参数资料
型号: HFA1245IP
厂商: HARRIS SEMICONDUCTOR
元件分类: 音频/视频放大
英文描述: XC95216-10PQ160C - NOT RECOMMENDED for NEW DESIGN
中文描述: VIDEO AMPLIFIER, PDIP14
文件页数: 5/14页
文件大小: 248K
代理商: HFA1245IP
5
Application Information
Relevant Application Notes
The following Application Notes pertain to the HFA1245:
AN9787-An Intuitive Approach to Understanding
Current Feedback Amplifiers
AN9420-Current Feedback Amplifier Theory and
Applications
AN9663-Converting from Voltage Feedback to Current
Feedback Amplifiers
These publications may be obtained from Intersil’s web site
(http://www.intersil.com) or via our AnswerFAX system.
Optimum Feedback Resistor
Although a current feedback amplifier’s bandwidth
dependency on closed loop gain isn’t as severe as that of a
voltage feedback amplifier, there can be an appreciable
decrease in bandwidth at higher gains. This decrease may
be minimized by taking advantage of the current feedback
amplifier’s unique relationship between bandwidth and R
F
.
All current feedback amplifiers require a feedback resistor,
even for unity gain applications, and R
F
, in conjunction with
the internal compensation capacitor, sets the dominant pole
of the frequency response. Thus, the amplifier’s bandwidth is
inversely proportional to R
F
. The HFA1245 design is
optimized for a 750
R
F
at a gain of +2. Decreasing R
F
decreases stability, resulting in excessive peaking and
overshoot (Note: Capacitive feedback will cause the same
problems due to the feedback impedance decrease at higher
frequencies). At higher gains the amplifier is more stable, so
R
F
can be decreased in a trade-off of stability for bandwidth.
The table below lists recommended R
F
values for various
gains, and the expected bandwidth. For good channel-to-
channel gain matching, it is recommended that all resistors
(termination as well as gain setting) be
±
1% tolerance or
better. Note that a series input resistor, on +IN, is required for
a gain of +1, to reduce gain peaking and increase stability.
Channel-To-Channel Frequency Response Matching
The frequency response of channel 1 and channel 2 aren’t
perfectly matched. For the best channel-to-channel
frequency response match in a gain of 2 (see Figure 1), use
R
F
= 650
for channel 1 and R
F
= 806
for channel 2.
Non-inverting Input Source Impedance
For best operation, the DC source impedance seen by the
non-inverting input should be
50
. This is especially
important in inverting gain configurations where the
non-inverting input would normally be connected directly to
GND.
Pulse Undershoot and Asymmetrical Slew Rates
The HFA1245 utilizes a quasi-complementary output stage
to achieve high output current while minimizing quiescent
supply current. In this approach, a composite device
replaces the traditional PNP pulldown transistor. The
composite device switches modes after crossing 0V,
resulting in added distortion for signals swinging below
ground, and an increased undershoot on the negative
portion of the output waveform (see Figures 7, 11, 15, and
19). This undershoot isn’t present for small bipolar signals,
or large positive signals. Another artifact of the composite
device is asymmetrical slew rates for output signals with a
negative voltage component. The slew rate degrades as the
output signal crosses through 0V (see Figures 7, 11, 15, and
19), resulting in a slower overall negative slew rate. Positive
only signals have symmetrical slew rates as illustrated in the
large signal positive pulse response graphs (see Figures 5,
9, 13, and 17).
DISABLE Input TTL Compatibility
The HFA1245 derives an internal GND reference for the
digital circuitry as long as the power supplies are symmetrical
about GND. With symmetrical supplies the digital switching
threshold (V
TH
= (V
IH
+ V
IL
)/2 = (2.0 + 0.8)/2) is 1.4V, which
ensures the TTL compatibility of the DISABLE input. If
asymmetrical supplies (e.g., +10V, 0V) are utilized, the
switching threshold becomes:
and the V
IH
and V
IL
levels will be V
TH
±
0.6V, respectively.
TABLE 1. OPTIMUM FEEDBACK RESISTOR
GAIN
(A
V
)
R
F
(
)
BANDWIDTH
(MHz)
-1
475
280
+1
560 (+R
S
= 650
)
260
+2
750
420
+5
200
270
+10
180
140
FREQUENCY (MHz)
N
1
10
100
1000
1
0
-1
-2
A
V
= +2
R
F
= 806
, CH2
R
F
= 650
, CH1
-3
-4
2
FIGURE 1. CHANNEL 1 AND CHANNEL 2 MATCHED
FREQUENCY RESPONSE
V
TH
---------+
2
1.4V,
+
=
HFA1245
相关PDF资料
PDF描述
HFA1245 Dual, 420MHz, Low Power, Video, Current Feedback Operational Amplifier with Disable(双路、420MHz低功耗、电流反馈视频运算放大器)
HFA1305IB Circular Connector; No. of Contacts:55; Series:; Body Material:Aluminum; Connecting Termination:Solder; Connector Shell Size:22; Circular Contact Gender:Pin; Circular Shell Style:Straight Plug; Insert Arrangement:22-55
HFA1405IP Quad, 560MHz, Low Power, Video Operational Amplifier
HFA1405IB Circular Connector; Body Material:Aluminum; Series:PT06; No. of Contacts:55; Connector Shell Size:22; Connecting Termination:Solder; Circular Shell Style:Straight Plug; Circular Contact Gender:Pin; Insert Arrangement:22-55
HFA1405 Quad, 675MHz, Low Power, Video Operational Amplifier(四路、675MHz低功耗视频运算放大器)
相关代理商/技术参数
参数描述
HFA1245MJ/883 制造商:Rochester Electronics LLC 功能描述:- Bulk
HFA1245Y 制造商:Intersil Corporation 功能描述:DUAL PROG.GAIN BUFFER,DIE - Gel-pak, waffle pack, wafer, diced wafer on film
HFA12PA120C 功能描述:整流器 1200 Volt 1200 Amp RoHS:否 制造商:Vishay Semiconductors 产品:Standard Recovery Rectifiers 配置: 反向电压:100 V 正向电压下降: 恢复时间:1.2 us 正向连续电流:2 A 最大浪涌电流:35 A 反向电流 IR:5 uA 安装风格:SMD/SMT 封装 / 箱体:DO-221AC 封装:Reel
HFA12PA120CPBF 功能描述:DIODE HEXFRED 1200V 6A TO247AC RoHS:是 类别:分离式半导体产品 >> 二极管,整流器 - 阵列 系列:HEXFRED® 其它有关文件:STTH10LCD06C View All Specifications 标准包装:1,000 系列:- 电压 - 在 If 时为正向 (Vf)(最大):2V @ 5A 电流 - 在 Vr 时反向漏电:1µA @ 600V 电流 - 平均整流 (Io)(每个二极管):5A 电压 - (Vr)(最大):600V 反向恢复时间(trr):50ns 二极管类型:标准 速度:快速恢复 = 200mA(Io) 二极管配置:1 对共阴极 安装类型:表面贴装 封装/外壳:TO-263-3,D²Pak(2 引线+接片),TO-263AB 供应商设备封装:D2PAK 包装:带卷 (TR) 产品目录页面:1553 (CN2011-ZH PDF) 其它名称:497-10107-2
HFA12PA120CPBF_11 制造商:VISHAY 制造商全称:Vishay Siliconix 功能描述:HEXFRED Ultrafast Soft Recovery Diode, 2 x 6 A