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LMH6503  Product Folder

Wideband, Low Power, Linear Variable Gain Amplifier
  
Generic P/N 6503
General
Description
Features Datasheet Package
& Models
Samples
& Pricing
Application
Notes

Parametric Table Parametric Table
Temperature Min (deg C) -40 
Temperature Max (deg C) 85 
Signal Channel BW (MHz) 130 
Gain Adjust Range (dB) 70 
Gain Control Interface Voltage 
Analog Control BW (MHz) 100 
Supply Min (Volt)
Supply Max (Volt) 12 
Supply Current (mA) 27 
Slew Rate (Volts/usec) 1800 
Output Current (mA) 90 
Offset Voltage (mV) 300 
Max Input Bias Current (nA) 20000 
Voltage Noise (nV/Hz) 6.60 
HD 2nd (dB) -60 
HD 3rd (dB) -61 
Diff Gain (dB)
Diff Phase (%)
Special Features Differential Input 

Datasheet

TitleSize in KbytesDate
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LMH6503 Wideband, Low Power, Linear Variable Gain Amplifier 979 Kbytes 8-Dec-03 View Online Download Receive via Email

If you have trouble printing or viewing PDF file(s), see Printing Problems.

Package Availability, Models, Samples & Pricing

Part NumberPackageStatusModelsSamples &
Electronic
Orders
Budgetary PricingStd
Pack
Size
Package
Marking
TypePinsMSL/Lead-Free AvailabilityLead
Time
QtySPICEIBISQty$US each
LMH6503MASOIC NARROW14StatusFull productionLMH6503.MODN/A24 Hour Samples
Buy Now
1K+$3.48rail
of
55
NSUZXYTT
LMH6503MA
5 weeks0
LMH6503MAXSOIC NARROW14StatusFull productionLMH6503.MODN/A 
Buy Now
1K+$3.48reel
of
2500
NSUZXYTT
LMH6503MA
5 weeks0

General Description

The LMH6503 is a wideband DC coupled differential input voltage controlled gain stage followed by a high-speed current feedback Op Amp which can directly drive a low impedance load. Gain adjustment range is more than 70dB for up to 10MHz.

Maximum gain is set by external components and the gain can be reduced all the way to cut-off. Power consumption is 370mW with a speed of 135MHz . Output referred DC offset voltage is less than 350mV over the entire gain control voltage range. Device-to-device Gain matching is within 0.7dB at maximum gain. Furthermore, gain at any VG is tested and the tolerance is guaranteed. The output current feedback Op Amp allows high frequency large signals (Slew Rate = 1800V/µs) and can also drive heavy load current (75mA). Differential inputs allow common mode rejection in low level amplification or in applications where signals are carried over relatively long wires. For single ended operation, the unused input can easily be tied to ground (or to a virtual half-supply in single supply application). Inverting or non-inverting gains could be obtained by choosing one input polarity or the other.

To further increase versatility when used in a single supply application, gain control range is set to be from -1V to +1V relative to pin 11 potential (ground pin). In single supply operation, this ground pin is tied to a "virtual" half supply. Gain control pin has high input impedance to simplify its drive requirement. Gain control is linear in V/V throughout the gain adjustment range. Maximum gain can be set to be anywhere between 1V/V to 100V/V or higher. For linear in dB gain control applications, see LMH6502 datasheet.

The LMH6503 is available in the SOIC-14 package.

Features

VS = ±5V, TA = 25°C, RF = 1k, RG = 174, RL = 100, AV = AV(MAX) = 10, Typical values unless specified.

-3dB BW

135MHz

Gain control BW

100MHz

Adjustment range (typical over temp)

70dB

Gain matching (limit)

±0.7dB

Slew rate

1800V/µs

Supply current (no load)

37mA

Linear output current

±75mA

Output voltage (RL = 100)

±3.2V

Input voltage noise

6.6nV/

Input current noise

2.4pA//

THD (20MHz, RL = 100, VO = 2Vpp)

-57dBc

Replacement for CLC522

 

Applications

  • Variable attenuator
  • AGC
  • Voltage controller filter
  • Multiplier

Application Notes

TitleSize in KbytesDate
View Online

Download

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CLC522EB: CLC520EB/CLC522EB Evaluation Boards 121 Kbytes 24-Oct-01 View Online Download Receive via Email
OA-16: OA-16 Wideband AGC Amplifier as a Differential Amplifier 268 Kbytes 17-Sep-02 View Online Download Receive via Email
OA-23: OA-23 CLC522 Advanced Operating Considerations and Military Specifications 250 Kbytes 29-Oct-99 View Online Download Receive via Email

If you have trouble printing or viewing PDF file(s), see Printing Problems.

[Information as of 15-Jan-2004]