DAC8564IAPWR

Texas Instruments
595-DAC8564IAPWR
DAC8564IAPWR

制造商:

说明:
数模转换器- DAC 16B Quad Ch Ultra-Lo Glitch Vltg Output A 595-DAC8564IAPW

ECAD模型:
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库存量: 2,191

库存:
2,191 可立即发货
生产周期:
6 周 大于所示数量的预计工厂生产时间。
最少: 1   倍数: 1
单价:
¥-.--
总价:
¥-.--
预估关税:
封装:
整卷卷轴(请按2000的倍数订购)

定价 (含13% 增值税)

数量 单价
总价
剪切带/MouseReel™
¥129.5319 ¥129.53
¥102.4797 ¥1,024.80
¥95.6997 ¥2,392.49
¥88.3434 ¥8,834.34
¥84.7839 ¥21,195.98
¥82.716 ¥41,358.00
¥81.0662 ¥81,066.20
整卷卷轴(请按2000的倍数订购)
¥75.2693 ¥150,538.60
† ¥15.00 MouseReel™费将被加上并在购物车计算。所有MouseReel™订单均不可撤消和退回。

备用包装

制造商零件编号:
包装:
Tube
供货情况:
库存量
单价:
¥153.0246
最小:
1

类似产品

Texas Instruments DAC8564IAPW
Texas Instruments
数模转换器- DAC 16B Quad Ch Ultra-Lo Glitch Vltg Output A 595-DAC8564IAPWR

产品属性 属性值 选择属性
Texas Instruments
产品种类: 数模转换器- DAC
RoHS:  
DAC8564
16 bit
200 kS/s
4 Channel
8 us
Voltage Buffered
3-Wire, DSP, Microwire, QSPI, SPI
2.7 V to 5.5 V
2.7 V to 5.5 V
- 40 C
+ 105 C
SMD/SMT
TSSOP-16
Reel
Cut Tape
MouseReel
结构: Resistor-String
商标: Texas Instruments
开发套件: DAC8564EVM
DNL - 微分非线性: +/- 0.5 LSB
特点: Low Power
增益误差: 0.2 % FSR
INL - 积分非线性: +/- 4 LSB
转换器数量: 4 Converter
功耗: 3.1 mW
产品类型: DACs - Digital to Analog Converters
工厂包装数量: 2000
子类别: Data Converter ICs
电源电压-最大: 5.5 V
电源电压-最小: 2.7 V
类型: Precision
单位重量: 63 mg
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已选择的属性: 0

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CNHTS:
8542399000
CAHTS:
8542390000
USHTS:
8542390070
JPHTS:
8542390990
TARIC:
8542399000
MXHTS:
8542399999
ECCN:
EAR99

Texas Instruments Multi-Channel DACs: DAC8564/5

Texas Instruments Multi-Channel DACs: DAC8564/5 have high-resolution, multi-channel DACs with an industry-leading internal reference.

DAC8564/5 Multi-Channel DAC Converters

Texas Instruments' DAC8564 and DAC8565 are high resolution, multi-channel DACs combined with an industry-leading internal reference. The superior, next-generation devices display TI's ultra-low-power and ultra-low-glitch process and design architecture. The DACs feature 16bits of resolution, four DAC channels, 2.5V, and a 2ppm/°C temperature drift internal reference with 0.004% initial accuracy. The devices offer breakthrough performance and keep unwanted transients under 1mV and less than 100ns during any two-code transition.