ILX3232DT Interface Transceiver IC
- Brand: IK Semiconductor
- Mounting Type:SMD
- Part Number: ILX3232DT
- Package: SO/SOIC
IK Semiconductor SMD ILX3232DT Interface Transceiver IC
ILX3232 is a 3.3V powered EIA/TIA-232 and V.28/V.24 communication interface with low power requirements, high data-rate capabilities. ILX3232 has a proprietary low dropout transmitter output stage providing true RS-232 performance from 3.3vVto 5.5V supplies. The device requires only four small 0.1 ?F standard external capacitors for operations from 3.3V supply. ILX3232 has two receivers and two drivers. The device is guaranteed to run at data rates of 120Kbps while maintaining RS-232 output levels. Typical applications are Notebook, Subnotebook and Palmtop Computers, Battery Powered Equipment, Hand-Held Equipment, Peripherals and Printers. ILX3232D DatasheetINA117P
The INA117 is a precision unity-gain difference
amplifier with very high common-mode input voltage
range. It is a single monolithic IC consisting of a
precision op amp and integrated thin-film resistor
network. It can accurately measure small differential
voltages in the presence of common-mode signals up
to ?200V. The INA117 inputs are protected from
momentary common-mode or differential overloads
up to ?500V
INA121UA
The INA121 is a FET-input, low power instrumentation amplifier offering excellent accuracy. Its versatile
three-op amp design and very small size make it ideal
for a variety of general purpose applications. Low bias
current (?4pA) allows use with high impedance
sources.
Gain can be set from 1V to 10,000V/V with a single
external resistor. Internal input protection can withstand up to ?40V without damage.
INA132U
The INA132 is a low power, unity-gain differential
amplifier consisting of a precision op amp with a
precision resistor network. The on-chip resistors are
laser trimmed for accurate gain and high commonmode rejection. Excellent TCR tracking of the resistors maintains gain accuracy and common-mode rejection over temperature. The internal op amp?s common-mode range extends to the negative supply?
ideal for single-supply applications. It operates on
single (2.7V to 36V) or dual supplies (?1.35V to
?18V).
INA137UA
The INA137 and INA2137 are differential line receivers
consisting of high performance op amps with on-chip
precision resistors. They are fully specified for high
performance audio applications and have excellent ac
specifications, including low distortion (0.0005% at
1kHz) and high slew rate (14V/?s), assuring good
dynamic response. In addition, wide output voltage
swing and high output drive capability allow use in a
wide variety of demanding applications. The dual version features completely independent circuitry for lowest crosstalk and freedom from interaction, even when
overdriven or overloaded.
INA139NA/250
The device converts a differential input voltage to a
current output. This current is converted back to a
voltage with an external load resistor that sets any
gain from 1 to over 100. Although designed for
current shunt measurement, the circuit invites
creative applications in measurement and level
shifting.
Both the INA139 and INA169 are available in 5-pin
SOT-23 packages. The INA139 device is specified for
the ?40?C to 125?C temperature range, and the
INA169 is specified from ?40?C to 85?C.
INA155UA-ND
The INA155 is a low-cost CMOS instrumentation
amplifier with rail-to-rail output swing optimized for
low voltage, single-supply operation.
Wide bandwidth (550kHz in G = 10) and high slew
rate (6.5V/?s) make the INA155 suitable for driving
sampling A/D converters as well as general purpose
and audio applications. Fast settling time allows use
with higher speed sensors and transducers and rapid
scanning data acquisition systems.
INA163UA
The INA163 is a very low-noise, low-distortion, monolithic instrumentation amplifier. Its current-feedback
circuitry achieves very wide bandwidth and excellent
dynamic response over a wide range of gain. It is ideal
for low-level audio signals such as balanced lowimpedance microphones. Many industrial, instrumentation, and medical applications also benefit from its
low noise and wide bandwidth.
Unique distortion cancellation circuitry reduces distortion to extremely low levels, even in high gain. The
INA163 provides near-theoretical noise performance
for 200? source impedance. Its differential input, low
noise, and low distortion provide superior performance
in professional microphone amplifier applications
IR2153PBF
The IR2153D(S) gate driver IC is an improved version of the popular IR2155 and IR2151 gate driver ICs, and it includes a high voltage half-bridge gate driver as well as a front end oscillator similar to the industry standard CMOS555 timer. The IR2153 has more functionality and is simpler to use than previous integrated circuits. The CT pin has a shutdown feature that allows both gate driver outputs to be disabled with a low voltage control signal. Furthermore, once the rising under voltage lockout threshold on VCC is reached, the gate driver output pulse widths are the same, resulting in a more stable frequency vs time profile at startup. Noise immunity has been significantly improved by lowering the gate drivers' peak di/dt and increasing the under voltage lockout hysteresis to 1V. Finally, special attention has been payed to maximizing the latch immunity of the device, and providing comprehensive ESD protection on all pins.
Features
?Integrated 600V half-bridge gate driver
?15.6V zener clamp on Vcc
?True micropower start up
?Tighter initial deadtime control
?Low temperature coefficient deadtime
?Shutdown feature (1/6th Vcc) on CTpin
?Increased under voltage lockout Hysteresis (1V)
Lower power level-shifting circuit
?Constant LO, HO pulse widths at startup
?Lower di/dt gate driver for better noise immunity
?Low side output in phase with RT
?Internal 50nsec (typ.) bootstrap diode (IR2153D)
?Excellent latch immunity on all inputs and outputs
?ESD protection on all leads
?Also available LEAD-FREE
IR21844S
The IR2184(4)(S) are high voltage,
high speed power MOSFET and IGBT
drivers with dependent high and low
side referenced output channels. Proprietary HVIC and latch immune
CMOS technologies enable ruggedized monolithic construction. The
logic input is compatible with standard
CMOS or LSTTL output, down to 3.3V
logic. The output drivers feature a
high pulse current buffer stage designed for minimum driver cross-conduction. The floating channel can be
used to drive an N-channel power MOSFET or IGBT in the high side configuration which operates up to 600
volts