Details, datasheet, quote on part number: HA3-2556-9
CategoryAnalog & Mixed-Signal Processing => Analog Multipliers
Description57MHz, Wideband, Four Quadrant, Voltage Output Analog Multiplier
CompanyIntersil Corporation
DatasheetDownload HA3-2556-9 datasheet
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Features, Applications

57MHz, Wideband, Four Quadrant, Voltage Output Analog Multiplier

The is a monolithic, high speed, four quadrant, analog multiplier constructed in the Intersil Dielectrically Isolated High Frequency Process. The voltage output simplifies many designs by eliminating the current-to-voltage conversion stage required for current output multipliers. The HA-2556 provides a 450V/s slew rate and maintains 52MHz and 57MHz bandwidths for the X and Y channels respectively, making it an ideal part for use in video systems. The suitability for precision video applications is demonstrated further by the Y Channel 0.1dB gain flatness 5.0MHz, 1.5% multiplication error, -50dB feedthrough and differential inputs with 8A bias current. The HA-2556 also has low differential gain (0.1%) and phase (0.1o) errors. The HA-2556 is well suited for AGC circuits as well as mixer applications for sonar, radar, and medical imaging equipment. The HA-2556 is not limited to multiplication applications only; frequency doubling, power detection, as well as many other configurations are possible. For MIL-STD-883 compliant product consult the HA-2556/883 datasheet.


High Speed Voltage Output. 450V/s Low Multiplication Error.1.5% Input Bias Currents. 8A 5MHz Feedthrough. -50dB Wide Y Channel Bandwidth. 57MHz Wide X Channel Bandwidth. VY 0.1dB Gain Flatness. 5.0MHz


Military Avionics Missile Guidance Systems Medical Imaging Displays Video Mixers Sonar AGC Processors Radar Signal Conditioning Voltage Controlled Amplifier Vector Generators

PART NUMBER HA9P2556-9 HA1-2556-9 TEMP. RANGE (oC) to 85 PACKAGE 16 Ld PDIP 16 Ld SOIC 16 Ld CERDIP PKG. NO. M16.3 F16.3

NOTE: The transfer equation for the HA-2556 is: (VX+ -VX-) (VY+ -VY-) = SF (VZ+ -VZ-), where SF = Scale Factor = 5V; VX, VY, VZ = Differential Inputs.

CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures. 321-724-7143 | Copyright Intersil Corporation 1999

Voltage Between V+ and V- Terminals. 35V Differential Input Voltage. 6V Output Current. 60mA

Thermal Resistance (Typical, Note 1) JA (oC/W) JC (oC/W) PDIP Package. 77 N/A SOIC Package. 90 N/A CERDIP Package. 75 20 Maximum Junction Temperature (Ceramic Package). 175oC Maximum Junction Temperature (Plastic Packages). 150oC Maximum Storage Temperature Range. to 150oC Maximum Lead Temperature (Soldering 10s). 300oC (SOIC - Lead Tips Only)

CAUTION: Stresses above those listed in "Absolute Maximum Ratings" may cause permanent damage to the device. This is a stress only rating and operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied.

NOTE: JA is measured with the component mounted on an evaluation PC board in free air.

Multiplication Error Drift Scale Factor Linearity Error VX, = 3V, Full Scale = 3V VX, = 4V, Full Scale = 4V VX, = 5V, Full Scale 5V AC CHARACTERISTICS Small Signal Bandwidth = 5V Full Power Bandwidth (-3dB) Slew Rate Rise Time Overshoot Settling Time Differential Gain Differential Phase VY 0.1dB Gain Flatness VX 0.1dB Gain Flatness THD N 1MHz Feedthrough 5MHz Feedthrough SIGNAL INPUT (VX, VY, VZ) Input Offset Voltage 10VP-P Note 5 Note 6 Note To 0.1%, Note 5 Notes 3, 8 Notes = 5V, Note = 5V, Note 8 Note 4 200mVP-P, Other Ch Nulled 200mVP-P, Other Ch Nulled

Average Offset Voltage Drift Input Bias Current

PARAMETER Input Offset Current VSUPPLY = 20pF, Unless Otherwise Specified (Continued) TEST CONDITIONS TEMP. (oC) 25 Full Differential Input Resistance Full Scale Differential Input (VX, VY, VZ) VX Common Mode Range VY Common Mode Range CMRR Within Common Mode Range Voltage Noise (Note = 100kHz OUTPUT CHARACTERISTICS Output Voltage Swing Output Current Output Resistance POWER SUPPLY +PSRR -PSRR Supply Current NOTES: Error is percent of full scale, to 1VDC offset, = 5V. VOUT to 4V. VOUT to 15V. Guaranteed by characterization and not 100% tested. = 5.5V. Note 7 Note 7 Full dB mA Note 10 Full V mA Full 25 MIN 5 65 TYP MAX 2 3 UNITS A dB nV/Hz


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