15 FN6633.6 December 16, 2010 ISL28127 and ISL28227 SPICE Model Figure 40 shows the SPICE model schematic and Figure 41 show" />
鍙冩暩(sh霉)璩囨枡
鍨嬭櫉锛� ISL28227FUBZ
寤犲晢锛� Intersil
鏂囦欢闋佹暩(sh霉)锛� 7/26闋�
鏂囦欢澶�?銆�?/td> 0K
鎻忚堪锛� IC OPAMP PREC 10MHZ DUAL 8MSOP
妯欐簴鍖呰锛� 50
鏀惧ぇ鍣ㄩ鍨嬶細 閫氱敤
闆昏矾鏁�(sh霉)锛� 2
杞夋彌閫熺巼锛� 3.6 V/µs
澧炵泭甯跺绌嶏細 10MHz
闆绘祦 - 杓稿叆鍋忓锛� 1nA
闆诲 - 杓稿叆鍋忕Щ锛� 10µV
闆绘祦 - 闆绘簮锛� 2.2mA
闆绘祦 - 杓稿嚭 / 閫氶亾锛� 45mA
闆诲 - 闆绘簮锛屽柈璺�/闆欒矾(±)锛� 4.5 V ~ 40 V锛�±2.25 V ~ 20 V
宸ヤ綔婧害锛� -40°C ~ 125°C
瀹夎椤炲瀷锛� 琛ㄩ潰璨艰
灏佽/澶栨锛� 8-TSSOP锛�8-MSOP锛�0.118"锛�3.00mm 瀵級
渚涙噳鍟嗚ō鍌欏皝瑁濓細 8-MSOP
鍖呰锛� 绠′欢
ISL28127, ISL28227
15
FN6633.6
December 16, 2010
ISL28127 and ISL28227 SPICE Model
Figure 40 shows the SPICE model schematic and Figure 41 shows
the net list for the ISL28127 and ISL28227 SPICE model. The
model is a simplified version of the actual device and simulates
important AC and DC parameters. AC parameters incorporated
into the model are: 1/f and flatband noise, Slew Rate, CMRR, Gain
and Phase. The DC parameters are VOS, IOS, total supply current
and output voltage swing. The model does not model input bias
current. The model uses typical parameters given in the 鈥淓lectrical
Specifications鈥� Table beginning on page 4. The AVOL is adjusted
for 128dB with the dominate pole at 5Hz. The CMRR is set higher
than the 鈥淓lectrical Specifications鈥� Table to better match design
simulations (150dB, f = 50Hz). The input stage models the actual
device to present an accurate AC representation. The model is
configured for ambient temperature of +25掳C.
Figures 42 through 57 show the characterization vs simulation
results for the Noise Voltage, Closed Loop Gain vs Frequency,
Closed Loop Gain vs Rf/Rg, Closed Loop Gain vs RL, Closed Loop
Gain vs CL, Large Signal 10V Step Response, Open Loop Gain
Phase and Simulated CMRR vs Frequency.
LICENSE STATEMENT
The information in this SPICE model is protected under the
United States copyright laws. Intersil Corporation hereby grants
users of this macro-model hereto referred to as 鈥淟icensee鈥�, a
nonexclusive, nontransferable licence to use this model as long
as the Licensee abides by the terms of this agreement. Before
using this macro-model, the Licensee should read this license. If
the Licensee does not accept these terms, permission to use the
model is not granted.
The Licensee may not sell, loan, rent, or license the macro-
model, in whole, in part, or in modified form, to anyone outside
the Licensee鈥檚 company. The Licensee may modify the
macro-model to suit his/her specific applications, and the
Licensee may make copies of this macro-model for use within
their company only.
This macro-model is provided 鈥淎S IS, WHERE IS, AND WITH NO
WARRANTY OF ANY KIND EITHER EXPRESSED OR IMPLIED,
INCLUDING BUY NOT LIMITED TO ANY IMPLIED WARRANTIES OF
MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.鈥�
In no event will Intersil be liable for special, collateral, incidental,
or consequential damages in connection with or arising out of
the use of this macro-model. Intersil reserves the right to make
changes to the product and the macro-model without prior
notice.
鐩搁棞PDF璩囨枡
PDF鎻忚堪
1544113-1 CONN RECPT FLAG 17-22AWG 0.250
150645-3 CONN RECPT/TAB 14-18AWG 0.250
ISL28227FRTBZ IC OPAMP PREC 10MHZ DUAL 8TDFN
HFA1100IBZ96 IC OP AMP 850MHZ CFB 8-SOIC
4-160256-7 CONN UNINS RCPT 13.5-17AWG 0.250
鐩搁棞浠g悊鍟�/鎶€琛撳弮鏁�(sh霉)
鍙冩暩(sh霉)鎻忚堪
ISL28227FUBZ-T13 鍔熻兘鎻忚堪:IC OPAMP PREC 10MHZ DUAL 8MSOP RoHS:鏄� 椤炲垾:闆嗘垚闆昏矾 (IC) >> Linear - Amplifiers - Instrumentation 绯诲垪:- 妯欐簴鍖呰:75 绯诲垪:MicroAmplifier™ 鏀惧ぇ鍣ㄩ鍨�:閫氱敤 闆昏矾鏁�(sh霉):1 杓稿嚭椤炲瀷:婊挎摵骞� 杞夋彌閫熺巼:0.03 V/µs 澧炵泭甯跺绌�:100kHz -3db甯跺:- 闆绘祦 - 杓稿叆鍋忓:1pA 闆诲 - 杓稿叆鍋忕Щ:60µV 闆绘祦 - 闆绘簮:20µA 闆绘祦 - 杓稿嚭 / 閫氶亾:5mA 闆诲 - 闆绘簮锛屽柈璺�/闆欒矾(±):2.3 V ~ 5.5 V 宸ヤ綔婧害:-40°C ~ 85°C 瀹夎椤炲瀷:琛ㄩ潰璨艰 灏佽/澶栨:8-SOIC锛�0.154"锛�3.90mm 瀵級 渚涙噳鍟嗚ō鍌欏皝瑁�:8-SOIC 鍖呰:绠′欢
ISL28227FUBZ-T7 鍔熻兘鎻忚堪:IC OP AMP GP 10MHZ DUAL 8MSOP RoHS:鏄� 椤炲垾:闆嗘垚闆昏矾 (IC) >> Linear - Amplifiers - Instrumentation 绯诲垪:- 妯欐簴鍖呰:75 绯诲垪:MicroAmplifier™ 鏀惧ぇ鍣ㄩ鍨�:閫氱敤 闆昏矾鏁�(sh霉):1 杓稿嚭椤炲瀷:婊挎摵骞� 杞夋彌閫熺巼:0.03 V/µs 澧炵泭甯跺绌�:100kHz -3db甯跺:- 闆绘祦 - 杓稿叆鍋忓:1pA 闆诲 - 杓稿叆鍋忕Щ:60µV 闆绘祦 - 闆绘簮:20µA 闆绘祦 - 杓稿嚭 / 閫氶亾:5mA 闆诲 - 闆绘簮锛屽柈璺�/闆欒矾(±):2.3 V ~ 5.5 V 宸ヤ綔婧害:-40°C ~ 85°C 瀹夎椤炲瀷:琛ㄩ潰璨艰 灏佽/澶栨:8-SOIC锛�0.154"锛�3.90mm 瀵級 渚涙噳鍟嗚ō鍌欏皝瑁�:8-SOIC 鍖呰:绠′欢
ISL28227FUBZ-T7A 鍔熻兘鎻忚堪:IC OP AMP GP 10MHZ DUAL 8MSOP RoHS:鏄� 椤炲垾:闆嗘垚闆昏矾 (IC) >> Linear - Amplifiers - Instrumentation 绯诲垪:- 妯欐簴鍖呰:75 绯诲垪:MicroAmplifier™ 鏀惧ぇ鍣ㄩ鍨�:閫氱敤 闆昏矾鏁�(sh霉):1 杓稿嚭椤炲瀷:婊挎摵骞� 杞夋彌閫熺巼:0.03 V/µs 澧炵泭甯跺绌�:100kHz -3db甯跺:- 闆绘祦 - 杓稿叆鍋忓:1pA 闆诲 - 杓稿叆鍋忕Щ:60µV 闆绘祦 - 闆绘簮:20µA 闆绘祦 - 杓稿嚭 / 閫氶亾:5mA 闆诲 - 闆绘簮锛屽柈璺�/闆欒矾(±):2.3 V ~ 5.5 V 宸ヤ綔婧害:-40°C ~ 85°C 瀹夎椤炲瀷:琛ㄩ潰璨艰 灏佽/澶栨:8-SOIC锛�0.154"锛�3.90mm 瀵級 渚涙噳鍟嗚ō鍌欏皝瑁�:8-SOIC 鍖呰:绠′欢
ISL28227FUZ 鍔熻兘鎻忚堪:IC OPAMP PREC 10MHZ DUAL 8MSOP RoHS:鏄� 椤炲垾:闆嗘垚闆昏矾 (IC) >> Linear - Amplifiers - Instrumentation 绯诲垪:- 妯欐簴鍖呰:75 绯诲垪:MicroAmplifier™ 鏀惧ぇ鍣ㄩ鍨�:閫氱敤 闆昏矾鏁�(sh霉):1 杓稿嚭椤炲瀷:婊挎摵骞� 杞夋彌閫熺巼:0.03 V/µs 澧炵泭甯跺绌�:100kHz -3db甯跺:- 闆绘祦 - 杓稿叆鍋忓:1pA 闆诲 - 杓稿叆鍋忕Щ:60µV 闆绘祦 - 闆绘簮:20µA 闆绘祦 - 杓稿嚭 / 閫氶亾:5mA 闆诲 - 闆绘簮锛屽柈璺�/闆欒矾(±):2.3 V ~ 5.5 V 宸ヤ綔婧害:-40°C ~ 85°C 瀹夎椤炲瀷:琛ㄩ潰璨艰 灏佽/澶栨:8-SOIC锛�0.154"锛�3.90mm 瀵級 渚涙噳鍟嗚ō鍌欏皝瑁�:8-SOIC 鍖呰:绠′欢
ISL28227FUZ-T13 鍔熻兘鎻忚堪:IC OPAMP PREC 10MHZ DUAL 8MSOP RoHS:鏄� 椤炲垾:闆嗘垚闆昏矾 (IC) >> Linear - Amplifiers - Instrumentation 绯诲垪:- 妯欐簴鍖呰:75 绯诲垪:MicroAmplifier™ 鏀惧ぇ鍣ㄩ鍨�:閫氱敤 闆昏矾鏁�(sh霉):1 杓稿嚭椤炲瀷:婊挎摵骞� 杞夋彌閫熺巼:0.03 V/µs 澧炵泭甯跺绌�:100kHz -3db甯跺:- 闆绘祦 - 杓稿叆鍋忓:1pA 闆诲 - 杓稿叆鍋忕Щ:60µV 闆绘祦 - 闆绘簮:20µA 闆绘祦 - 杓稿嚭 / 閫氶亾:5mA 闆诲 - 闆绘簮锛屽柈璺�/闆欒矾(±):2.3 V ~ 5.5 V 宸ヤ綔婧害:-40°C ~ 85°C 瀹夎椤炲瀷:琛ㄩ潰璨艰 灏佽/澶栨:8-SOIC锛�0.154"锛�3.90mm 瀵級 渚涙噳鍟嗚ō鍌欏皝瑁�:8-SOIC 鍖呰:绠′欢