参数资料
型号: 74HC652N,112
厂商: NXP Semiconductors
文件页数: 7/10页
文件大小: 0K
描述: IC TRANSCVR 3ST 8BIT INV 24DIP
产品培训模块: Logic Packages
标准包装: 15
系列: 74HC
逻辑类型: 收发器,反相
元件数: 1
每个元件的位元数: 8
输出电流高,低: 7.8mA,7.8mA
电源电压: 2 V ~ 6 V
工作温度: -40°C ~ 125°C
安装类型: 通孔
封装/外壳: 24-DIP(0.600",15.24mm)
供应商设备封装: 24-DIP
包装: 管件
其它名称: 74HC652N
74HC652N-ND
935051260112
www.rohm.com
2012.10 - Rev.C
2011 ROHM Co., Ltd. All rights reserved.
Technical Note
6/8
BH3544F,BH3547F,BH3548F
●Application circuit
5
6
7
8
3
4
VCC
OUT2
BIAS
IN2
47
1
VIN2
90k
6dB
BIAS
MUTE
TSD
2
1
OUT1
MUTE
IN1
GND
1
VIN1
1
100k
330
10
VMUTE
H : Active
L : Mute
330
VCC
R5
C5
C6
C7
C8
C1
C2
C3
R3
R2
+
Fig. 15
●Description of external components
1) Input coupling capacitors (C3, C5)
These are determined according to the lower cutoff frequency fc. Moreover, since lowering the capacitance can cause
the occurrence of pop noise, when changing this, determine it after adequate checking.
Since the input impedance is 90k
, these are found by the expressions below, although drift, temperature
characteristics, and other considerations are necessary.
(Layered ceramic capacitors are recommended.)
C3(C5)=1/(2π× 90k
×fc)
2) Bias capacitor (C6)
When VCC=5V, 47
μF is recommended. Since lowering the capacitance too much can cause worsening of electrical
characteristics or the occurrence of pop noise, when changing this, determine it after checking this adequately.
3) Mute pin pop noise countermeasures (R2, C2)
Since BH3544F,BH3548F have an impedance of 190k
against GND and the BH3547F has 200k, it may be
impossible to cancel mute mode if R2 is made too large.
4) Output coupling capacitors (C1, C7)
These are determined by the lower cutoff frequency.
If RL is the output load resistance (assuming a resistance RX is
put in for output protection or current restriction), these are found by the expression below.
C1(C7)=1/(2π×(RL+Rx)× fc)
5) Input gain adjustment resistances (R3, R5)
Externally attached resistances (R3, R5) make input gain adjustment possible.
The gain found by the expression
below can be set.
GVC=6+20log(90k
/(90k+R3[R5])) [dB]
When input gain is not accommodated, these resistors have no use.
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