ChongMing Group (HK) Int'l Co., Ltd

CHONGMING GROUP (HK) INT'L CO., LTD.

Manufacturer from China
Active Member
3 Years
Home / Products / Integrated Circuit Chips /

MC14584BDR2G Electronics Circuit Board Programmed Integrated Semiconductor

Contact Now
ChongMing Group (HK) Int'l Co., Ltd
City:shenzhen
Country/Region:china
Contact Person:MsDoris Guo
Contact Now

MC14584BDR2G Electronics Circuit Board Programmed Integrated Semiconductor

Ask Latest Price
Video Channel
Model Number :MC14584BDR2G
Certification :new & original
Place of Origin :original factory
MOQ :10pcs
Price :Negotiate
Payment Terms :T/T, Western Union, Paypal
Supply Ability :8100pcs
Delivery Time :1 day
Packaging Details :Please contact me for details
Description :Inverter IC 6 Channel Schmitt Trigger 14-SOIC
DC Supply Voltage :−0.5 to +18.0 V
Input or Output Voltage :−0.5 to VDD + 0.5 V
Input or Output Current :±10 mA
Power Dissipation, per Package :500 mW
Ambient Temperature :−55 to +125 °C
Storage Temperature :−65 to +150 °C
more
Contact Now

Add to Cart

Find Similar Videos
View Product Description

MC14584BDR2G Electronics Circuit Board Programmed Integrated Semiconductor

Stock Offer (Hot Sell)

Part No. Quantity Brand D/C Package
NJM2575F1 6533 JRC 05+ SOT23-6
NJM2902M 76000 JRC 16+ SOP-14
NJM4565D 62000 JRC 16+ SOP-14
NJM4565M 78000 JRC 13+ SOP-8
NJM4741D 5137 JRC 13+ DIP-14
NJM4741M 6091 JRC 16+ SOP-14
NJW0302G/NJW0281G 5000 ON 16+ TO-3P
NLCV32T-3R3M-PF 8000 TDK 06+ SMD
NLFC322522T-100K-PF 12000 TDK 08+ SMD
NLFC322522T-2R2M-PF 20000 TDK 08+ SMD
NPCE781LAODX 2831 NUVOTON 10+ QFP
NR6028T4R7M 79000 TAIYO 11+ SMD
NR6045T6R3M 53000 TAIYO 14+ SMD
NRF24L01 5018 NORDIC 16+ QFN20
NRF51822-QFAA 7026 NORDIC 16+ QFN48
NSR0230P2T5G 140000 ON 14+ SOD-923
NSR0340V2T1G 21000 ON 12+ SOD-523
NT5DS16M16CS-6K 7077 NANYA 09+ TSOP-66
NT5DS64M8CS-5T 4011 NANYA 16+ TSOP-66
NTD3055L104T4G 20220 ON 16+ TO-252
NTD5802NT4G 19297 ON 14+ TO-252
NTD5865NLT4G 60000 ON 14+ TO-252
NTF3055-100T1G 16102 ON 15+ SOT-223
NTF3055L108T1G 11716 ON 15+ SOT-223
NTF3055L175T1G 16173 ON 09+ SOT-223
NTMD4820NR2G 15124 ON 13+ SOT-8
NTR1P02LT1G 143000 ON 05+ SOT-8
NTR2101PT1G 27000 ON 07+ SOT-23
NTR4501NT1G 76000 ON 15+ SOT-23
NTUD3169CZT5G 11787 ON 16+ SOT-963

MC14584B

Hex Schmitt Trigger

The MC14584B Hex Schmitt Trigger is constructed with MOS P−channel and N−channel enhancement mode devices in a single monolithic structure. These devices find primary use where low power dissipation and/or high noise immunity is desired. The MC14584B may be used in place of the MC14069UB hex inverter for enhanced noise immunity to “square up” slowly changing waveforms.

Features

• Supply Voltage Range = 3.0 Vdc to 18 Vdc

• Capable of Driving Two Low−power TTL Loads or One Low−power Schottky TTL Load over the Rated Temperature Range

• Double Diode Protection on All Inputs

• Can Be Used to Replace MC14069UB

• For Greater Hysteresis, Use MC14106B which is Pin−for−Pin Replacement for CD40106B and MM74Cl4

• Pb−Free Packages are Available

MAXIMUM RATINGS (Voltages Referenced to VSS)

Symbol Parameter Value Unit
VDD DC Supply Voltage Range −0.5 to +18.0 V
Vin, Vout Input or Output Voltage Range (DC or Transient) −0.5 to VDD + 0.5 V
Iin, Iout Input or Output Current (DC or Transient) per Pin ±10 mA
PD Power Dissipation, per Package (Note 1) 500 mW
TA Ambient Temperature Range −55 to +125 °C
Tstg Storage Temperature Range −65 to +150 °C
TL Lead Temperature (8−Second Soldering) 260 °C

Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the Recommended Operating Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect device reliability.

1. Temperature Derating:

Plastic “P and D/DW” Packages: – 7.0 mW/°C From 65°C To 125°C

This device contains protection circuitry to guard against damage due to high static voltages or electric fields. However, precautions must be taken to avoid applications of any voltage higher than maximum rated voltages to this high−impedance circuit. For proper operation, Vin and Vout should be constrained to the range VSS (Vin or Vout) VDD.

Unused inputs must always be tied to an appropriate logic voltage level (e.g., either VSS or VDD). Unused outputs must be left open.

Inquiry Cart 0