (20)

Datasheet
DatasheetDatasheet
Datasheet
 
LEC20G604 (6).pdf
LEC20G604 (6).pdfLEC20G604 (6).pdf
LEC20G604 (6).pdf
 
Lf353
Lf353Lf353
Lf353
 
Datasheet lm358
Datasheet lm358Datasheet lm358
Datasheet lm358
 
Original IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New Infineon
Original IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New InfineonOriginal IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New Infineon
Original IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New Infineon
 
Original IGBT RJH60D3DPP -M0 RJH60D3 600V 17A TO-220 New
Original IGBT RJH60D3DPP -M0 RJH60D3 600V 17A TO-220 NewOriginal IGBT RJH60D3DPP -M0 RJH60D3 600V 17A TO-220 New
Original IGBT RJH60D3DPP -M0 RJH60D3 600V 17A TO-220 New
 
Lm339 d
Lm339 dLm339 d
Lm339 d
 
Original IGBT N-CHANNEL IRG7R313U 7R313U 330V 160A TO-252 New
Original IGBT N-CHANNEL IRG7R313U 7R313U 330V 160A TO-252 NewOriginal IGBT N-CHANNEL IRG7R313U 7R313U 330V 160A TO-252 New
Original IGBT N-CHANNEL IRG7R313U 7R313U 330V 160A TO-252 New
 
Original Mosfet MC33151DR2G 33151 MC33151 SOP-8 New
Original Mosfet MC33151DR2G 33151 MC33151 SOP-8 NewOriginal Mosfet MC33151DR2G 33151 MC33151 SOP-8 New
Original Mosfet MC33151DR2G 33151 MC33151 SOP-8 New
 
Original IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A New
Original IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A NewOriginal IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A New
Original IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A New
 
2 n2222
2 n22222 n2222
2 n2222
 
Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...
Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...
Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...
 
Original IGBT RJH60D2DPP RJH60D2 12A 600V TO-220 New Renesas
Original IGBT RJH60D2DPP RJH60D2 12A 600V TO-220 New RenesasOriginal IGBT RJH60D2DPP RJH60D2 12A 600V TO-220 New Renesas
Original IGBT RJH60D2DPP RJH60D2 12A 600V TO-220 New Renesas
 
irs2092.pdf
irs2092.pdfirs2092.pdf
irs2092.pdf
 
Original IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronicsOriginal IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronics
 
Original IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronicsOriginal IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronics
 
Uc3842 b d fuente 24vdc stacotec
Uc3842 b d  fuente 24vdc stacotecUc3842 b d  fuente 24vdc stacotec
Uc3842 b d fuente 24vdc stacotec
 
000744
000744000744
000744
 
Original IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IR
Original IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IROriginal IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IR
Original IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IR
 
000695
000695000695
000695
 

More from Yong Heui Cho

More from Yong Heui Cho (20)

Android - Sensor Manager
Android - Sensor ManagerAndroid - Sensor Manager
Android - Sensor Manager
 
Android - Broadcast Receiver
Android - Broadcast ReceiverAndroid - Broadcast Receiver
Android - Broadcast Receiver
 
Android - Message
Android - MessageAndroid - Message
Android - Message
 
Cloud Computing
Cloud ComputingCloud Computing
Cloud Computing
 
Computing Paradigm
Computing ParadigmComputing Paradigm
Computing Paradigm
 
TestBCD2018-2(answer)
TestBCD2018-2(answer)TestBCD2018-2(answer)
TestBCD2018-2(answer)
 
TestSDS2018-2(answer)
TestSDS2018-2(answer)TestSDS2018-2(answer)
TestSDS2018-2(answer)
 
TestEC2018-2(answer)
TestEC2018-2(answer)TestEC2018-2(answer)
TestEC2018-2(answer)
 
TestEC2018-1(answer)
TestEC2018-1(answer)TestEC2018-1(answer)
TestEC2018-1(answer)
 
TestBCD2018-1(answer)
TestBCD2018-1(answer)TestBCD2018-1(answer)
TestBCD2018-1(answer)
 
TestSDS2018-1(answer)
TestSDS2018-1(answer)TestSDS2018-1(answer)
TestSDS2018-1(answer)
 
BJT - Analysis of Bias
BJT - Analysis of BiasBJT - Analysis of Bias
BJT - Analysis of Bias
 
TestCloud2018-2(answer)
TestCloud2018-2(answer)TestCloud2018-2(answer)
TestCloud2018-2(answer)
 
TestECD2018-1(answer)
TestECD2018-1(answer)TestECD2018-1(answer)
TestECD2018-1(answer)
 
Test-SDIC2018-2(answer)
Test-SDIC2018-2(answer)Test-SDIC2018-2(answer)
Test-SDIC2018-2(answer)
 
TestCloud2018-1(answer)
TestCloud2018-1(answer)TestCloud2018-1(answer)
TestCloud2018-1(answer)
 
Cloud Service Model
Cloud Service ModelCloud Service Model
Cloud Service Model
 
Test-SDIC2018-1(Answer)
Test-SDIC2018-1(Answer)Test-SDIC2018-1(Answer)
Test-SDIC2018-1(Answer)
 
RF 증폭기 설계(Design of RF Amplifier)-rev1
RF 증폭기 설계(Design of RF Amplifier)-rev1RF 증폭기 설계(Design of RF Amplifier)-rev1
RF 증폭기 설계(Design of RF Amplifier)-rev1
 
Computing Paradigm - rev1
Computing Paradigm - rev1Computing Paradigm - rev1
Computing Paradigm - rev1
 

Recently uploaded

怎样办理斯威本科技大学毕业证(SUT毕业证书)成绩单留信认证
怎样办理斯威本科技大学毕业证(SUT毕业证书)成绩单留信认证怎样办理斯威本科技大学毕业证(SUT毕业证书)成绩单留信认证
怎样办理斯威本科技大学毕业证(SUT毕业证书)成绩单留信认证
tufbav
 
Kothanur Call Girls Service: 🍓 7737669865 🍓 High Profile Model Escorts | Bang...
Kothanur Call Girls Service: 🍓 7737669865 🍓 High Profile Model Escorts | Bang...Kothanur Call Girls Service: 🍓 7737669865 🍓 High Profile Model Escorts | Bang...
Kothanur Call Girls Service: 🍓 7737669865 🍓 High Profile Model Escorts | Bang...
amitlee9823
 
Abortion pills in Jeddah |+966572737505 | Get Cytotec
Abortion pills in Jeddah |+966572737505 | Get CytotecAbortion pills in Jeddah |+966572737505 | Get Cytotec
Abortion pills in Jeddah |+966572737505 | Get Cytotec
Abortion pills in Riyadh +966572737505 get cytotec
 
Bommasandra Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...
Bommasandra Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...Bommasandra Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...
Bommasandra Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...
amitlee9823
 
Call Girls Banashankari Just Call 👗 7737669865 👗 Top Class Call Girl Service ...
Call Girls Banashankari Just Call 👗 7737669865 👗 Top Class Call Girl Service ...Call Girls Banashankari Just Call 👗 7737669865 👗 Top Class Call Girl Service ...
Call Girls Banashankari Just Call 👗 7737669865 👗 Top Class Call Girl Service ...
amitlee9823
 
Call Girls Chickpet ☎ 7737669865☎ Book Your One night Stand (Bangalore)
Call Girls Chickpet ☎ 7737669865☎ Book Your One night Stand (Bangalore)Call Girls Chickpet ☎ 7737669865☎ Book Your One night Stand (Bangalore)
Call Girls Chickpet ☎ 7737669865☎ Book Your One night Stand (Bangalore)
amitlee9823
 
CHEAP Call Girls in Ashok Nagar (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICE
CHEAP Call Girls in Ashok Nagar  (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICECHEAP Call Girls in Ashok Nagar  (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICE
CHEAP Call Girls in Ashok Nagar (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICE
9953056974 Low Rate Call Girls In Saket, Delhi NCR
 
➥🔝 7737669865 🔝▻ Deoghar Call-girls in Women Seeking Men 🔝Deoghar🔝 Escorts...
➥🔝 7737669865 🔝▻ Deoghar Call-girls in Women Seeking Men  🔝Deoghar🔝   Escorts...➥🔝 7737669865 🔝▻ Deoghar Call-girls in Women Seeking Men  🔝Deoghar🔝   Escorts...
➥🔝 7737669865 🔝▻ Deoghar Call-girls in Women Seeking Men 🔝Deoghar🔝 Escorts...
amitlee9823
 
Abortion Pill for sale in Riyadh ((+918761049707) Get Cytotec in Dammam
Abortion Pill for sale in Riyadh ((+918761049707) Get Cytotec in DammamAbortion Pill for sale in Riyadh ((+918761049707) Get Cytotec in Dammam
Abortion Pill for sale in Riyadh ((+918761049707) Get Cytotec in Dammam
ahmedjiabur940
 
Vip Mumbai Call Girls Kalyan Call On 9920725232 With Body to body massage wit...
Vip Mumbai Call Girls Kalyan Call On 9920725232 With Body to body massage wit...Vip Mumbai Call Girls Kalyan Call On 9920725232 With Body to body massage wit...
Vip Mumbai Call Girls Kalyan Call On 9920725232 With Body to body massage wit...
amitlee9823
 
➥🔝 7737669865 🔝▻ Muzaffarpur Call-girls in Women Seeking Men 🔝Muzaffarpur🔝 ...
➥🔝 7737669865 🔝▻ Muzaffarpur Call-girls in Women Seeking Men  🔝Muzaffarpur🔝  ...➥🔝 7737669865 🔝▻ Muzaffarpur Call-girls in Women Seeking Men  🔝Muzaffarpur🔝  ...
➥🔝 7737669865 🔝▻ Muzaffarpur Call-girls in Women Seeking Men 🔝Muzaffarpur🔝 ...
amitlee9823
 
VIP Call Girls Dharwad 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Dharwad 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Dharwad 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Dharwad 7001035870 Whatsapp Number, 24/07 Booking
dharasingh5698
 
Just Call Vip call girls godhra Escorts ☎️9352988975 Two shot with one girl (...
Just Call Vip call girls godhra Escorts ☎️9352988975 Two shot with one girl (...Just Call Vip call girls godhra Escorts ☎️9352988975 Two shot with one girl (...
Just Call Vip call girls godhra Escorts ☎️9352988975 Two shot with one girl (...
gajnagarg
 

Recently uploaded (20)

怎样办理斯威本科技大学毕业证(SUT毕业证书)成绩单留信认证
怎样办理斯威本科技大学毕业证(SUT毕业证书)成绩单留信认证怎样办理斯威本科技大学毕业证(SUT毕业证书)成绩单留信认证
怎样办理斯威本科技大学毕业证(SUT毕业证书)成绩单留信认证
 
Kothanur Call Girls Service: 🍓 7737669865 🍓 High Profile Model Escorts | Bang...
Kothanur Call Girls Service: 🍓 7737669865 🍓 High Profile Model Escorts | Bang...Kothanur Call Girls Service: 🍓 7737669865 🍓 High Profile Model Escorts | Bang...
Kothanur Call Girls Service: 🍓 7737669865 🍓 High Profile Model Escorts | Bang...
 
Abortion pills in Jeddah |+966572737505 | Get Cytotec
Abortion pills in Jeddah |+966572737505 | Get CytotecAbortion pills in Jeddah |+966572737505 | Get Cytotec
Abortion pills in Jeddah |+966572737505 | Get Cytotec
 
Bommasandra Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...
Bommasandra Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...Bommasandra Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...
Bommasandra Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...
 
Call Girls Kothrud Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Kothrud Call Me 7737669865 Budget Friendly No Advance BookingCall Girls Kothrud Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Kothrud Call Me 7737669865 Budget Friendly No Advance Booking
 
Call Girls Banashankari Just Call 👗 7737669865 👗 Top Class Call Girl Service ...
Call Girls Banashankari Just Call 👗 7737669865 👗 Top Class Call Girl Service ...Call Girls Banashankari Just Call 👗 7737669865 👗 Top Class Call Girl Service ...
Call Girls Banashankari Just Call 👗 7737669865 👗 Top Class Call Girl Service ...
 
Call Girls in Vashi Escorts Services - 7738631006
Call Girls in Vashi Escorts Services - 7738631006Call Girls in Vashi Escorts Services - 7738631006
Call Girls in Vashi Escorts Services - 7738631006
 
(ISHITA) Call Girls Service Aurangabad Call Now 8617697112 Aurangabad Escorts...
(ISHITA) Call Girls Service Aurangabad Call Now 8617697112 Aurangabad Escorts...(ISHITA) Call Girls Service Aurangabad Call Now 8617697112 Aurangabad Escorts...
(ISHITA) Call Girls Service Aurangabad Call Now 8617697112 Aurangabad Escorts...
 
Call Girls Chickpet ☎ 7737669865☎ Book Your One night Stand (Bangalore)
Call Girls Chickpet ☎ 7737669865☎ Book Your One night Stand (Bangalore)Call Girls Chickpet ☎ 7737669865☎ Book Your One night Stand (Bangalore)
Call Girls Chickpet ☎ 7737669865☎ Book Your One night Stand (Bangalore)
 
Get Premium Pimple Saudagar Call Girls (8005736733) 24x7 Rate 15999 with A/c ...
Get Premium Pimple Saudagar Call Girls (8005736733) 24x7 Rate 15999 with A/c ...Get Premium Pimple Saudagar Call Girls (8005736733) 24x7 Rate 15999 with A/c ...
Get Premium Pimple Saudagar Call Girls (8005736733) 24x7 Rate 15999 with A/c ...
 
CHEAP Call Girls in Ashok Nagar (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICE
CHEAP Call Girls in Ashok Nagar  (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICECHEAP Call Girls in Ashok Nagar  (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICE
CHEAP Call Girls in Ashok Nagar (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICE
 
(INDIRA) Call Girl Napur Call Now 8617697112 Napur Escorts 24x7
(INDIRA) Call Girl Napur Call Now 8617697112 Napur Escorts 24x7(INDIRA) Call Girl Napur Call Now 8617697112 Napur Escorts 24x7
(INDIRA) Call Girl Napur Call Now 8617697112 Napur Escorts 24x7
 
➥🔝 7737669865 🔝▻ Deoghar Call-girls in Women Seeking Men 🔝Deoghar🔝 Escorts...
➥🔝 7737669865 🔝▻ Deoghar Call-girls in Women Seeking Men  🔝Deoghar🔝   Escorts...➥🔝 7737669865 🔝▻ Deoghar Call-girls in Women Seeking Men  🔝Deoghar🔝   Escorts...
➥🔝 7737669865 🔝▻ Deoghar Call-girls in Women Seeking Men 🔝Deoghar🔝 Escorts...
 
Shikrapur Call Girls Most Awaited Fun 6297143586 High Profiles young Beautie...
Shikrapur Call Girls Most Awaited Fun  6297143586 High Profiles young Beautie...Shikrapur Call Girls Most Awaited Fun  6297143586 High Profiles young Beautie...
Shikrapur Call Girls Most Awaited Fun 6297143586 High Profiles young Beautie...
 
Abortion Pill for sale in Riyadh ((+918761049707) Get Cytotec in Dammam
Abortion Pill for sale in Riyadh ((+918761049707) Get Cytotec in DammamAbortion Pill for sale in Riyadh ((+918761049707) Get Cytotec in Dammam
Abortion Pill for sale in Riyadh ((+918761049707) Get Cytotec in Dammam
 
Vip Mumbai Call Girls Kalyan Call On 9920725232 With Body to body massage wit...
Vip Mumbai Call Girls Kalyan Call On 9920725232 With Body to body massage wit...Vip Mumbai Call Girls Kalyan Call On 9920725232 With Body to body massage wit...
Vip Mumbai Call Girls Kalyan Call On 9920725232 With Body to body massage wit...
 
➥🔝 7737669865 🔝▻ Muzaffarpur Call-girls in Women Seeking Men 🔝Muzaffarpur🔝 ...
➥🔝 7737669865 🔝▻ Muzaffarpur Call-girls in Women Seeking Men  🔝Muzaffarpur🔝  ...➥🔝 7737669865 🔝▻ Muzaffarpur Call-girls in Women Seeking Men  🔝Muzaffarpur🔝  ...
➥🔝 7737669865 🔝▻ Muzaffarpur Call-girls in Women Seeking Men 🔝Muzaffarpur🔝 ...
 
VVIP Pune Call Girls Gahunje WhatSapp Number 8005736733 With Elite Staff And ...
VVIP Pune Call Girls Gahunje WhatSapp Number 8005736733 With Elite Staff And ...VVIP Pune Call Girls Gahunje WhatSapp Number 8005736733 With Elite Staff And ...
VVIP Pune Call Girls Gahunje WhatSapp Number 8005736733 With Elite Staff And ...
 
VIP Call Girls Dharwad 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Dharwad 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Dharwad 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Dharwad 7001035870 Whatsapp Number, 24/07 Booking
 
Just Call Vip call girls godhra Escorts ☎️9352988975 Two shot with one girl (...
Just Call Vip call girls godhra Escorts ☎️9352988975 Two shot with one girl (...Just Call Vip call girls godhra Escorts ☎️9352988975 Two shot with one girl (...
Just Call Vip call girls godhra Escorts ☎️9352988975 Two shot with one girl (...
 

HA17741 General Purpose Operational Amplifier

  • 1. HA17741/PS General-Purpose Operational Amplifier (Frequency Compensated) Description The HA17741/PS is an internal phase compensation high-performance operational amplifier, that is appropriate for use in a wide range of applications in the test and control fields. Features • High voltage gain : 106 dB (Typ) • Wide output amplitude : ±13 V (Typ) (at RL ≥ 2 kΩ) • Shorted output protection • Adjustable offset voltage • Internal phase compensation Ordering Information Application Type No. Package Industrial use HA17741PS DP-8 Commercial use HA17741 Pin Arrangement − + 1 2 3 4 8 7 6 5 NC VCC Vout Offset Null Offset Null Vin(−) Vin(+) VEE (Top view)
  • 2. HA17741/PS 2 Circuit Structure VCC Vout VEE To VCCTo VCC Offset Null Vin(+) Vin(−) Pin5Pin1 Absolute Maximum Ratings (Ta = 25°C) Ratings Item Symbol HA17741PS HA17741 Unit Power-supply voltage VCC +18 +18 V VEE –18 –18 V Input voltage Vin ±15 ±15 V Differential input voltage Vin(diff) ±30 ±30 V Allowable power dissipation PT 670 * 670 * mW Operating temperature Topr –20 to +75 –20 to +75 °C Storage temperature Tstg –55 to +125 –55 to +125 °C Note: These are the allowable values up to Ta = 45°C. Derate by 8.3 mW/°C above that temperature.
  • 3. HA17741/PS 3 Electrical Characteristics Electrical Characteristics-1 (VCC = –VEE = 15 V, Ta = 25°C) Item Symbol Min Typ Max Unit Test Condition Input offset voltage VIO — 1.0 6.0 mV RS ≤ 10 kΩ Input offset current IIO — 18 200 nA Input bias current IIB — 75 500 nA Power-supply ∆VIO/∆VCC — 30 150 µV/V RS ≤ 10 kΩ rejection ratio ∆VIO/∆VEE — 30 150 µV/V RS ≤ 10 kΩ Voltage gain AVD 86 106 — dB RL ≥ 2 kΩ, Vout = ±10 V Common-mode rejection ratio CMR 70 90 — dB RS ≤ 10 kΩ Common-mode input voltage range VCM ±12 ±13 — V RS ≤ 10 kΩ Maximum output VOP-P ±12 ±14 — V RL ≥ 10 kΩ voltage amplitude ±10 ±13 — V RL ≥ 2 kΩ Power dissipation Pd — 65 100 mW No load Slew rate SR — 1.0 — V/µs RL ≥ 2 kΩ Rise time tr — 0.3 — µs Vin = 20 mV, RL = 2 kΩ, Overshoot Vover — 5.0 — % CL = 100 pF Input resistance Rin 0.3 1.0 — MΩ Electrical Characteristics-2 (VCC = –VEE = 15 V, Ta = –20 to +75°C) Item Symbol Min Typ Max Unit Test Condition Input offset voltage VIO — — 9.0 mV RS ≤ 10 kΩ Input offset current IIO — — 400 nA Input bias current IIB — — 1,100 nA Voltage gain AVD 80 — — dB RL ≥ 2 kΩ, Vout = ±10 V Maximum output voltage amplitude VOP-P ±10 — — V RL ≥ 2 kΩ
  • 4. HA17741/PS 4 IC Operational Amplifier Application Examples Multivibrator A multivibrator is a square wave generator that uses an RC circuit charge/discharge operation to generate the waveform. Multivibrators are widely used as the square wave source in such applications as power supplies and electronic switches. Multivibrators are classified into three types, astable multivibrators, which have no stable states, monostable multivibrators, which have one stable state, and bistable multivibrators, which have two stable states. 1. Astable Multivibrator − + R3 VCC VEE Vout R1 R2 RL Vin(−) Vin(+) C1 Figure 1 Astable Multivibrator Operating Circuit Vin(+) 0 Vin(−) 0 Vout 0 Vertical: Horizontal: Circuit constants R1 = 8 kΩ, R2 = 4 kΩ R3 = 100 kΩ, C1 = 0.1 µF RL = ∞ VCC = 15 V, VEE = −15 V 5 V/div 2 ms/div Figure 2 HA17741 Astable Multivibrator Operating Waveform
  • 5. HA17741/PS 5 2. Monostable Multivibrator − + R3 VCC VEE Vout RL R1R2 C2 C1 Input 0 Figure 3 Monostable Multivibrator Operating Circuit Vertical: Horizontal: Circuit constants R1 = 10 kΩ, R2 = 2 kΩ R3 = 40 kΩ, C1 = 0.47 µF C2 = 0.0068 µF RL = ∞ VCC = 15 V, VEE = −15 V Trigger input 0 Vin(+) 0 Vin(−) 0 Vout 0 Figure 4 HA17741 Monostable Multivibrator Operating Waveform 3. Bistable Multivibrator − + Vin(−) Vin(+) Input 0 C R2 RL VEE VCC R1 Vout Figure 5 Bistable Multivibrator Operating Circuit
  • 6. HA17741/PS 6 Trigger input 0 Vin(+) 0 Vout 0 Vertical: Horizontal: Circuit constants 5 V/div 2 ms/div R1 = 10 kΩ, R2 = 2 kΩ C = 0.0068 µF RL = ∞ VCC = 15 V, VEE = −15 V Figure 6 HA17741 Bistable Multivibrator Operating Waveform Wien Bridge Sine Wave Oscillator − + R4 470 kΩ 1 MΩ 1S2074 H R3C3 2SK16 H 500 Ω Rin C2 R2 C1 R1 5.1 kΩ RS RL 50 kΩ Vout Figure 7 Wien Bridge Sine Wave Oscillator VCC = 15 V, VEE = −15 V C1 = C2/10 R1 = 110 kΩ, R2 = 11 kΩ VOP-P = 2 V VOP-P = 20 V 30 k 10 k 3 k 1 k 300 100 30 10 30 p 100 p 300 p 1,000 p 3,000 p 0.01 µ 0.03 µ 0.1 µ C1 Capacitance (F) OscillatorFrequencyf(Hz) Figure 8 HA17741 Wien Bridge Sine Wave Oscillator f–C Characteristics
  • 7. HA17741/PS 7 Vertical: Horizontal: Test circuit condition 5 V/div 0.5 ms/div VCC = 15 V, VEE = −15 V R1 = 110 kΩ, R2 = 11 kΩ C1 = 0.0015 µF, C2 = 0.015 µF Test results f = 929.7 Hz, T.H.P = 0.06% Figure 9 HA17741 Wien Bridge Sine Wave Oscillator Operating Waveform Quadrature Oscillator − + A2 − + A1 V4 R11 R22 R44 R33 V8 D1 D2 Cos outSin out CT2 RT2 CT1 RT1 C1 R1 Figure 10 Quadrature Sine Wave Oscillator Figure 10 shows the circuit diagram for a quadrature sine wave oscillator. This circuit consists of two integrators and a limiter circuit, and provides not only a sine wave output, but also a cosine output, that is, it also supplies the waveform delayed by 90°. The output amplitude is essentially determined by the limiter circuit.
  • 8. HA17741/PS 8 30 10 CT1 = 102 pF CT2 = 99 pF C1 = 106 pF VCC = −VEE = 15 V RT1 = 150 kΩ, RT2 = 150 kΩ R1 = 151.2 kΩ R11 = 15 kΩ, R22 = 10 kΩ R33 = 15 kΩ, R44 = 10 kΩ CT1, CT2, C1 → 1,000 pF Use a Mylar capacitor. With VOP-P = 21 VP-P and R22 = R44 = 10 kΩ the frequency of the sine wave will be under 10 kHz. Sin out Cos out 3 1.0 0.3 0.1 0.03 0.01 100 p 1,000 p 0.01 µ 0.1 µ CT1, CT2, C1 (F) Figure 11 HA17741 Quadrature Sine Wave Oscillator f−CT1, CT2, C1 Characteristics Vertical: Horizontal: Circuit constants 5 V/div 0.2 ms/div CT1 = 1000 pF (990), CT2 = 1000 pF (990) RT1 = 150 kΩ, RT2 = 150 kΩ C1 = 1000 pF (990), R1 = 160 kΩ R11 = 15 kΩ, R22 = 10 kΩ R33 = 16 V, R44 = 10 kΩ VCC = 15 V, VEE = −15 V ← Sin out 0 ← Cos out Figure 12 Sine and Cosine Output Waveforms Triangular Wave Generator − + A1 − + A2 D1 R3 D2 R4 C R1 R2 Vout2 VA R1/R2 Vout1 Hysteresis comparator Integrator Figure 13 Triangular Wave Generator Operating Circuit
  • 9. HA17741/PS 9 Vertical: Horizontal: Circuit constants 10 V/div 10 ms/div VCC = 15 V, VEE = −15 V R1 = 10 kΩ, R2 = 20 kΩ R3 = 100 kΩ, R4 = 200 kΩ C = 0.1 µF 0 0 0 Vout1 Vout2 VA Figure 14 HA17741 Triangular Wave Generator Operating Waveform Sawtooth Waveform Generator + − + − Vin R2 6 kΩ VA R4 3 kΩ VB R3 6 kΩ R1 IR5 2.7 kΩ R6 2.7 kΩ C1 Q1 VR 5 kΩ 2SC1706 H Vout R7 2.7 kΩ R8 2.7 kΩ VC Figure 15 Sawtooth Waveform Generator 0 0 VR Vout Vertical: Horizontal: Circuit constants 5 V/div 2 ms/div VCC = 15 V, VEE = −15 V R1 = 100 kΩ, C1 = 0.1 µF Vin = 10 V Figure 16 HA17741 Sawtooth Waveform Generator Operating Waveform
  • 10. HA17741/PS 10 Characteristic Curves 2 3 1 5 6 ±3 ±6 ±12 ±15 20 16 12 8 4 0 InputoffsetcurrentIIO(nA) Power-supply voltage VCC, VEE (V) Input Offset Current vs. Power-Supply Voltage Characteristics ±9 ±18 R1 R2 R2 R1 R a = 100%a = 0% VEE Voltage Offset Adjustment Circuit ±3 ±6 ±12 ±15 100 80 60 40 20 0 PowerdissipationPd(mW) Power-supply voltage VCC, VEE (V) Power Dissipation vs. Power-Supply Voltage Characteristics ±9 ±18 ±3 ±6 ±12 ±15 120 110 100 90 80 70 VoltagegainAVD(dB) Power-supply voltage VCC, VEE (V) Voltage Gain vs. Power-Supply Voltage Characteristics ±9 ±18 RL ≥ 2 kΩ No load
  • 11. HA17741/PS 11 ±3 ±6 ±12 ±15 20 16 12 8 4 0 Maximumoutputvoltageamplitude ±VOP-P(V) Power-supply voltage VCC, VEE (V) Maximum Output Voltage Amplitude vs. Power-Supply Voltage Characteristics ±9 ±18 −20 0 20 40 60 5 4 3 2 1 0 InputoffsetvoltageVIO(mV) Ambient temperature Ta (°C) Input Offset Voltage vs. Ambient Temperature Characteristics 80 VCC = +15 V VEE = −15 V RS ≤ 10 kΩ RL ≥ 2 kΩ −V O P-P +V O P-P −20 0 20 40 60 20 16 12 8 4 0 InputoffsetcurrentIIO(nA) Ambient temperature Ta (°C) Input Offset Current vs. Ambient Temperature Characteristics 80 −20 0 20 40 60 120 100 80 60 40 20 0 InputbiascurrentIIB(nA) Ambient temperature Ta (°C) Input Bias Current vs. Ambient Temperature Characteristics 80 VCC = +15 V VEE = −15 V VCC = +15 V VEE = −15 V
  • 12. HA17741/PS 12 −20 0 20 40 60 120 110 100 90 80 70 VoltagegainAVD(dB) Ambient temperature Ta (°C) Voltage Gain vs. Ambient Temperature Characteristics 80−20 0 20 40 60 90 80 70 60 50 40 PowerdissipationPd(mW) Power Dissipation vs. Ambient Temperature Characteristics 80 Ambient temperature Ta (°C) VCC = +15 V VEE = −15 V No load VCC = +15 V VEE = −15 V RL ≥ 2 kΩ −20 0 20 40 60 20 16 12 8 4 0 OutputshortedcurrentIOS(mA) Ambient temperature Ta (°C) Output Shorted Current vs. Ambient Temperature Characteristics 80−20 0 40 60 16 12 8 4 0 −4 −8 −12 Maximumoutputvoltageamplitude VOP-P(V) Maximum Output Voltage Amplitude vs. Ambient Temperature Characteristics 20 80 Ambient temperature Ta (°C) VO = VCC VCC = +15 V VEE = −15 V VCC = +15 V VEE = −15 V RL = 10 kΩ
  • 13. HA17741/PS 13 200 500 1 k 2 k 5 k 16 12 8 4 0 −4 −8 −12 Maximumoutputvoltageamplitude VOP-P(V) Maximumoutputvoltageamplitude VOP-P(V) Maximum Output Voltage Amplitude vs. Load Resistance Characteristics 10 k Load resistance RL (Ω) 0 1.6 1.2 0.8 0.4 0 −0.4 −0.8 −1.2 −1.6 OutputvoltageVout(V) 20 40 60 80 100 VCC = +15 V VEE = −15 V VCC = +15 V, VEE = −15 V R1 = 51 Ω, R2 = 5.1 kΩ See the voltage offset adjustment circuit diagram. Offset Adjustment Characteristics Resistor position a (%) R = 10 kΩ R = 5 kΩ R = 20 kΩ 500 1 k 50 k 100 k 28 24 20 16 12 8 4 Frequency f (Hz) Maximum Output Voltage Amplitude vs. Frequency Characteristics 200 2 k 5 k 10 k 20 k 200 k 500 k 100 500 1 k 50 k 100 k 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0 InputresistanceRin(MΩ) Frequency f (Hz) Input Resistance vs. Frequency Characteristics 200 2 k 5 k 10 k 20 k 200 k 500 k 1 M 0 VCC = +15 V VEE = −15 V RL = 10 kΩ 100
  • 14. HA17741/PS 14 50 200 1 k 50 k 100 k 40 0 −40 −80 −120 −160 −200 Phaseφ(deg.) Frequency f (Hz) Phase vs. Frequency Characteristics 100 2 k 5 k 10 k 20 k 200 k 500 k −240 500 1 M 2 M 10 50 200 10 k 20 k 120 100 80 60 40 20 0 −20 VoltagegainAVD(dB) Frequency f (Hz) Voltage Gain vs Frequency Characteristics 20 500 1 k 2 k 5 k 50 k 100 k 40 100 500 k 2 M200 k 1 M VCC = +15 V VEE = −15 V Open loop VCC = +15 V VEE = −15 V Open loop 10 50 200 10 k 20 k 120 100 80 60 40 20 0 VoltagegainAVD(dB) Frequency f (Hz) Voltage Gain and Phase vs. Frequency Characteristics (1) 20 500 1 k 2 k 5 k 50 k 100 k −20 100 200 k 500 k 1 M 2 M 10 50 200 10 k 20 k 120 100 80 60 40 20 0 −20 VoltagegainAVD(dB) Frequency f (Hz) Voltage Gain and Phase vs. Frequency Characteristics (2) 20 500 1 k 2 k 5 k 50 k 100 k −40 100 200 k 500 k 1 M 2 M VCC = +15 V VEE = −15 V Closed loop gain = 60 dB VCC = +15 V VEE = −15 V Closed loop gain = 40 dB0 −60 −120 −180 0 −60 −120 −180 Phaseφ(deg.) Phaseφ(deg.) AVD φ φ AVD
  • 15. HA17741/PS 15 10 50 200 10 k 20 k 120 100 80 60 40 20 0 −20 VoltagegainAVD(dB) Frequency f (Hz) Voltage Gain and Phase vs. Frequency Characteristics (3) 20 500 1 k 2 k 5 k 50 k 100 k100 200 k 500 k 1 M 2 M 0 −60 −120 −180 Phaseφ(deg.) −40 VCC = +15 V VEE = −15 V Closed loop gain = 20 dB AVD φ 10 50 200 10 k 20 k 120 100 80 60 40 20 0 −20 VoltagegainAVD(dB) Frequency f (Hz) Voltage Gain and Phase vs. Frequency Characteristics (4) 20 500 1 k 2 k 5 k 50 k 100 k100 200 k 500 k 1 M 2 M 0 −60 −120 −180 Phaseφ(deg.) −40 VCC = +15 V VEE = −15 V Closed loop gain = 0 dB AVD φ 2 3 6 ±3 ±6 ±9 ±12 ±15 0.8 0.6 0.4 0.2 0 Risetimetr(µs) Power-supply voltage VCC, VEE (V) Rise time vs. Power-Supply Voltage Characteristics ±18 Impulse Response Characteristics Test Circuit Vout RLCL V2 90% 10% Vout tr V1 Vout = × 100 (%) V2 V1 Vin = 20 mV RL = 2 kΩ CL = 100 pF Vin
  • 16. HA17741/PS 16 ±3 ±6 ±9 ±12 ±15 40 30 20 10 0 OvershootVover(%) Power-supply voltage VCC, VEE (V) Overshoot vs. Power-Supply Voltage Characteristics ±18 0 0.4 0.8 1.2 40 30 20 10 0 OutputvoltageVout(mV) Time t (µs) Impulse Response Characteristics 1.6 Vin = 20 mV RL = 2 kΩ CL = 100 pF VCC = +15 V VEE = −15 V RL = 2 kΩ CL = 100 pF Vin = 20 mV
  • 17. HA17741/PS 17 Package Dimensions Hitachi Code JEDEC EIAJ Mass (reference value) DP-8 Conforms Conforms 0.54 g Unit: mm 1 4 58 9.6 10.6 Max 0.89 1.3 6.3 7.4Max 2.54Min5.06Max 2.54 ± 0.25 0.48 ± 0.10 7.62 0.25 + 0.10 – 0.05 0° – 15° 0.1Min 1.27 Max
  • 18. HA17741/PS 18 Cautions 1. Hitachi neither warrants nor grants licenses of any rights of Hitachi’s or any third party’s patent, copyright, trademark, or other intellectual property rights for information contained in this document. Hitachi bears no responsibility for problems that may arise with third party’s rights, including intellectual property rights, in connection with use of the information contained in this document. 2. Products and product specifications may be subject to change without notice. Confirm that you have received the latest product standards or specifications before final design, purchase or use. 3. Hitachi makes every attempt to ensure that its products are of high quality and reliability. However, contact Hitachi’s sales office before using the product in an application that demands especially high quality and reliability or where its failure or malfunction may directly threaten human life or cause risk of bodily injury, such as aerospace, aeronautics, nuclear power, combustion control, transportation, traffic, safety equipment or medical equipment for life support. 4. Design your application so that the product is used within the ranges guaranteed by Hitachi particularly for maximum rating, operating supply voltage range, heat radiation characteristics, installation conditions and other characteristics. Hitachi bears no responsibility for failure or damage when used beyond the guaranteed ranges. Even within the guaranteed ranges, consider normally foreseeable failure rates or failure modes in semiconductor devices and employ systemic measures such as fail- safes, so that the equipment incorporating Hitachi product does not cause bodily injury, fire or other consequential damage due to operation of the Hitachi product. 5. This product is not designed to be radiation resistant. 6. No one is permitted to reproduce or duplicate, in any form, the whole or part of this document without written approval from Hitachi. 7. Contact Hitachi’s sales office for any questions regarding this document or Hitachi semiconductor products. Hitachi, Ltd. Semiconductor & Integrated Circuits. Nippon Bldg., 2-6-2, Ohte-machi, Chiyoda-ku, Tokyo 100-0004, Japan Tel: Tokyo (03) 3270-2111 Fax: (03) 3270-5109 Copyright ' Hitachi, Ltd., 1998. All rights reserved. Printed in Japan. Hitachi Asia Pte. Ltd. 16 Collyer Quay #20-00 Hitachi Tower Singapore 049318 Tel: 535-2100 Fax: 535-1533 URL NorthAmerica : http:semiconductor.hitachi.com/ Europe : http://www.hitachi-eu.com/hel/ecg Asia (Singapore) : http://www.has.hitachi.com.sg/grp3/sicd/index.htm Asia (Taiwan) : http://www.hitachi.com.tw/E/Product/SICD_Frame.htm Asia (HongKong) : http://www.hitachi.com.hk/eng/bo/grp3/index.htm Japan : http://www.hitachi.co.jp/Sicd/indx.htm Hitachi Asia Ltd. Taipei Branch Office 3F, Hung Kuo Building. No.167, Tun-Hwa North Road, Taipei (105) Tel: <886> (2) 2718-3666 Fax: <886> (2) 2718-8180 Hitachi Asia (Hong Kong) Ltd. Group III (Electronic Components) 7/F., North Tower, World Finance Centre, Harbour City, Canton Road, Tsim Sha Tsui, Kowloon, Hong Kong Tel: <852> (2) 735 9218 Fax: <852> (2) 730 0281 Telex: 40815 HITEC HXHitachi Europe Ltd. Electronic Components Group. Whitebrook Park Lower Cookham Road Maidenhead Berkshire SL6 8YA, United Kingdom Tel: <44> (1628) 585000 Fax: <44> (1628) 778322 Hitachi Europe GmbH Electronic components Group Dornacher Straβe 3 D-85622 Feldkirchen, Munich Germany Tel: <49> (89) 9 9180-0 Fax: <49> (89) 9 29 30 00 Hitachi Semiconductor (America) Inc. 179 East Tasman Drive, San Jose,CA 95134 Tel: <1> (408) 433-1990 Fax: <1>(408) 433-0223 For further information write to:
  • 19. This datasheet has been download from: www.datasheetcatalog.com Datasheets for electronics components.