參數(shù)資料
型號: AD8591ARTZ-REEL7
廠商: Analog Devices Inc
文件頁數(shù): 4/16頁
文件大?。?/td> 0K
描述: IC OPAMP GP R-R CMOS SOT23-6
標(biāo)準(zhǔn)包裝: 1
放大器類型: 通用
電路數(shù): 1
輸出類型: 滿擺幅
轉(zhuǎn)換速率: 5 V/µs
增益帶寬積: 3MHz
電流 - 輸入偏壓: 5pA
電壓 - 輸入偏移: 2000µV
電流 - 電源: 1.25mA
電流 - 輸出 / 通道: 250mA
電壓 - 電源,單路/雙路(±): 2.5 V ~ 6 V,±1.25 V ~ 3 V
工作溫度: -40°C ~ 85°C
安裝類型: 表面貼裝
封裝/外殼: SOT-23-6
供應(yīng)商設(shè)備封裝: SOT-23-6
包裝: 標(biāo)準(zhǔn)包裝
其它名稱: AD8591ARTZ-REEL7DKR
AD8591/AD8592/AD8594
Rev. B | Page 12 of 16
In any application, the absolute maximum junction temperature
must be limited to 150°C. If the junction temperature is exceeded,
the device could suffer premature failure. If the output voltage
and output current are in phase, for example, with a purely resistive
load, the power dissipated by the AD859x can be found as
PDISS
= ILOAD × (VSY VOUT)
(4)
where:
ILOAD
is the AD859x output load current.
VSY
is the AD859x supply voltage.
VOUT
is the output voltage.
By calculating the power dissipation of the device and using the
thermal resistance value for a given package type, the maximum
allowable ambient temperature for an application can be found
using Equation 3.
CAPACITIVE LOADING
The AD859x exhibits excellent capacitive load driving capabilities
and can drive to 10 nF directly. Although the device is stable
with large capacitive loads, there is a decrease in amplifier
bandwidth as the capacitive load increases. Figure 35 shows
a graph of the AD8592 unity-gain bandwidth under various
capacitive loads.
4.0
3.5
0
0.01
0.1
110
2.0
1.5
1.0
0.5
3.0
2.5
VS = ±2.5V
RL = 1k
TA = 25°C
100
CAPACITIVE LOAD (nF)
BA
NDW
IDT
H
(
M
Hz
)
0
110
6-
0
36
Figure 35. Unity-Gain Bandwidth vs. Capacitive Load
When driving heavy capacitive loads directly from the AD859x
output, a snubber network can be used to improve the transient
response. This network consists of a series RC connected from
the output of the amplifier to ground, placing it in parallel with
the capacitive load. The configuration is shown in Figure 36.
Although this network does not increase the bandwidth of the
amplifier, it significantly reduces the amount of overshoot, as
shown in Figure 37.
RS
5
VOUT
AD8592
+5V
VIN
100mV p-p
CS
1F
CL
47nF
01
10
6-
0
37
Figure 36. Configuration for Snubber Network to Compensate for Capacitive Loads
47nF LOAD
ONLY
SNUBBER
IN CIRCUIT
01
10
6-
03
8
50mV
10s
Figure 37. Snubber Network Reduces Overshoot and Ringing
Caused by Driving Heavy Capacitive Loads
The optimum values for the snubber network should be
determined empirically based on the size of the capacitive load.
Table 5 shows a few sample snubber network values for a given
load capacitance.
Table 5. Snubber Networks for Large Capacitive Loads
Load Capacitance, CL (nF)
Snubber Network
RS (Ω)
CS (μF)
0.47
300
0.1
4.7
30
1
47
5
1
PC98-COMPLIANT HEADPHONE/SPEAKER
AMPLIFIER
Because of its high output current performance and shutdown
feature, the AD8592 makes an excellent amplifier for driving an
audio output jack in a computer application. Figure 38 shows
how the AD8592 can be interfaced with an AC’97 codec to
drive headphones or speakers.
U1-A
4
C1
100F
+5V
1
10
2
3
5
+5V
AD1881A*
(AC’97)
R4
20
+5V
R1
100k
7
8
6
9
R5
20
C2
100F
*ADDITIONAL PINS OMITTED FOR CLARITY.
U1-B
U1 = AD8592
NC
R2
2k
R3
2k
AVDD1
AVDD2
LINE_OUT_R
LINE_OUT_L
AVSS1
25
38
35
36
26
01
10
6-
0
39
Figure 38. PC98-Compliant Headphone/Line Out Amplifier
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