LMH6654MA National Semiconductor, LMH6654MA Datasheet

IC, OP-AMP, 260MHZ, 200V/µs, SOIC-8

LMH6654MA

Manufacturer Part Number
LMH6654MA
Description
IC, OP-AMP, 260MHZ, 200V/µs, SOIC-8
Manufacturer
National Semiconductor
Datasheet

Specifications of LMH6654MA

Op Amp Type
Voltage Feedback
No. Of Amplifiers
1
Bandwidth
260MHz
Slew Rate
200V/µs
Supply Voltage Range
± 2.5V To ± 6V
Amplifier Case Style
SOIC
No. Of Pins
8
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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© 2009 National Semiconductor Corporation
Single/Dual Low Power, 250 MHz, Low Noise Amplifiers
General Description
The LMH6654/LMH6655 single and dual high speed, voltage
feedback amplifiers are designed to have unity-gain stable
operation with a bandwidth of 250 MHz. They operate from
±2.5V to ±6V and each channel consumes only 4.5 mA. The
amplifiers feature very low voltage noise and wide output
swing to maximize signal-to-noise ratio.
The LMH6654/LMH6655 have a true single supply capability
with input common mode voltage range extending 150 mV
below negative rail and within 1.3V of the positive rail.
LMH6654/LMH6655 high speed and low power combination
make these products an ideal choice for many portable, high
speed application where power is at a premium.
The LMH6654 is packaged in 5-Pin SOT-23 and 8-Pin SOIC.
The LMH6655 is packaged in 8-Pin MSOP and 8-Pin SOIC.
The LMH6654/LMH6655 are built on National’s Advance
VIP10 ™ (Vertically Integrated PNP) complementary bipolar
process.
Typical Performance Characteristics
VIP10 ™ is a trademark of National Semiconductor Corporation.
Input Voltage Noise vs. Frequency
200165
LMH6654/LMH6655
20016560
Features
(V
Applications
S
Voltage feedback architecture
Unity gain bandwidth
Supply voltage range
Slew rate
Supply current
Input common mode voltage
Output voltage swing (R
Input voltage noise
Input current noise
Settling Time to 0.01%
ADC drivers
Consumer video
Active filters
Pulse delay circuits
xDSL receiver
Pre-amps
= ±5V, T
Closed Loop Gain vs. Frequency
J
= 25°C, Typical values unless specified).
L
= 100Ω)
−5.15V to +3.7V
4.5 mA/channel
June 24, 2009
www.national.com
−3.6V to 3.4V
±2.5V to ±6V
20016558
4.5 nV/
1.7 pA/
200 V/µsec
250 MHz
25 ns
Hz
Hz

Related parts for LMH6654MA

LMH6654MA Summary of contents

Page 1

... The LMH6655 is packaged in 8-Pin MSOP and 8-Pin SOIC. The LMH6654/LMH6655 are built on National’s Advance VIP10 ™ (Vertically Integrated PNP) complementary bipolar process. Typical Performance Characteristics Input Voltage Noise vs. Frequency VIP10 ™ trademark of National Semiconductor Corporation. © 2009 National Semiconductor Corporation LMH6654/LMH6655 Features (V = ±5V, T ...

Page 2

... Absolute Maximum Ratings If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. ESD Tolerance (Note 2) Human Body Model Machine Model V Differential IN Output Short Circuit Duration Supply Voltage (V + − V − ) Voltage at Input pins Storage Temperature Range ± ...

Page 3

Symbol Parameter C Input Capacitance IN CMRR Common Mode Rejection Ration CMVR Input Common- Mode Voltage Range Transfer Characteristics A Large Signal Voltage Gain VOL Output Characteristics Output Swing High V Output Swing Low O Output Swing High Output Swing ...

Page 4

Symbol Parameter Distortion and Noise Response e Input Referred Voltage Noise n i Input Referred Current Noise n Second Harmonic Distortion Third Harmonic Distortion X Crosstalk (for LMH6655 only) t Input Characteristics V Input Offset Voltage Input ...

Page 5

... OS 5-Pin SOT-23 (LMH6654) 20016520 Top View Package Marking Transport Media 95 Units Rails LMH6654MA 2.5k Units Tape and Reel 95 Units Rails LMH6655MA 2.5k Units Tape and Reel 1k Units Tape and Reel A66A 3K Units Tape and Reel ...

Page 6

Typical Performance Characteristics ≥ = 402Ω and for gain R +2, and R F Closed Loop Bandwidth (G = +1) Closed Loop Bandwidth (G = +5) Supply Current per Channel vs. Supply Voltage www.national.com T = 25° ...

Page 7

Offset Voltage vs. Supply Voltage (V CM Offset Voltage vs. Common Mode Bias Current vs. Common Mode Voltage = 0V) Offset Voltage vs. Common Mode 20016549 Bias Current and Offset Voltage vs. Temperature 20016539 Bias Current vs. Common Mode Voltage ...

Page 8

A , PSRR and CMRR vs. Temperature OL Inverting Large Signal Pulse Response (V Non-Inverting Large Signal Pulse Response (V www.national.com Inverting Large Signal Pulse Response (V 20016550 = ±5V) Non-Inverting Large Signal Pulse Response (V S 20016504 = ±5V) ...

Page 9

Non-Inverting Small Signal Pulse Response (V Inverting Small Signal Pulse Response (V Input Voltage and Current Noise vs. Frequency (V = ±5V ±5V) Inverting Small Signal Pulse Response (V S 20016507 = ±5V) Input Voltage and Current Noise ...

Page 10

Harmonic Distortion vs. Frequency Harmonic Distortion vs. Temperature V = ±5V MHz Harmonic Distortion vs. Gain V = ±5V MHz www.national.com ...

Page 11

Harmonic Distortion vs. Output Swing ( ±5V MHz) S 20016522 CMRR vs. Frequency 20016564 Output Sourcing Current 20016547 PSRR vs. Frequency Output Sinking Current CrossTalk vs. Frequency (LMH6655 only) 11 20016516 20016546 20016561 ...

Page 12

CrossTalk vs. Frequency (LMH6655 only) Open Loop Gain and Phase vs. Frequency Application Information GENERAL INFORMATION The LMH6654 single and LMH6655 dual high speed, voltage feedback amplifiers are manufactured Semiconductor’s new VIP10 (Vertically Integrated PNP) com- plementary bipolar process. These ...

Page 13

... National provides the following evaluation boards as a guide for high frequency layout and as an aid in device testing and characterization. Device Package LMH6654MF 5-Pin SOT-23 LMH6654MA 8-Pin SOIC LMH6655MA 8-Pin SOIC LMH6655MM 8-Pin MSOP The free evaluation board are shipped automatically when a device sample request is placed with National Semiconduc- tor ...

Page 14

COMPONENTS SELECTION AND FEEDBACK RESISTOR It is important in high-speed applications to keep all compo- nent leads short since wires are inductive at high frequency. For discrete components, choose carbon composition axially leaded resistors and micro type capacitors. Surface mount ...

Page 15

TOTAL INPUT NOISE VS. SOURCE RESISTANCE The noise model for the non-inverting amplifier configuration showing all noise sources is described in Figure 5. In addition to the intrinsic input voltage noise (e noise ( sources, ...

Page 16

The noise figure is related to the equivalent source resistance (R ) and the parallel combination of R seq noise figure, the following steps are recommended: 1. Minimize R || Choose the Optimum OPT ...

Page 17

Physical Dimensions inches (millimeters) unless otherwise noted 8-Pin SOIC NS Package Number M08A 5-Pin SOT-23 NS Package Number MF05A 17 www.national.com ...

Page 18

MSOP NS Package Number MUA08A 18 ...

Page 19

Notes 19 www.national.com ...

Page 20

... For more National Semiconductor product information and proven design tools, visit the following Web sites at: Products Amplifiers www.national.com/amplifiers Audio www.national.com/audio Clock and Timing www.national.com/timing Data Converters www.national.com/adc Interface www.national.com/interface LVDS www.national.com/lvds Power Management www.national.com/power Switching Regulators www.national.com/switchers LDOs www.national.com/ldo LED Lighting www ...

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