CVMEH22501AIDGVREP

CVMEH22501AIDGVREP
Mfr. #:
CVMEH22501AIDGVREP
Beschreibung:
Universal Bus Functions Mil Enhance 8B Univ Bus Xcvr
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Neu von diesem Hersteller.
Datenblatt:
CVMEH22501AIDGVREP Datenblatt
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CVMEH22501AIDGVREP Mehr Informationen CVMEH22501AIDGVREP Product Details
Produkteigenschaft
Attributwert
Hersteller:
Texas Instruments
Produktkategorie:
Universelle Busfunktionen
RoHS:
Y
Logiktyp:
CMOS
Logikfamilie:
VME
Anzahl Kreise:
1
Ausbreitungsverzögerungszeit:
10.5 ns
Versorgungsspannung - Max.:
3.45 V
Versorgungsspannung - Min.:
3.15 V
Minimale Betriebstemperatur:
- 55 C
Maximale Betriebstemperatur:
+ 125 C
Paket / Koffer:
TVSOP-48
Verpackung:
Spule
Funktion:
Universal-Bus-Transceiver
Höhe:
1.05 mm
Länge:
9.7 mm
Ausgabetyp:
3-State
Serie:
SN74VMEH22501A-EP
Breite:
4.4 mm
Marke:
Texas Instruments
Montageart:
SMD/SMT
Ausgangsstrom auf hohem Niveau:
- 48 mA
Niedriger Ausgangsstrom:
64 mA
Betriebsversorgungsspannung:
3.3 V
Polarität:
Nicht invertiert
Produktart:
Universelle Busfunktionen
Werkspackungsmenge:
2000
Unterkategorie:
Logik-ICs
Teil # Aliase:
V62/05606-01YE
Gewichtseinheit:
0.004356 oz
Tags
CVMEH22501AI, CVME, CVM
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Step1: Vacuum Packaging with PL
Step1:
Vacuum Packaging with PL
Step2: Anti-Static Bag
Step2:
Anti-Static Bag
Step3: Packaging Boxes
Step3:
Packaging Boxes
***NGYU ELECTRONICS
Enhanced Product 8-Bit Universal Bus Transceiver And Two 1-Bit Bus Transceivers
*** Stop Electro
Bus Transceiver, VME Series, 1-Func, 8-Bit, True Output, BICMOS, PDSO48
***ark
Transceiver Logic IC; Supply Voltage Min:3.15V; Supply Voltage Max:3.45V; Package/Case:48-TVSOP; No. of Pins:48; Operating Temperature Range:-40°C to +85°C; Input Type:LVTTL; Leaded Process Compatible:Yes; No. of Bits:8 ;RoHS Compliant: Yes
***AS INSRUMENTS
The SN74VMEH22501A-EP 8-bit universal bus transceiver has two integral 1-bit three-wire bus transceivers and is designed for 3.3-V VCC operation with 5-V tolerant inputs. The UBT transceiver allows transparent, latched, and flip-flop modes of data transfer, and the separate LVTTL input and outputs on the bus transceivers provide a feedback path for control and diagnostics monitoring. This device provides a high-speed interface between cards operating at LVTTL logic levels and VME64, VME64x, or VME320(2) backplane topologies.
***OMO Electronic
The SN74VMEH22501A-EP device is pin-for-pin compatible to the SN74VMEH22501 device (SCES357), but operates at a wider operating temperature range.
***TEXAS
High-speed backplane operation is a direct result of the improved OEC circuitry and high drive that has been designed and tested into the VME64x backplane model. The B-port I/Os are optimized for driving large capacitive loads and include pseudo-ETL input thresholds (½ VCC ±50 mV) for increased noise immunity. These specifications support the 2eVME protocols in VME64x (ANSI/VITA 1.1) and 2eSST protocols in VITA 1.5.
***
With proper design of a 21-slot VME system, a designer can achieve 320-MB transfer rates on linear backplanes and, possibly, 1-GB transfer rates on the VME320 backplane.
***AS INSTUMENTS
All inputs and outputs are 5-V tolerant and are compatible with TTL and 5-V CMOS inputs.
***AS INSTRUMEN
Active bus-hold circuitry holds unused or undriven 3A-port inputs at a valid logic state. Bus-hold circuitry is not provided on 1A or 2A inputs, any B-port input, or any control input. Use of pullup or pulldown resistors with the bus-hold circuitry is not recommended.
***AS INSRUMENT
This device is fully specified for live-insertion applications using Ioff, power-up 3-state, and BIAS VCC. The Ioff circuitry prevents damaging current to backflow through the device when it is powered off/on. The power-up 3-state circuitry places the outputs in the high-impedance state during power up and power down, which prevents driver conflict. The BIAS VCC circuitry precharges and preconditions the B-port input/output connections, preventing disturbance of active data on the backplane during card insertion or removal, and permits true live-insertion capability.
***NS
When VCC is between 0 and 1.5 V, the device is in the high-impedance state during power up or power down. However, to ensure the high-impedance state above 1.5 V, output-enable (OE and OEBY) inputs should be tied to VCC through a pullup resistor and output-enable (OEAB) inputs should be tied to GND through a pulldown resistor; the minimum value of the resistor is determined by the drive capability of the device connected to this input.
Logic Solutions
OMO Electronic Logic Solutions offers a full spectrum of logic functions and technologies from the mature to the advanced, including bipolar, BiCMOS, and CMOS. TI's process technologies offer the logic performance and features required for modern logic designs, while maintaining support for more traditional logic products.Learn More
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Verfügbarkeit
Aktie:
225
Auf Bestellung:
2208
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1
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10
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54,50 $
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4,46 $
446,00 $
250
4,18 $
1 045,00 $
500
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