EEWORLDEEWORLDEEWORLD

Part Number

Search

LT1208CN8#PBF

Description
Op Amp Dual High Speed Amplifier ±15V/30V 8-Pin PDIP N Tube
File Size250KB,12 Pages
ManufacturerADI
Websitehttps://www.analog.com
Download Datasheet Parametric Compare View All

LT1208CN8#PBF Overview

Op Amp Dual High Speed Amplifier ±15V/30V 8-Pin PDIP N Tube

LT1208CN8#PBF Parametric

Parameter NameAttribute value
EU restricts the use of certain hazardous substancesCompliant
ECCN (US)EAR99
Part StatusActive
HTS8542.33.00.01
TypeHigh Speed Amplifier
Manufacturer TypeHigh Speed Amplifier
Number of Channels per Chip2
Process TechnologyBipolar
Maximum Input Offset Voltage (mV)3@±5V
Minimum Single Supply Voltage (V)5
Typical Single Supply Voltage (V)28|24|18|15|12|9
Maximum Single Supply Voltage (V)30
Minimum Dual Supply Voltage (V)±2.5
Typical Dual Supply Voltage (V)±12|±9|±5|±3
Maximum Dual Supply Voltage (V)±15
Maximum Input Offset Current (uA)0.4@±15V
Maximum Input Bias Current (uA)8@±15V
Maximum Supply Current (mA)18@±15V
Typical Output Current (mA)40@±5V@0C to 70C
Power Supply TypeDual|Single
Typical Slew Rate (V/us)250@±5V
Typical Input Noise Voltage Density (nV/rtHz)22@±15V
Typical Voltage Gain (dB)76.9
Typical Noninverting Input Current Noise Density (pA/rtHz)1.1@±15V
Minimum PSRR (dB)76
Minimum CMRR (dB)86
Minimum CMRR Range (dB)85 to 90
Typical Gain Bandwidth Product (MHz)45
Typical Settling Time (ns)90
Shut Down SupportNo
Minimum Operating Temperature (°C)-40
Maximum Operating Temperature (°C)85
PackagingTube
Pin Count8
Standard Package NameDIP
Supplier PackagePDIP N
MountingThrough Hole
Package Height3.3
Package Length10.16(Max)
Package Width6.48
PCB changed8
Lead ShapeThrough Hole
LT1208/LT1209
Dual and Quad
45MHz, 400V/µs Op Amps
FEATURES
s
s
s
s
s
s
s
s
s
s
DESCRIPTIO
45MHz Gain-Bandwidth
400V/µs Slew Rate
Unity-Gain Stable
7V/mV DC Gain, R
L
= 500Ω
3mV Maximum Input Offset Voltage
±12V
Minimum Output Swing into 500Ω
Wide Supply Range:
±2.5V
to
±15V
7mA Supply Current per Amplifier
90ns Settling Time to 0.1%, 10V Step
Drives All Capacitive Loads
APPLICATI
s
s
s
s
s
s
S
The LT1208/LT1209 are dual and quad very high speed
operational amplifiers with excellent DC performance. The
LT1208/LT1209 feature reduced input offset voltage and
higher DC gain than devices with comparable bandwidth
and slew rate. Each amplifier is a single gain stage with
outstanding settling characteristics. The fast settling time
makes the circuit an ideal choice for data acquisition
systems. Each output is capable of driving a 500Ω load to
±12V
with
±15V
supplies and a 150Ω load to
±3V
on
±5V
supplies. The amplifiers are also capable of driving large
capacitive loads which make them useful in buffer or cable
driver applications.
The LT1208/LT1209 are members of a family of fast, high
performance amplifiers that employ Linear Technology
Corporation’s advanced bipolar complementary
processing.
Wideband Amplifiers
Buffers
Active Filters
Video and RF Amplification
Cable Drivers
Data Acquisition Systems
TYPICAL APPLICATI
1MHz, 4th Order Butterworth Filter
909Ω
1.1k
47pF
V
IN
220pF
470pF
+
+
909Ω
2.67k
1/2
LT1208
1.1k
2.21k
22pF
1/2
LT1208
V
OUT
1208/09 TA01
U
Inverter Pulse Response
1208/09 TA02
UO
UO
1

LT1208CN8#PBF Related Products

LT1208CN8#PBF LT1208CN8 LT1208CS8#PBF LT1208CS8#TRPBF LT1209CN#PBF LT1209CS#PBF LT1209CS#TR LT1209CS#TRPBF LT1209CS
Description Op Amp Dual High Speed Amplifier ±15V/30V 8-Pin PDIP N Tube Op Amp Dual High Speed Amplifier ±15V/30V 8-Pin PDIP N Op Amp Dual High Speed Amplifier ±15V/30V 8-Pin SOIC N Tube Op Amp Dual High Speed Amplifier ±15V/30V 8-Pin SOIC N T/R Op Amp Quad High Speed Amplifier ±15V/30V 14-Pin PDIP N Tube Op Amp Quad High Speed Amplifier ±15V/30V 16-Pin SOIC N Tube Op Amp Quad High Speed Amplifier ±15V/30V 16-Pin SOIC N T/R Op Amp Quad High Speed Amplifier ±15V/30V 16-Pin SOIC N T/R Op Amp Quad High Speed Amplifier ±15V/30V 16-Pin SOIC N
EU restricts the use of certain hazardous substances Compliant Not Compliant Compliant Compliant Compliant Compliant Not Compliant Compliant Not Compliant
ECCN (US) EAR99 EAR99 EAR99 EAR99 EAR99 EAR99 EAR99 EAR99 EAR99
Part Status Active Unconfirmed Active Active Active Active Unconfirmed Active Unconfirmed
Type High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier
Manufacturer Type High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier High Speed Amplifier
Number of Channels per Chip 2 2 2 2 4 4 4 4 4
Process Technology Bipolar Bipolar Bipolar Bipolar Bipolar Bipolar Bipolar Bipolar Bipolar
Maximum Input Offset Voltage (mV) 3@±5V 3@±5V 3@±5V 3@±5V 3@±5V 3@±5V 3@±5V 3@±5V 3@±5V
Minimum Single Supply Voltage (V) 5 5 5 5 5 5 5 5 5
Typical Single Supply Voltage (V) 28|24|18|15|12|9 9|12|15|18|24|28 9|12|15|18|24|28 9|12|15|18|24|28 9|12|15|18|24|28 9|12|15|18|24|28 28|24|18|15|12|9 9|12|15|18|24|28 9|12|15|18|24|28
Maximum Single Supply Voltage (V) 30 30 30 30 30 30 30 30 30
Minimum Dual Supply Voltage (V) ±2.5 ±2.5 ±2.5 ±2.5 ±2.5 ±2.5 ±2.5 ±2.5 ±2.5
Typical Dual Supply Voltage (V) ±12|±9|±5|±3 ±9|±12|±3|±5 ±3|±5|±9|±12 ±3|±5|±9|±12 ±5|±3|±9|±12 ±3|±5|±9|±12 ±5|±3|±12|±9 ±3|±5|±9|±12 ±5|±3|±9|±12
Maximum Dual Supply Voltage (V) ±15 ±15 ±15 ±15 ±15 ±15 ±15 ±15 ±15
Maximum Input Offset Current (uA) 0.4@±15V 0.4@±15V 0.4@±15V 0.4@±15V 0.4@±15V 0.4@±15V 0.4@±15V 0.4@±15V 0.4@±15V
Maximum Input Bias Current (uA) 8@±15V 8@±15V 8@±15V 8@±15V 8@±15V 8@±15V 8@±15V 8@±15V 8@±15V
Maximum Supply Current (mA) 18@±15V 18@±15V 18@±15V 18@±15V 36@±15V 36@±15V 36@±15V 36@±15V 36@±15V
Typical Output Current (mA) 40@±5V@0C to 70C 40@±5V@0C to 70C 40@±5V@0C to 70C 40@±5V@0C to 70C 40@±5V@0C to 70C 40@±5V@0C to 70C 40@±5V@0C to 70C 40@±5V@0C to 70C 40@±5V@0C to 70C
Power Supply Type Dual|Single Single|Dual Single|Dual Single|Dual Single|Dual Dual|Single Dual|Single Single|Dual Single|Dual
Typical Slew Rate (V/us) 250@±5V 250@±5V 250@±5V 250@±5V 250@±5V 250@±5V 250@±5V 250@±5V 250@±5V
Typical Input Noise Voltage Density (nV/rtHz) 22@±15V 22@±15V 22@±15V 22@±15V 22@±15V 22@±15V 22@±15V 22@±15V 22@±15V
Typical Voltage Gain (dB) 76.9 76.9 76.9 76.9 76.9 76.9 76.9 76.9 76.9
Typical Noninverting Input Current Noise Density (pA/rtHz) 1.1@±15V 1.1@±15V 1.1@±15V 1.1@±15V 1.1@±15V 1.1@±15V 1.1@±15V 1.1@±15V 1.1@±15V
Minimum PSRR (dB) 76 76 76 76 76 76 76 76 76
Minimum CMRR (dB) 86 86 86 86 86 86 86 86 86
Minimum CMRR Range (dB) 85 to 90 85 to 90 85 to 90 85 to 90 85 to 90 85 to 90 85 to 90 85 to 90 85 to 90
Typical Gain Bandwidth Product (MHz) 45 45 45 45 45 45 45 45 45
Typical Settling Time (ns) 90 90 90 90 90 90 90 90 90
Shut Down Support No No No No No No No No No
Minimum Operating Temperature (°C) -40 -40 -40 -40 -40 -40 -40 -40 -40
Maximum Operating Temperature (°C) 85 85 85 85 85 85 85 85 85
Pin Count 8 8 8 8 14 16 16 16 16
Standard Package Name DIP DIP SOP SOP DIP SOP SOP SOP SOP
Supplier Package PDIP N PDIP N SOIC N SOIC N PDIP N SOIC N SOIC N SOIC N SOIC N
Mounting Through Hole Through Hole Surface Mount Surface Mount Through Hole Surface Mount Surface Mount Surface Mount Surface Mount
Package Height 3.3 3.3 1.5(Max) 1.5(Max) 3.3 1.5(Max) 1.5(Max) 1.5(Max) 1.5(Max)
Package Length 10.16(Max) 10.16(Max) 5(Max) 5(Max) 19.56(Max) 10.01(Max) 10.01(Max) 10.01(Max) 10.01(Max)
Package Width 6.48 6.48 3.99(Max) 3.99(Max) 6.48 3.99(Max) 3.99(Max) 3.99(Max) 3.99(Max)
PCB changed 8 8 8 8 14 16 16 16 16
Lead Shape Through Hole Through Hole Gull-wing Gull-wing Through Hole Gull-wing Gull-wing Gull-wing Gull-wing
HTS 8542.33.00.01 - - 8542.33.00.01 8542.33.00.01 - 8542.33.00.01 8542.33.00.01 8542.33.00.01
Packaging Tube - Tube Tape and Reel Tube Tube Tape and Reel Tape and Reel -
The difference between nonbios and bios
In the CMD file, there are nonBIOS applications and BIOS applications. In TI, C2000 is suitable for nonBIOS. BIOS is suitable for C5000 and C6000, real-time operating systems....
安_然 DSP and ARM Processors
Improve your basic knowledge of embedded systems
As the Internet of Things technology is booming, embedded development has regained the attention of IT professionals. So, what is an embedded system? What are the components of an embedded system? Wha...
Aguilera Analogue and Mixed Signal
Linux kernel startup process - Xunwei IMX6ULL development board (I)
In the previous chapters, we introduced some related contents of uboot and Linux kernel. Now let's look at the general boot process of Linux kernel. The boot process of Linux kernel is much more compl...
马佳徐徐 ARM Technology
I just started working on WINCE, I would like to ask you a few questions! ! ! ! Thank you
The questions are as follows: 1. How is random access to the STL queue implemented? 2. The implementation of the operating system stack, implemented in C language 3. The difference in usage of drivers...
strongli Embedded System
How does F149's P5.1 multiplex SIMO work? What's the principle?
How to use P5.1 of F149 to reuse SIMO? What is the principle? Thanks in advance...
fxh125 Microcontroller MCU
Analysis of the whole process of C language compilation
The concept of compilation: The compiler reads the source program (character stream), performs lexical and grammatical analysis on it, converts high-level language instructions into functionally equiv...
Jacktang DSP and ARM Processors

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 504  1791  2472  2211  616  11  37  50  45  13 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号