Pitch (mm) | 5.08 |
Lead Count (#) | 8 |
Pkg. Type | CAN |
Pkg. Dimensions (mm) | 0.00 x 9.14 x 0.00 |
Pkg. Code | H2A |
Moisture Sensitivity Level (MSL) | Not Applicable |
Pb (Lead) Free | Exempt |
ECCN (US) | EAR99 |
HTS (US) |
Pkg. Type | CAN |
Lead Count (#) | 8 |
Carrier Type | Tray |
Moisture Sensitivity Level (MSL) | Not Applicable |
Pitch (mm) | 5.1 |
Pkg. Dimensions (mm) | 0.0 x 9.1 x 0.00 |
Pb (Lead) Free | Exempt |
Pb Free Category | Gold Plate-e4 |
MOQ | 70 |
Temp. Range | -55 to +125°C |
CAGE code | 34371 |
Advanced Features | Video, High RIN, Open Loop, High IOUT |
Bandwidth (MHz) | 110 |
Channels (#) | 1 |
Die Sale Availability? | No |
Flow | Harsh Environment & MIL-STD-883 |
Gain Min | 1 |
IOUT (mA) | 200 |
IS per Amp (mA) | 8.3 |
Length (mm) | 0 |
Offset Voltage (max) | 5mV |
Op Amp or Buffer | Buffer |
PROTO Availability? | No |
PSRR (db) | 64 |
Qualification Level | Class Q |
Rail-to-Rail Input/Output | No |
Rating | MIL-STD-883 |
Slew Rate (V/µs) | 1300 |
Supply Voltage (max) (V) | 40 - 40 |
Supply Voltage (min) (V) | 10 - 10 |
Supply Voltage Vcc (Min) (V) | 5 |
Supply Voltage Vcc Range | 5-20 |
Thickness (mm) | 0 |
Width (mm) | 9.1 |
The HA-5002/883 is a monolithic, wideband, high slew rate, high output current, buffer amplifier. Utilizing the advantages of the Harris Dielectric Isolation technologies, the HA-5002/883 current buffer offers 1300V/µs slew rate typically and 1000V/µs minimum with 110MHz of bandwidth. The ±100mA minimum output current capability is enhanced by a 3Ω output impedance. The monolithic HA-5002/883 will replace the hybrid LH0002 with corresponding performance increases. These characteristics range from the 3MΩ (typ) input impedance to the increased output voltage swing. Monolithic design technologies have allowed a more precise buffer to be developed with more than an order of magnitude smaller gain error. The voltage gain is 0. 98 guaranteed minimum with a 1kΩ load and 0. 96 minimum with a 100Ω load. The HA-5002/883 will provide many present hybrid users with a higher degree of reliability and at the same time increase overall circuit performance.