Технически документи
Спецификации
Brand
STMicroelectronicsProduct Type
CMOS Timer
Mount Type
Surface
Sub Type
Timer
Package Type
SO
Number of Internal Timers
2
Pin Count
14
Maximum Supply Voltage
16V
Minimum Supply Voltage
2V
Maximum Propagation Delay Time @ M
100ns
Minimum Operating Temperature
-40°C
Maximum Operating Temperature
125°C
Length
8.75mm
Height
1.65mm
Standards/Approvals
No
Propagation Delay Test Condition
10pF
Automotive Standard
No
Series
TS
Детайли за продукта
The TS556 is a dual CMOS timer which offers a very low consumption: (Icc(TYP)TS556 = 220 μA at VCC = 5 V versus Icc(TYP) NE556(a)= 6 mA), and high frequency:(f(max.)TS556 = 2.7 MHz versus f(max.)NE556(a)= 0.1 MHz). In both monostable and astable modes, timing remains very accurate. The TS556 provides reduced supply current spikes during output transitions, which enables the use of lower decoupling capacitors compared to those required by bipolar NE556(a). Due to the high input impedance (1012 Ω), timing capacitors can also be minimized.
Информацията за складовите наличности временно не е налична.
€ 1 344,92
€ 0,538 Each (On a Reel of 2500) (ex VAT)
2500
€ 1 344,92
€ 0,538 Each (On a Reel of 2500) (ex VAT)
Информацията за складовите наличности временно не е налична.
2500
Технически документи
Спецификации
Brand
STMicroelectronicsProduct Type
CMOS Timer
Mount Type
Surface
Sub Type
Timer
Package Type
SO
Number of Internal Timers
2
Pin Count
14
Maximum Supply Voltage
16V
Minimum Supply Voltage
2V
Maximum Propagation Delay Time @ M
100ns
Minimum Operating Temperature
-40°C
Maximum Operating Temperature
125°C
Length
8.75mm
Height
1.65mm
Standards/Approvals
No
Propagation Delay Test Condition
10pF
Automotive Standard
No
Series
TS
Детайли за продукта
The TS556 is a dual CMOS timer which offers a very low consumption: (Icc(TYP)TS556 = 220 μA at VCC = 5 V versus Icc(TYP) NE556(a)= 6 mA), and high frequency:(f(max.)TS556 = 2.7 MHz versus f(max.)NE556(a)= 0.1 MHz). In both monostable and astable modes, timing remains very accurate. The TS556 provides reduced supply current spikes during output transitions, which enables the use of lower decoupling capacitors compared to those required by bipolar NE556(a). Due to the high input impedance (1012 Ω), timing capacitors can also be minimized.