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CMT-741G57

The CMT-741G57 is a high temperature configurable device enabling 10 different logic functions: Inverter, 2-Input AND, 2-Input NOR with both inputs inverted, 2-Input NAND with A input inverted, 2-Input OR with B Input Inverted, 2-Input NAND with B input inverted, 2-Input OR Gate with A input inverted, 2-Input NOR Gate, 2-Input AND with both inputs inverted, 2-Input XNOR. This device is optimized for industrial and aerospace applications and specificied for operating junction temperature from -55°C up to +175°C (Tj).


Status: Last Time Buy   


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0.0 EUR
CMT-741G58

The CMT-741G58 is a high temperature configurable device enabling 10 different logic functions: 2-Input NAND, 2-Input OR with Both Inputs Inverted, 2-Input AND with A Input Inverted, 2-Input NOR with B Input Inverted, 2-Input AND with B Input Inverted, 2-Input NOR with A Input Inverted, 2-Input OR, 2-Input NAND with Both Inputs Inverted, 2-Input XNOR, Buffer. This device is optimized for industrial applications and specificied for operating junction temperature from -55°C up to +175°C (Tj).


Status: Last Time Buy   


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CMT-741G97

The CMT-741G97 is a high temperature configurable device enabling 9 different logic functions: Inverter, 2 to 1 Multiplexer, 2-Input AND, 2-Input NOR with Both Inputs Inverted, 2-Input OR with A Input Inverted, 2-Input NAND with B Input Inverted, 2-Input NOR with B Input Inverted, 2-Input AND with A Input Inverted,2-Input OR. This device is optimized for industrial applications and specificied for operating junction temperature from -55°C up to +175°C (Tj).


Status: Last Time Buy   


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CMT-741G175

The CXT-741G175 is a high temperature positive-edge triggered D Flip-Flop gate. This device is optimized for industrial applications and specificied for operating junction temperature from -55°C up to +175°C (Tj).


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CMT-744040

CMT-74xx Logic Family is optimized for High-Temperature, High Reliability applications. It brings digital functions to system designers targeting high temperature electronics, up to +175°C. The CMT-744040 is a high-temperature 12-stage asynchronous binary counter. It can operate with supply voltage from 3V to 5.5V.


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CHT-7404

CHT-74xx Logic Family is optimized for High-Temperature, High Reliability applications. It brings digital functions to system designers targeting high temperature electronics, up to +225°C. The CHT-7404 contains 6 independent high-temperature inverters. It can operate with a supply voltage from 3V to 5.5V.


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CHT-74021

CHT-74xx Logic Family is optimized for High-Temperature, High Reliability applications. It brings digital functions to system designers targeting high temperature electronics, up to +225°C. The CHT-74021 contains 4 independent high-temperature 2-input NOR gates. It can operate with supply a voltage from 3V to 5.5V.


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CHT-7432

CHT-74xx Logic Family is optimized for High-Temperature, High Reliability applications. It brings digital functions to system designers targeting high temperature electronics, up to +225°C. The CHT-7432 contains 4 independent high-temperature 2-input OR gates. It can operate with supply voltage from 3V to 5.5V.


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CHT-7474

CHT-74xx Logic Family is optimized for High-Temperature, High Reliability applications. It brings digital functions to system designers targeting high temperature electronics, up to +225°C. The CHT-7474 contains 2 independent high-temperature positive-edge triggered D-type Flip-flop. It can operate with a supply voltage from 3V to 5.5V.


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CHT-7486

CHT-74xx Logic Family is optimized for High-Temperature, High Reliability applications. It brings digital functions to system designers targeting high temperature electronics, up to +225°C. The CHT-7486 contains 4 independent high-temperature 2-input XOR gates. It can operate with supply voltage from 3V to 5.5V.


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CHT-74132

CHT-74xx Logic Family is optimized for High-Temperature, High Reliability applications. It brings digital functions to system designers targeting high temperature electronics, up to +225°C. The CHT-74132 contains 4 independent high-temperature 2-input NAND gates with Schmitt trigger. It can operate with supply voltage from 3V to 5.5V.


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CHT-744040

CHT-74xx Logic Family is optimized for High-Temperature, High Reliability applications. It brings digital functions to system designers targeting high temperature electronics, up to +225°C. The CHT-744040 is a high-temperature 12-stage asynchronous binary counter. It can operate with supply voltage from 3V to 5.5V.


Status: Last Time Buy   


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CHT-7408

CHT-74xx Logic Family is optimized for High-Temperature, High Reliability applications. It brings digital functions to system designers targeting high temperature electronics, up to +225°C. The CHT-7408 contains 4 independent high-temperature 2-input AND gates. It can operate with supply voltage from 3V to 5.5V.


Status: Last Time Buy   


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VESUVIO

VESUVIO is CISSOID’s technology allowing to build High Temperature, High Efficiency Step-down DC-DC Converters on the basis of CISSOID’s two-chip set MAGMA -HYPERION and two power MOSFETs.

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EREBUS®

EREBUS® is CISSOID’s technology allowing to build High Temperature, High Efficiency Step-down DC-DC Converters on the basis of CISSOID’s two-chip set MAGMA -HYPERION and two power MOSFETs.

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FUJI
The EVK-FUJI is a reference design for a non-isolated DCM Flyback DC-DC converter, with triple outputs. It is therefore a Point-of-Load solution suitable to generate 3 standard voltages from a single power supply input ranging from +12V to +28V. The default output voltage values are +5V; +3.3V and +1.8V; they can be modified to accommodate for different voltage needs.
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MAGMA

MAGMA is a high temperature Pulse Width Modulation (PWM) Controller. It operates at constant frequency, adjustable from 50KHz up to 500KHz. MAGMA can operate with input voltages from 6 to 30V. It also features an internal voltage reference, input feed forward compensation making it less sensitive to input voltage variations, and a soft start activated whenever MAGMA comes out of stand-by or the output is enabled. An under-voltage lockout function maintains the PWM output low until the controller has sufficient supply voltage for proper operation. A “power good” comparator returns a “good” signal when the DC-DC converter output voltage has reached a programmable threshold. A synchronization pin can be driven by an external clock while the internal clock is available on CKOUT pin.


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ACC-PLA1008D

For rapid evaluation of the Silicon Carbide (SiC) pin fin power modules, CISSOID has developed a 3D-printed reference cooler (ACC-PLA1959E). 

This cooler is designed for tabletop laboratory use and includes both pressure and temperature measurement ports on the input and output sides. It is 3D printed in PA12 material and can be used with fluid temperatures up to 70°C.

The complete kit (ACC-PLA1008D) consists of the reference cooler and the necessary materials to mount one of CISSOIDs Intelligent Power Modules.

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ACC-PLA1077A

For rapid evaluation of the Silicon Carbide (SiC) pin fin power modules, CISSOID has developed a 3D-printed compact cooler (ACC-PLA1961A).


The complete kit (ACC-PLA1077A) consists of the compact cooler and the necessary materials to mount one of CISSOIDs Intelligent Power Modules.

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CXT-ICM3SA12340A


The  3-Phase 1200V/340A SiC Inverter Control Module (ICM) offers optimal mechanical and electrical integration of the 3-Phase 1200V/340A SiC MOSFET Intelligent Power Module (IPM) from CISSOID with the OLEA® T222 FPCU-based SiC Inverter Control Board and OLEA® APP INVERTER application software from Silicon Mobility. This unique integration of a compact low losses SiC IPM with an ultra-fast, low power consumption, and critically safe real-time controller is setting new levels in terms of power density and efficiency. Integrated hardware and the application software support rapid development of SiC inverters for compact and efficient motor drives in E-Mobility applications. The platform is supplied with highly configurable control application software supporting various types of electric motors and position sensors.


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