参数资料
型号: DC777A
厂商: Linear Technology
文件页数: 5/16页
文件大小: 0K
描述: BOARD DAC LTC2601
软件下载: QuikEval System
设计资源: DC777A Design File
DC777A Schematic
标准包装: 1
系列: QuikEval™
DAC 的数量: 1
位数: 16
数据接口: MICROWIRE?,串行,SPI?
设置时间: 10µs
DAC 型: 电压
工作温度: 0°C ~ 70°C
已供物品:
已用 IC / 零件: LTC2601
相关产品: LTC2601CDD-1#TRPBF-ND - IC DAC 16BIT SGL R-R VOUT 10DFN
LTC2601IDD-1#TRPBF-ND - IC DAC 16BIT SGL R-R VOUT 10DFN
LTC2601IDD-1#PBF-ND - IC DAC 16BIT R-R 10-DFN
LTC2601CDD-1#PBF-ND - IC DAC 16BIT R-R 10-DFN
LTC2601IDD#PBF-ND - IC DAC 16BIT SGL R-R VOUT 10DFN
LTC2601CDD#PBF-ND - IC DAC 16BIT SGL R-R VOUT 10DFN
LTC2601CDD#TRPBF-ND - IC DAC 16BIT SGL R-R VOUT 10DFN
LTC2601IDD#TRPBF-ND - IC DAC 16BIT SGL R-R VOUT 10DFN
LTC2601IDD-ND - IC DAC 16BIT SGL R-R VOUT 10DFN
LTC2601CDD-ND - IC DAC 16BIT SGL R-R VOUT 10DFN
更多...
LTC2601/LTC2611/LTC2621
13
2601fb
the rising edge of CS/LD, then LDAC is recognized, the
command specied in the 24-bit word just transferred is
executed and the DAC output is updated.
The DAC is powered up when LDAC is taken low, inde-
pendent of the state of CS/LD.
If LDAC is low at the time CS/LD goes high, it inhibits any
software power-down command that was specied in the
input word.
Voltage Outputs
The rail-to-rail amplier contained in these parts has
guaranteed load regulation when sourcing or sinking up
to 15mA at 5V (7.5mA at 3V).
Load regulation is a measure of the amplier’s ability to
maintain the rated voltage accuracy over a wide range of
load conditions. The measured change in output voltage
per milliampere of forced load current change is expressed
in LSB/mA.
DC output impedance is equivalent to load regulation, and
may be derived from it by simply calculating a change in
units from LSB/mA to Ohms. The amplier’s DC output
impedance is 0.05Ω when driving a load well away from
the rails.
When drawing a load current from either rail, the output
voltage headroom with respect to that rail is limited by
the 25Ω typical channel resistance of the output devices;
e.g., when sinking 1mA, the minimum output voltage =
25Ω 1mA = 25mV. See the graph Headroom at Rails vs
Output Current in the Typical Performance Characteristics
section.
The amplier is stable driving capacitive loads of up to
1000pF.
Board Layout
The excellent load regulation of these devices is achieved
in part by keeping “signal” and “power” grounds separated
internally and by reducing shared internal resistance.
The GND pin functions both as the node to which the refer-
ence and output voltages are referred and as a return path
OPERATION
for power currents in the device. Because of this, careful
thought should be given to the grounding scheme and
board layout in order to ensure rated performance.
The PC board should have separate areas for the analog
and digital sections of the circuit. This keeps digital signals
away from sensitive analog signals and facilitates the use
of separate digital and analog ground planes which have
minimal capacitive and resistive interaction with each
other.
Digital and analog ground planes should be joined at only
one point, establishing a system star ground as close to
the device’s ground pin as possible. Ideally, the analog
ground plane should be located on the component side of
the board, and should be allowed to run under the part to
shield it from noise. Analog ground should be a continuous
and uninterrupted plane, except for necessary lead pads
and vias, with signal traces on another layer.
The GND pin of the part should be connected to analog
ground. Resistance from the GND pin to system star
ground should be as low as possible. Resistance here
will add directly to the effective DC output impedance
of the device (typically 0.05Ω). Note that the LTC2601/
LTC2611/LTC2621 are no more susceptible to these ef-
fects than other parts of their type; on the contrary, they
allow layout-based performance improvements to shine
rather than limiting attainable performance with excessive
internal resistance.
Rail-to-Rail Output Considerations
In any rail-to-rail voltage output device, the output is limited
to voltages within the supply range.
Since the analog output of the device cannot go below
ground, it may limit for the lowest codes as shown in Figure
3b. Similarly, limiting can occur near full scale when the
REF pin is tied to VCC. If VREF = VCC and the DAC full-scale
error (FSE) is positive, the output for the highest codes
limits at VCC as shown in Figure 3c. No full-scale limiting
can occur if VREF is less than VCC – FSE.
Offset and linearity are dened and tested over the region
of the DAC transfer function where no output limiting can
occur.
相关PDF资料
PDF描述
AT-S-26-8/8/W-14/R-R MOD CORD REVERSED 8-8 WHITE 14'
XE8000EV108 EVAL BOARD FOR XE8806/XE8807
94SVP476X0020E7 CAP ALUM 47UF 20V 20% SMD
EBC22DRTI-S13 CONN EDGECARD 44POS .100 EXTEND
AT-S-26-8/8/B-14-R MOD CORD STANDARD 8-8 BLACK 14'
相关代理商/技术参数
参数描述
DC778A 功能描述:BOARD DAC LTC2602 RoHS:是 类别:编程器,开发系统 >> 评估板 - 数模转换器 (DAC) 系列:QuikEval™ 产品培训模块:Lead (SnPb) Finish for COTS Obsolescence Mitigation Program 标准包装:1 系列:- DAC 的数量:4 位数:12 采样率(每秒):- 数据接口:串行,SPI? 设置时间:3µs DAC 型:电流/电压 工作温度:-40°C ~ 85°C 已供物品:板 已用 IC / 零件:MAX5581
DC780 制造商:API 制造商全称:API Delevan 功能描述:High Current Power Line Chokes
DC780-102L 功能描述:固定电感器 1 uH RoHS:否 制造商:AVX 电感:10 uH 容差:20 % 最大直流电流:1 A 最大直流电阻:0.075 Ohms 工作温度范围:- 40 C to + 85 C 自谐振频率:38 MHz Q 最小值:40 尺寸:4.45 mm W x 6.6 mm L x 2.92 mm H 屏蔽:Shielded 端接类型:SMD/SMT 封装 / 箱体:6.6 mm x 4.45 mm
DC780-103K 功能描述:固定电感器 10 uH RoHS:否 制造商:AVX 电感:10 uH 容差:20 % 最大直流电流:1 A 最大直流电阻:0.075 Ohms 工作温度范围:- 40 C to + 85 C 自谐振频率:38 MHz Q 最小值:40 尺寸:4.45 mm W x 6.6 mm L x 2.92 mm H 屏蔽:Shielded 端接类型:SMD/SMT 封装 / 箱体:6.6 mm x 4.45 mm
DC780-104K 功能描述:固定电感器 100 uH RoHS:否 制造商:AVX 电感:10 uH 容差:20 % 最大直流电流:1 A 最大直流电阻:0.075 Ohms 工作温度范围:- 40 C to + 85 C 自谐振频率:38 MHz Q 最小值:40 尺寸:4.45 mm W x 6.6 mm L x 2.92 mm H 屏蔽:Shielded 端接类型:SMD/SMT 封装 / 箱体:6.6 mm x 4.45 mm