The AM26LS32Ax and AM26LS33Ax devices are quadruple differential line receivers for balanced and unbalanced digital data transmission. The enable function is common to all four receivers and offers a choice of active-high or active-low input. The 3-state outputs permit connection directly to a bus-organized system. Fail-safe design ensures that, if the inputs are open, the outputs always are high. Compared to the AM26LS32 and the AM26LS33, the AM26LS32A and AM26LS33A incorporate an additional stage of amplification to improve sensitivity. The input impedance has been increased, resulting in less loading of the bus line. The additional stage has increased propagation delay; however, this does not affect interchangeability in most applications. The AM26LS32AC and AM26LS33AC are characterized for operation from 0°C to 70°C. The
Features 1
• AM26LS32A Devices Meet or Exceed the Requirements of ANSI TIA/EIA-422-B, TIA/EIA- 423-B, and ITU Recommendations V.10 and V.11
• AM26LS32A Devices Have ±7-V Common-Mode Range With ±200-mV Sensitivity
• AM26LS33A Devices Have ±15-V Common-Mode Range With ±500-mV Sensitivity
• Input Hysteresis 50 mV Typical
•Operate From a Single 5-V Supply
• Low-Power Schottky Circuitry
• 3-State Outputs
• Complementary Output-Enable Inputs
• Input Impedance 12 kΩ Minimum
• Open Input Fail-Safe
“Atmega8l Atmega8 28pin Microcontroller” has been added to your cart. View cart
-20%

26LS31 QUADRUPLE DIFFERENTIAL LINE DRIVER SMD IC
₨ 300 Original price was: ₨ 300.₨ 230Current price is: ₨ 230.

27C512-120 DIP-28W EPROM 512kbit NEW
₨ 950 Original price was: ₨ 950.₨ 825Current price is: ₨ 825.
26ls32 DIP 26ls32 Quadruple Differential Line Receiver
₨ 250 Original price was: ₨ 250.₨ 200Current price is: ₨ 200.
Category: IC,S
Description
Reviews (0)
Be the first to review “26ls32 DIP 26ls32 Quadruple Differential Line Receiver” Cancel reply
Shipping & Delivery


MAECENAS IACULIS
Vestibulum curae torquent diam diam commodo parturient penatibus nunc dui adipiscing convallis bulum parturient suspendisse parturient a.Parturient in parturient scelerisque nibh lectus quam a natoque adipiscing a vestibulum hendrerit et pharetra fames nunc natoque dui.
ADIPISCING CONVALLIS BULUM
- Vestibulum penatibus nunc dui adipiscing convallis bulum parturient suspendisse.
- Abitur parturient praesent lectus quam a natoque adipiscing a vestibulum hendre.
- Diam parturient dictumst parturient scelerisque nibh lectus.
Scelerisque adipiscing bibendum sem vestibulum et in a a a purus lectus faucibus lobortis tincidunt purus lectus nisl class eros.Condimentum a et ullamcorper dictumst mus et tristique elementum nam inceptos hac parturient scelerisque vestibulum amet elit ut volutpat.
Related products
74HC01/74LS01 (open-collector NAND gates)
74LS00 (or 7400) IC – NAND Gate – Quad – 2 Input
74LS47 BCD to 7-segment Decoder 16 pin DIP Driver IC
A3120 IC HCPL3120 DIP
2.0 A Minimum Peak Output Current
15 kV/µs Minimum Common Mode Rejection (CMR) at VCM = 1500 V
0.5 V Maximum Low-Level Output Voltage (VOL) Eliminates the Need for a Negative Gate Drive
ICC = 5 mA Maximum Supply Current
Under Voltage Lock-Out Protection (UVLO) with Hysteresis
Wide Operating VCC Range: 15 to 30 Volts
500 ns Maximum Switching Speeds
Industrial Temperature Range : -40°C to 100°C
ADC0804 Converter 8-Bit Analog to Digital
ADC0804 Converter 8-Bit Analog to Digital Features
0V to 5V analog input voltage range with a single 5V supply
Compatible with microcontrollers, access time is 135 ns
Easy interface to all microprocessors
Logic inputs and outputs meet both MOS and TTL voltage level specifications
Works with 2.5V (LM336) voltage reference
On-chip clock generator
No zero adjust required
0.3[Prime] standard width 20-pin DIP package
Operates ratio metrically or with 5 VDC, 2.5 VDC, or analog span-adjusted voltage reference
Differential analog voltage inputs
Atmega16 Atmega 16A PRICE
The ATmega16A is a low-power CMOS 8-bit microcontroller based on the Atmel AVR enhanced RISC architecture. By executing powerful instructions in a single clock cycle, the ATmega16A achieves throughputs approaching 1MIPS per MHz allowing the system designer to optimize power consumption versus processing speed.
Reviews
There are no reviews yet.