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HS9-248RH-Q

Intersil Corporation
Part Number HS9-248RH-Q
Manufacturer Intersil Corporation
Description Radiation Hardened Triple Line(party-Line) Transmitter
Published Mar 26, 2005
Detailed Description HS-245RH, HS-246RH, HS-248RH Data Sheet August 1999 File Number 3034.2 HS-245RH HS-246RH HS-248RH Radiation Hardened T...
Datasheet PDF File HS9-248RH-Q PDF File

HS9-248RH-Q
HS9-248RH-Q


Overview
HS-245RH, HS-246RH, HS-248RH Data Sheet August 1999 File Number 3034.
2 HS-245RH HS-246RH HS-248RH Radiation Hardened Triple Line Transmitter Radiation Hardened Triple Line Receiver Radiation Hardened Triple Party-Line Receiver Features • Electrically Screened to SMD # 5962-96722 and 596296723 • QML Qualified per MIL-PRF-38535 Requirements • Radiation Hardened DI Processing - Total Dose (γ) .
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2 x 105 RADs(Si) - Latchup Free - Neutron Fluence .
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5 x 1012 N/cm2 • Replaces HD-245/246/248 • Current Mode Operation • High Speed with 50 Foot Cable .
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15MHz High Speed with 1000 Foot Cable .
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2MHz • High Noise Immunity • Low EMI Generation • Low Power Dissipation • High Common Mode Rejection • Transmitter and Receiver Party Line Capability • Tolerates -2.
0V to +20.
0V Ground Differential (Transmitter with Respect to Receiver) • Transmitter Input/Receiver Output TTL/DTL Compatible The HS-245RH/246RH/248RH radiation hardened triple line transmitter and triple line receivers are fabricated using the Intersil dielectric isolation process.
These parts are identical in pinout and function to the original HD-245/246/248.
They are also die size and bond pad placement compatible with the original parts for those customers who buy dice for hybrid assembly.
Each transmitter-receiver combination provides a digital interface between systems linked by 100Ω twisted pair, shielded cable.
Each device contains three circuits fabricated within a single monolithic chip.
Data rates greater than 15MHz are possible depending on transmission line loss characteristics and length.
The transmitter employs constant current switching which provides high noise immunity along with high speeds, low power dissipation, low EMI generation and the ability to drive high capacitance loads.
In addition, the transmitters can be turned “off” allowing several transmitters to timeshare a single line...



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