参数资料
型号: MAX4806CTN+T
厂商: Maxim Integrated Products
文件页数: 5/20页
文件大小: 0K
描述: IC DGTL PULSER DUAL 56TQFN
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 2,500
应用: 通用型,过电压保护
电流 - 电源: 100µA
电源电压: 2.7 V ~ 6 V
工作温度: 0°C ~ 70°C
安装类型: 表面贴装
封装/外壳: 56-WFQFN 裸露焊盘
供应商设备封装: 56-TQFN-EP(7x7)
包装: 带卷 (TR)
Dual, Unipolar/Bipolar, High-Voltage
Digital Pulsers
ELECTRICAL CHARACTERISTICS (continued)
(V DD = +2.7V to +6V, V CC_ = +4.75V to +12.6V, V EE_ = -12.6V to -4.75V, V NN_ = -200V to 0V, V PP_ = 0V to (V NN_ + 200V), V SS ≤ the lower
of V NN1 or V NN2 , T A = T J = T MIN to T MAX , unless otherwise noted. Typical values are at T A = +25°C.) (Note 3)
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS
Logic Input to Output-Rise
Propagation Delay Clamp
Logic Input to Output-Fall
Propagation Delay Clamp
OUT_ Rise Time (GND to V PP_ )
OUT_ Rise Time (V NN_ to GND)
OUT_ Rise Time (V NN_ to V PP_ )
OUT_ Fall Time (GND to V NN_ )
OUT_ Fall Time (V PP_ to GND)
OUT_ Fall Time (V PP_ to V NN_ )
OUT_ Enable Time from EN_
(Figure 5)
t PLO
t PHO
t R0P
t RN0
t RNP
t F0N
t FP0
t FPN
t EN
V CC_ = +12V, V PP_ = +5V, V NN_ = -5V,
Figure 4
V CC_ = +12V, V PP_ = +5V, V NN_ = -5V,
Figure 4
V PP_ = +100V, V NN_ = -100V, V CC_ = +12V
±5%, V EE_ = - V CC_ , Figure 4
V PP_ = +100V, V NN_ = -100V, V CC_ = +12V
±5%, V EE_ = - V CC_ , Figure 4
V PP_ = +100V, V NN_ = -100V, V CC_ = +12V
±5%, V EE_ = - V CC_ , Figure 4
V PP_ = +100V, V NN_ = -100V, V CC_ = +12V
±5%, V EE_ = - V CC_ , Figure 4
V PP_ = +100V, V NN_ = -100V, V CC_ = +12V
±5%, V EE_ = - V CC_ , Figure 4
V PP_ = +100V, V NN_ = -100V, V CC_ = +12V
±5%, V EE_ = - V CC_ , Figure 4
V CC_ = +12V ±5%, V EE_ = -V CC_
V CC_ = +5V ±5%, V EE_ = -V CC_
15
15
20
35
35
20
35
35
100
150
ns
ns
ns
ns
ns
ns
ns
ns
ns
OUT_ Disable Time from EN_
(Figure 5)
Clamp Enable Time from INC_
Clamp Disable Time from INC_
Short Enable Time from EN_
Short Disable Time from EN_
Recovery Time from SHDN
Crosstalk
2nd Harmonic Distortion
RMS Output Jitter
t DI
t EN-CL
t DI-CL
t EN_SH
t DI_SH
2HD
t J
V CC_ = +12V ±5%, V EE_ = -V CC_
V CC_ = +5V ±5%, V EE_ = -V CC_
V CC_ = +12V ±5%, V EE_ = -V CC_ , Figure 6
V CC_ = +12V ±5%, V EE_ = -V CC_ , Figure 6
V PP_ = +12V, V NN_ = -12V, V CC_ = +12V
±5%, V EE_ = -V CC_ , Figure 7
V PP_ = +12V, V NN_ = -12V, V CC_ = +12V
±5%, V EE_ = -V CC_ , Figure 7
V PP_ = +12V, V NN_ = -12V, V CC_ = +12V
±5%, V EE_ = -V CC_
V PP_ = V CC_ = +5V, V NN_ = V EE_ = -5V,
f = 5MHz
V PP_ = +100V, V NN_ = -100V,
f OUT = 5MHz, V CC_ = +12V
V CC_ = +12V
0
0
36.8
69
40
9
100
150
150
150
1000
250
ns
ns
ns
ns
ns
ns
dB
dB
ps
Note 3: Specifications are guaranteed for the stated global conditions, unless otherwise noted and are 100% production tested at
T A = +25°C and T A = +70°C. Specifications at T A = 0°C are guaranteed by design.
_______________________________________________________________________________________
5
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